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Study of tapping process of carbon fiber reinforced plastic composites/AA7075 stacks

机译:碳纤维增强塑料复合材料的攻丝过程研究/ AA7075堆栈

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The present investigation aims at studying the tapping process of a three-layer stack constituted by two CFRP layers and a core plate in AA7075 aluminum alloy. The CFRP laminates were obtained by a pre-impregnated woven sample made up of T700 carbon fibers and a thermoset epoxy matrix. Tapping experiments were performed on a 5-axis machining center instrumented with a dynamometer to measure thrust force generated during process. A high-speed steel tool, coated with nanocomposite TiAIN, was used. According to the tool manufacturer recommendations, rotational speed and feed rate were 800 rpm and 1000 mm/min, respectively. Similar thrust force time history responses were obtained by tapping different holes, even though the vertical force increases with number of threaded holes. Furthermore, a quantitative evaluation of delamination at the periphery of entry holes was carried out. The delamination at the entry hole strongly increases with number of threaded holes.
机译:本研究旨在研究由两个CFRP层和AA7075铝合金中的两个CFRP层和芯板构成的三层堆叠的敲击过程。 CFRP层压板是通过由T700碳纤维和热固性环氧基质组成的预浸渍的织织样品获得的。 在用测功机仪表中进行攻丝实验,以测量器测量器,以测量过程中产生的推力。 使用涂有纳米复合型Tiain的高速钢工具。 根据工具制造商的建议,转速和进料速率分别为800 rpm和1000毫米/分钟。 即使垂直力随着螺纹孔的数量增加,也可以通过点击不同的孔获得类似的推力时间历史响应。 此外,进行了进入孔周边分层的定量评估。 进入孔的分层随着螺纹孔的数量强烈增加。

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