The Global 3D Printing Gases Market revenue is anticipated to grow to around USD 53.30 MN by 2027 with a CAGR of 10.5% during the year 2021-2027 as per the report published by Value Market Research. The increasing demand for 3D printed components from several end-user industries like design, manufacturing, aerospace, automotive, construction, etc., is the primary driver for the 3D printing gases market. The high investments involved in the research and development of additive manufacturing techniques like 3D printing will benefit market growth. The extensive use of 3D printing in the healthcare sector to customize prosthetics, dentistry, bioprinting of bones, cartilages, etc., will further propel market growth. The adoption of 3D printing technology in the oil and gas sector in recent times to reduce the time taken to fabricate complex prototypes will enhance the market growth. The vast production costs, volatile prices of raw materials, and stringent rules imposed by government agencies are few factors that will restrict the market growth.
3D printing gases are the various gases used at different stages of the 3D additive manufacturing production chain. During printing, a component, shielding gases, carrier gases, and cooling gases are used based on a specific purpose. Gases are also involved in the subsequent treatment of components. Continuous analysis of the gas atmosphere in the build chamber is essential to ensure high precision and no cross-sensitivity. Argon, nitrogen, and helium are the most commonly used shielding gases that control the fabricated parts' final mechanical and thermophysical properties. Proper selection of the gas, reasonable flow rate, and purge duration is needed to avoid undesired chemical reactions. The appropriate gas selection also prevents thermal deformation of fabricated parts and ensures a safe environment with reduced production costs.
The elaborate study "Global 3D Printing Gases Market Report By Types (Nitrogen, Argon, Gas Mixtures), By Technology (Stereolithography, Laser Sintering, Poly-Jet Technology, Others), By End-User (Design & Manufacturing, Healthcare, Consumer Products, Others (Automotive, Aerospace & Defense, And Education & Research) And By Regions - Industry Trends, Size, Share, Growth, Estimation And Forecast, 2021-2027" poses a refreshing view of the market taking into consideration all the aspects affecting the market.
On the basis of Types the market is segmented into Nitrogen, Argon, Gas Mixtures. By Technology the 3d printing gases market is categorised as Stereolithography, Laser Sintering, Poly-jet Technology, Others. By End-User the 3d printing gases market is categorised as Design & Manufacturing, Healthcare, Consumer Products, Others (Automotive, Aerospace & Defense, and Education & Research). The report covers North America (North America, United State and Rest of North America), Europe (United Kingdom, France , Germany, Rest of Europe), Asia Pacific (China, Japan, India, Rest of Asia Pacific), Latin America (Brazil, Rest of Latin America) and Middle East & Africa. The data tables in these chapters give the market estimates on the basis of all the segments.
The Report Segments Global 3D Printing Gases Market -
By Types
- Nitrogen
- Argon
- Gas Mixtures
By Technology
- Stereolithography
- Laser Sintering
- Poly-jet Technology
- Others
By End-User
- Design & Manufacturing
- Healthcare
- Consumer Products
- Others (Automotive, Aerospace & Defense, and Education & Research)
By Region
- North America
- Europe
- The Asia Pacific
- Latin America
- The Middle East and Africa
Players Profiled In the Report:
BASF SE, Air Liquide S.A., Air Products and Chemicals, Inc., The Linde Group, Praxair, Inc., Matheson Tri-Gas, Inc., Iceblick Ltd., Universal Cryo Gas, LLC, and Messer Group.
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