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Quantification of the Compressibility of Elastomers Using DIC

机译:使用DIC定量弹性体的可压缩性

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摘要

Both filled and unfilled elastomers are generally modeled as incompressible solids. However studies on the compressibility of elastomers have indicated that volume expansion is observed at large stretches coinciding with the onset of cavitation. Varying methods such as dilatometry and hydrostatic weighting have been used to calculate volume changes that elastomers undergo during stretching. However, these techniques cannot map volume variations for a heterogeneous state of stress, motivating the present work. In this study, carbon black filled elastomer samples were subjected to a uniaxial stretch and the deformation was recorded using two back-to-back stereo-correlation systems. The back-to-back stereo-correlation systems allow the in-plane strains on the front and back face of the specimen to be calculated along with the normal strain through the thickness. Using the assumption of plane stress, the volume variation of the elastomer as a function of the applied longitudinal strain was determined.
机译:填充和未填充的弹性体均通常被建模为不可压缩的固体。然而,对弹性体的可压缩性的研究表明,在与空化发作重合的大伸展中观察到体积膨胀。改变的方法,例如稀释测定和静水压加权,用于计算弹性体在拉伸期间发生的体积变化。然而,这些技术不能映射用于异构压力状态的体积变化,激励目前的工作。在该研究中,对炭黑填充弹性体样品进行单轴拉伸,并且使用两个背对背立体相关系统记录变形。背靠背立体相关系统允许通过厚度的正常应变来计算样品的前面和背面的面内菌株。使用平面应力的假设,确定弹性体作为施加的纵向菌株的函数的体积变化。

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