Market for 3D printing gases by 2028 US $ 152.18 million, with a CAGR of 14.85% – MRFR Future Research Report

New York, August 25, 2021 (Globes Newsweire) – Market Overview of 3D Printing Gases – According to MR General Research Report, 3D Printing Gases Market: Information on gas (argon, nitrogen), technology (stereography, laser synthesis, poly-jet), function (cooling, blocking), end user (automotive, aerospace and defense, consumer products), region-wide forecast until 2028During the forecast period (2021 – 2028) the market recorded a CAGR of 14.85%. By 2028, it is projected to be $ 152.18 million. By 2020, it is estimated at $ 47.82 million.

Market boundary;

MRFR Analysis identifies some of the most important companies in the global 3D printing presses:

  • BASF SE (Germany)

  • Linde Group (Germany)

  • Air Fluid (France)

  • Praxair Inc (USA)

  • Air Products & Chemicals Inc (USA)

  • Universal Industrial Gases Inc (USA)

  • Messer Group (Germany)

  • Matison Tray Gas Inc. (USA)


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The market growth of 3D printing gases has been enhanced by the joint efforts of these companies, which are trying to expand their geographical access by promoting innovative products and solutions. They also adopt a number of strategies, such as partnerships, agreements, and partnerships, to capture the market for high-volume 3D printing gases. For example, in June 2021, Lindde Group, a Munich-based chemical company, in collaboration with renowned clinical printing specialist 3D Medlab, confirmed the results of a joint study of the latest process gas to improve 3D printing in various medical departments. . This study examined the titanium plate structures during the LPBF / laser powder bed fusion printing on the dispersion of the hilo-argon process and the stability of the process. The study concluded that flue gas emissions were reduced by a total of 35 percent, indicating its potential to significantly reduce the risks involved in the production of damaged parts.

Market USP only included:

Key development drivers;

Gases such as argon and nitrogen have many applications because they help to improve the overall quality of 3D printed parts. By cutting off the oxide content in the printing chamber, fraudulent entities can help reduce oxidation levels; Maintain constant pressure to provide a stable and improved printing environment, limit the amount of dust that may burn during powder handling and filtering for safety; Reduce heat in the esophagus and gradually reduce cold stress to prevent partial injury.


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The advancement of technology, coupled with the growing population of developing countries, has boosted industrial use in the areas of healthcare, design and manufacturing, automotive, consumer products, education and research, and aerospace printing and defense. In addition, emerging economies in developing countries in Asia provide great opportunities for future global companies with rapid urbanization and industrial development. The growing demand for medical products around the world should also make it easier for 3D printing gases in the coming years.

The 3D printing gas industry is expected to grow at an alarming rate in the coming years, with a wide range of end-user applications, increased spending on research and development activities and sales of consumer goods such as electronics, jewelry and footwear.

Market restrictions;

Given the high cost of complex manufacturing and gas processing techniques, companies have not given up on the technology, leading to poor market demand in some parts of the world.

Covide-19 Analysis

The growth of the 3D printing gases has slowed down due to the devastation caused by the CVD-19 outbreak in various sectors, especially in the construction industry. The world market is in the throes of a financial crisis and a mismatch between supply and demand.

However, as the government continues to support strong research and development projects, the market for 3D printing gases will continue to expand.


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Market division

The three printing presses considered in the MRFR report are nitrogen, gas mixtures and argon. Argon occupies the largest part of the global industry and, therefore, is the top. In the meantime, the entire process will be carried out in the coming years in the gas mixing unit to achieve the cooling effect and the integrated coating using gas mixtures throughout the process.

In terms of technology, the market for 3D printing gases can be categorized as laser scent, poly-jet, stereography, electromagnetism, material flow, and more.

In practice, the 3D printing gases are used to cool, illuminate and cover the industry.

Top users of 3D printing gases: air and defense, automotive, healthcare, consumer products and more.

3D Printing Gases Market Regional Status

Asia, the Pacific, Europe, North America, the Middle East, Africa and Latin America are among the major regions in which the 3D printing gas industry is expected to grow exponentially over time.

North America is currently the largest market for 3D printing gases. In addition, repeated technical innovations in the field of 3D printing processes in the aviation and healthcare sectors could further increase the market for 3D printing gases.

The market share of 3D printing gases in the Asia Pacific is growing rapidly from 2020 to 2027, contributing significantly to fast-growing countries such as India and China. Due to the high cost of labor and economic growth, these countries offer attractive opportunities for 3D printing presses. Increasing the focus of manufacturers using advanced techniques during production should increase the market price of 3D printing gases over the next few years. Key users of 3D printing gases in the region include design and production, oil and gas and health care.

Market segmentation in research

3D printing gases market information on gas (argon, nitrogen), technology (sterilization, laser synthesis, poly-jet), function (cooling, blocking), end user (automotive, aerospace and defense, consumer products), region-global to Forecast until 2028


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