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Application of Pin-On-Disc Techniques for the Study of Tribological Interferences in the Dry Machining of A92024-T3 (Al–Cu) Alloys

机译:盘上圆盘技术在A92024-T3(Al-Cu)合金干式加工中的摩擦干扰研究中的应用

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摘要

One of the main criteria for the establishment of the performance of a forming process by material removal is based on cutting tool wear. Wear is usually caused by different mechanisms, however, only one is usually considered as predominant or the controller of the process. This experimental research is focused on the application of Pin-on-Disc wear tests, in which the tribological interference between UNS -T3 Aluminum–Copper alloy and tungsten carbide (WC–Co) has been studied. The main objective of this study is focused on the determination of the predominant wear mechanisms involved in the process, as well as the characterization of the sliding and friction effects by using SEM and Energy Dispersion Spectroscopy (EDS) techniques, as applied to WC–Co (cutting tool material)/Al (workpiece material) which are widely used in the aerospace industry. Performed analysis prove the appearance of abrasive wear mechanisms prior to adhesion. This fact promotes adhesion mechanisms in several stages because of the surface quality deterioration, presenting different alloy composition in the form of a Built-Up Layer (BUL)/Built-Up Edge (BUE).
机译:通过去除材料来确定成形过程的性能的主要标准之一是基于切削刀具的磨损。磨损通常是由不同的机制引起的,但是,通常只有一种被认为是该过程的主要控制者。这项实验研究的重点是针盘式磨损试验的应用,其中研究了UNS -T3铝铜合金与碳化钨(WC-Co)之间的摩擦干扰。这项研究的主要目标集中在确定过程中涉及的主要磨损机理,以及通过使用应用于WC–Co的SEM和能量色散谱(EDS)技术表征滑动和摩擦效应(切削刀具材料)/ Al(工件材料),在航空航天工业中广泛使用。进行的分析证明了粘附前的磨料磨损机理。由于表面质量的恶化,这一事实在几个阶段促进了粘合机理,以堆积层(BUL)/堆积边缘(BUE)的形式呈现出不同的合金成分。

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