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Contact durability analysis methodology and applications in vehicle powertrain components design

机译:车辆动力总成部件设计的接触耐久性分析方法和应用

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Contact stress analysis or surface fatigue life prediction is a subject frequently encountered in powertrain component designs. Examples are the design of gears, bearings, cams, and load ramps. In many cases, design evaluations rely on simple analysis, component supplier's suggestions, and prototype testing. One viable technology trend in modern engineering, however, is to use computer simulation and analysis as a design guide. It is universally acknowledged that up-front, computer-aided engineering (CAE) will reduce the product development cycle time and cost, and improve product quality. In addition, this approach provides a good platform for technology growth. Scattered examples on surface durability analytical modeling techniques are available in the literature. But, the most suitable engineering tools for routine product design support are yet to be developed. Currently a semi-empirical approach is widely used in the industry. In this method, component SN curves are experimentally measured and used as a correspondence between loads and life cycles. Issues regarding this approach are reviewed. Possible directions for technology advancements are explored. For illustration, two examples are given for an off-highway tandem drive axle.
机译:接触应力分析或表面疲劳寿命预测是在动力总成部件设计中经常遇到的受试者。示例是齿轮,轴承,凸轮和装载斜坡的设计。在许多情况下,设计评估依赖于简单的分析,组件供应商的建议和原型测试。然而,现代工程中的一种可行技术趋势是使用计算机仿真和分析作为设计指南。它普遍承认,前线,计算机辅助工程(CAE)将降低产品开发循环时间和成本,提高产品质量。此外,这种方法还为技术增长提供了良好的平台。关于表面耐久性分析建模技术的分散示例在文献中可用。但是,尚未开发出用于常规产品设计支持的最合适的工程工具。目前,该行业广泛应用半实证方法。在该方法中,通过实验测量组分SN曲线并用作负载和寿命周期之间的对应关系。审查了关于这种方法的问题。探索了技术进步的可能指示。出于说明,给出了两个示例,用于离高速公路串联驱动轴。

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