钻孔复合材料的应力分析

M. G. Fernandes, R. Natal, E. Fonseca
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引用次数: 7

摘要

在本研究中,建立了三维动力学模型来模拟复合材料的钻削过程。通过明确的动态模拟,可以在短时间内获得大的结构变形和施加高强度载荷。利用该方法,考虑了典型复合材料在钻孔过程中不同切削参数的影响。此外,在实验室使用复合块进行了类似的测试。在钻孔过程中,对每种复合材料进行应变测量,获得不同表面位置的应变。数值方法的结果与实验方法的结果进行了比较。结果表明,进料速率越高,复合材料的应力和应变越小。所得数值结果与实验结果相似。因此,所建立的数值模型是进行这类分析的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of stresses in drilled composite materials
In this study, a three-dimensional dynamic model was built to simulate the drilling process in the composite materials. With an explicit dynamic simulation it is possible to obtain large structural deformation and to apply high intensity loading in a short time frame. Using this methodology, the influence of different cutting parameters were considered during the drilling process in typical composite materials. Also, similar tests were produced in laboratory using composite blocks. Each composite material was instrumented with strain gauges to obtain the strain in different surface positions during the drilling process. The results from the numerical methodology were compared with the experimental methodology. It was concluded when the feed-rate is higher the stresses and strains in the composite material are lower. The obtained numerical and experimental results were similar. Therefore the developed numerical model proved to be a great tool in this kind of analysis.
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