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首页> 外文期刊>Journal of Manufacturing Processes >Machinability and surface integrity of adhesively bonded Ti/CFRP/Ti hybrid composite laminates under dry and cryogenic conditions
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Machinability and surface integrity of adhesively bonded Ti/CFRP/Ti hybrid composite laminates under dry and cryogenic conditions

机译:干燥和低温条件下粘粘合的Ti / CFRP / Ti杂化复合层压材料的可加工性和表面完整性

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摘要

The current work compares the machinability of conventional drilling of hybrid titanium/carbon fiber reinforced plastics/titanium (Ti/CFRP/Ti) stack laminates in a single shot under dry and cryogenic conditions. Damage at metal-composite interface (MCI), thrust force, torque, burr height, surface roughness, average hole size, circularity error, and perpendicularity error are considered as experimental outcomes to investigate the influence of cryogenic cooling on the machinability of Ti/CFRP/Ti stacks. The experimental outcomes indicate that the hole quality significantly improved under cryogenic condition compared to dry drilling for the range of drilling parameters chosen. However, cryogenic cutting yields an increased thrust force due to increase in the hardness of Ti sheet at low temperatures. Scanning acoustic microscopy (SAM) was capable of capturing damage at MCI. Scanning electron microscope (SEM) and micro-computed tomography (mu-CT) are also used to assess the drilling induced damages on hole wall surface under both (dry and cryogenic) conditions.
机译:目前的工作比较了在干燥和低温条件下单次射击中杂交钛/碳纤维增强塑料/钛(Ti / CFRP / Ti)堆叠层压板的常规钻井的可加工性。金属复合界面(MCI),推力,扭矩,毛刺高度,表面粗糙度,平均孔尺寸,圆形误差和垂直误差损坏被认为是研究低温冷却对Ti / CFRP的可加工性的影响的实验结果/ ti堆栈。实验结果表明,与干燥的钻孔相比,在低温条件下明显改善的空穴质量与选择的钻孔参数的干燥钻孔相比。然而,低温切割导致推力增加增加,由于在低温下的Ti片状的硬度增加。扫描声学显微镜(SAM)能够在MCI捕获损坏。扫描电子显微镜(SEM)和微计算断层扫描(MU-CT)还用于评估钻孔造成的孔壁表面下(干燥和低温)条件的损伤。

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