Successful Cases

Heat sink, radiator and other heat dissipation components

Heat sink, radiator and other heat dissipation components

In the field of photovoltaics, tungsten-molybdenum alloys are commonly used as heat dissipation materials in heat dissipation structures or heat sinks in solar cell modules to effectively remove the heat generated by the battery and maintain the operating temperature of the battery within an appropriate range, thereby improving the performance and reliability of the battery.

20

2024

/

05

Tungsten-molybdenum corrosion-resistant coating

Tungsten-molybdenum corrosion-resistant coating

Tungsten-molybdenum based alloys have excellent chemical stability, high temperature resistance, mechanical properties and optical properties, which can provide effective protection and performance enhancement. It is widely used in the coating protection of the surface of photovoltaic panels.

20

2024

/

05

Tungsten-based diamond wire

Tungsten-based diamond wire

At present, photovoltaic crystal silicon wafer cutting has become a large application field of diamond wire, occupying more than 90% of the diamond wire market. The diamond wire is the core consumable to realize the thin slice of silicon wafer, which is of great significance to improve the production efficiency and reduce the cost of silicon wafer.

20

2024

/

05

Photovoltaic module trimming machine blade

Photovoltaic module trimming machine blade

Tungsten-molybdenum alloy blades have high hardness, wear resistance and corrosion resistance, and are suitable for cutting materials with high hardness, such as silicon wafers, glass, silica gel and other materials commonly used in the photovoltaic industry. Tungsten molybdenum alloy blades are often used in photovoltaic manufacturing to cut crystalline or polycrystalline silicon wafers, as well as in other processes that require high-precision cutting to ensure cutting quality and efficiency.

20

2024

/

05

Blocks, rods, or profiles of tungsten-molybdenum alloys

Blocks, rods, or profiles of tungsten-molybdenum alloys

Due to its high density, high temperature stability, excellent mechanical properties, corrosion resistance and dimensional stability, tungsten-molybdenum alloy has become an ideal material for counterweights in the aerospace field. It can provide accurate balance and control while maintaining stability and reliability under harsh conditions.

20

2024

/

05

Missile thermal protection material

Missile thermal protection material

The missile will face extreme high temperature environment during flight, so it is necessary to use thermal protection materials to protect the missile structure from high temperature radiation and heat flow. Due to its high melting point and excellent thermal conductivity, tungsten-molybdenum alloys are often used to manufacture thermal protection plates and thermal protection layers of missiles to maintain structural integrity and performance.

20

2024

/

05

Missile casing

Missile casing

The missile casing is an important part of protecting the internal components of the missile, which needs to have high strength, high temperature stability and corrosion resistance. Due to its high strength and corrosion resistance, tungsten-molybdenum alloys are often used as structural materials in the manufacture of missile shells to provide protection and support.

20

2024

/

05

Fuze

Fuze

The fuze of missile is the key device to control the initiation and detonation of missile. Because fuze needs to withstand high temperature, high pressure and impact and other harsh conditions, tungsten-molybdenum alloy is often used in the manufacture of fuze head, fuze holder and fuze lead and other components to ensure its stability and reliability.

20

2024

/

05

< 1...101112...16 >