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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >An investigation into the feasibility of internal strain measurement in solids by correlation of ultrasonic images
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An investigation into the feasibility of internal strain measurement in solids by correlation of ultrasonic images

机译:通过超声图像相关性研究固体内部应变的可行性

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This paper investigates the feasibility of an ultrasonic method for measuring internal displacements and strains in engineering components at depths of tens of millimetres. The principle is to use an ultrasonic array to generate images of the speckle pattern produced by the material microstructure before and after the application of load. Under the assumption of constant ultrasonic velocity, a block-matching method is used to find the relative displacement of small portions of the images between the two loading states, and hence the strain. Experiments performed using a 5MHz ultrasonic array show that good displacement measurement results are obtained from the speckle directly below the array at depths of up to 45 mm. The results demonstrate that the technique can be used to identify the onset of plasticity and non-uniformity in strain across the field of view. However, while the actual values of strain obtained are correct in some directions, they are systematically incorrect in other directions by a factor between five and six. It is shown that this is because the change in ultrasonic velocity owing to load (the acoustoelastic effect) has, in some cases, a more significant effect on ultrasonic propagation time than the change in distance owing to strain.
机译:本文探讨了超声方法在数十毫米深度处测量工程组件内部位移和应变的可行性。原理是在施加载荷之前和之后,使用超声波阵列生成由材料微结构产生的斑点图案的图像。在恒定超声速度的假设下,使用块匹配方法来找到两个加载状态之间图像的一小部分的相对位移,从而确定应变。使用5MHz超声波阵列进行的实验表明,从阵列下方正好在45mm深度处的斑点可以获得良好的位移测量结果。结果表明,该技术可用于识别整个视场中应变的可塑性和不均匀性。但是,尽管所获得的应变的实际值在某些方向上是正确的,但在其他方向上它们在系统上是错误的,介于5到6之间。结果表明,这是因为在某些情况下,由于载荷引起的超声速度变化(声弹效应)对超声传播时间的影响要比由于应变引起的距离变化更大。

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