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Experimental and numerical investigations to determine the modulus and fracture mechanics of tamarind seed (Tamarindus indica L.)

机译:确定罗望子种子模数和断裂力学的实验和数值研究

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The testa of tamarind seed (Tamarindus indica L.) should be completely removed from the kernel to avoid the risks from tannin and therefore, knowledge of the mechanical properties of a tamarind seed are essential for the removal process. Here, the moduli of the testa and kernel were separately estimated using the reverse engineering method, i.e., a combination of experiments and numerical analysis. The modulus of testa was found to be 1.192 GPa, while that of kernel was 0.506 GPa. Under the quasi-static compression test, the strength of a tamarind seed depended on the direction of loading. For compressive loading in the width direction, the fracture load (105.68 N), deformation to fracture (0.26 mm), and fracture energy (11.69 N mm) of a tamarind seed were the lowest. Thus, the removal of testa from kernel should be performed by applying compressive loading across the width. Cracks on the testa nucleated in the region of the maximum absolute value of principal stresses and propagated normal to the maximum tensile principal stress. Numerical predictions of the location of nucleated crack and the path of propagating crack corresponded to those observed during the quasi-static compression test. (C) 2016 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:应将罗望子种子的种皮(Tamarindus indica L.)从籽粒中完全清除,以避免单宁的风险,因此,了解罗望子种子的机械性能对于去除过程至关重要。在这里,使用逆向工程方法,即结合实验和数值分析,分别估算出睾丸和仁的模量。发现睾丸的模量为1.192 GPa,而仁的模量为0.506 GPa。在准静态压缩试验下,罗望子种子的强度取决于装载方向。对于宽度方向的压缩载荷,罗望子种子的断裂载荷(105.68 N),断裂变形(0.26 mm)和断裂能(11.69 N mm)最低。因此,应通过在整个宽度上施加压缩载荷来从内核中除去睾丸。睾丸上的裂纹在主应力的最大绝对值区域成核并垂直于最大拉伸主应力传播。形核裂纹位置和裂纹扩展路径的数值预测与准静态压缩试验中观察到的数值预测相对应。 (C)2016年。由Elsevier Ltd.出版。保留所有权利。

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