Recently, with the smooth departure of the 4-11 heavy truck light trucks from Dachai State, it marked that China National Heavy Duty Truck Light Trucks’ four technology platforms have fully matured. At the same time, they have moved towards the four-vehicle country of Chaiguo, the four-car company in Yunnei, and the four-vehicle of Xichai. All have been commissioned and engine calibration tests are being completed.
The R&D and trial production of Sinotruk light truck four-vehicle has been started since 2013. At the beginning of this year, it entered the production of small batches. Especially under the guidance of Mantech, advanced information technology was adopted and all testing values ​​on the production line were tested. , Including production, quality and equipment information, etc., are automatically transmitted to the server, technical quality personnel at any time to track the situation to play the end, at any time to master the technical status of vehicle assembly. At the same time, after continuously improving the harness connection, differential pressure sensor assembly, chassis harness laying and other electrical technologies of China National IV Engine, the technology platform of China National Heavy Duty Truck Light Truck Four Vehicles has become more mature and reliable, and it is more energy-efficient than previous vehicles. , environmental protection, smart savings, beautiful and comfortable, reliable and safe, and many other advantages. In May, orders for snow vehicles and other four-engine special vehicles from different countries continued to grow. (This article comes from China National Heavy Duty Truck)
Related News: China National Heavy Duty Truck

Cobalt Alloy Powder

Cobalt-based alloy powders are commonly used in laser cladding processes due to their excellent wear resistance, high temperature strength, and corrosion resistance. These alloys typically contain varying amounts of cobalt, chromium, tungsten, and nickel, among other elements, to achieve specific properties.

The laser cladding process involves melting the cobalt-based alloy powder using a high-energy laser beam and depositing it onto a substrate to form a protective coating. This coating helps to enhance the surface properties of the substrate, such as hardness, wear resistance, and corrosion resistance.

Some common cobalt-based alloy powders used in laser cladding include:

1. Stellite: This is a well-known cobalt-chromium-tungsten alloy that offers excellent wear and corrosion resistance. It is often used in applications where high temperatures and abrasive environments are present, such as in oil and gas drilling tools, valves, and pump components.

2. Tribaloy: Tribaloy alloys are cobalt-based alloys that contain varying amounts of chromium, molybdenum, and silicon. They are known for their exceptional high-temperature strength and resistance to galling, making them suitable for applications in the aerospace, petrochemical, and power generation industries.

3. Haynes alloys: Haynes alloys are nickel-cobalt-chromium-molybdenum alloys that offer excellent high-temperature strength, oxidation resistance, and corrosion resistance. They are commonly used in applications where extreme heat and corrosive environments are present, such as in gas turbines and chemical processing equipment.

These cobalt-based alloy powders are available in various particle sizes and can be tailored to meet specific application requirements. They can be used with different laser cladding techniques, such as powder-fed laser cladding or blown powder laser cladding, depending on the desired coating thickness and properties.

Overall, cobalt-based alloy powders for laser cladding provide enhanced surface properties and improved performa

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