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Finite Element Analysis of the Car Steering Knuckle Based on ANSYS

机译:基于ANSYS的汽车转向节的有限元分析

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Steering axle and steering knuckle arm often appear craze problem within its service life. In this paper, the structure of a car steering knuckle was investigated using finite element program at uneven road surface conditions, emergency braking condition and sideslip conditions under the condition of full load. The results show that the joint shaft neck and adjacent shoulder of steering knuckle are the easiest to be damaged. At the same time, the steering knuckle meets the strength requirement under various conditions. Secondly, use the theory of fatigue to analysis and consider parts material fatigue properties, mean stress and other factors. Steering knuckle fatigue simulations use the ANSYS software to estimate the fatigue life. Under the condition of loop 900000 times, there was no damage in steering knuckle. According to the analysis results, reduce stress concentration and the surface roughness for steering knuckle improvement measures are proposed.
机译:转向轴和转向指关节臂经常在其使用寿命范围内出现狂热的问题。在本文中,在满载条件下,使用有限元件,在不平衡的路面条件下,在不平的路面条件下,在不平整的道路表面条件下,在满载条件下进行了有限元节目来研究车转向节的结构。结果表明,联合轴颈部和相邻的转向节肩部是最容易损坏的。与此同时,转向节在各种条件下满足强度要求。其次,使用疲劳理论分析,考虑零件疲劳性能,平均应力等因素。转向指关节疲劳模拟使用ANSYS软件来估算疲劳寿命。在循环900000次的条件下,转向节中没有损坏。根据分析结果,提出了降低应力集中,并提出了用于转向节转向的表面粗糙度。

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