Mis-asia | Ceramic powder, graphite powder,boron powder, and 3D printing metal Nanomaterial supplier & Manufacturer.

What is Tin diulfide ?? Tin deulfide Is an inorganic compound having a chemical composition of SnS2. It's a yellow hexagonal flake that has a CdI2 structure. It's difficult to dissolve in water. However, it is easily soluble and soluble with aqua regia, hot alkaline solution and sodium sulfide solutions, which are often used for golden paint. Tin disulfide dissolves in warm alkali solution and aqua regia. You can mix it with ammonium-sulfide for dissolution. How to prepare Tin Disulfide Com

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Mis-asia | Ceramic powder, graphite powder,boron powder, and 3D printing metal Nanomaterial supplier & Manufacturer.

What's boron-nitride? Boron Nitride is a crystal made of nitrogen atoms, boron and other elements. With four variants of boron Nitride (HBN), hexagonal Boron Nitride (RBN), cubic Boron nitride (CBN), and cubohedral boron nuitride (RBN), the chemical composition is: 43.6% boron (HBN), 56.4% nitrogen (RBN), and wurtzite Nitroboron (WBN). Development history of boron Nitride Boron nitride More than 100 years have passed since its invention. It was used in high-temperature lubricants a

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What-are-the-commonly-used-materials-for-3D-printing?

Rapid advancements in science technology, as well as the widespread application of 3D printer technology have quietly changed our lives. It is not easy to ignore the issue of 3D printer materials. This topic has many interested parties. FDM 3D Printing Materials FDM technology employs stable, strong thermoplastics similar to those used in CNC machining, injection molding, and traditional manufacturing processes. FDM thermoplastics may be used for special applications such as high-fit tightnes

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Preparation Methods of 3D Printing Metal Powder | Mis-asia

3D printing represents a revolutionary new form of printing technology. For 3D printing metallic parts, 3D printing powder is the best raw material. The main 3D printing powders are currently nickel-titanium alloy powder Steel, nickel-aluminum, alloy, industrial steel and cobaltchromium alloy. Good plasticity is required for 3D printing metal powder. This powder must meet the following requirements: small powder size distribution, fine powder particle size distribution and good flow. Three

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3D Printing Alloy Metal Materials Aluminum Based AlSi10Mg Metal Powder

They are used mostly in automotive manufacturing, construction and engine parts. Particle sizes: 0-45mm, 0-53mm, 15-40mm, 15-20-53mm, 10-15-53mm, 30-45mm, 40-105mm. Application: 3D printing. AlSi10Mg Steel Pulver The powder properties include a smooth, flat surface without satellite balls, high oxygen, consistent size distribution, and exceptional sphericity. High bulk density and fluidity 3D Printing Aluminum Base Alloy Powder AlSi10Mg Production Process: Step 1. Step 1. Step

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3D Printing Alloy Metal Materials Aluminum Based AlSi12 Metal Powder

AlSi12 can also be used in additive manufacturing. Particle sizes: 0-45mm, 0-53mm, 15-40mm, 15-20-53mm, 10-15-53mm, 30-45mm, 40-105mm. Use: 3D printing. Get more information about 3D Printing Metal Materials and AlSi12 Pulp. 3D Printer Metal Powder is known for its outstanding powder properties. Powder is less finely ground. Occasional Process: The Custom3DPrintingPowder can be used for making laser/electron/beam additive manufacture (SLM/EBM), as well powder metallurgy and spray coating.

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3D Printing Alloy Spherical Cobalt Powder

Cobalt powder can be purchased as spheres. Two types of nanopowder are available: chemical, submicron and granular. Further information on 3D printing aluminumspheres with cobalt Powder Co. Product description Spherical Cobalt Powder Co Product Description 15-50mm 15-53mm. 45-75mm. 45-105mm. 75-150mm. (Can be altered according to customer requirements. Pulverization efficiency rates 99.9%. It is very pure and only contains very small amounts of oxygen. Satellite balls can't predict

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3D Printing Alloy Metal Materials Stainless Steel 440C Metal Powder

Stainless Steel 440C Powder can be used in laser/electron beam additive manufacturing (SLM/EBM), laser direct deposition (DLD), powder warm isostatic pressing (HIP), and so on.Bit dimension: 0-45 μm, 0-53 μm, 15-45 μm, 15-53 μm, 45-105 μm. Use: 3D printing.Concerning Stainless-steel 440C Steel Powder:Powder features: 3D Printing Powder, high powder sphericity, reduced oxygen web content, consistent fragment size circulation, great fluidness, high bulk thickness and faucet density, and also broad

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3D Printing Alloy Spherical Tantalum (Ta) Powder CAS 7440-25-7

Spherical Tantalum powder is gray black, chemical formula Ta, submicron as well as nanopowder kinds might be taken into consideration for commercial and also application purpose. The appearance of Round Tantalum powder is grey black pwder. It mainly used in the 3D printing.Concerning 3D Printing Alloy Tantalum Powder:Product name: Spherical Tantalum Powder Product requirements: 5-25μ& mu; m, 15-45μ& mu; m, 15-53 & mu; m, 45-75 & mu; m, 45-105 & mu; m, 75-150 & mu; m.( Different granulariti

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3D Printing Alloy Spherical Chromium Cr Powder

Chromium powder is Round, chemical formula Cr, submicron and nanopowder kinds might be taken into consideration for industrial and application objective. The appearance of Chromium powder is gray black powder. It is primarily used in the 3D Printing.Concerning 3D Printing Alloy Spherical Chromium Cr 7440 47 3 Powder:Product name: Spherical Chromium Cr 7440 47 3 Powder Item Specifications: 5-25μ& mu; m, 15-45μ& mu; m, 15-53 & mu; m, 45-75 & mu; m, 45-105 & mu; m, 75-150 & mu; m.( Can be cus

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3D Printing Alloy Spherical Nickel Powder Ni CAS 7440-02-0

The chemical formula of Spherical Nickel could contain nanopowders, powders, or submicrons. Both commercial and industrial use are possible with these substances. Spherical Nickelpulver looks grey-black. It is used often for 3D printing. Details about 3D Printing Aluminum Spherical Nickel Powdered Spherical Nickel Product Specifications: 5--25mm, 15-40mm, 15-50mm, 15 53mm, 45 75mm, 45 105mm 45-75mm 45-75mm 45-105mm, 45 -150mm, 75-150mm. The order can be modified in granularity. It ha

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3D Printing Alloy Spherical Titanium Powder

The manufacture of high-temperature-resistant coatings (cermets) and other corrosion-resistant materials is possible with Titanium Powder. The sizes available are 5-10mm. Color: Gray/black. Three-dimensional printing 3D Printing Powder Tiium Powder Information: A spiral-turner is also available. Formula Ti Code of Titanium Powder Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code Code: 7440

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The global 3D printing metals market is growing and expected to reach $3.05 billion by 2025, according to a recent report by Grand View Research, Inc. However, to take full advantage of this growth and efficiently produce high-quality parts, powder producers, 3D printer manufacturers, and others will need to ensure the consistent, repeatable quality of the metal powders used in the process. In 3D printing applications, the metals involved include aluminum, stainless steel, copper, and precious m

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 N-(2-carboxyethyl)-N-(2-ethylhexyl) β-alanine monosodium salt CAS 94441-92-6

Amphoteric Surfactant, Alkali Resistance, Solubilization, Low Foam. About N-(2-carboxyethyl)-N-(2-ethylhexyl) b-alanine monosodium salt CAS 94441-92-6: Amphoteric Surfactant, Alkali Resistance, Solubilization, Low Foam. It is a global trusted brand N-(2-carboxyethyl)-N-(2-ethylhexyl) b-alanine monosodium salt CAS 94441-92-6 . Send an inquiry for the latest. Prices of N-(2-carboxyethyl)-N-(2-ethylhexyl) b-alanine monosodium salt CAS 94441-92-6, If you want to buy Hexadecyl Pyridinium

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The basis of silicon nitride ceramics

In aerospace applications, good resistance and rigidity under high temperatures, as well as low weight and low thermal expansion, are particularly important – all of which are properties found in structural components made of Silicon nitride. This makes the ceramic of interest for, among other things, housings of reconnaissance and observation cameras and for support structures of satellites. The advantage here is that the low thermal expansion, even in the case of extreme temperature fluctuatio

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