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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Milling hole force of Quartz fiber-reinforced polyimide composite in cryogenic cooling
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Milling hole force of Quartz fiber-reinforced polyimide composite in cryogenic cooling

机译:石英纤维增强聚酰亚胺复合材料在低温冷却中铣削孔力

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摘要

The machinability of composites had close relationship with cutting force. A milling hole force model of quartz fiber-reinforced polyimide composites (QFRP) was constructed considering cutting microzone temperature. A series of cryogenic milling hole testes were carried out through a liquid nitrogen inner cooling cutting equipment. The surface morphology and cutting force performance at hole entry and exit were analyzed in detail. The results show that helical milling force is mainly related to the axial feed, tangential feed, and mechanical properties of composites in different temperatures and changed slowly with spindle speed. The influence of axial feed on force is larger than that of tangential one. Meanwhile the large cutting force at hole entry and the little force at hole exit have the main reasons of the crimping and delamination defects. After cryogenic is intervened, the milling force is significantly improved, and the defects are effectively restrained. Especially, the hole entry and exit accuracies can be reached 0.03 mm, and there are no low-speed tearing and high-speed ablation defects. Furthermore, the change of force is caused by the change of properties of matrix, and composite at low temperature is the main reason to restrain defects. The cooling medium can avoid the phenomenon of increasing cutting force caused by tool expansion, as well as restraining the ablative defect.
机译:复合材料的可加工曾与切削力密切的关系。石英纤维增强聚酰亚胺复合物(QFRP)的铣削孔力模型构建考虑削减微区的温度。一系列低温研磨孔睾丸是通过液氮冷却内切割设备进行的。在孔的入口和出口的表面形态和切削力性能详细进行了分析。结果表明,螺旋研磨力主要涉及轴向进料,进料切向,并且在不同的温度下复合材料的机械性能,并与主轴转速慢慢改变。上力的轴向进料的影响比切向一个的大。同时在孔进入大切削力和孔出口的小力有压接和分层缺陷的主要原因。低温被干预后,研磨力显著提高,缺陷有效地抑制。特别地,孔的入口和出口的精度可以达到0.03毫米,并且没有低速撕裂和高速消融缺陷。此外,力的变化是由基体的特性的变化引起的,和复合在低温下是抑制缺陷的主要原因。冷却介质可避免增加引起的扩张工具切割力,以及抑制烧蚀缺陷的现象。

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