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Cermet
GT35 Titanium Carbide Bar is a steel-bonded carbide with CrMo low alloy steel as the matrix (binder phase) and TiC particles as the hard phase (mass fraction 35%, hardness HV3200, second only to diamond). It is characterized by high hardness and high wear resistance, but poor temperature resistance (recommended operating temperature ≤300℃) and corrosion resistance. It is mainly used for cold processing molds, such as cold heading, cold drawing, cold shearing, cold extrusion, cold pressing molds and refractory molds.
Titanium Carbide Rod
The titanium carbide cermet rod (TiC rod) belongs to the steel-bonded cemented carbide, which is a kind of compound material based on the steel as the binder phase and used the refractory metal carbide (mainly the titanium carbide and the tungsten carbide) as the hard phase. The TiC rod is the high-hardness and high-strength titanium-based alloy composite material, known for their extreme hardness, high melting point, and excellent wear resistance. These rods can be used in various industrial applications, particularly where high durability and resistance to wear are required, such as for crushing hammer, etc.
ADVANTAGES
Its performance characteristics are as follows:
1. Good weldability and castability. The steel bonded alloy matrix is a type of high manganese steel, which exists as a single austenite phase at room temperature and has high strength, which is beneficial for improving the resistance to thermal stress during casting. It can be welded with ordinary high manganese steel electrodes or connected to the substrate through casting, which is simple to operate and easy to produce, and can reduce manufacturing costs and shorten production cycles.
2. High hardness and wear resistance. A large amount of refractory metal carbides (titanium carbide) are dispersed in steel bonded alloys, which have high hardness; At the same time, the matrix is high manganese steel with work hardening characteristics, which greatly improves the wear resistance of the product.
3. Excellent cost-effectiveness. Compared with tungsten cobalt hard alloy, steel bonded alloy has a low density (about 6.0g/cm3, which is 40% of tungsten cobalt hard alloy) and has a good cost-effectiveness advantage.
Titanium Carbide Rod has their own unique comprehensive performance advantages due to their unique performance characteristics. This excellent comprehensive performance has broad application prospects in industries such as impact and crushing tools, mining, cement, and construction.
USE
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 Titanium 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. Titanium Carbide Rod/Bar : φ13*95mm,
2. Titanium Carbide Rod/Bar : φ20*90mm.
PACKAGE
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