首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Full-field optical deformation measurement in biomechanics: Digital speckle pattern interferometry and 3D digital image correlation applied to bird beaks
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Full-field optical deformation measurement in biomechanics: Digital speckle pattern interferometry and 3D digital image correlation applied to bird beaks

机译:生物力学中的全场光学变形测量:数字斑点图案干涉法和3D数字图像相关性应用于鸟嘴

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摘要

In this paper two easy-to-use optical setups for the validation of biomechanical finite element (FE) models are presented. First, we show an easy-to-build Michelson digital speckle pattern interferometer (DSPI) setup, yielding the out-of-plane displacement. We also introduce three-dimensional digital image correlation (3D-DIC), a stereo photogrammetric technique. Both techniques are non-contact and full field, but they differ in nature and have different magnitudes of sensitivity. In this paper we successfully apply both techniques to validate a multi-layered FE model of a small bird beak, a strong but very light biological composite. DSPI can measure very small deformations, with potentially high signal-to-noise ratios. Its high sensitivity, however, results in high stability requirements and makes it hard to use it outside an optical laboratory and on living samples. In addition, large loads have to be divided into small incremental load steps to avoid phase unwrapping errors and speckle de-correlation. 3D-DIC needs much larger displacements, but automatically yields the strains. It is more flexible, does not have stability requirements, and can easily be used as an optical strain gage.
机译:本文提出了两种易于使用的光学装置来验证生物力学有限元(FE)模型。首先,我们展示一种易于构建的迈克尔逊数字散斑图案干涉仪(DSPI)设置,产生平面外位移。我们还介绍了三维数字图像关联(3D-DIC),这是一种立体摄影测量技术。两种技术都是非接触式和全场的,但它们的性质不同且灵敏度不同。在本文中,我们成功地应用了这两种技术来验证小鸟喙的多层有限元模型,这是一种坚固但非常轻的生物复合材料。 DSPI可以测量非常小的变形,并具有很高的信噪比。但是,它的高灵敏度导致对稳定性的要求很高,并且使其很难在光学实验室外和活体样品上使用。另外,必须将大负载分为小增量负载步长,以避免相位解缠误差和斑点去相关。 3D-DIC需要更大的位移,但会自动产生应变。它更灵活,没有稳定性要求,可以轻松用作光学应变仪。

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