In order to accelerate the development of new energy vehicles, Shanxi Province will implement a parking fee reduction policy. The specific policies were formulated and implemented by Taiyuan, Jinzhong, Changzhi and Jincheng governments. In addition to parking fee reductions, Shanxi Province has also developed a series of preferential policies for new energy vehicles to guide consumers to use new energy vehicles.
Shanxi Province is an important energy province in the country. In the adjustment and transformation of coal-based and diversified development, it has formed advantageous industries such as electric power, modern coal chemical industry and coalbed methane, and promoted new energy vehicles (electric vehicles, methanol vehicles and gas). The automobile industry has laid a solid foundation for its development. In terms of electric vehicles, there are 15 households engaged in research and development and production of electric vehicles and parts in the province, which have certain industrial foundations; Taiyuan and Jincheng have been approved as pilot cities for the promotion and application of new energy vehicles in the country. In terms of methanol vehicles, the research and development of methanol vehicles in Shanxi Province is at the leading level in the country, and more than 20 companies are engaged in methanol fuel production and methanol vehicle R&D and demonstration operations. There are more than 1,000 low-methanol gasoline petrol filling stations in the province, and 63 high-methanol fuel filling stations. In terms of gas vehicles, Shanxi Province is rich in coalbed methane and coke oven gas resources, and has five gas vehicle R&D and production enterprises. Shanxi Province will focus on electric vehicles, methanol vehicles and gas vehicles, and build a new energy vehicle industry development pattern with strong innovation capability, high industrialization level and large market application scale.
For Taiyuan City, the development plan for the new energy automobile industry base (2014 to 2020) will be compiled and reported to the Provincial Economic and Information Committee. At the same time, Taiyuan City will focus on building an annual output of 5,000 electric city bus projects to build an electric vehicle industry base; relying on Jiangling Heavy Duty Truck and other enterprises, it will focus on building 20,000 CBM heavy trucks and 80,000 high-end heavy truck engine projects to build a gas automobile industry. Base; research on application technology of coalbed methane gasification and liquefaction, coal hydrogen production and hydrogen energy in the field of new energy vehicles in Taihao Science and Technology City.
Shanxi Province will implement policies and measures to encourage the production and use of new energy vehicles. For example, the establishment of new energy vehicle industry development incentive funds, specifically for supporting the production and promotion of new energy vehicles; implementation of parking fee reduction policy, in some urban public parking lots, municipal roads and bustling commercial area parking lots, for new energy vehicles Implement the policy of reducing and exempting parking fees; formulate preferential policies for new energy vehicles, and guide consumers to use new energy vehicles through leverage such as energy prices.
Power spinning is also called thinning spinning. Power spinning is a non-cutting processing method developed on the basis of ordinary spinning. When spinning, use the tail top to fix the blank on the mold. When the mold rotates, the rotating wheel makes a feeding motion, so that the blank continuously becomes thinner point by point and abuts against the mold to form a part of the required shape. Power spinning realizes the forming of the workpiece by changing the thickness and shape of the blank.
On airplanes, various nose covers, auxiliary fuel tanks, air intakes, gas cylinders, tie rods, slide rails, and actuators are all formed by spinning. In the engine, most of the propeller cap, casing, lip, intake cone, nozzle, nozzle, etc. are also formed by spinning. Such parts have complex structures, special raw materials, and large product sizes. The use of spinning forming can improve the integrity of structural components, reduce welds and component deformation, and reduce the workload of manual calibration. More importantly, due to the increased strength of the material after spinning, the design wall thickness of the parts can be reduced, thereby reducing the weight of the whole machine and improving the reliability of the whole machine.
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