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首页> 外文期刊>Materials transactions >Evaluation of the Gas Nitriding of Fine Grained AISI 4135 Steel Treated with Fine Particle Peening and Its Effect on the Tribological Properties
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Evaluation of the Gas Nitriding of Fine Grained AISI 4135 Steel Treated with Fine Particle Peening and Its Effect on the Tribological Properties

机译:细粒喷丸处理的细晶AISI 4135钢的气体渗氮评价及其对摩擦学性能的影响

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摘要

The effect of fine particle peening (FPP) on the gas nitriding of AISI 4135 chromium-molybdenum steel was investigated. Surface microstructures of nitrided specimens pre-treated with FPP were characterized using scanning electron microscopy (SEM), X-ray diffraction (XRD) and glow discharge optical emission spectroscopy (GDOES). The nitrided layer formed on the fine grained specimen treated with FPP was thicker than that on the nitrided-only specimen, because the fine grains created by FPP accelerate the formation of iron nitride during the nitriding process. Furthermore, FPP reduces the concentration of chromium near the nitrided surface, which suppresses the formation of cracks and pores in the compound layer. Therefore, a nitrided specimen pre-treated with FPP has higher hardness than a nitrided-only specimen. Reciprocating ball-on-disk friction tests were performed at room temperature to investigate the tribological properties of the nitrided AISI 4135 steel. The nitrided specimen pre-treated with FPP had a lower friction coefficient and exhibited less wear loss due to the presence of a thick compound layer without cracks and pores. Therefore, a hybrid surface modification that employs FPP as a processing step prior to gas nitriding is effective for improving the tribological properties of AISI 4135 steel.
机译:研究了微粒喷丸(FPP)对AISI 4135铬钼钢气体氮化的影响。使用扫描电子显微镜(SEM),X射线衍射(XRD)和辉光放电光发射光谱(GDOES)对经过FPP预处理的氮化试样的表面微观结构进行了表征。 FPP处理过的细颗粒试样上形成的氮化层比仅氮化试样上的氮化层厚,这是因为FPP产生的细颗粒在氮化过程中会加速氮化铁的形成。此外,FPP降低了氮化表面附近的铬浓度,这抑制了化合物层中裂纹和孔的形成。因此,用FPP预处理的氮化试样比仅氮化试样具有更高的硬度。在室温下进行往复的圆盘摩擦试验,以研究氮化的AISI 4135钢的摩擦学性能。用FPP预处理的氮化试样具有较低的摩擦系数,并且由于存在厚厚的化合物层而没有裂纹和孔洞,因此磨损损失较小。因此,在气体氮化之前采用FPP作为处理步骤的混合表面改性对于改善AISI 4135钢的摩擦学性能是有效的。

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