Table of Contents
1. Executive Summary
2. 3D Printing Materials in the Global Automotive Market: Market Dynamics
2.1: Introduction, Background, and Classifications
2.2: Supply Chain
2.3: Industry Drivers and Challenges
3. Market Trends and Forecast Analysis from 2017 to 2028
3.1: Macroeconomic Trends (2017-2022) and Forecast (2023-2028)
3.2: 3D Printing Materials in the Global Automotive Market Trends (2017-2022) and Forecast (2023-2028)
3.3: 3D Printing Materials in the Global Automotive Market by Technology
3.3.1: Stereolithography
3.3.2: Selective Laser Sintering
3.3.3: Electron Beam Melting
3.3.4: Fused Deposition Modeling
3.3.5: Laminated Object Manufacturing
3.3.6: Three-Dimensional Inject Printing
3.3.7: Others
3.4: 3D Printing Materials in the Global Automotive Market by Application
3.4.1: Prototyping & Tooling
3.4.2: Research
3.4.3: Development & Innovation
3.4.4: Manufacturing Complex Component
3.4.5: Others
4. Market Trends and Forecast Analysis by Region from 2017 to 2028
4.1: 3D Printing Materials in the Global Automotive Market by Region
4.2: 3D Printing Materials in the North American Automotive Market
4.2.1: 3D Printing Materials in the North American Automotive Market by Technology: Stereolithography, Selective Laser Sintering, Electron Beam Melting, Fused Deposition Modeling, Laminated Object Manufacturing, Three-Dimensional Inject Printing, and Others
4.2.2: 3D Printing Materials in the North American Automotive Market by Application: Prototyping & Tooling, Research, Development & Innovation, Manufacturing Complex Component, and Others
4.3: 3D Printing Materials in the European Automotive Market
4.3.1: 3D Printing Materials in the European Automotive Market by Technology: Stereolithography, Selective Laser Sintering, Electron Beam Melting, Fused Deposition Modeling, Laminated Object Manufacturing, Three-Dimensional Inject Printing, and Others
4.3.2: 3D Printing Materials in the European Automotive Market by Application: Prototyping & Tooling, Research, Development & Innovation, Manufacturing Complex Component, and Others
4.4: 3D Printing Materials in the APAC Automotive Market
4.4.1: 3D Printing Materials in the APAC Automotive Market by Technology: Stereolithography, Selective Laser Sintering, Electron Beam Melting, Fused Deposition Modeling, Laminated Object Manufacturing, Three-Dimensional Inject Printing, and Others
4.4.2: 3D Printing Materials in the APAC Automotive Market by Application: Prototyping & Tooling, Research, Development & Innovation, Manufacturing Complex Component, and Others
4.5: 3D Printing Materials in the ROW Automotive Market
4.5.1: 3D Printing Materials in the ROW Automotive Market by Technology: Stereolithography, Selective Laser Sintering, Electron Beam Melting, Fused Deposition Modeling, Laminated Object Manufacturing, Three-Dimensional Inject Printing, and Others
4.5.2: 3D Printing Materials in the ROW Automotive Market by Application: Prototyping & Tooling, Research, Development & Innovation, Manufacturing Complex Component, and Others
5. Competitor Analysis
5.1: Product Portfolio Analysis
5.2: Operational Integration
5.3: Porter’s Five Forces Analysis
6. Growth Opportunities and Strategic Analysis
6.1: Growth Opportunity Analysis
6.1.1: Growth Opportunities for the 3D Printing Materials in the Global Automotive Market by Technology
6.1.2: Growth Opportunities for the 3D Printing Materials in the Global Automotive Market by Application
6.1.3: Growth Opportunities for the 3D Printing Materials in the Global Automotive Market by Region
6.2: Emerging Trends in the 3D Printing Materials in the Global Automotive Market
6.3: Strategic Analysis
6.3.1: New Product Development
6.3.2: Capacity Expansion of the 3D Printing Materials in the Global Automotive Market
6.3.3: Mergers, Acquisitions, and Joint Ventures in the 3D Printing Materials in the Global Automotive Market
6.3.4: Certification and Licensing
7. Company Profiles of Leading Players
7.1: 3D Systems Corporation
7.2: Autodesk
7.3: Envisiontec
7.4: Polymaker
7:5: Ponoko