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Finite-element Analysis and Reliability Test of Power Steering Gear on the Fatigue Performance

机译:电力转向齿轮疲劳性能的有限元分析及可靠性试验

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The study on power steering gear is less than other auto parts at home or abroad.Compared with developed countries,the independent design and manufacture of power steering starts late,and lacks practical and effective evaluation standards.The combination of the theoretical analysis,numerical calculation and experimental verification is the key technology to optimize the design or test to evaluate the power steering gear's function and performance.In this paper,the power steering gear's finite element analysis(FEA) model was built to analyse the fatigue stress and fatigue life of the power steering gear's components,such as housing,input shaft and output shaft.and the fatigue test of the power steering gear was also designed and implemented.Research showed that,the power steering gear fatigue properties of FEA and reliability test have the same results.The total damage of 4 A-B-C event cycles is less than 1,the steering gear system is judged safe after 4 event cycles per design requirements.Each component of the power steering gear has different maximum average stress.The stress of the sector shaft,the piston and the screws is very close to the yield stress,which is much larger than the other components,and needed to be treated with caution The maximum stresses of the gear housing are a little over the yield strengths at the stress of 6,118 lbs,which is more dangerous than the other components,and great attention should be paid to it.
机译:在动力转向器研究小于在家里或abroad.C​​ompared与其他发达国家的汽车零部件,自主设计和动力转向的生产起步晚,缺乏理论分析的实用和有效的评价standards.The组合,数值计算和实验验证是优化设计或测试评价动力转向器的功能和performance.In本文的关键技术,动力转向齿轮的有限元分析(FEA)模型的建立是为了分析的疲劳应力和疲劳寿命动力转向齿轮的部件,例如壳体,输入轴和输出shaft.and动力转向齿轮的疲劳试验也被设计和implemented.Research表明,FEA和可靠性测试的动力转向齿轮疲劳特性具有相同的结果。的4个ABC事件循环的总伤害小于1,转向齿轮系统按设计要求设计。4个事件循环之后判断安全动力转向齿轮的ents.Each组分具有扇形齿轮轴,该活塞的不同的最大平均stress.The应力和螺钉是非常接近的屈服应力,这比其它部件大很多,而且需要与待处理敬告齿轮箱的最大应力略高于在6118磅的压力,这是比其他成分更危险,并高度重视应支付给它的屈服强度。

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