Titanium Powder
Titanium is strong, lightweight, biocompatible and corrosion resistant, making it ideal for aerospace components and medical implants. Titanium powder has long been used as an alloying additive for a variety of applications.
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Product Description
Titanium is strong, lightweight, biocompatible and corrosion resistant, making it ideal for aerospace components and medical implants. Titanium powder has long been used as an alloying additive for a variety of applications. Recently, technological advances in the production and use of titanium powder have opened doors into many fields including powder metallurgy, thermal spray, laser cladding, metal injection molding, and additive manufacturing
Product Properties
- Appearance: Grey powder
- Size: 15-53um
- PSD:D10=18.007μm,D50=32.608μm,D90=57.33μm
- Note: Other 3D printing powders are available upon any custome requirements
No | Name | Chemical Composition(wt%) |
1 | 18Ni300 | Ni17-19,Mo4.5-5.2,Co8.5-9.5,Ti0.6-0.8,Al0.05-0.15,Fe(Bal.) |
2 | Hastelloy Alloy | Fe17-20,Cr20.5-23,Mo8-10,W0.2-1,Co0.5-2.5,C0.05-0.15,Ni(Bal.) |
3 | AlSi10Mg | Si9-11,Mg0.2-0.45,Al(Bal.) |
4 | CoCrW | Cr26.5-29,W7-9,Si1.2-1.9,Co(Bal.) |
5 | Co28Cr6Mo | Cr27-29,Mo5-7,Co(Bal.) |
6 | Spherical Ti Powder | Ti≥99.9 |
7 | TC4 | Al5.5-6.8,V3.5-4.5,Ti(Bal.) |
8 | TA15 | Al5.5-7.1,V0.8-2.5,Mo0.8-2,Zr1.5-2.5,Al(Bal.) |
9 | 316L | Cr16.00-18.00, Ni10.00-14.00,Mo2.00-3.00,Fe(Bal.) |
10 | S136 | Cr12.0-14.0,Si0.8-1.0,V0.15-0.4,C0.2-0.45,Fe(Bal.) |
11 | In625 | Cr20-23 , Mo8-10 , Nb 3.15-4.15 , Co≤1, Fe≤1 , Ni (bal.) |
12 | In718 | Cr17-21 , Mo2.8-3.3 , Nb 4.75-5.5 , Co≤1, Ni50-51 , Fe(Bal.) |
13 | Spherica WC | C3.7-4.2,W(Bal.) |
14 | Spherical Cr Powder | Cr≥99.9 |
15 | Spherica Mo Powder | Mo≥99.9 |
16 | Spherica Ta Powder | Ta≥99.9 |
17 | Spherica W Powder | W≥99.9 |
Application
- 3D Printing
- Injection molding(MIM)
- Powder metallurgy(PM)
- Spraying coating(SP) etc.
PREP System
AM Powder
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How we play a role in the industry
HIP Technology
Hot Isostatic Pressing (HIP) technology works by placing the product in a closed container, filling it with inert gas and sintering or densifying the product at a very high temperature (usually close to the forging temperature of the material) and at a very high pressure (usually 100 – 140 MPa). This allows the product to be sintered or densified.
MIM Technology
MIM products can be complex in shape, precise in size, high in strength and produced automatically in large quantities, and can significantly reduce the complexity and cost of traditional metalworking
SLM Technology
SLM, also known as Selective Laser Melting, is similar in principle to SLS in that a laser is used to melt and solidify metal powder in a specified area, which is then moulded in a layer-by-layer stack.
EBM Technology
Electron beam melting refers to a vacuum melting method in which the kinetic energy of a high speed electron beam stream is converted to heat as a heat source for melting metals under high vacuum. The abbreviation is EBM.
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