{"id":361,"date":"2025-05-19T15:14:22","date_gmt":"2025-05-19T09:44:22","guid":{"rendered":"https:\/\/marketresearchcommunity.com\/?p=361"},"modified":"2025-05-19T15:14:22","modified_gmt":"2025-05-19T09:44:22","slug":"additive-manufacturing-market","status":"publish","type":"post","link":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/additive-manufacturing-market\/","title":{"rendered":"Fabrication additive Taille du march\u00e9, part et tendances Analyse par type de mat\u00e9riau (m\u00e9taux, thermoplastiques), m\u00e9thode de fabrication (conception assist\u00e9e par ordinateur, st\u00e9r\u00e9olithographie), par utilisation finale, r\u00e9gion et segment, p\u00e9riode de pr\u00e9vision &#8211; 2022 \u2013 2028"},"content":{"rendered":"<h2><strong>Fabrication additive Perspectives du march\u00e9<\/strong><\/h2>\n<p>\u00c0 l &#8216; \u00e9chelle mondiale <strong>march\u00e9 de la fabrication additive<\/strong> a \u00e9t\u00e9 \u00e9valu\u00e9 \u00e0 10 381 millions de dollars en 2021 et devrait augmenter avec un TCAC de 22,8 % entre 2022 et 2028 au cours de la p\u00e9riode de pr\u00e9vision. L&#8217;expansion de l&#8217;industrie a\u00e9rospatiale et l&#8217;utilisation croissante de divers m\u00e9taux stimulent le march\u00e9 de la fabrication additive. Au cours de la p\u00e9riode, des progr\u00e8s ont \u00e9t\u00e9 r\u00e9alis\u00e9s dans les domaines de la fabrication, de l&#8217;architecture et de l&#8217;ing\u00e9nierie, ce qui a donn\u00e9 lieu \u00e0 de nombreuses am\u00e9liorations novatrices, notamment sous la forme d&#8217;une mise \u00e0 niveau num\u00e9rique.<\/p>\n<p>La fabrication additive est connue sous le nom d&#8217;impression 3D, c&#8217;est une approche r\u00e9volutionnaire de la production industrielle qui permet la production de composants de machines plus forts, plus l\u00e9gers et complexes. La technologie peut \u00eatre consid\u00e9r\u00e9e comme une transformation des processus analogiques aux processus num\u00e9riques.<\/p>\n<p>L&#8217;efficacit\u00e9 et la flexibilit\u00e9 num\u00e9riques ont acquis de la cr\u00e9ativit\u00e9 aux fabricants qui les ont aid\u00e9s \u00e0 comprendre les exigences cl\u00e9s des consommateurs. Par exemple, r\u00e9cemment, des OEM comme Airbus ont utilis\u00e9 la technologie d&#8217;impression 3D pour imprimer des pi\u00e8ces de rechange d&#8217;un ancien avion de US Airlines qui devait \u00eatre une flotte d&#8217;Airbus A320 avec un moteur actuel (A320ceo).<\/p>\n<p>L&#8217;ex\u00e9cution r\u00e9ussie du projet a suscit\u00e9 la confiance parmi les fabricants pour utiliser davantage la technologie additive \u00e0 des fins industrielles. Ainsi, l&#8217;augmentation de la demande mondiale de produits moins chers, plus durables, stabilis\u00e9s et pr\u00e9cis est \u00e0 l&#8217;origine de la demande de fabrication additive.<\/p>\n<p>L&#8217;industrie a\u00e9rospatiale est l&#8217;une des industries en croissance en raison de l&#8217;augmentation de l&#8217;emploi et des revenus qu&#8217;elle r\u00e9alise. Avec l&#8217;av\u00e8nement de l&#8217;autonomie, la demande de syst\u00e8mes de vol autonomes a augment\u00e9, ce qui a eu une incidence positive sur l&#8217;industrie.Oui.<\/p>\n<p>Les <a href=\"https:\/\/en.wikipedia.org\/wiki\/3D_printing\" rel=\"nofollow noopener\">Industrie de l&#8217;imprimerie 3D<\/a> est ax\u00e9 sur l&#8217;innovation et le d\u00e9veloppement de nouveaux produits qui contribuent \u00e0 la r\u00e9alisation des objectifs d&#8217;\u00e9mission de carbone z\u00e9ro net, au cours des prochaines ann\u00e9es propulsera le multiple de croissance de l&#8217;industrie. Par cons\u00e9quent, une forte Les alliages Al sont largement utilis\u00e9s pour la fabrication de composants structurels dans l&#8217;industrie a\u00e9rospatiale en raison de leurs excellents rapports r\u00e9sistance-poids et rigidit\u00e9-poids ainsi que de bonne machinabilit\u00e9.<\/p>\n<p>La fabrication additive dans l&#8217;industrie r\u00e9pond \u00e0 son avancement dans la fabrication de pi\u00e8ces d&#8217;utilisation finale et le prototypage. Ainsi, les proc\u00e9d\u00e9s de fabrication additive ou d&#8217;impression 3D sont consid\u00e9r\u00e9s comme les m\u00e9thodes de fabrication les plus appropri\u00e9es dans l&#8217;industrie.<\/p>\n<h2><strong>COVID-19 Impact sur le march\u00e9 mondial de la fabrication additive<\/strong><\/h2>\n<p>L&#8217;industrie de fabrication additive a gagn\u00e9 en popularit\u00e9 pendant COVID-19 en faisant <a href=\"https:\/\/marketresearchcommunity.com\/urgent-care-market\/\">urgent<\/a> les pi\u00e8ces devant \u00eatre utilis\u00e9es dans plusieurs industries. Cependant, des d\u00e9fis comme la normalisation et la r\u00e9glementation dans l&#8217;ensemble de ce secteur pourraient r\u00e9duire certaines des pr\u00e9occupations en mati\u00e8re de s\u00e9curit\u00e9 cern\u00e9es.<\/p>\n<p>Pour compl\u00e9ter ces activit\u00e9s, la British Standards Institution (BSI), l&#8217;organisme national de normalisation britannique, a formul\u00e9 des recommandations express\u00e9ment destin\u00e9es aux entreprises, aux \u00e9coles et aux coll\u00e8ges qui font des EPI sans exp\u00e9rience pr\u00e9alable. Les effets de la pand\u00e9mie mondiale de coronavirus ont r\u00e9sonn\u00e9 \u00e0 travers de nombreuses vies, renversant certains aspects des soins de sant\u00e9, des transports et de l&#8217;\u00e9conomie mondiale.<\/p>\n<p>COVID-19 a eu un impact critique sur la demande de fabrication additive dans de nombreuses industries d&#8217;utilisation finale, \u00e0 savoir l&#8217;a\u00e9rospatiale et la d\u00e9fense, les soins de sant\u00e9, l&#8217;automobile et d&#8217;autres. L&#8217;interruption de la cha\u00eene d&#8217;approvisionnement due au verrouillage mondial a entra\u00een\u00e9 des retards dans le traitement des mati\u00e8res premi\u00e8res.Ainsi, les flux financiers perturb\u00e9s, ainsi que l&#8217;indisponibilit\u00e9 croissante des travailleurs, ont contraint les constructeurs d&#8217;a\u00e9ronefs et d&#8217;automobiles \u00e0 fonctionner \u00e0 des capacit\u00e9s minimales. En outre, la destruction \u00e9conomique caus\u00e9e par la pand\u00e9mie de covid-19 est principalement caus\u00e9e par une baisse de la consommation et de la demande \u00e0 l&#8217;\u00e9chelle mondiale.<\/p>\n<h2><strong>March\u00e9 mondial de la fabrication additive<\/strong> <strong>Couverture du rapport<\/strong><\/h2>\n<p>Le march\u00e9 de la fabrication additive est segment\u00e9 par type de mati\u00e8re, m\u00e9thode de fabrication, utilisation finale et r\u00e9gion. Le march\u00e9 des mat\u00e9riaux de fabrication additifs est segment\u00e9 en m\u00e9taux, thermoplastiques, c\u00e9ramiques, autres. Selon la m\u00e9thode de fabrication <a href=\"https:\/\/marketresearchcommunity.com\/computer-aided-engineering-market\/\">Aide informatique<\/a> Design, Binder Jetting, Material Jetting, Powder Bed Fusion, St\u00e9r\u00e9olithographie, Fused Filament Fabrication, Mat\u00e9riau Extrusion, Autres. Par le march\u00e9 de l&#8217;utilisation finale est segment\u00e9 en A\u00e9ronautique, M\u00e9dical, Services AM, Automobile, Construction, Autres.<\/p>\n<table>\n<tbody>\n<tr>\n<td width=\"301\"><strong>Attributs du rapport<\/strong><\/td>\n<td width=\"301\"><strong>D\u00e9tails du rapport<\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>\u00c9ch\u00e9ancier de l&#8217;\u00e9tude<\/strong><\/td>\n<td width=\"301\">2016-2028<\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>Taille du march\u00e9 en 2028<\/strong><\/td>\n<td width=\"301\">41 150 millions de dollars<\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>TCAC (2022-2028)<\/strong><\/td>\n<td width=\"301\">22,8%<\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>Par type de mat\u00e9riau<\/strong><\/td>\n<td width=\"301\">M\u00e9taux, thermoplastiques, c\u00e9ramiques, autres<\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>Par m\u00e9thode de fabrication<\/strong><\/td>\n<td width=\"301\">Conception assist\u00e9e par ordinateur, Binder Jetting, Material Jetting, Powder Bed Fusion, St\u00e9r\u00e9olithographie, Fused Filament Fabrication, Mat\u00e9riau Extrusion, Othe<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>rs<\/p>\n<tr>\n<td width=\"301\"><strong>Par utilisation finale<\/strong><\/td>\n<td width=\"301\">A\u00e9ronautique, M\u00e9dical, Services AM, Automobile, Construction, Autres<\/td>\n<\/tr>\n<tr>\n<td width=\"301\"><strong>Par g\u00e9ographie<\/strong><\/td>\n<td width=\"301\"><strong>Am\u00e9rique du Nord :<\/strong> \u00c9tats-Unis, Canada, Mexique<\/p>\n<p><strong>Europe: <\/strong>Allemagne, France, Royaume-Uni, Russie, Italie, Espagne, BENELUX, Reste de l&#8217;Europe<\/p>\n<p><strong>Asie-Pacifique : <\/strong>Chine, Japon, Inde, Cor\u00e9e du Sud, Australie, ASEAN, Reste de l&#8217;Asie-Pacifique<\/p>\n<p><strong>Am\u00e9rique latine<\/strong>: Br\u00e9sil, Argentine, Chili, Reste de l&#8217;Am\u00e9rique latine<\/p>\n<p><strong>Moyen-Orient et Afrique : <\/strong>GCC, Turquie, Isra\u00ebl, Reste du MEA<\/td>\n<\/tr>\n<h2><strong>Analyse du segment mondial de la fabrication additive<\/strong><\/h2>\n<p><a href=\"https:\/\/marketresearchcommunity.com\/\">Communaut\u00e9 d&#8217;\u00e9tudes de march\u00e9<\/a> fournit une analyse approfondie de la taille, de la part, des principales tendances de chaque sous-segment de l&#8217;\u00e9tude de march\u00e9 sur les additifs de fabrication, ainsi que des pr\u00e9visions mondiales, r\u00e9gionales et nationales de 2022 \u00e0 2028.<\/p>\n<h3><strong>Analyse du type de mat\u00e9riau <\/strong><\/h3>\n<p>Technologie de fabrication d&#8217;additifs m\u00e9talliques La principale part du march\u00e9 mondial de la fabrication additive. Mat\u00e9riaux m\u00e9talliques Le segment de type repr\u00e9sentait un chiffre d&#8217;affaires de 350 millions de dollars en 2021 sur le march\u00e9 de la fabrication additive. Ce segment devrait cro\u00eetre de 24 % au cours de la p\u00e9riode de pr\u00e9vision pour atteindre 1 600 millions de dollars en 2028. Les mat\u00e9riaux m\u00e9talliques ont \u00e9t\u00e9 largement utilis\u00e9s dans la fabrication de divers composants industriels, car ils offrent une rigidit\u00e9 et sont consid\u00e9r\u00e9s comme l&#8217;un des mat\u00e9riaux structuraux les plus importants.<\/p>\n<p>Le facteur cl\u00e9 qui devrait stimuler le march\u00e9 est le d\u00e9veloppement rapide de l&#8217;industrie manufacturi\u00e8re et de ses modernisations. De plus, une course pour le d\u00e9veloppement de produits l\u00e9gers pour la d\u00e9fense, en raison des menaces frontali\u00e8res croissantes entre les pays \u00e0 travers le monde alimente la croissance du march\u00e9 de divers m\u00e9taux sur le march\u00e9 mondial de la fabrication additive.<\/p>\n<h3><strong>M\u00e9thode de fabrication <\/strong><strong>Analyse sectorielle<\/strong><\/h3>\n<p>Binder Jetting Process d\u00e9tient la plus grande part du march\u00e9 mondial de la fabrication additive. La cat\u00e9gorie du proc\u00e9d\u00e9 Binder Jetting repr\u00e9sentait un chiffre d&#8217;affaires de 1 428 millions de dollars en 2021 sur le march\u00e9 mondial de la fabrication additive. Cette cat\u00e9gorie devrait augmenter de 23,5 % au cours de la p\u00e9riode de pr\u00e9vision, pour atteindre 5 070 millions de dollars en 2028. Le proc\u00e9d\u00e9 Binder Jetting a \u00e9t\u00e9 largement utilis\u00e9 dans l&#8217;impression couleur 3D et il peut utiliser le m\u00e9tal, les polym\u00e8res ainsi que les mat\u00e9riaux c\u00e9ramiques pour l&#8217;impression.<\/p>\n<p>Le facteur cl\u00e9 qui devrait \u00eatre \u00e0 l&#8217;origine du march\u00e9 est que le processus de jet de liant est g\u00e9n\u00e9ralement plus rapide que d&#8217;autres types de processus, et il peut \u00eatre acc\u00e9l\u00e9r\u00e9 en augmentant le nombre de trous de t\u00eate d&#8217;impression qui purifie le mat\u00e9riau. L&#8217;utilisation croissante du proc\u00e9d\u00e9 de jet de liant en raison de sa fabrication rapide alimente la croissance du processus de fabrication sur le march\u00e9 mondial de la fabrication additive.<\/p>\n<h3><strong>Utilisation finale <\/strong><strong>Analyse sectorielle<\/strong><\/h3>\n<p>AM Service est l&#8217;utilisation finale la plus adaptable sur le march\u00e9 mondial de la fabrication additive. Le segment AM Service End-Use a repr\u00e9sent\u00e9 un chiffre d&#8217;affaires de USD 3 633 au cours de l&#8217;ann\u00e9e 2021 du march\u00e9 mondial de la fabrication additive. Ce segment devrait cro\u00eetre \u00e0 un TCAC de 19,8% au cours de la p\u00e9riode de pr\u00e9vision pour atteindre 10 714 millions de dollars d&#8217;ici 2028.<\/p>\n<p>AM Les services sont largement accept\u00e9s dans les industries comme l&#8217;automobile, l&#8217;a\u00e9rospatiale et d&#8217;autres. En raison des besoins continus en pi\u00e8ces de rechange pour les produits de grande valeurPour ce segment, la croissance du march\u00e9 mondial de la fabrication additive s&#8217;est accrue.<\/p>\n<h3><strong>R\u00e9gional <\/strong><strong>Analyse sectorielle<\/strong><\/h3>\n<p>Am\u00e9rique du Nord Domine le march\u00e9 de la fabrication additive. L&#8217;Am\u00e9rique du Nord est l&#8217;une des principales r\u00e9gions o\u00f9 le nombre de produits de fabrication additive est \u00e9lev\u00e9. Les \u00c9tats-Unis sont les principaux pays producteurs de revenus de cette r\u00e9gion.<\/p>\n<p>Les \u00c9tats-Unis ont la plus grande base install\u00e9e d&#8217;imprimantes 3D de 422 000 unit\u00e9s au monde. \u00c9tant une nation d\u00e9velopp\u00e9e, la r\u00e9gion nord-am\u00e9ricaine est toujours dans la course \u00e0 la mise en \u0153uvre et \u00e0 l&#8217;adoption des derni\u00e8res technologies tout comme l&#8217;impression 3D. En outre, avec l&#8217;investissement croissant des \u00c9tats-Unis en faveur de nouvelles technologies dans le domaine de l&#8217;a\u00e9rospatiale pour la fabrication d&#8217;artisanat spatial \u00e0 faible poids et \u00e0 haute durabilit\u00e9 pour les missions spatiales, le march\u00e9 de la fabrication additive sera stimul\u00e9.<\/p>\n<h2><strong>March\u00e9 mondial de la fabrication additive Paysage concurrentiel<\/strong><\/h2>\n<p>L&#8217;\u00e9tude du march\u00e9 mondial de la fabrication additive est mod\u00e9r\u00e9ment comp\u00e9titive, avec un nombre consid\u00e9rable d&#8217;acteurs r\u00e9gionaux et mondiaux. Les principales strat\u00e9gies de ces entreprises sont la croissance, l&#8217;am\u00e9lioration des produits et les fusions et acquisitions.<\/p>\n<h3><strong>Acteurs cl\u00e9s <\/strong><\/h3>\n<ul>\n<li>Stratasys Inc.<\/li>\n<li>Greatbarch Inc.<\/li>\n<li>Mod\u00e9lisation biom\u00e9dicale, Inc.<\/li>\n<li>Eos GmbH Syst\u00e8mes \u00c9lectrooptiques<\/li>\n<li>Envisiontec Gmbh<\/li>\n<li>3D Systems, Inc.<\/li>\n<li>Mcor Technologies Ltd.<\/li>\n<li>T\u00e9l.<\/li>\n<li>ExUn<\/li>\n<li>GPI Prototype and Manufacturing Services, Inc.<\/li>\n<li>Morries Technologies Inc.<\/li>\n<li>Syst\u00e8me dentaire Sirona<\/li>\n<li>SLM Solutions GmbH<\/li>\n<\/ul>\n<p>Un r\u00e9seau de distribution avanc\u00e9 offre une offre comp\u00e9titive <a href=\"https:\/\/marketresearchcommunity.com\/edge-ai-market\/\">edge aux principaux acteurs du march\u00e9 mondial de la fabrication additive. En outre, les acteurs doivent innover continuellement, travailler et cro\u00eetre sur le march\u00e9, en raison de l&#8217;\u00e9volution rapide des besoins et des choix des consommateurs.<\/p>\n<h2><strong>Faits nouveaux<\/strong><\/h2>\n<ul>\n<li>2021 &#8211; Stratasys Ltd., un acteur mondial des solutions d&#8217;impression 3D, a annonc\u00e9 que ECCO (un fournisseur danois de chaussures) acceptera Stratasys Origin une technologie d&#8217;impression 3D pour acc\u00e9l\u00e9rer leur fabrication de produits en permettant des \u00e9chantillons de produits conceptuels.<\/li>\n<\/ul>\n<\/ul>\n<h2 id=\"toc\">Table of Content<\/h2>\n<p><strong>Chapter 1 Introduction<\/strong><br \/>\n1.1 Market Introduction<br \/>\n1.2 Market Research Methodology<br \/>\n1.2.1 Research Process<br \/>\n1.2.2 Primary Research<br \/>\n1.2.3 Secondary Research<br \/>\n1.2.4 Data Collection Technique<br \/>\n1.2.5 Data Sources<br \/>\n1.3 Market Estimation Methodology<br \/>\n1.3.1 Limitations of the Study<br \/>\n1.4 Product Picture of Additive Manufacturing<br \/>\n1.5 Global Additive Manufacturing Market: Classification<br \/>\n1.6 Geographic Scope<br \/>\n1.7 Years Considered for the Study<br \/>\n1.8 Research Methodology in brief:<br \/>\n1.9 Parent Market Overview<br \/>\n1.10 Overall Additive Manufacturing Market Regional Demand<br \/>\n1.11 Research Programs\/Design<br \/>\n1.12 Market Breakdown and Data Triangulation Approach<br \/>\n1.13 Data Source<br \/>\n1.14 Secondary Sources<br \/>\n1.15 Primary Sources<br \/>\n1.16 Primary Interviews:<br \/>\n1.17 Average primary breakdown ratio<\/p>\n<p><strong>Chapter 2 Executive Summary<\/strong><br \/>\n2.1 Business Trends<br \/>\n2.2 Regional Trends<br \/>\n2.3 Type Trends<br \/>\n2.4 Manufacturing Method Trends<br \/>\n2.5 End Use Trends<\/p>\n<p><strong>Chapter 3 Market Dynamics<\/strong><br \/>\n3.1 Drivers<br \/>\n3.1.1 Rise in global demand for the requirement of less expensive, more durable, stabilized, precise products is driving the demand for additive manufacturing<br \/>\n3.1.2 Expanding aerospace industry and rising utilization of various metals in additive manufacturing are driving the market<br \/>\n3.2 Restraints<br \/>\n3.2.1 Limited availability and high material cost is a major factor hampering the market growth<br \/>\n3.3 Opportunities<br \/>\n3.3.1 Expansion in the range of designs with the help of additive manufacturing processes will provide lucrative opportunities for the market<br \/>\n3.3.2 Impact forces for market dynamics<br \/>\n3.3.3 Impact forces during the forecast years<br \/>\n3.4 Industry Value Chain<br \/>\n3.4.1 Upstream analysis<br \/>\n3.4.2 Downstream analysis<br \/>\n3.4.3 Distribution Channel<br \/>\n3.4.3.1 Direct Channel<br \/>\n3.4.3.2 Indirect Channel<br \/>\n3.5 Potential Customers<br \/>\n3.6 Manufacturing Cost Analysis<br \/>\n3.7 Pricing Analysis by Region<br \/>\n3.8 Key Technology Landscape<br \/>\n3.9 Regulatory Analysis<br \/>\n3.10 Porter\u2019s Analysis<br \/>\n3.10.1 Supplier Power<br \/>\n3.10.2 Buyer Power<br \/>\n3.10.3 Substitution Threat<br \/>\n3.10.4 Threat from New Entry<br \/>\n3.10.5 Competitive Rivalry<br \/>\n3.11 PESTEL Analysis<br \/>\n3.11.1 Political Factors<br \/>\n3.11.2 Economic Factor<br \/>\n3.11.3 Social Factors<br \/>\n3.11.4 Technological Factor<br \/>\n3.11.5 Environmental Factors<br \/>\n3.11.6 Legal Factor<br \/>\n3.12 Covid-19 impact on Global economy<br \/>\n3.13 Covid-19 impact on Additive Manufacturing demand<br \/>\n3.14 Post Covid Impact on Additive Manufacturing Market Demand<br \/>\n3.15 Profitability of Key Players<br \/>\n3.16 Future Outlook<\/p>\n<p><strong>Chapter 4 Global Additive Manufacturing Market Analysis Forecast by Material Type<\/strong><br \/>\n4.1 Segment by Material Type<br \/>\n4.1.1\u00a0 Revenue Share (%), by Material Type, 2020<br \/>\n4.1.2 Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n4.1.3 Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n4.2 Volume (Kilo Tons) &amp; Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n4.2.1 Metals<br \/>\n4.2.2 Thermoplastics<br \/>\n4.2.3 Ceramics<br \/>\n4.2.4 Others<\/p>\n<p><strong>Chapter 5 Global Additive Manufacturing Market Analysis Forecast by Manufacturing Method<\/strong><br \/>\n5.1 Segment by Manufacturing Method<br \/>\n5.1.1 Revenue Share (%), by Manufacturing Method, 2020<br \/>\n5.1.2 Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n5.1.3 Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n5.2 Volume (Kilo Tons) &amp; Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n5.2.1 Powder Bed Fusion (PBF) Computer-Aided Design<br \/>\n5.2.2 Stereolithography<br \/>\n5.2.3 Fused Filament Fabrication<br \/>\n5.2.4 Binder Jetting<br \/>\n5.2.5 Material Jetting<br \/>\n5.2.6 Powder Bed Fusion<br \/>\n5.2.7 Material Extrusion<br \/>\n5.2.8 Others<\/p>\n<p><strong>Chapter 6 Global Additive Manufacturing Market Analysis Forecast by End Use<\/strong><br \/>\n6.1 Global Additive Manufacturing Segment by End Use<br \/>\n6.1.1 Global Additive Manufacturing Market Revenue Share (%), by End Use, 2020<br \/>\n6.1.2 Global Additive Manufacturing Market Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n6.1.3 Global Additive Manufacturing Market Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n6.2 Global Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n6.2.1 Aerospace<br \/>\n6.2.2 Medical<br \/>\n6.2.3 AM Services<br \/>\n6.2.4 Automotive<br \/>\n6.2.5 Construction<br \/>\n6.2.6 Others<\/p>\n<p><strong>Chapter 7 Global Additive Manufacturing Market by Players<\/strong><br \/>\n7.1 Global Additive Manufacturing Market Revenue Share (%): Competitive Analysis, 2020<br \/>\n7.1.1 Key entry strategies adopted by market players<br \/>\n7.1.2 Global Additive Manufacturing Market Revenue (USD Million), By Manufacturer 2020<br \/>\n7.1.3 Global Additive Manufacturing Market Revenue Share (%), By Manufacturer 2020<br \/>\n7.1.4 Global Additive Manufacturing Market Player Positioning, By Manufacturer 2020<br \/>\n7.2 Global Additive Manufacturing Market: Recent Development<\/p>\n<p><strong>Chapter 8 Additive Manufacturing by Regions<\/strong><br \/>\n8.1 Global Additive Manufacturing Market Overview, By Region<br \/>\n8.1.1 Global Additive Manufacturing Market Revenue, By region<br \/>\n8.2 Global Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015- 2028<br \/>\n8.2.1 Global Additive Manufacturing Market Revenue Share (%) by Region, 2019<br \/>\n8.3 North America<br \/>\n8.3.1 North America Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015-2028<br \/>\n8.4 Asia Pacific<br \/>\n8.4.1 APAC Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015-2028<br \/>\n8.5 Europe<br \/>\n8.5.1 Europe Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015-2028<br \/>\n8.6 Latin America<br \/>\n8.6.1 Latin America Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015-2028<br \/>\n8.7 Middle East &amp; Africa<br \/>\n8.7.1 Middle East &amp; Africa Additive Manufacturing Market Volume (Kilo Tons) &amp; Revenue (USD Million), 2015-2028<\/p>\n<p><strong>Chapter 9 North America<\/strong><br \/>\n9.1 North America Additive Manufacturing Market Size by Countries<br \/>\n9.1.1 North America Volume (Kilo Tons) by Countries (2015-2020)<br \/>\n9.1.2 North America Revenue (USD Million) by Countries (2015-2020)<br \/>\n9.1.3 North America Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n9.1.4 North America Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n9.1.5 North America Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.1.6 North America Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.1.7 North America Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n9.1.8 North America Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n9.2 United States<br \/>\n9.2.1 U.S. Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n9.2.2 U.S. Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n9.2.3 U.S. Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.2.4 U.S. Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.2.5 U.S. Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n9.2.6 U.S. Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n9.3 Canada<br \/>\n9.3.1 Canada Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n9.3.2 Canada Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n9.3.3 Canada Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.3.4 Canada Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.3.5 Canada Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n9.3.6 Canada Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n9.4 Mexico<br \/>\n9.4.1 Mexico Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n9.4.2 Mexico Additive Manufacturing Market Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n9.4.3 Mexico Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.4.4 Mexico Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n9.4.5 Mexico Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n9.4.6 Mexico Revenue (USD Million), by End Use, 2015 \u2013 2028<\/p>\n<p><strong>Chapter 10 Europe<\/strong><br \/>\n10.1 Europe Additive Manufacturing Market Size by Countries<br \/>\n10.1.1 Europe Volume (Kilo Tons) by Countries (2015-2020)<br \/>\n10.1.2 Europe Revenue (USD Million) by Countries (2015-2020)<br \/>\n10.1.3 Europe Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.1.4 Europe Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.1.5 Europe Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.1.6 Europe Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.1.7 Europe Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.1.8 Europe Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.2 Germany<br \/>\n10.2.1 Germany Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.2.2 Germany Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.2.3 Germany Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.2.4 Germany Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.2.5 Germany Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.2.6 Germany Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.3 France<br \/>\n10.3.1 France Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.3.2 France Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.3.3 France Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.3.4 France Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.3.5 France Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.3.6 France Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.4 UK<br \/>\n10.4.1 UK Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.4.2 UK Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.4.3 UK Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.4.4 UK Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.4.5 UK Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.4.6 UK Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.5 Spain<br \/>\n10.5.1 Spain Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.5.2 Spain Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.5.3 Spain Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.5.4 Spain Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.5.5 Spain Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.5.6 Spain Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.6 Russia<br \/>\n10.6.1 Russia Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.6.2 Russia Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.6.3 Russia Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.6.4 Russia Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.6.5 Russia Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.6.6 Russia Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.7 Italy<br \/>\n10.7.1 Italy Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.7.2 Italy Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.7.3 Italy Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.7.4 Italy Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.7.5 Italy Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.7.6 Italy Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n10.8 BENELUX<br \/>\n10.8.1 BENELUX Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n10.8.2 BENELUX Additive Manufacturing Market Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n10.8.3 BENELUX Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.8.4 BENELUX Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n10.8.5 BENELUX Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n10.8.6 BENELUX Revenue (USD Million), by End Use, 2015 \u2013 2028<\/p>\n<p><strong>Chapter 11 Asia Pacific<\/strong><br \/>\n11.1 Asia Pacific Additive Manufacturing Market Size by Countries<br \/>\n11.1.1 Asia Pacific Volume (Kilo Tons) by Countries (2015-2020)<br \/>\n11.1.2 Asia Pacific Revenue (USD Million) by Countries (2015-2020)<br \/>\n11.1.3 Asia Pacific Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.1.4 Asia Pacific Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.1.5 Asia Pacific Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.1.6 Asia Pacific Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.1.7 Asia Pacific Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.1.8 Asia Pacific Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.2 China<br \/>\n11.2.1 China Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.2.2 China Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.2.3 China Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.2.4 China Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.2.5 China Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.2.6 China Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.3 Japan<br \/>\n11.3.1 Japan Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.3.2 Japan Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.3.3 Japan Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.3.4 Japan Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.3.5 Japan Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.3.6 Japan Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.4 Australia<br \/>\n11.4.1 Australia Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.4.2 Australia Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.4.3 Australia Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.4.4 Australia Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.4.5 Australia Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.4.6 Australia Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.5 South Korea<br \/>\n11.5.1 South Korea Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.5.2 South Korea Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.5.3 South Korea Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.5.4 South Korea Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.5.5 South Korea Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.5.6 South Korea Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.6 India<br \/>\n11.6.1 India Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.6.2 India Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.6.3 India Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.6.4 India Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.6.5 India Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.6.6 India Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n11.7 ASEAN<br \/>\n11.7.1 ASEAN Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n11.7.2 ASEAN Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n11.7.3 ASEAN Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.7.4 ASEAN Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n11.7.5 ASEAN Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n11.7.6 ASEAN Revenue (USD Million), by End Use, 2015 \u2013 2028<\/p>\n<p><strong>Chapter 12 Latin America<\/strong><br \/>\n12.1 Latin America Additive Manufacturing Market Size by Countries<br \/>\n12.1.1 Latin America Volume (Kilo Tons) by Countries (2015-2020)<br \/>\n12.1.2 Latin America Revenue (USD Million) by Countries (2015-2020)<br \/>\n12.1.3 Latin America Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n12.1.4 Latin America Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n12.1.5 Latin America Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.1.6 Latin America Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.1.7 Latin America Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n12.1.8 Latin America Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n12.2 Brazil<br \/>\n12.2.1 Brazil Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n12.2.2 Brazil Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n12.2.3 Brazil Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.2.4 Brazil Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.2.5 Brazil Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n12.2.6 Brazil Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n12.3 Argentina Additive Manufacturing Market<br \/>\n12.3.1 Argentina Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n12.3.2 Argentina Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n12.3.3 Argentina Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.3.4 Argentina Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.3.5 Argentina Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n12.3.6 Argentina Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n12.4 Chile Additive Manufacturing Market<br \/>\n12.4.1 Chile Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n12.4.2 Chile Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n12.4.3 Chile Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.4.4 Chile Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n12.4.5 Chile Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n12.4.6 Chile Revenue (USD Million), by End Use, 2015 \u2013 2028<\/p>\n<p><strong>Chapter 13 Middle East and Africa<\/strong><br \/>\n13.1 Middle East and Africa Additive Manufacturing Market Size by Countries<br \/>\n13.1.1 Middle East and Africa Additive Manufacturing Market Volume (Kilo Tons) by Countries (2015-2020)<br \/>\n13.1.2 Middle East and Africa Revenue (USD Million) by Countries (2015-2020)<br \/>\n13.1.3 Middle East and Africa Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n13.1.4 Middle East and Africa Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n13.1.5 Middle East and Africa Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.1.6 Middle East and Africa Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.1.7 Middle East and Africa Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n13.1.8 Middle East and Africa Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n13.2 GCC<br \/>\n13.2.1 GCC Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n13.2.2 GCC Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n13.2.3 GCC Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.2.4 GCC Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.2.5 GCC Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n13.2.6 GCC Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n13.3 Turkey Additive Manufacturing Market<br \/>\n13.3.1 Turkey Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n13.3.2 Turkey Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n13.3.3 Turkey Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.3.4 Turkey Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.3.5 Turkey Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n13.3.6 Turkey Revenue (USD Million), by End Use, 2015 \u2013 2028<br \/>\n13.4 South Africa Additive Manufacturing Market<br \/>\n13.4.1 South Africa Additive Manufacturing Market Volume (Kilo Tons), by Material Type, 2015 \u2013 2028<br \/>\n13.4.2 South Africa Additive Manufacturing Market Revenue (USD Million), by Material Type, 2015 \u2013 2028<br \/>\n13.4.3 South Africa Volume (Kilo Tons), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.4.4 South Africa Revenue (USD Million), by Manufacturing Method, 2015 \u2013 2028<br \/>\n13.4.5 South Africa Volume (Kilo Tons), by End Use, 2015 \u2013 2028<br \/>\n13.4.6 South Africa Revenue (USD Million), by End Use, 2015 \u2013 2028<\/p>\n<p><strong>Chapter 14 Competitive Analysis<\/strong><br \/>\n14.1 Stratasys Inc.<br \/>\n14.1.1 Business Overview<br \/>\n14.1.2 Stratasys Inc. Business Financials (USD Million)<br \/>\n14.1.3 Stratasys Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.1.4 Stratasys Inc. Main Business\/Business Overview<br \/>\n14.1.5 Stratasys Inc. Geographical Analysis<br \/>\n14.1.6 Stratasys Inc. Recent Development<br \/>\n14.1.7 Stratasys Inc. Swot Analysis<br \/>\n14.2 Greatbarch Inc.<br \/>\n14.2.1 Business Overview<br \/>\n14.2.2 Greatbarch Inc. Business Financials (USD Million)<br \/>\n14.2.3 Greatbarch Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.2.4 Greatbarch Inc. Main Business\/Business Overview<br \/>\n14.2.5 Greatbarch Inc. Geographical Analysis<br \/>\n14.2.6 Greatbarch Inc. Recent Development<br \/>\n14.2.7 Greatbarch Inc. Swot Analysis<br \/>\n14.3 Biomedical Modeling, Inc.<br \/>\n14.3.1 Additive Manufacturing Market Business Overview<br \/>\n14.3.2 Biomedical Modeling, Inc. Business Financials (USD Million)<br \/>\n14.3.3 Biomedical Modeling, Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.3.4 Biomedical Modeling, Inc. Main Business\/Business Overview<br \/>\n14.3.5 Biomedical Modeling, Inc. Geographical Analysis<br \/>\n14.3.6 Biomedical Modeling, Inc. Recent Development<br \/>\n14.3.7 Biomedical Modeling, Inc. Swot Analysis<br \/>\n14.4 Eos GmbH Electro Optical Systems<br \/>\n14.4.1 Business Overview<br \/>\n14.4.2 Eos GmbH Electro Optical Systems Business Financials (USD Million)<br \/>\n14.4.3 Eos GmbH Electro Optical Systems Additive Manufacturing Product Category, Type and Specification<br \/>\n14.4.4 Eos GmbH Electro Optical Systems Main Business\/Business Overview<br \/>\n14.4.5 Eos GmbH Electro Optical Systems Geographical Analysis<br \/>\n14.4.6 Eos GmbH Electro Optical Systems Recent Development<br \/>\n14.4.7 Eos GmbH Electro Optical Systems Swot Analysis<br \/>\n14.5 Envisiontec Gmbh<br \/>\n14.5.1 Business Overview<br \/>\n14.5.2 Envisiontec Gmbh Business Financials (USD Million)<br \/>\n14.5.3 Envisiontec Gmbh Additive Manufacturing Product Category, Type and Specification<br \/>\n14.5.4 Envisiontec Gmbh Main Business\/Business Overview<br \/>\n14.5.5 Envisiontec Gmbh Geographical Analysis<br \/>\n14.5.6 Envisiontec Gmbh Recent Development<br \/>\n14.5.7 Envisiontec Gmbh Swot Analysis<br \/>\n14.6 3D Systems, Inc.<br \/>\n14.6.1 Business Overview<br \/>\n14.6.2 3D Systems, Inc. Business Financials (USD Million)<br \/>\n14.6.3 3D Systems, Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.6.4 3D Systems, Inc. Main Business\/Business Overview<br \/>\n14.6.5 3D Systems, Inc. Geographical Analysis<br \/>\n14.6.6 3D Systems, Inc. Recent Development<br \/>\n14.6.7 3D Systems, Inc. Swot Analysis<br \/>\n14.7 MCor Technologies Ltd.<br \/>\n14.7.1 Business Overview<br \/>\n14.7.2 MCor Technologies Ltd. Business Financials (USD Million)<br \/>\n14.7.3 MCor Technologies Ltd. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.7.4 MCor Technologies Ltd. Main Business\/Business Overview<br \/>\n14.7.5 MCor Technologies Ltd. Geographical Analysis<br \/>\n14.7.6 MCor Technologies Ltd. Recent Development<br \/>\n14.7.7 MCor Technologies Ltd. Swot Analysis<br \/>\n14.8 Arcam AB<br \/>\n14.8.1 Business Overview<br \/>\n14.8.2 Arcam AB Business Financials (USD Million)<br \/>\n14.8.3 Arcam AB Additive Manufacturing Product Category, Type and Specification<br \/>\n14.8.4 Arcam AB Main Business\/Business Overview<br \/>\n14.8.5 Arcam AB Geographical Analysis<br \/>\n14.8.6 Arcam AB Recent Development<br \/>\n14.8.7 Arcam AB Swot Analysis<br \/>\n14.9 ExOne<br \/>\n14.9.1 Business Overview<br \/>\n14.9.2 ExOne Business Financials (USD Million)<br \/>\n14.9.3 ExOne Additive Manufacturing Product Category, Type and Specification<br \/>\n14.9.4 ExOne Main Business\/Business Overview<br \/>\n14.9.5 ExOne Geographical Analysis<br \/>\n14.9.6 ExOne Recent Development<br \/>\n14.9.7 ExOne Swot Analysis<br \/>\n14.10 GPI Prototype and Manufacturing Services, Inc.<br \/>\n14.10.1 Business Overview<br \/>\n14.10.2 GPI Prototype and Manufacturing Services, Inc. Business Financials (USD Million)<br \/>\n14.10.3 GPI Prototype and Manufacturing Services, Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.10.4 GPI Prototype and Manufacturing Services, Inc. Main Business\/Business Overview<br \/>\n14.10.5 GPI Prototype and Manufacturing Services, Inc. Geographical Analysis<br \/>\n14.10.6 GPI Prototype and Manufacturing Services, Inc. Recent Development<br \/>\n14.10.7 GPI Prototype and Manufacturing Services, Inc. Swot Analysis<br \/>\n14.11 Morries Technologies Inc.<br \/>\n14.11.1 Business Overview<br \/>\n14.11.2 Morries Technologies Inc. Business Financials (USD Million)<br \/>\n14.11.3 Morries Technologies Inc. Additive Manufacturing Product Category, Type and Specification<br \/>\n14.11.4 Morries Technologies Inc. Main Business\/Business Overview<br \/>\n14.11.5 Morries Technologies Inc. Geographical Analysis<br \/>\n14.11.6 Morries Technologies Inc. Recent Development<br \/>\n14.11.7 Morries Technologies Inc. Swot Analysis<br \/>\n14.12 Sirona Dental System<br \/>\n14.12.1 Business Overview<br \/>\n14.12.2 Sirona Dental System Business Financials (USD Million)<br \/>\n14.12.3 Sirona Dental System Additive Manufacturing Product Category, Type and Specification<br \/>\n14.12.4 Sirona Dental System Main Business\/Business Overview<br \/>\n14.12.5 Sirona Dental System Geographical Analysis<br \/>\n14.12.6 Sirona Dental System Recent Development<br \/>\n14.12.7 Sirona Dental System Swot Analysis<br \/>\n14.13 SLM Solutions GmbH<br \/>\n14.13.1 Business Overview<br \/>\n14.13.2 SLM Solutions GmbH Business Financials (USD Million)<br \/>\n14.13.3 SLM Solutions GmbH Additive Manufacturing Product Category, Type and Specification<br \/>\n14.13.4 SLM Solutions GmbH Main Business\/Business Overview<br \/>\n14.13.5 SLM Solutions GmbH Geographical Analysis<br \/>\n14.13.6 SLM Solutions GmbH Recent Development<br \/>\n14.13.7 SLM Solutions GmbH Swot Analysis<\/p>\n<p><strong>Chapter 15 Market Research Findings &amp; Conclusion<\/strong><br \/>\n<strong>Disclaimer<\/strong><\/p>\n\n<h2 id=\"methodology\">Research Methodology<\/h2>\nThe Market Research Community offers numerous solutions and its full addition in the research methods to be skilled at each step. We use wide-ranging resources to produce the best outcome for our customers. The achievement of a research development is completely reliant on the research methods implemented by the company. We always faithful to our clients to find opportunities by examining the global market and offering economic insights.<br \/>\r\n<br \/>\r\nMarket Research Community are proud of our widespread coverage that encompasses the understanding of numerous major industry domains. Company offers consistency in our research report, we also offers on the part of the analysis of forecast across a range of coverage geographies and coverage. The research teams carry out primary and secondary research to carry out and design the data collection methods.\n","protected":false},"excerpt":{"rendered":"<p>Fabrication additive Perspectives du march\u00e9 \u00c0 l &#8216; \u00e9chelle mondiale march\u00e9 de la fabrication additive a \u00e9t\u00e9 \u00e9valu\u00e9 \u00e0 10 381 millions de dollars en 2021 et devrait augmenter avec un TCAC de 22,8 % entre 2022 et 2028 au cours de la p\u00e9riode de pr\u00e9vision. L&#8217;expansion de l&#8217;industrie a\u00e9rospatiale et l&#8217;utilisation croissante de divers &hellip;<\/p>\n","protected":false},"author":2,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[11],"tags":[],"class_list":["post-361","post","type-post","status-publish","format-standard","hentry","category-materials-and-chemicals"],"_links":{"self":[{"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/posts\/361","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/comments?post=361"}],"version-history":[{"count":0,"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/posts\/361\/revisions"}],"wp:attachment":[{"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/media?parent=361"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/categories?post=361"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/marketresearchcommunity.com\/mrc\/fr\/wp-json\/wp\/v2\/tags?post=361"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}