3D Printed Medical Devices Market By Component 2021 | IndustryARC
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3D Printed Medical Devices Market
3D Printed Medical Devices Market Analysis: By Component (3D Printers, 3D Bioprinters, Materials & Tools) Technology (Electron, Laser beam melting, Photo polymerization, 3DP, DD & Others) Product (Healthcare, Cosmetics, Food & Beverage, Others)-Forecast(2016-2021)
Report Code : HCR 0106
Updated Date: 12 February, 2016  

  • Report Description
  • Table of Contents
  • Customization Options
1. 3D Printed Medical Devices – Market Overview
2. Executive Summary
3. 3D Printed Medical Devices – Market Landscape

   3.1. Market Share Analysis
   3.2. Comparative Analysis
      3.2.1. Product Benchmarking
      3.2.2. End User Profiling
      3.2.3. Top 5 Financials Analysis
4. 3D Printed Medical Devices – Market Forces
   4.1. Market Drivers
   4.2. Market Constraints
   4.3. Market Challenges
   4.4. Attractiveness of the 3D Printed Medical Devices Market
      4.4.1. Power of Suppliers
      4.4.2. Power of Customers
      4.4.3. Threat of New Entrants
      4.4.4. Threat of Substitution
      4.4.5. Degree of Competition
5. 3D Printed Medical Devices Market – Strategic Analysis
   5.1. Value Chain Analysis
   5.2. Pricing Analysis
   5.3. Opportunities Analysis
   5.4. Product/Market Life Cycle Analysis
   5.5. Suppliers and Distributors
6. 3D Printed Medical Devices Market– By Component:
   6.1. 3D printers
   6.2. 3D bioprinters
   6.3. Materials
   6.4. Tools
7. 3D Printed Medical Devices Market– By Technology:
   7.1. Electron Beam Melting Technology
   7.2. Laser Beam Melting Technology
      7.2.1. Direct Metal Laser Sintering (DMLS)
      7.2.2. Selective Laser Melting (SLM)
      7.2.3. Selective Laser Sintering (SLS)
      7.2.4. LaserCUSING
   7.3. Photopolymerization Technology
      7.3.1. Digital Light Processing
      7.3.2. Stereolithography
      7.3.3. Two-photon Polymerization
   7.4. 3D Printing Technology
   7.5. Droplet Deposition Technology
      7.5.1. Low-temperature Deposition Manufacturing (LDM)
      7.5.2. Multiphase Jet Solidification (MJS)
      7.5.3. Fused Deposition Modelling (FDM)
   7.6. Others
8. 3D Printed Medical Devices Market– By Products:
   8.1. Surgical Guides
   8.2. Equipment
   8.3. Implants
   8.4. Others
9. 3D Printed Medical Devices Market- By Geography:
   9.1. Introduction
   9.2. Global Study
   9.3. Americas
      9.3.1. North America
      9.3.2. Brazil
      9.3.3. Argentina
      9.3.4. Others
   9.4. Europe
      9.4.1. U.K.
      9.4.2. France
      9.4.3. Germany
      9.4.4. Others
   9.5. APAC
      9.5.1. China
      9.5.2. Japan
      9.5.3. India
      9.5.4. Others
   9.6. ROW
10. 3D Printed Medical Devices Market Entropy
   10.1. New Product Launches
   10.2. M&As, Collaborations, JVs and Partnerships
11. Company Profiles
   11.1. 3D Systems Corporation
   11.2. 3T RPD, Ltd.
   11.3. Arcam AB
   11.4. Concept Laser GmbH
   11.5. EnvisionTEC GmbH
   11.6. EOS GmbH Electro Optical Systems
   11.7. Materialise NV
   11.8. Prodways
   11.9. Renishaw plc
   11.10. Stratasys Ltd
*More than 10 Companies are profiled in this Research Report, Complete List available on Request*
"*Financials would be provided on a best efforts basis for private companies"
12. Appendix

   12.1. Abbreviations
   12.2. Sources
   12.3. Research Methodology
   12.4. Bibliography
   12.5. Compilation of Expert Insights
   12.6. Disclaimer
3D printing involves the creation of a 3 dimensional object by adding successive layers of particular material one on top of each other until the overall object has been formed. 3D printing has come a long way since the initial years of experimentation. The printers can be used to manufacture components of machines which do not undergo too much wear and tear as of now. With the success of the printing of a number of devices, 3D printers are now being looked upon for military applications. The biggest advantage which a 3D printer provides is that it can print a 3D object anywhere. For military applications, the specifications for a weapon or any critical device can be sent online to a 3D printer in a war zone and the product can be printed there. 3D printers can also bring down the cost of logistics considerably across numerous industries. There would be no need for transporting any products as such but rather, just transmitting the specifications of a particular product and the product can just be printed directly at the destination itself. In this aspect, the healthcare industry has also started looking at the use of 3D printers for the printing of medical devices. 3D printers can be used to print medical devices which are unique to a patient. For example, in case there is a tumor in an area which cannot be reached by standard medical devices, a customized medical device can be printed in no time so that the tumor can now be removed.

3D printing of medical devices has also been recognized by the FDA and as of date, there are close to 100 medical devices which have been approved or being printed. As such, the market is expected to grow to more by 2020.

 3D Printed Medical Devices Market

This report segments the market on the basis of components as follows
  • 3D printers
  • 3D bioprinters
  • Materials
  • Tools

On the basis of technology, this report segments the market as

  • Electron beam melting
  • Laser beam melting
  • Photopolymerization
  • Droplet deposition
  • 3D Printing
  • Others

In terms of products, the 3D Printed Medical Devices market has been segmented across the following
  • Surgical guides
  • Implants
  • Equipment
  • Others

North America currently accounts for the largest share of the market. The market has been segmented based on the following geographies
  • APAC
  • Europe
  • Middle East and Africa
  • North America
  • South America

Sample Companies Profiled in this Report are: 
  • 3D Systems Corporation
  • 3T RPD, Ltd.
  • Arcam AB
  • Concept Laser GmbH
  • EnvisionTEC GmbH
  • 10+
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