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Study on the cutting mechanics characteristics of high-strength UD-CFRP laminates based on orthogonal cutting method

机译:基于正交切割法的高强度UD-CFRP层压板切割力学特性的研究

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摘要

High-strength unidirectional carbon fiber reinforced polymer (UD-CFRP) has gradually become one major material for primary load-bearing structural components of aircrafts, and related machining demands are also ever increasing. Owing to its prominent anisotropy and heterogeneity, UD-CFRP laminate has rather poor machinability. This paper conducted orthogonal cutting tests on T700/800 high-strength UD-CFRP laminates, and investigated machining mechanism by studying cutting mechanics characteristics in cutting process, in order to provide the basis for improving their machinability. Experimental results showed that the cutting force and specific cutting energy of T700 and T800 UD-CFRP laminates were all significantly directional; and at the conditions of same fiber orientation angle, greater cutting force and specific cutting energy were found for cutting of T800 UD-CFRP than that for cutting of T700. As the cutting speed increased, main cutting force and radial thrust force both decreased and specific energy map shrank rapidly, indicating reduced cutting energy consumption, and improved machinability of CFRPs. With the increase in cutting depth, main cutting force and radial thrust force both exhibited increasing trends, but specific cutting energy map narrowed, indicating improved machinability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:高强度单向碳纤维增强聚合物(UD-CFRP)已逐渐成为飞机主要承重结构部件的一种主要材料,并且相关的机械加工需求也在不断增加。由于其显着的各向异性和异质性,UD-CFRP层压板的可加工性相当差。本文对T700 / 800高强度UD-CFRP层压板进行了正交切削试验,通过研究切削过程中的切削力学特性,研究了切削机理,为提高切削性能提供了依据。实验结果表明,T700和T800 UD-CFRP层压板的切割力和比切割能量均具有明显的方向性。在相同的纤维取向角条件下,T800 UD-CFRP的切削力和比切削力要大。随着切削速度的增加,主切削力和径向推力均减小,比能量图迅速缩小,这表明切削能量消耗减少,CFRP的切削性能得到改善。随着切削深度的增加,主切削力和径向推力都呈现出增加的趋势,但是比切削能图变窄,表明可加工性提高。 (C)2015 Elsevier Ltd.保留所有权利。

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