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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental study on micromachining of CFRP/Ti stacks using micro ultrasonic machining process
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Experimental study on micromachining of CFRP/Ti stacks using micro ultrasonic machining process

机译:用微型超声加工过程对CFRP / TI堆叠微机械线的试验研究

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摘要

Carbon fiber-reinforced plastic (CFRP) composite is one of the most sought after material owing to its superior physical and mechanical properties such as high durability and high strength-to-weight ratio. CFRP composites are often used by stacking up with titanium (Ti) to form multi-layered material stacks for applications involving extreme mechanical loads such as in aerospace and automotive industries. However, the machining of CFRP/Ti multi stacks is quite complex and challenging task since both materials are difficult-to-machine materials and show completely different machinability properties. The challenge is further escalated when there is a need to machine the CFRP/Ti stacks at micron level. Several problems arise during the machining process due to the non-homogeneous structure and anisotropic and abrasive properties of composites. Traditional methods of micromachining the CFRP/Ti stacks result in several issues including high cutting force and high tool wear, composite delamination, large groove depth in composites, and poor surface quality. Ultrasonic machining (USM) process has been successfully used to machine titanium, CFRP, and CFRP/Ti stacks at macro scale. Micro ultrasonic machining is a downsized version of macro USM process that is developed to machine hard and brittle materials such as quartz, glass, and ceramics at micron scale. This research explores the possibility of using the micro USM process to conduct micromachining of CFRP/Ti multi stacks. The effects of various process parameters including abrasive grit size, tool material and type on the material removal rate and surface quality are studied. The study found that micro ultrasonic machining process is capable of successfully micromachining CFRP/Ti stacks. In comparison with conventional processes, micromachining of CFRP/Ti stacks using micro ultrasonic machining process resulted almost zero CFRP delamination, minimal variation in CFRP and Ti hole sizes, and longer tool life.
机译:碳纤维增强塑料(CFRP)复合材料是由于其优异的物理和机械性能,例如高耐久性和高强度重量比,是最追求的材料之一。 CFRP复合材料通常通过堆叠钛(TI)来形成用于涉及涉及极端机械负载的多层材料堆叠,例如航空航天和汽车行业。然而,CFRP / TI多叠层的加工是非常复杂和具有挑战性的任务,因为两种材料都是难以机械的材料,并且显示出完全不同的可加工性能。当需要在微米水平下机器CFRP / TI堆叠时,挑战进一步升级。由于非均匀结构和复合材料的各向异性和磨料性能,在加工过程中出现了几个问题。传统的微加工方法CFRP / TI堆叠产生了几个问题,包括高切割力和高刀具磨损,复合材料的复合材料,沟槽深度大,表面质量差。超声波加工(USM)工艺已成功地用于在宏观尺度上加工钛,CFRP和CFRP / TI堆栈。微型超声波加工是一种宏观USM工艺的缩小版,用于在微米级的机器硬度和脆性材料(如石英,玻璃和陶瓷)开发。本研究探讨了使用微USM过程进行CFRP / TI多堆叠微机械的可能性。研究了各种工艺参数的效果,包括磨料砂砾尺寸,工具材料和型在材料去除率和表面质量上。该研究发现,微型超声加工过程能够成功地进行CFRP / TI堆叠。与常规方法相比,使用微型超声加工过程的CFRP / Ti堆叠的微机械导致几乎为零CFRP分层,CFRP和Ti孔尺寸的最小变化,更长的刀具寿命。

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