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首页> 外文期刊>Materials Science >Influence of the Technology of Production of Composites Based on the Max Phases of Titanium on the Process of Wear in Contact with Copper. Part 1. Two-Stage Technology
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Influence of the Technology of Production of Composites Based on the Max Phases of Titanium on the Process of Wear in Contact with Copper. Part 1. Two-Stage Technology

机译:基于钛的最大阶段的复合材料生产技术对铜磨损过程的影响。 第1.两阶段技术

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摘要

We study the tribological properties of materials used as electrocontact inserts of the tram pantographs in couples with M1copper of the contact wires of power electric circuits. As promising materials for the pantograph insert, we considered the composites based on the MAX phases of Ti3AlC2, (Ti, Nb)(3)AlC2, and Ti2AlC and also on TiC and Al2O3. The highest wear resistance was detected for composites with a content of the MAX phase of structural modification 312 equal to 85-95%. The wear of these materials after 5 km of their operation under a contact stress of 0.25 MPa (which corresponds to the operating conditions) turns out to be 20 times lower than for the aluminum alloy used in the Ukraine for the production of pantograph inserts. The wear resistance of M1 copper also depends on the phase constitution of the material of inserts: in couples with composites based on 95% Ti3AlC2 + 5% TiC or 85% (Ti, Nb)(3)AlC2 + 10% TiC + 5% Al2O3, it was 4-5 times higher than in contact with aluminum alloy.
机译:我们研究了用作电力电路的接触线的M1Copper的电阻器电阻器的电阻插入物的材料的摩擦学特性。作为受诱导诱导仪插入的有希望的材料,我们认为基于Ti3AlC2,(Ti,Nb)(3)ALC2和Ti2Alc以及TiC和Al2O3的最大相的复合材料。对于具有结构改性的最大相312的最大相的复合材料,检测到最高耐磨性312等于85-95%。在0.25MPa的接触应力下操作5公里(对应于操作条件)的操作后,这些材料在0.25MPa(其对应)下的磨损比乌克兰用于生产Pantograin插入物的铝合金的20倍。 M1铜的耐磨性还取决于插入物材料的相位构成:在基于95%Ti3Alc2 + 5%Tic或85%(Ti,Nb)(3)Alc2 + 10%Tic + 5%的基础上的耦合Al2O3,比与铝合金接触高4-5倍。

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