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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigations into wear and galling mechanism of aluminium alloy-tool steel tribopair at different temperatures
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Investigations into wear and galling mechanism of aluminium alloy-tool steel tribopair at different temperatures

机译:不同温度下铝合金工具钢摩擦副的磨损和磨损机理研究

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摘要

Aluminium alloys show poor formability at room temperature, and the production of complex components requires a series of high temperature forming processes, such as warm and hot forging, extrusion and hot sheet metal forming. Forming aluminium in these conditions subjects the tools to severe adhesive wear and galling, leading to increased energy needs, shorter tool life, lower part quality and increased cost. In this work, the wear mechanisms generated by aluminium alloys on forming tools have been studied by means of linear reciprocating sliding tests. Aluminium alloy AA2017 balls were slid against DIN 1.2344 (AISI H13) tool steel samples with various surface finishes at temperatures up to 450℃. The main results show that the observed wear mechanisms are extremely dependent on the system temperature, ranging from pure abrasive wear to formation of layers of compacted aluminium debris and gross aluminium transfer in the form of lumps. On the other hand, tool surface finish has a limited effect on gross material transfer, but does affect the material transfer micromechanisms.
机译:铝合金在室温下表现出较差的成形性,复杂零件的生产需要一系列高温成形工艺,例如热锻和热锻,挤压和热钣金成形。在这些条件下成型铝会使工具遭受严重的粘合剂磨损和磨损,从而导致能源需求增加,工具寿命缩短,零件质量降低和成本增加。在这项工作中,已经通过线性往复滑动试验研究了铝合金在成形工具上产生的磨损机理。将AA2017铝合金球相对于DIN 1.2344(AISI H13)工具钢样品滑动,并在高达450℃的温度下进行各种表面处理。主要结果表明,观察到的磨损机理与系统温度极为相关,从纯磨料磨损到压实铝屑层的形成以及块状铝的总铝转移。另一方面,工具表面光洁度对总的材料转移影响有限,但确实会影响材料转移的微观机制。

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