首页> 外文会议>Proceedings of 19th Asia Pacific automotive engineering conference amp; SAE-China congress 2017: selected papers >A Simulation Method for Predicting Connecting Rod Buckling Stress and Fatigue Safety Factor of a Four-Cylinder Small Displacement Engine
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A Simulation Method for Predicting Connecting Rod Buckling Stress and Fatigue Safety Factor of a Four-Cylinder Small Displacement Engine

机译:四缸小排量发动机连杆屈曲应力和疲劳安全系数的仿真方法

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The buckling results showed an improved parity with the analysis predicting using this three-dimensional simulation, 22 kN improvement from simulation, but the rig test is performed with the rod essentially at TDC, whereas peak buckling load in the engine occurs 15 degrees after TDC, which reduces the buckling strength and would give the rig a greater value. This simulation method basically should show a well match with the test results considering this difference. Regarding the fatigue results, the connecting rod showed acceptable durability in agreement with this analysis method. Test returns a safety factor of 1.18, similar to the 1.16 predicted by the simulation analysis. The failure initiation points showed decent agreement with the simulation analysis. A method for three-dimensional connecting rod strength simulation has been developed that makes it possible to calculate buckling cover factor and fatigue safety factor of connecting rod. This simulation method can predict the buckling load and high cycle safety factor accurately which was verified by connecting rod experiment.
机译:屈曲结果显示,与使用此三维模拟进行的分析预测相比,平价得到了提高,与模拟相比提高了22 kN,但装配试验基本上是在TDC上对连杆进行的,而发动机的最大屈曲载荷发生在TDC之后15度,这会降低屈曲强度,并为钻机带来更大的价值。考虑到这种差异,该仿真方法基本上应与测试结果完全匹配。关于疲劳结果,连杆显示出与该分析方法一致的耐久性。测试返回的安全系数为1.18,类似于模拟分析预测的1.16。失效起始点与仿真分析显示出良好的一致性。开发了一种用于三维连杆强度模拟的方法,该方法可以计算连杆的屈曲覆盖系数和疲劳安全系数。通过连杆实验验证了该仿真方法能够准确预测屈曲载荷和高周安全系数。

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