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3D Finite Element Modelling of Cutting Forces in Drilling Fibre Metal Laminates and Experimental Hole Quality Analysis

机译:钻孔纤维金属层合板切削力的三维有限元模拟及孔洞质量分析

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摘要

Machining Glass fibre aluminium reinforced epoxy (GLARE) is cumbersome due to distinctively different mechanical and thermal properties of its constituents, which makes it challenging to achieve damage-free holes with the acceptable surface quality. The proposed work focuses on the study of the machinability of thin (~2.5 mm) GLARE laminate. Drilling trials were conducted to analyse the effect of feed rate and spindle speed on the cutting forces and hole quality. The resulting hole quality metrics (surface roughness, hole size, circularity error, burr formation and delamination) were assessed using surface profilometry and optical scanning techniques. A three dimensional (3D) finite-element (FE) model of drilling GLARE laminate was also developed using ABAQUS/Explicit to help understand the mechanism of drilling GLARE. The homogenised ply-level response of GLARE laminate was considered in the FE model to predict cutting forces in the drilling process.
机译:由于玻璃纤维铝增强环氧树脂(GLARE)的成分的机械性能和热性能截然不同,因此加工起来很麻烦,这使其难以获得具有可接受表面质量的无损伤孔。拟议的工作重点是研究薄(〜2.5 mm)GLARE层压板的可加工性。进行了钻探试验,以分析进给速度和主轴转速对切削力和孔质量的影响。使用表面轮廓仪和光学扫描技术评估所得的孔质量指标(表面粗糙度,孔尺寸,圆度误差,毛刺形成和分层)。还使用ABAQUS / Explicit开发了钻孔GLARE层压板的三维(3D)有限元(FE)模型,以帮助理解钻孔GLARE的机理。在FE模型中考虑了GLARE层压板的均质层水平响应,以预测钻孔过程中的切削力。

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