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Performance of Ceramic-Metal Composites as Potential Tool Materials for Friction Stir Welding of Aluminium, Copper and Stainless Steel

机译:陶瓷 - 金属复合材料作为铝,铜和不锈钢摩擦搅拌焊接潜在工具材料

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The aim of the research was to disclose the performance of ceramic-metal composites, in particular TiC-based cermets and WC-Co hardmetals, as tool materials for friction stir welding (FSW) of aluminium alloys, stainless steels and copper. The model tests were used to study the wear of tools during cutting of metallic workpiece materials. The primary focus was on the performance and degradation mechanism of tool materials during testing under conditions simulating the FSW process, in particular the welding process temperature. Carbide composites were produced using a common press-and-sinter powder metallurgy technique. The model tests were performed on a universal lathe at the cutting speeds enabling cutting temperatures comparable the temperatures of the FSW of aluminium alloys, stainless steels and pure copper. The wear rate of tools was evaluated as the shortening of the length of the cutting tool nose tip and reaction diffusion tests were performed for better understanding of the diffusion-controlled processes during tool degradation (wear). It was concluded that cermets, in particular TiC-NiMo with 75–80 wt.% TiC, show the highest performance in tests with counterparts from aluminium alloy and austenitic stainless steel. On the other hand, in the model tests with copper workpiece, WC-Co hardmetals, in particular composites with 90–94 wt.% WC, outperform most of TiC-based cermet, including TiC-NiMo. Tools from ceramic-metal composites wear most commonly by mechanisms based on adhesion and diffusion.
机译:该研究的目的是公开了陶瓷 - 金属复合材料,特别是TIC基CERMETS和WC-CO HALLUTALS的性能,作为铝合金摩擦搅拌焊接(FSW)的工具材料,不锈钢和铜。模型试验用于研究金属工件材料中工具的磨损。主要重点是在模拟FSW工艺的条件下进行测试期间工具材料的性能和降解机制,特别是焊接过程温度。使用常用的压力机粉末冶金技术生产碳化物复合材料。在切割速度下,在铝合金,不锈钢和纯铜的FSW温度相当的切割速度下对型号的型车床进行模型试验。评估工具的磨损率为缩短切削刀头的长度,并进行反应扩散试验,以便在刀具劣化(磨损)期间更好地了解扩散控制的过程。结论是CERMETS,特别是TIC-NIMO,具有75-80重量%的TIC,表现出具有铝合金和奥氏体不锈钢的对应物的最高性能。另一方面,在用铜工件的模型试验中,WC-Co硬质制品,特别是复合材料,具有90-94重量%的复合材料。%WC,优异的大部分TIC基金属陶瓷,包括Tic-Nimo。来自陶瓷 - 金属复合材料的工具最常通过基于粘附和扩散的机制而磨损。

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