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Out-of-plane failure mechanisms in LFRP composite cutting

机译:LFRp复合材料切割中的面外失效机理

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摘要

LFRP (Long Fiber Reinforced) composites are widely used in structural components for high responsibility applications in different industrial sectors. Composite components are manufactured near final shape, however several machining operations are commonly required to achieve dimensional and assembly specifications. Machining should be carefully carried out in order to avoid workpiece damage. Despite of the interest of numerical modeling to analyze in detail the phenomena involved during composite cut ting, there are only few works in the scientific literature dealing with this topic even in the simple case of orthogonal cutting. Out of plane failure can be accounted only if three dimensional modeling is per formed. However up to date numerical analysis of cutting found in scientific literature was focused in two dimensional approach. In this paper (2D) and three dimensional (3D) numerical modeling of orthog onal cutting of carbon LFRP composite are presented. The aim of the paper is to analyze the complex aspects involved during cutting, including out of plane failure.
机译:LFRP(长纤维增强)复合材料广泛用于结构部件中,用于不同工业领域的高负荷应用。复合部件的制造接近最终形状,但是通常需要进行一些机械加工才能达到尺寸和组装规格。为了避免损坏工件,应小心进行加工。尽管有兴趣进行数值建模来详细分析复合切削过程中涉及的现象,但是即使在正交切削的简单情况下,科学文献中也很少涉及该主题的著作。仅当执行三维建模时,才可以考虑平面外故障。然而,迄今为止,科学文献中发现的切削的数值分析集中在二维方法上。本文提出了碳LFRP复合材料的正交切削的二维(2D)和三维(3D)数值模拟。本文的目的是分析切割过程中涉及的复杂方面,包括平面故障。

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