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Cermet
Cermet is a structural material composed of a ceramic (hard) phase and a metal (or alloy) binder phase. Ceramic phases generally refer to high melting point oxides (such as alumina, beryllia, magnesia, zirconia, etc.) and refractory compounds (such as titanium carbide, tungsten carbide, tantalum carbide, boron carbide, zirconium diboride, titanium diboride and tantalum diboride, etc.). The metal phase is mainly transition elements (iron, cobalt, nickel, chromium, molybdenum, tungsten, vanadium, niobium, tantalum,etc.) or their alloys. Cermet not only has the advantages of toughness, high thermal conductivity and good thermal stability of metal, but also has the characteristics of high temperature resistance, corrosion resistance and wear resistance of ceramics.
We have grade Gt35 Titanium Carbide Rods available, this is a new type of composite material prepared by powder metallurgy method with high manganese steel as the bonding phase and refractory metal carbide - titanium carbide as the hard phase.
ADVANTAGES
Cermet (steel-bonded cemented carbide) is a composite material produced by powder metallurgy sintering and forging with steel as the binder phase and carbide (mainly titanium carbide and tungsten carbide) as the hard phase.
It has the following characteristics: good process performance,machinability and heat treatability. In the annealed state, ordinary cutting equipment and tools can be used to carry out mechanical processing such as turning, milling, planing, grinding, and drilling. It can also be forged and welded.
Compared with cemented carbide, it has lower cost and wider application range. Good physical and mechanical properties. Steel-bonded cemented carbide has high hardness in the hardened state. Because it contains a large amount of dispersed high-hardness hard phase, its wear resistance can be close to that of high-cobalt cemented carbide.
Compared with high-alloy die steel, it has higher elastic modulus, wear resistance, compressive strength and bending strength.
Compared with cemented carbide, it has better toughness. It has good self-lubrication, low friction coefficient and excellent chemical stability.
USE
Application:
Due to its high hardness, high wear resistance and high rigidity, it is suitable for making high-efficiency and long-life tools, dies, gauges, fixtures, jigs and wear-resistant parts. In addition, its good machining performance and heat treatability (performance can be adjusted by quenching and tempering) make it have significant advantages in large molds, complex structure molds, block molds (convenient for replacing damaged modules) and refractory molds.
SPECIFICATIONS
Gt35 Carbide Rod/Bar
Grade | Hard Phase | Binder Phase | Density | Hardness | TRS | Impact Toughness | |
g/cm3 | Annealing | Hardening | Mpa | J/cm2 | |||
HRC | HRA | ||||||
Gt35 | TiC | Alloy steel | 6.40-6.60 | ≤48 | ≥86 | ≥1400 | ≥ 3.5 |
1. Carbide Rod/Bar : φ13*95mm,
2. Carbide Rod/Bar : φ20*90mm.
GT35 Carbide Guide Rollers
Size | Material | Application |
Customized Guide rollers’ size varies according to the different wire rods. The main dimensions and structures are: outer diameter and thickness, groove type and bearing hole | Gt35 | Guide Roller (also known as guide wheel) is an indispensable part of wire rod in the rolling process of steel rolling plant. It requires high hardness, good wear resistance (matching the service life with high-quality bearings), good thermal conductivity, and a certain degree of red hardness, especially for high-speed wire rolling (the rolling speed is 80-120m/s). |
1. Carbide Guide Rollers: φ53*φ12*22 (Inner Diameter x Outer Diameter x Height),
2. Carbide Guide Rollers: φ61*φ16*35 (Inner Diameter x Outer Diameter x Height).
PACKAGE
We support customized packaging ways.
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