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Full-Field Deformation Measurements in Liquid-like-Solid Granular Microgel Using Digital Image Correlation

机译:使用数字图像相关性的液体固体颗粒微凝电池的全场变形测量

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This paper presents the experimental characterization of the in-plane deformation field at any depth within a granular support medium (GSM) called Carbomer 940 using digital image correlation (DIC) and particle image velocimetry (PIV). A method was developed to produce a 2D plane of randomly shaped speckles within the GSM for DIC. Four different needle diameters and four different speeds were used as test specimens representative of those utilized for 3D printing of soft matter in the GSM. The results can be used to determine dimensional tolerances and assessing interactions between multiple injection needles and acceptable spacing. The displacements in the direction of needle motion (u) and transverse (v) were obtained. Subsequently, the magnitudes were determined as a function of distance from the needle path and time history. Results show that near the needle there is a region of yielded/fluidized material and away from the needle path the material acts like a viscoelastic solid. Permanent deformation decreases with increased distance from the path and recovery is enhanced by reversing back through the path.
机译:本文呈现了使用数字图像相关(DIC)和粒子图像速度(PIV)的粒状支持介质(GSM)内的任何深度内面内变形场的平面变形场的实验表征。开发了一种方法以在GSM内产生2D平面的用于DIC。四种不同的针直径和四种不同的速度用作代表GSM中柔软物质的3D印刷的试样。结果可用于确定尺寸公差并评估多个注射针与可接受的间距之间的相互作用。获得针运动方向(U)和横向(V)的位移。随后,确定幅度作为从针路径和时间历史的距离的函数。结果表明,在针附近存在产生的/流化材料的区域,并且远离针路径,材料用粘弹性固体作用。永久变形随着距离路径的距离增加而降低,通过倒路通过路径来提高恢复。

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