The signing of a memorandum of understanding between Michelin and Yunnan Farming will provide technical assistance in improving the production capacity of natural rubber and enhancing the cold resistance of rubber trees.

On September 14, the French Michelin Group signed a memorandum of understanding on cooperation in rubber cooperation with the Yunnan Farming Group Co., Ltd. and the Yunnan Institute of Tropical Crops. Michelin will provide partners with technical assistance in improving the production capacity of natural rubber and enhancing the cold resistance of rubber trees.
According to the memorandum of understanding, Michelin will provide support for the technical and laboratory equipment provided by the Yunnan Agricultural Reclamation and Yunnan Hothouse in the application of latex physiological diagnostic methods, the innovation of tapping technology, the research on improving the cold resistance of tree species, and the prevention of bark necrosis. Improve partners' rubber production capacity.
Mr. Bai Hao, Michelin China Operations Director, said that Michelin has a long-term commitment to the Chinese market and has been committed to bringing leading technology and expertise to China's rubber plantation industry and helping China improve natural rubber production, quality and production efficiency. Both the public and the natural environment are significant. At the same time, this also reflects Michelin's consistent commitment to promote the development of China's upstream supply chain in related fields. He Tianxi, deputy general manager of Yunnan Farming Group Co., Ltd., said that through the cooperation with Michelin, the two parties can also share the technical and knowledge resources in the development of rubber tree disease resistance.
It is understood that since 2000, Michelin has begun to provide technical support to Yunnan Rubber Park. From 2001 to 2004, every year in September, Michelin sent a technical delegation to Yunnan to understand the status of natural rubber production and research, and also provided specialized technical guidance on rubber tree planting. The signing of this memorandum once again shows Michelin's commitment to the Chinese market and its determination to develop together with related industry chains.

Blended Powder

A blended powder of tungsten carbide and Metal Alloy Powder can be used for laser cladding, a process used to deposit a layer of material onto a substrate using a laser beam. This blended powder is typically used as a feedstock material for laser cladding applications where high wear resistance and hardness are required.

Tungsten carbide is a hard and wear-resistant material that is commonly used in cutting tools, mining equipment, and other high-wear applications. It has excellent thermal conductivity and high melting point, making it suitable for laser cladding processes.

Metal alloy powders, on the other hand, are often added to the Tungsten Carbide Powder to enhance certain properties or tailor the characteristics of the final cladding layer. These metal alloys can include nickel, cobalt, chromium, or other elements, depending on the specific requirements of the application.

The blended powder is typically prepared by mixing the tungsten carbide and metal alloy powders in the desired ratio. This mixture is then fed into a laser cladding system, where it is melted using a high-power laser beam. The molten powder is rapidly solidified onto the substrate, forming a dense and wear-resistant cladding layer.

The resulting cladding layer can have excellent hardness, wear resistance, and thermal conductivity, making it suitable for various applications such as tooling, wear parts, and surface protection. The specific properties of the cladding layer can be adjusted by varying the composition and ratio of the tungsten carbide and metal alloy powders in the blend.

Overall, the blended powder of tungsten carbide and metal alloy powder offers a versatile and customizable solution for laser cladding applications, providing enhanced wear resistance, hardness, and other desired properties to the final cladding layer.

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