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A new method for valve seat without ring

机译:一种没有环的阀座的新方法

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A surface modification method by electrical discharge has been developed for the valve seats of aluminum cylinder heads. This method employs a conventional electrical discharge machine to generate continuous discharge arcs between an electrode and a cylinder head, whereby the molten electrode material is transferred and clad onto the valve seat area on the cylinder head. Using this new cladding method, a wear-resistant cladding can be formed on each valve seat area in a matter of minutes and, if the same number of electrodes as valve seat areas are set one on one, all the valve seat areas can be clad simultaneously. The advantages of this method include local cladding capability, outstanding adhesion, quick cladding speed, and excellent adaptability to various types of engines. The chemical composition of the cladding was determined by a preliminary test using dynamo engines, and the durability of the cladding was evaluated using the same dynamo engines. The results indicate the applicability of the surface modification method to high- output engines. This paper reports on the procedures and test results of this discharge cladding method.
机译:通过电气放电的表面改性方法已经为铝缸盖的阀座开发。该方法采用传统的电气放电机器在电极和汽缸盖之间产生连续放电电弧,由此将熔融电极材料转移并将其包覆在汽缸盖上的阀座区域上。使用这种新的包层方法,可以在几分钟内在每个阀座面积上形成耐磨包层,如果与阀座区域相同数量的电极,则所有阀座区域都可以包覆同时。该方法的优点包括局部包层能力,突出的粘附性,快速包层速度,以及对各种类型的发动机的优异适应性。通过使用发电机发动机的初步测试测定包层的化学成分,使用相同的发电机发动机评估包层的耐久性。结果表明,表面改性方法适用于高输出发动机。本文报告了该排放包层方法的程序和测试结果。

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