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On the sharpness of straight edge blades in cutting soft solids: Part II -Analysis of blade geometry

机译:切削软固体时直刃刀片的锋利度:第二部分-刀片几何形状分析

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In Part I of this paper a new metric, titled the "blade sharpness index" or "BSI", for quan-tifying the sharpness of a straight edge blade when cutting soft solids was derived from first principles and verified experimentally by carrying out indentation type cutting tests with different blade types cutting different target or substrate materials. In this Part II com-panion paper, a finite element model is constructed to examine the effect of different blade variables including tip radius, wedge angle and blade profile on the BSI developed in Part I. The finite element model is constructed using ABAQUS implicit and experiments are per-formed to characterise the non-linear material behaviour observed in the elastomeric sub-strate. The model is validated against the experiments performed in Part I and a suitable failure criterion is determined by carrying out experiments on blades with different tip radii. The paper finds that a simple maximum stress criterion is a good indicator for pre-dicting the onset of cutting. The validated model is then used to examine blade geometry. It is shown that finite element analysis is an important tool in helping to understand the mechanics of indentation. Furthermore, the study finds that all the blade geometric vari-ables have an influence on the sharpness of a blade, with the BSI being most sensitive to tip radius. Increasing the tip radius and wedge angle decreases the sharpness of the blade.
机译:在本文的第一部分中,从第一性原理推导了一种新的度量标准,称为“刀片锋利度指数”或“ BSI”,用于量化切割软固体时直刃刀片的锋利度,并通过压痕类型进行了实验验证使用不同刀片类型的切割测试,切割不同的目标或基材材料。在此第二部分的同伴文件中,构建了一个有限元模型来检查不同的叶片变量(包括叶尖半径,楔角和叶片轮廓)对第一部分中开发的BSI的影响。该有限元模型是使用ABAQUS隐式模型和进行实验以表征在弹性体基底中观察到的非线性材料行为。该模型针对第I部分中进行的实验进行了验证,并通过对具有不同叶尖半径的叶片进行实验来确定合适的失效准则。本文发现简单的最大应力准则是预测切削开始的良好指标。然后将经过验证的模型用于检查叶片几何形状。结果表明,有限元分析是帮助理解压痕力学的重要工具。此外,研究发现,所有刀片的几何变量都会对刀片的锋利度产生影响,而BSI对刀尖半径最为敏感。增大尖端半径和楔角会降低刀片的清晰度。

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