Effect of post-boronizing heat treatment on wear behaviour and pit formation in AISI-8620 gear steel

回火 材料科学 小齿轮 冶金 硼化物 压痕硬度 微观结构 耐磨性 图层(电子) 复合材料 机械工程 机架 工程类
作者
Hakan Aydın,Vahdettin Sevim,Ahmet Demirci
出处
期刊:MP MATERIALPRUEFUNG - MP MATERIALS TESTING [De Gruyter]
卷期号:49 (4): 200-207 被引量:3
标识
DOI:10.3139/120.100770
摘要

Abstract In this study the effect of post-boronizing heat treatment on wear behaviour and pit formation on a starter motor pinion gear, made from AISI-8620 steel, was investigated. This involved using a rotary wear test, where the number of cycles at a fixed load and a fixed rotational speed were varied. Boronizing was performed on starter motor pinion gears (test specimens) in a solid medium consisting of B 4 C, SiC, KBF 4 at a temperature of 900°C for 4 h. Following boronizing, test specimens were quenched in water at room temperature from the boronizing temperature and were subsequently tempered at 180°C for 1, 2 and 3 hours. As part of this investigation, microstructure and microhardness distribution of the boride layer and wear resistance and pitting damage rate of the specimens were examined for each of the tempering heat treatments. Morphology of the boride layer and pit formation were characterized using optical microscopy. Wear and pitting evaluations were carried out using a wear test apparatus made for this purpose, which simulates the pinion and flywheel starter ring gear pair. For each wear test the number of cycles was 25×10 5 , inspected at 5×10 5 –cycle intervals. It was concluded from these examinations that tempering heat treatments following boronizing contribute to the increase of microhardness alongside the surface layer, as well as an increase in wear resistance and pitting damage.

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