首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Performance and wear mechanisms of novel superhard diamond and boron nitride based tools in machining Al-SiCp metal matrix composite
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Performance and wear mechanisms of novel superhard diamond and boron nitride based tools in machining Al-SiCp metal matrix composite

机译:新型超硬金刚石和硼氮化硼基工具的性能与磨损机制在加工Al-SICP金属基质复合材料中

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Metal matrix composites are the desired materials in aerospace and automotive industries since they possess high specific strength. However addition of reinforcement to the matrix material brings the adverse effects of high wear rate of tool materials used in their machining. The current study addresses the issues of wear and performance of superhard tools when high speed machining cast Al-Si alloy reinforced with particulate SiC (20% vol.). A wide range of developed superhard materials was compared to the commercial PCD tools. Nano grain sized wBN-cBN, binderless cBN; B60-cBN, nano-diamond with WC binder; diamond/MAX-phase; and diamond/SiC tool materials were employed. Use of nano-diamond/WC and diamond/MAX-phase composites resulted in their rapid deterioration due to primarily adhesive pluck-out of diamond and binder phase. Diamond/SiC material exhibited slightly lower performance than the PCD, with the primary wear being the abrasive on the SiC binder phase. Machining with cBN-based tooling at lower speed lead to formation of stable build-up layer, frequently accompanied by severe seizure of tool and workpiece material. However at speed of 400 m/min the absence of such build-up layer caused rapid tool wear. Presence of chemical and diffusional wear mechanisms for diamond tooling has been confirmed through scanning and transmission electron microscopy. Archardtype model of abrasive tool wear was developed for modelling of tool deterioration for all studied tool materials. (C) 2017 Elsevier B.V. All rights reserved.
机译:金属基质复合材料是航空航天和汽车工业中所需的材料,因为它们具有高比强度。然而,向基质材料中加入加固带来了其加工中使用的工具材料的高磨损率的不利影响。目前的研究解决了超硬工具的磨损和性能问题,当用颗粒SiC加固的高速加工铸造铝合金(20%Vol.)加固。将广泛的发达的超硬材料与商业PCD工具进行比较。纳米粒大小WBN-CBN,粘合剂CBN; B60-CBN,具有WC粘合剂的纳米金刚石;钻石/最大阶段;使用钻石/ SIC工具材料。使用纳米金刚石/ Wc和金刚石/最大相复合材料导致它们的快速劣化,因为主要粘合剂拔出金刚石和粘合剂相。钻石/ SIC材料表现出比PCD略低,主要磨损是SiC粘合剂相上的研磨剂。用基于CBN的工具以较低的速度加工导致形成稳定的积聚层,经常伴随着严重扣皮的工具和工件材料。然而,在400米/分钟的速度下,没有这种积聚层引起了快速的工具磨损。通过扫描和透射电子显微镜确认了用于金刚石工具的化学和扩散磨损机构的存在。开发了磨料工具磨损模型,用于对所有研究的工具材料进行建模刀具劣化建模。 (c)2017 Elsevier B.v.保留所有权利。

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