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Quantitative Analysis of Big End Journal Form and Bolt Installation using Ultrasonic Time of Flight Measurements

机译:使用超声波飞行时间测量对大端轴颈形式和螺栓安装进行定量分析

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摘要

Connecting rod bolts have the effect of compressing the bearing cap when preload is applied, placing the journaludinto an out of form state when exacting levels of torque are not exercised. In this paper, this effect has beenudhighlighted by means of practical measurements and then simulated with FEA models.udA further study into ultrasonic velocity through torque to yield fasteners has highlighted as torque is increased, there is a coherent decrease in sound wave velocity. Testing also highlighted a change in Young’s modulus during the elastic region, throwing animosity to the conventional linearity of Hooke’s law.udBased on current literature, a relationship linking increased hardness to a reduction in ultrasonic velocity resulted in further testing that indicated as fasteners yield, the material locally strain hardens, causing a decrease in sound velocity in the heavily yielded region. It is then regarded that high frequency ultrasonic testing can identify localised micro structural changes due to strain hardening, giving a variation in Young’s modulus during the elastic region when compared to the linearity of the conventional bulk tensile test that cannot identify such details.
机译:施加预紧力时,连杆螺栓具有压缩轴承盖的作用,而当未施加精确的扭矩水平时,则将轴颈 udin置于变形状态。在本文中,这种效果已通过实际测量得到了强调,然后通过FEA模型进行了仿真。 ud随着扭矩的增加,对超声波速度的屈服强度的进一步研究突出了随着扭矩的增加,声波速度的连贯降低。测试还突出显示了弹性区域中杨氏模量的变化,这与传统的胡克定律线性是有矛盾的。 ud根据当前文献,将硬度增加与超声速度降低联系起来的关系导致了进一步的测试,表明紧固件的屈服强度,材料局部应变变硬,导致高屈服区域的声速降低。然后,人们认为,高频超声测试可以识别由于应变硬化而引起的局部微观结构变化,与无法识别此类细节的常规本体拉伸测试的线性度相比,可以给出弹性区域内杨氏模量的变化。

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