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Product description
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Titanium Powder is one of our main products, It's produced by hydride-dehydride (HDH) technics. We adopt some special procedure control and facilities to make sure low oxygen content.

Applications:

Powder Metallurgy, Biomedical, Automotive/motor Parts, Sputter targets, Aerospace&Defense, Electric vacuum material, Alloy additive, Diamond tools, Hard alloy, etc.

Packing:

Steel drum lined with plastic bag with net weight of 50kg, 100kg and 200kg package along with national issued dangerous articles package performance certificate and dangerous article use certificate, or up on customers’ requested.

Services:

Few lab samples are free of charge

Chemical compositions and particle size can be customized on request

Various grades and size , comprehensive powder

Strictly quality control system and advanced testing equipments

Chemical properties:

Not reacts with H2O, H2SO4, HCl and HNO3 at room temperature.

The content of N, H, O, C will increase in the air.

Can cause an explosion with strong oxide mixture.

Titanium powder is stable in room temperature, flammable in high temperatures, Combustion for the silver-white sparks.

Transportation and storage:

Storage in a cool dry place, avoid tearing the package, avoiding contact with fire, can not mix with acid, alkali and other corrosive materials.

Specification

Item Titanium specification Chemical composition%
Content%
Titanium                         HDH powder >99.5 -60—200 mesh 0<0.25,H<0.03,N<0.03,Fe<0.05
>99.5 -200 mesh 0<0.45,H<0.03,N<0.03,Fe<0.05
99.4—99.2 40—200 mesh 0<0.3, H<0.04,N<0.04,Fe<0.06
99.4—99.2 -200 mesh 0<0.45,H<0.04,N<0.045,Fe<0.06
99—99.2 -60—200 mesh 0<0.35,H<0.05,N<0.05,Fe<0.06
99—99.2 -200 mesh 0<0.6, H<0.05,N<0.05,Fe<0.06
Pure titanium scrap powder 95—99 -40—150 mesh 0<0.8, H<0.1, Fe<0.9
95—99 -150 mesh 0<0.9, H<0.1, Fe<0.8
90—95 -40—150 mesh H<0.2, Fe<0.8, no other requirements
90—95 -150 mesh H<0.2, Fe<0.8, no other requirements
Titanium alloy scrap powder 87—91 -40 mesh H<0.2, Fe<0.8, no other requirements
87—91 -200 mesh H<0.2, Fe<0.8, no other requirements
87.5 100—200 mesh H<0.02,0<0.3, Fe<0.3,AL>5.7,V>3.6
87.5 -200 mesh H<0.02,0<0.4, Fe<0.3,AL>5.7,V>3.6
Spherical titanium powder >99.7 -40—325 mesh H<0.02,0<0.2, Fe<0.03,N<0.02
>88 -40—325 mesh H<0.01,0<0.15, Fe<0.3,AL>5.6,V>3.6
Production process of the spherical titanium powder and titanium base powder

We can make more than 20 kinds of metal and ceramic materials (such as,tungsten,molybdenum,tantalum,niobium) into spherical powder through the induced plasma spheroidize manufacturing system,which was researched by ourselves. We provide high productivity, slimsy particle size and low cost spherical titanium powder production process for customers.

 Advantages of the Induced Plasma Spheroidize Process

The titanium powder,produced by the Induced Plasma Spheroidize Production Process, is more close to the round ball. The obvious superiority of the Induced Plasma Spheroidize Production Process is that the productivity and the spheroidization of the spherical titanium powder is above 95%.

Features of the induced plasma spherical titanium powder and titanium base powder

.High liquidity, no satellite ball or cluster

.High sphericity and narrow particle size distribution

.Particle size with the range of  0-150um

 Applications of the induced plasma spherical titanium powder and titanium base powder

Our spherical titanium powder is produced according to the ASTM standard for 3D printing, MIM, laser deposition, hot isostatic pressing, surface spraying and other production processes. It is an additive for powder metallurgy and alloy materials. At the same time, it is also an important raw material for cermets, surface coating agents, fireworks, aluminum alloy additives, electric vacuum getters, spray and plating. Has been widely used in biomedicine, aerospace, spraying, metallurgy, fireworks and other industries.

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