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Automotive stabilizer bar – stabilizer bar strength calculations using FEM, ovalization of radial areas of tubular stabilizer bars

机译:汽车稳定杆–使用FEM计算稳定杆强度,使管状稳定杆径向区域呈椭圆形

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The ovalization and microcracks may lead to a considerable reduction of the stabilizer bar fatigue strength and in consequence to its premature damage. Analytical stabilizer bar strength calculations taking the ovalization into consideration are very complex and complicated. Therefore, FEM is more and more frequently applied in tubular stabilizer bar strength calculations. The article pre-sents an outline of tubular stabilizer bar strength calcula-tions taking into consideration the tube deformation – ovalization in the main radial areas and its effect on the equivalent stress value and the fatigue strength. Two auto-motive stabilizer bars currently used in the industry with the assumption of actual constructional features and loads acting on it were analysed. The results were compared with the case of the occurrence of ovalization (geometric parameters of stabilizer bars were measured and on that basis the CAD and FEM models were made). In addition to numerical analysis, the results of fatigue tests performed on the selected stabilizer bar are presented and compared with the results of the numerical analysis. The whole article is complemented by theoretical analysis of the strength parameters of tubular stabilizer bar with shape ovalization.
机译:椭圆化和微裂纹可能导致稳定杆疲劳强度大大降低,并因此导致其过早损坏。考虑到椭圆化的稳定杆分析强度计算非常复杂。因此,有限元法越来越多地应用于管状稳定杆强度计算中。本文提出了管状稳定杆强度计算的概述,其中考虑了管的变形–主要径向区域的椭圆化及其对等效应力值和疲劳强度的影响。分析了当前在行业中使用的两个汽车稳定杆,假设它们具有实际的结构特征和作用在其上的载荷。将结果与发生椭圆化的情况进行了比较(测量了稳定杆的几何参数,并在此基础上建立了CAD和FEM模型)。除了数值分析之外,还介绍了在所选稳定杆上执行的疲劳测试结果,并将其与数值分析结果进行了比较。通过对具有椭圆形形状的管状稳定杆的强度参数进行理论分析,对全文进行了补充。

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