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Mechanisms and evaluation of the influence of cutting temperature on the damage of CFRP by helical milling

机译:切削温度对CFRP损伤影响的机制和评价

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摘要

The quality of holes machined in carbon fibre reinforced plastic is vital to the strength of CFRP/Ti stacks. In this study, the influence of cutting temperature upon hole damage of CFRP in CFRP/Ti stacks under helical milling was compared with and without the presence of an underlying Ti. The cutting forces, exit quality, wall surface and subsurface quality of CFRP hole were analysed. And proposing a method to evaluate subsurface damage, and combined with the tensile test to study the effect of subsurface damage on the mechanical properties of CFRP. The results suggest that titanium alloy slightly exerts an effect on the cutting force and exit and wall mass of CFRP holes, yet dramatically affects their subsurface mass. High cutting temperatures may degrade the performance of the CFRP resin matrix, which may cause further subsurface damage closest to the hole exit. The proposed method is used to evaluate subsurface damage. It was most serious in the fibre layer near the hole exit and gradually decreased with distance from the exit. The results of this study will help improve the machining quality of CFRP/Ti stacks.
机译:碳纤维增强塑料加工孔的质量对CFRP/Ti叠层的强度至关重要。在这项研究中,比较了切削温度对螺旋铣削下CFRP/Ti叠层中CFRP孔损伤的影响,以及是否存在底层Ti。分析了碳纤维布孔的切削力、出口质量、壁面质量和次表面质量。提出了一种评价碳纤维布表面损伤的方法,并结合拉伸试验研究了表面损伤对碳纤维布力学性能的影响。结果表明,钛合金对碳纤维布孔的切削力、出口质量和壁厚影响较小,但对孔的次表面质量影响较大。高切削温度可能会降低CFRP树脂基体的性能,这可能会导致离孔出口最近的进一步地下损伤。该方法用于评估地下损伤。在孔出口附近的纤维层中最严重,并随着距离出口的距离逐渐减小。本研究结果将有助于提高碳纤维增强塑料/钛合金叠层的加工质量。

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