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Wear Prediction in Internal Combustion Engine Valve Materials

机译:内燃机阀门材料磨损预测

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In internal combustion engine valves, wear often develops at the interface of the valve seat and the insert as a result of the high pressures produced by the combustion process at the moment of the closing event. An alternative to study the wear is by carrying out experimental tests in specific wear testing machines. The main drawback is that they are time consuming and expensive due to the need to carry out many tests for the usually observed scatter in the results. In the area of numerical methods, the wear simulation has been widely developed in the last years because it can solve complicated time consuming problems with general geometries. The aim of this work is to characterize the wear rate coefficients for bi-metallic pairs commonly used in internal combustion engine valves using experimental results and numerical solutions by using the Finite Element Method. Then, a numerical valve model is provided to demonstrate that the numerical and experimental solutions are in agreement.
机译:在内燃机阀中,由于在关闭事件的燃烧过程产生的高压力下,磨损通常在阀座和插入件的界面处开发。研究磨损的替代方案是在特定磨损试验机中进行实验测试。主要缺点是,由于需要对结果中通常观察到的散射进行许多测试,它们是耗时和昂贵的耗时。在数值方法领域,磨损仿真在过去几年中已被广泛开发,因为它可以解决一般几何形状的复杂耗时。本作作品的目的是使用实验结果和数值解决方案来表征常用于内燃机阀中的双金属对的磨损率系数,使用实验结果和数值溶液使用有限元方法。然后,提供了一种数值阀门模型,以证明数值和实验解决方案是一致的。

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