Zirconium carbide has advantages like extreme high temperature / high vacuum resistance and a superior chemical resistance similar to tungsten and molybdenum materials.

 

zirconium carbide powder

 

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Zirconium carbide (ZrC) is being considered for utilization in high temperature gas cooled reactor fuels in deep burn TRISO fuel (Wongsawaeng, 2010). Zirconium carbide exhibits high melting point, exceptional hardness and good thermal and electrical conductivities. The use of ZrC in TRISO fuel requires a thorough understanding of its irradiation response, which is, however, still poorly understood. The majority of the research to date has focused on the radiation damage phenomena at higher temperatures (>450°C), where many fundamental aspects of defect production and kinetics cannot be easily distinguished.

zirconium carbide powder

 

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Hafnium Carbide (HfC) has been of interest for various applications due to its desirable physical and chemical properties. HfC has the highest melting point of any known binary alloy, at about 3900◦C, and offers desirable high specific strength, and a stable oxide at high temperatures. These properties make HfC an appealing candidate for space and aerospace ultra high temperature applications that involve temperatures above 1600◦C. With its high hardness and high current capacity at high temperatures, HfC also finds applications in coatings for cutting tools 1,2 and coatings for field emitter tips and arrays 3-8 .

 

hafnium carbide powder

 

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HfC, like several other transition metal mono-carbides, has a B1 (NaCl) lattice structure, which is FCC Hf metal with carbon occupying the octahedral interstitial sites (as shown in Figure 1).

hafnium carbide powder

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Cemented Carbide is a composite material of a soft binder metal usually either Cobalt (Co) or Nickel (Ni) or Iron (Fe) or a mixture thereof and hard carbides like WC (Tungsten Carbide), Mo 2 C (Molybdenum Carbide), TaC (Tantalum Carbide), Cr 3 C 2 (Chromium Carbide), VC (Vanadium Carbide), TiC (Titanium Carbide) , etc. or their mixes

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Sinter-HIP processing combines both Sintering and HIP into ONE single processing operation at the last consolidation stage while the whole operation is performed in one furnace.

 

微波高烧结炉   11 microwave vacuum sintering furnace

 

 

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Tantalum Carbide (TaC) Additions: What does it do for Cemented Carbide ? • Anti-galling agent • Reduces friction between the work material and die wall • Acts as an internal built-in lubricant

 

 

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Description: TM52 Steel Bonded Titanium Carbide Rod,  which contains a hard phase TiC and a bonding phase high manganese steel, wherein the bonding phase contains, by weight, Ni, Mn, and the balance elements.  Hardness  HRC 60-62, denstiy 6.2 ±0.2 g/cm3. TM52 steel bonded titanium carbide rod is widely  used in mining industry, especially on high manganese steel crusher hammer with 3-5 times longer service life.

 

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TM52 titanium carbide based steel bonded cemented carbide rod,

TiC-Steel Bonded alloys for high manganese steel wear parts

our hot sale size is

D12 x 50mm,

D12 x 60mm,

D14 x 40mm,

D14 x 50mm,

D14 x 60mm,

D16 x 90mm,

the size could be customized.

 

 

For more information, please contact:

Changsha Langfeng Metallic Material Co., Ltd.

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Advantages of TiC cermet rod: high wear resistance titanium carbide cermet rods evenly distributed in the work site, it effectively reduce the wearness of base high manganese steel material. So the service life of below wear parts in mining industry: crusher jaw, mill liner, hammer head, Vertical grinding roller, roller sets is enhanced at least 1.5 times , plus the maintenance and replacement are also significantly reduced;

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