3D Printing Automotive Market by Technology (SLA, SLS, FDM, EBM, LOM, 3DIP), Materials (Metals, Polymers), Application (Prototyping & Tooling, R&D, Manufacturing), and Region - Global Trends and Forecast to 2020

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Date: 17-Sep-2015
No. of pages: 211
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The 3D printing market for automotive is estimated to be3.49 million kilograms in 2015, and is projected to grow to 11.53 million kilograms by 2020, at a CAGR of 26.99%.

Automotive OEMs have begun adopting 3D printing for rapid prototyping, rapid tooling, R&D, and manufacturing complex components. OEMs have a wide range of 3D printing materials to choose from, including metals, alloys, polymers, glass, and composites. The choice of material largely depends on the application. For instance, if an OEM wants to prototype a dashboard for a car, they could use thermoplasticas a print material, as it would offer more flexibility and rigidity, and if they want to prototype an engine component, they could 3D print on steel, which offers a high tolerance to temperature and pressure. Additionally, 3D printing in automotive reduces the time taken to prototype, the length of the supply chain, the cost of prototyping, and raw material wastage; these are also key drivers of the 3D printing in automotive market. Factors restricting the growth of the 3D printing in automotive market are lack of standardization of the control process and fluctuations in the availability and cost of print materials.

This report segments the 3D printing market for automotive on the basis of technology [stereo lithography (SLA), laser sintering, electron beam melting (EBM), fused disposition modeling (FDM), laminated object manufacturing (LOM), three dimensional inkjet printing (3IDP), and other technologies], material [polymers, metals/alloys, and others (glass, ceramics, wood, composites)],application [prototyping and tooling, R&D and innovation, manufacturing complex components and others (customization, personalization, aftermarket)], and 3D printer market.

The report classifies and defines the3D printing market for automotive, in terms of volume and value. Market size, in terms of volume, is provided in thousand kilograms from 2013 to 2020, while the market size, by value, is provided in terms of USD Million.

The 3D printing market for automotive in Europe is estimated to grow at the highest CAGR, by value, of 30.29% from 2015 to 2020.

The report also provides a comprehensive review of market drivers, restraints, opportunities, challenges, and key issues in the3D printing market for automotive. Apart from analyzing the quantitative aspects of the market, the report also covers qualitative aspects, such as the value chain analysis and Porter’s Five Forces analysis.

The 3D printing market for automotive is dominated by a few major players, such as3D Systems (U.S.), Stratasys (U.S.), Optomec (U.S.), ExOne (U.S.), and Arcam (Sweden).The key strategies adopted by these market players are mergers & acquisitions, new product development, and expansion

3D Printing Automotive Market by Technology (SLA, SLS, FDM, EBM, LOM, 3DIP), Materials (Metals, Polymers), Application (Prototyping & Tooling, R&D, Manufacturing), and Region - Global Trends and Forecast to 2020

Table of Contents

1 Introduction
1.1 Objectives of the Study
1.2 Markets Definition
1.3 Market Scope
1.3.1 Markets Covered
1.3.2 Years Considered in  the Report
1.4 Currency & Pricing
1.5 Limitation
1.6 Stakeholders

2 Research Methodology
2.1 Research Data
2.2 Secondary Data
2.2.1 Key Secondary Sources
2.2.2 Key Data From Secondary Sources
2.3 Primary Data
2.3.1 Sampling Techniques & Data Collection Methods
2.3.2 Primary Participants
2.4 Market Estimation
2.4.1 Top-Down Approach
2.4.2 Data Triangulation

3 Executive Summary

4 Premium Insights
4.1 Attractive Market Opportunities in 3D Printing  Market for Automotive
4.2 Stereo Lithography (SLA) Technology Projected to Have the Highest  Share Among Other Technologies From 2015 to 2020 (USD Million)
4.3 Prototyping & Tooling Application to Dominate the 3D Printing Market (In Value) for Automotive (2015 & 2020)
4.4 Europe & Asia-Pacific Regions to Be the Fastest-Growing Markets in Value for 3D Printing in Automotive
4.5 Polymers to Be the Most Preferred Material for 3D Printing  Because of Its Lightweight
4.6 Global 3D Printer Sales Expected to Be the Highest in Terms of Value in  Asia-Pacific By 2020
4.7 Overview of Global 3D Printer Market
4.8 Automotive 3D Printer Market

5 Market Overview
5.1 Introduction
5.1.1 3D Printing Process
5.1.2 3D Printing Market for Automotive Segmentation: By Technology
5.1.3 3D Printing Market for Automotive Segmentation: By Material
5.1.4 3D Printing Market for Automotive Segmentation: By Region
5.1.5 3D Printing Market for Automotive Segmentation: By Application
5.2 Technology Evolution of 3D Printing
5.3 Market Dynamics
5.3.1 Drivers
5.3.1.1 Reduction in Costs & Time of Rapid Prototyping
5.3.1.2 Increasing Investments in R&D for 3D  Printing Technologies & Materials
5.3.1.3 Government Investments in 3D Printing-Related R&D Projects
5.3.2 Restraints
5.3.2.1 Limited Availability, High Cost, & Standardization Issues of 3D Printing Materials
5.3.2.2 Lack of Standardized Process Control
5.3.3 Opportunities
5.3.3.1 Untapped Markets for 3D Printing Applications
5.3.3.2 Mergers & Acquisitions in the 3D Printing Industry
5.3.4 Challenges
5.3.4.1 Limitations in Prototyping, Printing Speed, & Material Composition
5.4 Burning Issue
5.4.1 Manufacturers vs Intellectual Property Rights & Copyright Issues
5.5 Porter’s Five Forces Analysis
5.5.1 Threat of New Entrants
5.5.2 Threat of Substitutes
5.5.3 Bargaining Power of Suppliers
5.5.4 Bargaining Power of Buyers
5.5.5 Intensity of Rivalry
5.6 Value Chain
5.7 Expiration of Key Patents
5.8 3D Printing & Global Supply Chain

6 3D Printing Market By Region
6.1 Introduction
6.1.1 Pest Analysis
6.1.1.1 Asia-Pacific
6.1.1.1.1 Political Factors
6.1.1.1.2 Economic Factors
6.1.1.1.3 Social Factors
6.1.1.1.4 Technological Factors
6.1.2 SWOT Analysis
6.1.2.1 China
6.1.2.1.1 Strengths
6.1.2.1.2 Weakness
6.1.2.1.3 Opportunity
6.1.2.1.4 Threat
6.1.2.2 India
6.1.2.2.1 Strengths
6.1.2.2.2 Weakness
6.1.2.2.3 Opportunity
6.1.2.2.4 Threat
6.1.3 Pest Analysis
6.1.3.1 Europe
6.1.3.1.1 Political Factors
6.1.3.1.2 Economic Factors
6.1.3.1.3 Social Factors
6.1.3.1.4 Technological Factors
6.1.4 SWOT Analysis
6.1.4.1 U.K.
6.1.4.1.1 Strengths
6.1.4.1.2 Weakness
6.1.4.1.3 Opportunity
6.1.4.1.4 Threat
6.1.5 Pest Analysis
6.1.5.1 North America
6.1.5.1.1 Political Factors
6.1.5.1.2 Economic Factors
6.1.5.1.3 Social Factors
6.1.5.1.4 Technological Factors
6.1.6 SWOT Analysis
6.1.6.1 U.S.
6.1.6.1.1 Strengths
6.1.6.1.2 Weakness
6.1.6.1.3 Opportunity
6.1.6.1.4 Threat
6.1.7 Pest Analysis
6.1.7.1 Row
6.1.7.1.1 Political Factors
6.1.7.1.2 Economic Factors
6.1.7.1.3 Social Factors
6.1.7.1.4 Technological Factors
6.2 Asia-Pacific 3D Printing Market, By Country
6.2.1 Japan
6.2.2 China
6.2.3 India
6.2.4 South Korea
6.3 Europe 3D Printing Market, By Country
6.3.1 Germany
6.3.2 U.K.
6.3.3 Italy
6.3.4 France
6.3.5 Spain
6.4 North America 3D Printing Market, By Country
6.4.1 U.S.
6.4.2 Canada
6.4.3 Mexico
6.5 Row 3D Printing Market, By Country
6.5.1 Brazil
6.5.2 Russia
6.5.3 Others

7 3D Printing Market of Automotive By Application
7.1 Introduction
7.2 Prototyping & Tooling
7.3 Research, Development & Innovation
7.4 Manufacturing Complex Components
7.5 Other Applications

8 Global 3D Printing Market, By Technology
8.1 Introduction
8.2 Stereolithography
8.3 Selective Laser Sintering
8.3.1 Selective Laser Melting
8.3.2 Direct Metal Laser Sintering
8.4 Electron Beam Melting (EBM)
8.5 Fused Disposition Modeling
8.6 Laminated Object Manufacturing
8.7 Three Dimensional Inject Printing
8.8 Others
8.8.1 Digital Light Processing
8.8.2 Multiphase Jet Solidification (MJS)

9 3D Printing Market, By Material
9.1 Introduction
9.2 Metals
9.3 Polymer
9.4 Others

10 Current & Future Application of 3D Printing in Automotive
10.1 Introduction
10.2 3D Printing Impact on Automotive
10.3 Application of in Automotive Components: Current & Future
10.3.1 Current Components
10.3.1.1 Exterior/Exterior Trim
10.3.1.2 Fluid Handling
10.3.1.3 Manufacturing Process
10.3.1.4 Exhaust/Emissions
10.3.2 Future Components
10.3.2.1 Frame, Body, & Doors
10.3.2.2 Electronics
10.3.2.3 Wheels, Tires, & Suspensions
10.3.2.4 Oem Components
10.3.2.5 Interior & Seating
10.3.2.6 Engine Components

11 3D Printing for Automotive Applications : Case Studies
11.1 Case Study 1; Bayerische Motor Works
11.2 Case Study 2: Koenigsegg
11.3 Case Study 3: Jaguar Land Rover

12 Competitive Landscape
12.1 Market Share Analysis, 3D Printing Market
12.2 Competitive Situation and Trends
12.3 New Product Launches
12.4 Expansions
12.5 Mergers & Acquisitions
12.6 Agreements/Joint Ventures/Partnerships
12.7 Product  Mapping
12.8 Customer Mapping
12.9 Buying Criteria
12.9.1 Product Related Criteria:
12.9.2 Other Buying Criteria:

13 Company Profiles
13.1 Introduction
13.2 3D Systems Corporation
13.2.1 Business Overview
13.2.2 Products
13.2.3 Key Strategy
13.2.4 Recent Developments
13.2.5 SWOT Analysis
13.2.6 MnM View
13.3 Autodesk
13.3.1 Business Overview
13.3.2 Products & Services
13.3.3 Key Strategy
13.3.4 Recent Developments
13.3.5 SWOT Analysis
13.3.6 MnM View
13.4 Arcam AB
13.4.1 Business Overview
13.4.2 Products & Services
13.4.3 Key Strategy
13.4.4 Recent Developments
13.4.5 SWOT Analysis
13.4.6 MnM View
13.5 Stratasys Inc.
13.5.1 Business Overview
13.5.2 Products & Services
13.5.3 Key Strategy
13.5.4 Recent Developments
13.5.5 SWOT Analysis
13.5.6 MnM View
13.6 Voxeljet AG
13.6.1 Business Overview
13.6.2 Products
13.6.3 Key Strategy
13.6.4 Recent Developments
13.6.5 SWOT Analysis
13.6.6 MnM View
13.7 Exone
13.7.1 Business Overview
13.7.2 Products & Services
13.7.3 Key Strategy
13.7.4 Recent Developments
13.8 Hoganas AB
13.8.1 Business Overview
13.8.2 Products & Services
13.8.3 Key Strategy
13.8.4 Recent Developments
13.9 Optomec Inc.
13.9.1 Business Overview
13.9.2 Products & Services
13.9.3 Key Strategy
13.9.4 Recent Developments
13.10 Local Motors
13.10.1 Business Overview
13.10.2 Products & Services
13.10.3 Recent Developments
13.11 Ponoko Ltd
13.11.1 Business Overview
13.11.2 Products & Services
13.11.3 Key Strategy
13.11.4 Recent Developments

14 Appendix
14.1 Insights of Industry Experts
14.2 Discussion Guide
14.3 Introducing RT: Real Time Market Intelligence
14.4 Available Customizations
14.4.1 3D Printing for Aerospace Industry
14.4.2 3D Printer Sales, By Technology
14.4.3 Analysis of Oem Spending on 3D Printing Technology

List of Tables

Table 1 Global: 3D Printing Market Size for Automotive , By Region 2015–2020 ('000 Kg)
Table 2 Global: 3D Printing Market Size for Automotive , By Region 2015–2020 (USD Million)
Table 3 Asia-Pacific: 3D Printing Market Size for Automotive , By Country 2015–2020 ('000 Kgs)
Table 4 Asia-Pacific: 3D Printing Market Size for Automotive , By Country 2015–2020 (USD Million)
Table 5 Japan: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 6 Japan: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 7 China: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 8 China: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million
Table 9 India: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 10 India: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 11 South Korea: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 12 South Korea: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 13 Europe: 3D Printing Market Size for Automotive , By Country 2015–2020 ('000 Kgs)
Table 14 Europe: 3D Printing Market Size for Automotive , By Country 2015–2020 (USD Million)
Table 15 Germany: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 16 Germany: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 17 U.K.: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 18 U.K.: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 19 Italy: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 20 Italy: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 21 France: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 22 France: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 23 Spain: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 24 Spain: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 25 North America: 3D Printing Market Size for Automotive , By Country 2015–2020 ('000 Kgs)
Table 26 North America: 3D Printing Market Size for Automotive , By Country 2015–2020 (USD Million)
Table 27 U.S.: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 28 U.S.: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 29 Canada: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs
Table 30 Canada: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 31 Mexico: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 32 Mexico: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 33 RoW: 3D Printing Market Size for Automotive , By Country 2015–2020 ('000 Kgs)
Table 34 RoW: 3D Printing Market Size for Automotive , By Country 2015–2020 (USD Million)
Table 35 Brazil: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 36 Brazil: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 37 Russia: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 38 Russia: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 39 Others: 3D Printing Market Size for Automotive , By Material 2015–2020 ('000 Kgs)
Table 40 Others: 3D Printing Market Size for Automotive , By Material 2015–2020 (USD Million)
Table 41 Global:  3D Printing Market for Automobile, By Application,  2013–2020 (USD Million)
Table 42 Prototyping & Tooling: 3D Printing Market Size for Automotive, ByComponents, 2013–2020 (USD Million)
Table 43 Research, Development, & Innovation: 3D Printing Market Size for Automotive, By Components, 2013–2020 (USD Million)
Table 44 Manufacturing Complex Components: 3D Printing Market Size for Automotive, ByComponents, 2013–2020 (USD Million)
Table 45 Other Applications: 3D Printing Market Size for Automotive, By Components, 2013–2020 (USD Million)
Table 46 Global: 3D Printing Market Size for Automotive, By Technology, 2013–2020 (USD Million)
Table 47 Stereolithography: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 48 Laser Sintering: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 49 EBM: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 50 FDM: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 51 LOM: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 52 3DIP: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 53 Other Technologies: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 54 Global: 3D Printing Market Size for Automotive, By Material, 2013–2020 (‘000 Kgs)
Table 55 Global: 3D Printing Market Size for Automotive, By Material, 2013–2020 (USD Million)
Table 56 Metals: 3D Printing Market Size for Automotive, By Region, 2013–2020 (‘000 Kgs)
Table 57 Metals: 3D Printing Market Size for Automotive, By Region, 2013–2020 (USD Million)
Table 58 Polymer: 3D Printing Market Size for Automotive, By Region, 2013–2020 (‘000 Kgs)
Table 59 Polymer: 3D Printing Market Value for Automotive, By Region, 2013–2020 (USD Million)
Table 60 Others: 3D Printing Market Size for Automotive, By Region, 2013–2020 (‘000 Kgs)
Table 61 Others: 3D Printing Market Size for Automotive, By Region, 2013–2020(USD Million)
Table 62 Global:  3D Printer Market, By Region,  2013–2020 (‘000 Units)
Table 63 Global:  3D Printer Market, By Region,  2013–2020 (USD Billion)
Table 64 Automotive:  3D Printer Market, By Region,  2013–2020 (‘000 Units)
Table 65 Automotive:  3D Printer Market, By Region,  2013–2020 (USD Billion)
Table 66 Koenigsegg: Difference in Cost & Time After Using 3D Printer
Table 67 New Product Launches, 2010–2015
Table 68 Expansions, 2010–2015
Table 69 Mergers & Acquisitions, 2010–2015
Table 70 Agreements/Joint Ventures /Partnerships , 2010–2015
Table 71 Customer Mapping

List of Figures

Figure 1 Research Design
Figure 2 Research Methodology Model
Figure 3 Breakdown of Primary Interviews: By Company Type, Designation, & Region
Figure 4 Market Size Estimation Methodology: Top-Down Approach
Figure 5 Data Triangulation
Figure 6 Europe 3D Printing Market for Automotive Holds the Largest Market  Share, By Volume (‘000 Kilograms) : 2020
Figure 7 North American 3D Printing Market for Automotive Holds the Largest Market Share, By Value (USD Billion) : 2015–2020
Figure 8 Polymer as A 3D Printing Material is Projected to Hold the Highest Share By Volume, 2015–2020
Figure 9 SLA Technology is Projected to Hold the Highest Share Among Other  Technologies , 2020
Figure 10 Prototyping & Tooling Application to Lead the 3D Printing Market for Automotive
Figure 11 North America Projected to Generate Most Sales By Value, 2015–2020
Figure 12 Europe Projected to Highest Share of 3D Printers By Volume for  Automotive By 2020
Figure 13 Attractive Market Opportunities in 3D Printing  Market for Automotive
Figure 14 Stereo Lithography (SLA) Technology Projected to Have the Highest  Share Among Other Technologies From 2015 to 2020 (USD Million)
Figure 15 Prototyping & Tooling Application to Dominate the 3D Printing  Market (In Value) for Automotive (2015 & 2020)
Figure 16 Europe & Asia-Pacific Regions to Be the Fastest-Growing Markets in Value for 3D Printing in Automotive
Figure 17 Polymers to Be the Most Preferred Material for 3D Printing  Because of Its Lightweight
Figure 18 Global 3D Printer Sales Expected to Be the Highest in Terms of Value in  Asia-Pacific By 2020
Figure 19 Asia-Pacific Regions is Projected to Grow  Faster in Terms of 3D Printer  Sales for Automotive
Figure 20 History of 3D Printing , 1980–2013
Figure 21 3D Printing for Automotive: Market Dynamics
Figure 22 Porter’s Five Forces Analysis: 3D Printing Market
Figure 23 3D Printing Market: Value Chain Analysis
Figure 24 U.K. 3D Printing Market for Automotive is Projected to Grow at the Fastest Rate,(2015–2020)
Figure 25 3D Printing Market for Automotive in Asia-Pacific Region: Snapshot
Figure 26 Significant Growth Projected in the Japanese & Chinese Automotive 3D Printing Markets (2015-2020)
Figure 27 Other 3D Printing Materials Projected to Have Higher Growth in the Japanese Automotive 3D Printing Market (2015-2020)
Figure 28 All 3D Print Materials Expected to Grow at A High Rate in the Chinese 3D Printing Market for Automotive (2015-2020)
Figure 29 Metals as 3D Print Material for Automotive to Witness the Highest  Growth in India (2015-2020)
Figure 30 Polymers as 3D Print Material to Dominate the South Korean Market (2015-2020)
Figure 31 3D Printing Market for Automotive in European Region: Snapshot
Figure 32 Germany to Lead the European Automotive 3D Printing Market By Value  (2015- 2020)
Figure 33 Metals as 3D Print Material Projected to Dominate the German 3D  Printing Market for Automotive (2015-2020)
Figure 34 U.K. Automotive 3D Printing Market to Grow at A Faster Rate  (2015-2020)
Figure 35 Polymers as 3D Print Material to Dominate the French Market (2015- 2020)
Figure 36 3D Printing Market for Automotive in North American Region: Snapshot
Figure 37 U.S. to Continue Leading in the North American 3D Printing Market for Automotive (2015-2020)
Figure 38 Steady Growth is Projected in the USA 3D Printing Market for Automotive
Figure 39 Canadian 3D Printing Market for Automotive Projected to  Double Between From 2015 to 2020
Figure 40 Metals as 3D Print Material Expected to Grow in the Mexican  Automotive 3D Printing Market
Figure 41 Brazilto Witness the Highest Growth in Automotive 3D Printing Market  Between 2015 to 2020
Figure 42 High Growth Projected for Other Print Material Market in Brazil (2015-2020)
Figure 43 Metal as 3D Print Material for Automotive to Drive the 3D Printing  Industry in Russia (2015–2020)
Figure 44 3D Printing Market Size for Automotive, By Application
Figure 45 Prototyping & Tooling Application: Exterior Components Projected to Have the Highest Share When Compared Interior Components(2015–2020)
Figure 46 Strereolithograpgy Projected to Generate the Highest Market Share By Value During the Forecast Period
Figure 47 Stereolithography: Advantages vs Disadvantages
Figure 48 Selective Laser Sintering : Advantages vs Disadvantages
Figure 49 Electron Beam Melting: Advantages vs Disadvantages
Figure 50 Fused Disposition Modeling: Advantages vs Disadvantages
Figure 51 Market for Fused Disposition Modeling Technology  : APAC Projected to Grow With the Highest CAGR (2015–2020)
Figure 52 Laminated Object Manufacturing: Advantages vs Disadvantages
Figure 53 Three Dimensional Inject Printing: Advantages vs Disadvantages
Figure 54 3D Printing Material Market Segmentation
Figure 55 Market for Metals as 3D Printing Material is Projected to Have A Promising Growth (2015–2020)
Figure 56 Overview of  Global 3D Printer Sales  (2013–2020) (‘000 Units)
Figure 57 North American Market is Projected to Generate the Highest Revenue in  3D Printer Sales
Figure 58 Most Number of 3D Printers are Projected to Be Sold in the European Automotive Sector
Figure 59 3D Printing Impact on Automotive
Figure 60 3D Printing Application in Automotive : Now & Beyond
Figure 61 Product Innovation Was the Key Growth Strategy, Over the Last Three Years
Figure 62 3D Printing Market Share, 2015
Figure 63 Market Evaluation Framework: Agreements Have Integrated the 3D Printing Market From 2012-2015
Figure 64 Battle for Market Share: Distribution Agreements Was the Key Strategy
Figure 65 Region-Wise Revenue Mix of Five Major Players
Figure 66 Competitive Benchmarking of Key Market Players
Figure 67 3D Systems Corporation : Company Snapshot
Figure 68 Autodesk: Company Snapshot
Figure 69 Arcam AB: Business Overview
Figure 70 Stratasys Inc.: Company Snapshot
Figure 71 Voxeljet AG. : Business Overview
Figure 72 Exone: Company Snapshot
Figure 73 Hoganas AB: Company Snapshot
Figure 74 Optomec Inc.: Company Snapshot
Figure 75 Local Motors. : Business Overview
Figure 76 Ponoko Ltd.: Business Overview

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    Published: 04-Jan-2024        Price: US 3660 Onwards        Pages: 118
    According to our LPI (LP Information) latest study, the global 3D Printing market size was valued at US$ 3247.5 million in 2023. With growing demand in downstream market, the 3D Printing is forecast to a readjusted size of US$ 9693.7 million by 2030 with a CAGR of 16.9% during review period. The research report highlights the growth potential of the global 3D Printing market. 3D Printing are expected to show stable growth in the future market. However, product differentiation, reducing c......
  • Global Label Printers Market Growth 2024-2030
    Published: 04-Jan-2024        Price: US 3660 Onwards        Pages: 114
    According to our LPI (LP Information) latest study, the global Label Printers market size was valued at US$ 2221 million in 2023. With growing demand in downstream market, the Label Printers is forecast to a readjusted size of US$ 3436 million by 2030 with a CAGR of 6.4% during review period. The research report highlights the growth potential of the global Label Printers market. Label Printers are expected to show stable growth in the future market. However, product differentiation, red......
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