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Metal powder can be used for 3D printing, but do you know this knowledge?

2021-11-09 09:34:26  News

Nowadays, when it comes to 3D printing, you must be familiar with it. We have also introduced many 3D printing applications before, such as printing houses, bridges, etc. Today, let’s talk about an important material used in 3D printing. --mineral powder.

The printing consumables widely used in 3D printing mainly include four types in form: liquid photosensitive resin materials, thin materials, low-melting wire materials and powder materials; in terms of composition, they almost cover all kinds of materials in current production and life, including plastics. , Resin, wax and other polymer materials, metal and alloy materials, ceramic materials, etc. Among them, the most cutting-edge and most potential is undoubtedly the metal powder 3D printing. According to the forecast of the consulting company SmarTech, the world will be used for metal by 2024. The market size of powder additive manufacturing will reach 11 billion U.S. dollars.

Currently, 3D printing metal powder materials include stainless steel, die steel, nickel alloys, titanium alloys, cobalt-chromium alloys, aluminum alloys and bronze alloys.

Metal powder can be used for 3D printing, but do you know this knowledge?

Iron-based alloys are the most important and most used metal materials in engineering technology. They are mostly used for forming complex structures, such as stainless steel for 3D printing. Compared with traditional casting and forging technology, it has high strength, excellent high temperature resistance and wear resistance. It has physical, chemical and mechanical properties such as corrosion resistance and high dimensional accuracy and material utilization. It has been widely used in aerospace, automotive, shipbuilding, machinery manufacturing and other industries.

Titanium alloy has excellent strength and toughness, combined with corrosion resistance, low specific gravity and biocompatibility, making it ideal for many high-performance engineering applications in aerospace and automotive competitions. It is also used in the production of biomedical implants. High, low modulus, strong fatigue resistance.

Overview of 3D printing 316 powder stainless steel powder

3D printing powder powder form: spherical

3D printing powder purity: 99.9%

3D printing powder particle size: 0-20μm, 15-45μm, 15-53μm, 53-105μm, 53-150μm, 105-250μm

3D printing powder powder appearance: gray powder

3D printing powder powder packaging: aluminum bag, vacuum packaging

3D printing powder powder application range: 3D printing metal powder

3D printing powder powder other applications: powder metallurgy (PM), injection molding (MIM), spray painting (SP), etc.

Moist clusters affect the dispersion performance and use effect of 316 powder. Therefore, 316 powder stainless steel powder should be sealed in a vacuum package and stored in a cool and dry room. 316 powder stainless steel powder should not be exposed to the air. In addition, avoid using 316 powder under pressure.

3D printing 316 powder stainless steel powder application

Iron-based metal powders are widely used in 3D printing thin-walled equipment and complex parts, thermal spraying, laser cladding and biomedical fields.

3D printing is a rapid prototyping technology, also known as additive manufacturing. It is a technology that uses bondable materials such as powdered metal or plastic to construct objects based on digital model files through layer-by-layer printing. . 3D printing is usually achieved through the use of digital technology material printers. It is often used in mold manufacturing, industrial design and other fields to make models, and then gradually used in the direct manufacturing of some products. There are already parts printed using this technique. .

In the field of biomedicine, the application of 3D printing technology is mainly reflected in the establishment of surgical planning models and the customization of rehabilitation medical equipment. The application of 3D printing technology can increase the degree of freedom of product design, realize complex shapes and integrated functions, so that different material thicknesses can be changed in the same orthosis, so as to achieve the purpose of enhancing the flexibility or hardness of specific parts. The application of 3D printing technology in the field of customized rehabilitation medical equipment can meet the needs of some consumers for small-batch, customized rehabilitation medical equipment, such as hearing aids, artificial limbs and other rehabilitation medical equipment products.

In the field of automobile manufacturing, 3D printing technology is mainly used in prototype manufacturing and mold development for automobile design and manufacturing. The automotive industry can replace some non-critical components with 3D printed products during the safety test process, speed up the product concept verification process, and help companies realize rapid and small-batch tool customization, reduce costs, and shorten time to market. With the innovation and upgrading of 3D technology, its application in the field of automobile manufacturing will gradually deepen

In the aerospace field, 3D printing technology is mainly used in the structural processing of drones, the processing and assembly of special parts, the processing of turbine blades, windshield window frames, cyclones and other parts. 3D printing technology has become a key technology to improve aerospace design and manufacturing capabilities due to its high flexibility, high performance, and flexible manufacturing. With technological innovation, its application in the aerospace field will continue to expand.

The 3D printer calculates the price based on the cost of the printing material. The cost of products with complex shapes will not increase. Making a gorgeous and complicated mold does not consume more time, skill, and cost than printing a simple square. 3D printing breaks the original manual pricing cost, allowing the price of the mold to be determined by the quality of its own products. The 3D printing layer thickness is made according to the standard of 0.05mm, and the precision after forming can reach 0.03mm. The precision of products printed by multi-jet fusion technology can reach about 40 microns, which can directly meet the requirements of aerospace and precision instrument casting standards.

3D printing 316 powder stainless steel powder price

3D printing 316 powder stainless steel powder price and production cost, transportation cost, international situation, exchange rate and market supply and demand demand randomly change 3D printing 316 powder stainless steel powder. Tanki New Materials Co., Ltd. aims to help all walks of life and chemical wholesalers find high-quality, low-cost products. Provide a full set of customized services, providing cost-effective nano materials and chemicals. If you are looking for 3D printing 316 powder stainless steel powder, please feel free to send an email to get the latest price of 3D printing 316 powder stainless steel powder.

3D printing 316 powder stainless steel powder supplier

As a global supplier of 3D printing 316 powder stainless steel powder, Tanki New Materials Co., Ltd. has extensive experience in the characteristics, applications and cost-effective manufacturing of advanced engineering materials. The company has successfully developed and provided a series of powder materials (including oxides, carbides, nitrides, single metals, etc.), high-purity targets, functional ceramics and structural devices.

3D printing powder Main elements of 316L stainless steel powder
CrNiMoMnFe
16.00-18.0010.0-14.02.0-3.0≤2.00Bal
3D printing powder Impurity elements of 316L stainless steel powder
SiPSCO
≤1.00≤0.04≤0.03≤0.03≤0.05


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Tanki New Materials Co.Ltd Aims to help All industries and Chemical Wholesalers to find high quality, cheap price nano materials and chemicals by providing turn-key customize manufacturing services.

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Tanki New Materials Co.Ltd has rich experiences in the properties, applications, and cost-effective manufacturing of advanced and engineered materials. The company has successfully developed a series of powder materials (including oxides, carbides, nitrides, single metal, etc.), high-purity targets, functional ceramics, and structural devices. OEM service is available.

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The company provides following products such as providing super high quality chemicals and Nano materials such as graphite powder, boron powder , zinc sulfide , nitride powder, Calcium nitride, Ca3N2, 3D printing powder, and so on.

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