AbstractIn this paper, a root cause analysis of premature failure of a gearbox input shaft, manufactur'/> A Case Study on Fatigue Failure of a Transmission Gearbox Input Shaft
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A Case Study on Fatigue Failure of a Transmission Gearbox Input Shaft

机译:传动齿轮箱输入轴疲劳失效的案例研究

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AbstractIn this paper, a root cause analysis of premature failure of a gearbox input shaft, manufactured of AISI 1045-H, was performed through standard procedures for failure analysis. Shaft failed on cross oil hole through a helical fracture and therefore did not meet bogie 100,000 cycles during the verification with 10 Hz frequency cyclic testing. The fracture in the oil hole implied evidence of fatigue (i.e., beach marks on the fracture surface were clearly visible). Prior to improving the fatigue life and suggesting required remedial actions, mechanism of failure has to be understood, especially the initiating point of cracking. To this end, chemical analysis, microstructural characterization, fractography, hardness measurements, and finite element simulation were used to assess the nature of fracture in detail. The fractography analysis showed that fatigue beach marks originate from transition zone of the case on the cross oil hole. This is possibly due to the fact that torsional strength in this area is lower than torsional fatigue strength which leads to fatigue crack initiation, crack growth, and final fracture. At the end of this paper, proper remedial actions have been proposed.]]>
机译:<![CDATA [ <标题>抽象 ara id =“par1”>在本文中,过早失败的根本原因分析在AISI 1045-H制造的齿轮箱输入轴的情况下,通过标准程序进行了故障分析。轴通过螺旋油孔失效,因此在验证10 Hz频率循环测试期间没有符合转向架100,000个循环。油孔中的骨折隐含疲劳的证据(即,骨折表面上的海滩标记清晰可见)。在提高疲劳寿命之前,建议所需的补救措施,必须理解失败机制,特别是启动点的启动点。为此,使用化学分析,微观结构表征,断裂,硬度测量和有限元模拟来详细评估骨折的性质。 Fractography分析表明,疲劳海滩标记源于交叉油孔上的情况的过渡带。这可能是由于该区域的扭转强度低于扭转疲劳强度,这导致疲劳裂纹引发,裂纹生长和最终骨折。在本文结束时,已经提出了适当的补救措施。 ]]>

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