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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >A Comparison of Contact Stiffness Measurements Obtained by the Digital Image Correlation and Ultrasound Techniques
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A Comparison of Contact Stiffness Measurements Obtained by the Digital Image Correlation and Ultrasound Techniques

机译:接触刚度的比较测量和获得的数字图像相关超声波技术

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The digital image correlation (DIC) and ultrasound techniques have both previously been employed to measure the contact stiffness of real engineering interfaces, but a comprehensive comparison of these techniques has not previously been carried out. Such a comparison is addressed in the present paper. The principal novelty in this work is that DIC and ultrasound are used to simultaneously measure contact stiffness in the same tests and on the same contact interface. The results show that ultrasound measures somewhat higher contact stiffness magnitudes than DIC: at an average normal contact pressure of 70 MPa, ultrasound was around three times stiffer. Given that the techniques are vastly different in their measurement approach (DIC measures micron-scale relative displacements from external sideon images of the interface, while ultrasound uses the reflection of an Angstrom scale ultrasonic perturbation from the interior of the interface itself), this level of agreement is thought to be encouraging. The difference in results can partly be explained by consideration of inherent physical differences between the techniques which have previously received little attention. Ultrasound measurement will always give the local elastic 'unloading stiffness' (even at a plastically deforming contact); whereas, a load-deflection technique like DIC, will give the 'loading stiffness'. The reason for this difference is discussed in the paper and tests carried out under increasing tangential load in the presliding regime illustrate this difference experimentally. Under normal loading, the increase in real contact area obscures the effect to some extent as both DIC and ultrasound stiffnesses increase with normal load. The results suggest that rough interfaces may be satisfactorily modelled as a variable stiffness spring whose stiffness increases with contact pressure as the smooth contact case is approached.
机译:数字图像相关(DIC)和超声波技术都曾被用来测量实际工程的接触刚度接口,而是一个综合的比较这些技术并没有之前进行出去了。本文。迪拜国际资本和超声波用于吗同时测量的接触刚度相同的测试和在相同的接触界面。结果表明,超声波的措施接触刚度大小高于DIC:平均正常接触压力为70 MPa,超声波在严厉的三倍。他们的技术有很大的不同微米尺寸的测量方法(DIC措施从外部sideon相对位移接口的图像,而超声波使用埃规模超声波的反射扰动的内部接口本身),被认为是这种级别的协议鼓舞人心的。用考虑固有加以解释物理技术之间的差异以前没有引起多少关注。超声波测量总是给当地弹性(即使在卸载刚度可塑性变形接触);简技术像DIC,会给的“加载刚度”。区别是本文中讨论和测试增加切向载荷下进行presliding政权说明这种差异实验。实际接触面积增长掩盖了效果在某种程度上作为DIC和超声波与正常负载刚度增加。结果表明,粗糙的界面满意地变刚度模型弹簧的刚度随接触压力平稳接触情况走近。

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