首页> 外文期刊>International journal of materials & product technology >Performance and wear of coated carbide drill in machining of carbon fibre reinforced composite/titanium stack
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Performance and wear of coated carbide drill in machining of carbon fibre reinforced composite/titanium stack

机译:涂层硬质合金钻头在碳纤维增强复合材料/钛堆加工中的性能和磨损

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摘要

In this research we investigate the performance of drilling process in carbon fibre reinforced composite (CFC) material, titanium alloy and the hybrid stack of these two materials, using coated carbide drill bit. We study the effect of the process parameters such as the feed rate and speed on the induced forces and torques, also on the wear of drill and surface roughness of the holes. In the composite material the percentage of surface damage in both drilling CFC on its own and drilling in stack form is estimated. Also, the effect of worn drill on the surface damage is identified. In the titanium, the burr formation in stack and non-stack form is investigated. The wear of the drill results in increased forces and torques required for drilling. This increases the surface delaminations substantially at the entrance in drilling of CFC. However, the surface roughness of the holes reduces with the wear of the drill in CFC drilling. Also, the surface delamination and surface roughness of the holes in the CFC whilst drilled in hybrid form reduces significantly. This is despite the increase of the forces and torques required in drilling CFC in stack form.
机译:在这项研究中,我们研究了使用涂层硬质合金钻头在碳纤维增强复合材料(CFC)材料,钛合金以及这两种材料的混合堆垛中的钻孔工艺性能。我们研究了进给速度和速度等工艺参数对感应力和扭矩的影响,还对钻头的磨损和孔的表面粗糙度产生了影响。在复合材料中,估计了单独钻孔CFC和以堆叠形式钻孔时表面损伤的百分比。同样,可以识别出磨损的钻头对表面损伤的影响。在钛中,研究了堆积和非堆积形式的毛刺形成。钻头的磨损导致钻孔所需的力和扭矩增加。这实质上增加了在CFC钻孔过程中入口处的表面分层。但是,孔的表面粗糙度会随着CFC钻孔中钻头的磨损而降低。同样,以混合形式钻出时,CFC中孔的表面分层和表面粗糙度也会大大降低。尽管在堆叠形式的CFC钻孔中所需的力和扭矩有所增加,但仍然如此。

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