The second phase of the Sino-German electric vehicle charging project has ushered in an important milestone since its launch in March 2015. Recently, the project was held in Beijing. Twenty-three experiential users will begin a three-month electric vehicle charging experience in Beijing to explore in depth the charging status and research solutions in semi-public areas in Beijing (eg living quarters, office buildings, shopping malls and government buildings). The Sino-German brands participating in the project include: Audi, BMW, BAIC, Daimler, Volkswagen, BMW Brilliance and Tengshi. At the same time, Tsinghua University, China Automotive Technology Research Center, Germany's Mannheim Dermatology Institute and other well-known Sino-German scientific research institutions and electric vehicle charging service provider Sentong Zhida participated in relevant research work.
According to the first phase of the project, as of the end of 2014, only 7% of residential units in Beijing had the necessary conditions for the installation of private charging facilities, and because most property management companies did not fully understand the charging facilities, charging security, household coordination and There are certain concerns about management. Therefore, the development of semi-public area charging is also particularly important to promote the popularity of electric vehicles. The second phase of the project will include: semi-public area charging location selection and feasibility analysis, empirical research on the charging infrastructure business operation model, and user demand and charging behavior research. The second phase of the project will be completed in December 2015 and is expected to form preliminary results in early 2016.

Laser Cladding Powder

Nickel Based Laser Cladding Powder

Ni base alloy powder is mainly made of NiCrBSi or NiBSi. Ni-based self-fluxing powder has good wettability, corrosion resistance and high temperature self-lubricating effect, and is used in components with heat resistance, corrosion resistance and thermal fatigue resistance. In general Ni35,Ni45,Ni60 etc can be used for laser cladding, the No means hardness of powder. Inconel 625 and 718 has good corrosion property under higher temperature, also widely used for laser cladding process.


Cobalt based Laser Cladding Powder

Cobalt-based alloy powder is the cemented carbide resistant to various types of wear and corrosion as well as high temperature oxidation. That is, the so-called cobalt-chromium-tungsten (molybdenum) alloy or Stellite alloy cobalt-based alloy is mainly composed of cobalt, containing a considerable amount of nickel, chromium, tungsten and a small amount of molybdenum, niobium, tantalum, titanium, Alloying elements such as lanthanum, and occasionally a class of alloys containing iron.

Co-based self-fluxing alloys have good high temperature performance and wear resistance and corrosion resistance, and are used in petrochemical power, metallurgy and other industrial fields where they are wear-resistant, corrosion-resistant and high-temperature resistant.

Laser Cladding


Iron based Laser Cladding Powder

The work pieces required for laser cladding and manufacturing in the actual industry are mainly carbon steel and cast steel. The Fe-based alloy is close to the base material in composition and has good wettability. The advantage of Fe base powder is lower cost and good wear resistant of cladding layer. As a result, it`s the most widely used for laser cladding process. It is suitable for parts that require local wear resistance and are easily deformed.

Laser Cladding Work Part



WC blended Laser Cladding Powder

Tungsten carbide blended with Ni alloy powder is the best choice for wear resistant work piece. This unique process can bring excellent wear, corrosion and high temperature resistant. Our blend powder can achieve different portion of WC from 35% to 60% without crack under suitable cladding parameter.


Laser Cladding 2


Iron Alloy Powder,Nickel Alloy Powder,Cobalt Alloy Powder,Laser Cladding Powder

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