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Investigation of the stresses induced in crank shaft AISI E4340 Forged steel

机译:曲柄轴AISI E4340锻钢中诱导应力的研究

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The Main objective of this study was to investigate the stresses induced in crank shaft manufactured of AISI E4340 forged steel. The Need of load history on FE Analysis necessitates performing a detailed dynamic load analysis. Therefore, this study consists of two major sections. First section is Kinematic and Dynamic analysis and second section is FE stress analysis. In this study an Experimental Test is initially conducted on Computerized Variable Compression Ratio at Compression ratio diesel engine testing machine of 16.5 for obtaining pressure vs. crank angle variation. The kinematic and dynamic analysis was done analytically by developing the equations of equilibrium from free body diagram of slider crank mechanism. The equations which are obtained through this analysis are used as input for determining the stresses. These forces were then applied along with boundary conditions on the model of crank shaft. The stress analysis was performed at critical crank angles of rotation. The critical angles were determined by plotting the pin forces and bearing reactions with respect to the crank angles. These angles correspond to the positions where the axial and normal forces are maximum at either of the crank pin and bearings. The results in the form of Von-misses stresses and deformation were used to evaluate the factory of safety of crank shaft.
机译:本研究的主要目的是研究由AISI E4340锻钢制造的曲轴诱导的应力。 Fe分析的负载历史需要需要进行详细的动态负载分析。因此,本研究包括两个主要部分。第一部分是运动和动态分析,第二部分是FE压力分析。在该研究中,最初在压缩比柴油发动机试验机上的计算机化可变压缩比上进行实验测试,用于获得压力与曲柄角变化。通过开发来自滑块曲柄机构的自由体图的平衡方程来分析运动和动态分析。通过该分析获得的等式用作确定应力的输入。然后将这些力与曲柄轴模型的边界条件一起施用。在临界曲柄角度下进行应力分析。通过绘制销力和相对于曲柄角度的轴承反应来确定临界角度。这些角度对应于轴向和正常力在曲柄销和轴承中的最大值的位置。 von-misses应力和变形形式的结果用于评估曲轴的安全性。

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