3D printers have already proved their worth across various industries
The 3D printing industry has come a long way since 1983 when Chuck Hull, co-founder of 3D Systems, created the first-ever 3D printed part. It still has a long way to go. Hull's invention led to the creation of an industry that has, until recently, been used primarily for prototyping purposes.
3D printing is in its mid-thirties and is now approaching market growth that Chuck Hull could only have dreamt about when he invented it in 1983. Recent years have seen its disruptive influence growing and 3D printing is increasingly being used in the creation of final products.
By 2025, 3D printing, or additive manufacturing, will be a $32bn industry, rising to over $60bn by 2030. The compound annual growth rate (CAGR) between 2018 and 2025 will be 16%.
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According to GlobalData estimates, with software growing slightly faster than hardware, materials and services.
The following manufacturers are covered:
Stratasys, Ltd.
3D Systems, Inc.
Materialise NV
Autodesk, Inc.
GE Additive
Made In Space
Voxeljet AG
Canon, Inc.
Yet behind the optimism, competition and casualties are increasing: UK powder maker Metalysis recently went into administration before being rescued by Power Resources, a mining company; SLM Solutions, a German manufacturer of 3D metal printers, had a poor first half of 2019, selling a third of the machines it sold in the first half of 2018 with revenues down 45%; and Organovo is considering its strategic options after biological performance issues with its 3D-printed liver tissues.
Who should buy this report?
This report provides an overview of the global 3D printing market.
It identifies the key trends impacting growth of the theme over the next 12 to 24 months.
It includes a comprehensive industry analysis, outlining the key growth areas and potential
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Table of content
Executive Summary
1 Industry Overview of 3D Printing (3DP)
1.1 Definition of 3D Printing (3DP)
1.2 3D Printing (3DP) Segment by Type
1.2.1 Global 3D Printing (3DP) Production Growth Rate Comparison by Types (2014–2025)
1.2.2 Stereolithography
1.2.3 Fuse Deposition Modeling
1.2.4 Selective Laser Sintering
1.2.5 Direct Metal Laser Sintering
1.2.6 Polyjet Printing
1.2.7 Inkjet Printing
1.2.8 Electron Beam Melting
1.2.9 Laser Metal Deposition
1.2.10 Digital Light Processing
1.2.11 Laminated Object Manufacturing
1.3 3D Printing (3DP) Segment by Applications
1.3.1 Global 3D Printing (3DP) Consumption Comparison by Applications (2014–2025)
1.3.2 Automotive
1.3.3 Aerospace & Defense
1.3.4 Healthcare
1.3.5 Consumer Electronics
1.3.6 Industrial
1.3.7 Power & Energy
1.3.8 Others
1.4 Global 3D Printing (3DP) Overall Market
1.4.1 Global 3D Printing (3DP) Revenue (2014–2025)
1.4.2 Global 3D Printing (3DP) Production (2014–2025)
1.4.3 North America 3D Printing (3DP) Status and Prospect (2014–2025)
1.4.4 Europe 3D Printing (3DP) Status and Prospect (2014–2025)
1.4.5 China 3D Printing (3DP) Status and Prospect (2014–2025)
1.4.6 Japan 3D Printing (3DP) Status and Prospect (2014–2025)
1.4.7 Southeast Asia 3D Printing (3DP)
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