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All-electrical indentation shear modulus and elastic modulus measurement using a piezoelectric cantilever with a tip

机译:使用带尖端的压电悬臂梁进行全电压痕剪切模量和弹性模量测量

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摘要

We have investigated an all-electrical indentation shear modulus and elastic modulus measurement technique using piezoelectric cantilever sensors with a tip for potential in vivo applications. A piezoelectric cantilever with a tip was capable of carrying out compression, shear, indentation, and indentation shear tests, where compression and shear tests refer to those where the sample is not confined by a container and the contact area of the cantilever is the same as or larger than the sample surface area and the indentation and indentation shear tests are those where the contact area of the cantilever is smaller than the sample surface area. Because the cantilever could measure both the elastic modulus and the shear modulus, Poisson's ratio of a sample could be determined from the ratio of the shear modulus to the elastic modulus with no presumption. We showed that the experimental elastic moduli and shear moduli obtained from the indentation and indentation shear tests agree with those obtained from the compression and shear tests. Furthermore, we showed that the same elastic moduli and the same shear moduli could be obtained either by using the displacement measurements or by the induced voltage measurements across the sensing piezoelectric layer. With a model tissue consisting of modeling clay embedded in gelatin, we demonstrated that the indentation compression and indentation shear tests could produce two-dimensional elastic and shear moduli maps or images that accurately showed the size and location of the modeling clay inclusion.
机译:我们已经研究了使用压电悬臂传感器的全电子压痕剪切模量和弹性模量测量技术,该传感器的尖端可能在体内应用。带有尖端的压电悬臂能够执行压缩,剪切,压痕和压痕剪切测试,其中压缩和剪切测试是指样品不受容器限制且悬臂的接触面积与样品相同。压痕和压痕剪切试验是指悬臂的接触面积小于样品表面积的压痕和压痕剪切试验。由于悬臂可以同时测量弹性模量和剪切模量,因此可以在不假设的情况下由剪切模量与弹性模量之比确定样品的泊松比。我们表明,从压痕和压痕剪切试验获得的实验弹性模量和剪切模量与从压缩和剪切试验获得的实验弹性模量和剪切模量一致。此外,我们表明,可以通过使用位移测量或通过感测压电层上的感应电压测量来获得相同的弹性模量和相同的剪切模量。使用由嵌入明胶中的模型粘土组成的模型组织,我们证明了压痕压缩和压痕剪切试验可以产生二维弹性和剪切模量图或图像,这些图或图像可以准确显示模型粘土包裹体的大小和位置。

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