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Formation of Fe–Al Intermetallic Compound Layer by AIH-FPP and its Effect on Tribological Properties of Stainless Steel

机译:AIH-FPP形成Fe-Al金属间化合物层及其对不锈钢摩擦学性质的影响

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In order to increase the surface hardness and improve the tribological properties of stainless steel, Fe–Al intermetallic compound layers were created by atmospheric-controlled induction-heating fine particle peening (AIH-FPP). The surface microstructure of the stainless steel treated with AIH-FPP was characterized by scanning electron microscopy, energy dispersive X-ray spectroscopy, X-ray diffraction, and micro-Vickers hardness testing. In addition, the tribological properties were investigated by reciprocating ball-on-disk wear tests. When high-speed steel particles coated with thin aluminum layers were used as the shot particles, Fe–Al intermetallic compound layers were formed at the surfaces of the stainless steel with increased heating time during AIH-FPP. This is because aluminum was transferred from the shot particles, and the temperature at the treated surface increased as a result of a combustion synthesis reaction. When the heating temperature after FPP was increased, the transferred aluminum and nitrogen in the atmosphere reacted, which resulted in the formation of aluminum nitrides in addition to Fe–Al intermetallic compounds. The tribological properties of the stainless steel were improved by AIH-FPP since high-hardness layers were created. The results indicate that the formation of an Fe–Al intermetallic compound layer with high hardness by AIH-FPP is effective for modifying the tribological properties of the stainless steel within a relatively short span of time.
机译:为了提高表面硬度并改善不锈钢的摩擦学性质,通过大气控制的感应加热微粒喷丸(AIH-FPP)产生Fe-Al金属间化合物层。通过扫描电子显微镜,能量分散X射线光谱,X射线衍射和微维氏硬度试验,表征用AiH-FPP处理的不锈钢表面微观结构。此外,通过往复式磁盘磨损试验来研究摩擦学性质。当使用涂有薄铝层的高速钢颗粒作为喷丸颗粒时,在不锈钢的表面处形成Fe-Al金属间化合物层,在AiH-FPP期间增加加热时间。这是因为铝从喷丸颗粒转移,并且由于燃烧合成反应而导致处理表面的温度增加。当加热温度增加时,在大气中的转移铝和氮气反应,除了Fe-Al金属间化合物外,还导致氮化铝。由于产生高硬度层,因此通过AIH-FPP改善了不锈钢的摩擦学性质。结果表明,通过AIH-FPP形成具有高硬度的Fe-Al金属间化合物层是有效地改变不锈钢的摩擦学特性在相对短的时间内。

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