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An Investigation into Scalpel Blade Sharpness using Cutting Experiments and Finite Element Analysis

机译:用切割实验对手术刀叶片清晰度的研究及有限元分析

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This paper presents an investigation into the sharpness of a surgical scalpel blade. An experiment was carried out in which a surgical scalpel blade was pushed through an elastomeric substrate at a constant velocity. The force-displacement characteristics were examined by plotting the stiffness as a function of blade displacement and it was found that this curve could clearly identify the point where the material separates to form a cut. A blade sharpness measurement was defined as the energy required to initiate an opening or cut in the substrate. A finite element model was developed to examine the stress state in the substrate at the point where the opening initiates. The development of this model is described. The model was validated against the experiment and close agreement was obtained. The von-Mises stress distribution under the blade tip was plotted and it was shown that the peak stress actually occurs away from the blade tip, suggesting that material separation would initiate away from the substrate surface.
机译:本文提出了对外科手术刀叶片的锐度的调查。进行实验,其中在恒定速度下通过弹性体基材推动外科手术刀叶片。通过根据叶片位移的函数绘制刚度来检查力 - 位移特征,并且发现该曲线可以清楚地识别材料分离以形成切割的程度。叶片清晰度测量被定义为在基板中引发开口或切口所需的能量。开发有限元模型以在开口引发的点处检查基板中的应力状态。描述了该模型的发展。该模型针对实验验证,并获得了密切协议。绘制刀片尖端下的Von误判应力分布,并表明峰值应力实际上远离叶片尖端发生,表明材料分离将从基板表面引发。

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