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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Investigation of structural and tribological properties o layers formed in SAE 5140 steel coated with boride powders
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Investigation of structural and tribological properties o layers formed in SAE 5140 steel coated with boride powders

机译:用硼化粉末形成的SAE 5140钢形成结构和摩擦学特性O层

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摘要

In this study, the surface of SAE 5140 steel was coated with ferroboron using new powder bonding agent (Baybora-1) for various bonding time at 950 degrees C. The chemical composition and morphology of the phases formed in the internal structure of the bonded samples were examined by XRD, optical microscope and SEM, respectively. In addition, the mechanical properties of the boride layers formed were determined by the measurements of the subsurface hardness. In order to determine the tribological behaviour, these samples were subjected to wear testing using alumina ceramic abrasive powder at different loads. It was observed that the internal structure of unborided samples is generally formed by ferrite and pearlite phases. It has been determined that the boride layer having two different chemical compositions is formed as a result of the bonding processes made for different periods and the boride layer thickness increases with increasing bonding time. Sub-surface hardness measurements showed that three different zones were formed under the surface. In addition, the average surface hardness value of the SEA 5140 steel is 367 +/- 8.2 HV0.1, while it increased up to 1997 +/- 17.2 HV0.1 as the result of the bonding. As a result of the wear testing carried out, it was observed that the abrasion was very dependent on the phases formed in the boride layer and the most suitable balding time was determined. It has been determined that all bonded samples increase the abrasion resistance of the raw steel by about 4 times.
机译:在该研究中,使用新的粉末粘合剂(Baybora-1)在950℃下使用新的粉末粘合剂(Baybora-1)涂覆SAE 5140钢的表面。在键合样品的内部结构中形成的相阶段的化学成分和形态通过XRD,光学显微镜和SEM检查。另外,通过地下硬度的测量确定形成的硼化物层的机械性能。为了确定摩擦学行为,在不同负载下使用氧化铝陶瓷磨料粉末进行这些样品进行磨损测试。观察到未硼化样品的内部结构通常由铁氧体和珠光体相形成。已经确定具有两种不同化学组合物的硼化物层作为针对不同时段制造的粘接工艺而形成的硼化物层,并且硼化物层厚度随着粘接时间的增加而增加。亚表面硬度测量表明,在表面下形成了三种不同的区域。此外,海5140钢的平均表面硬度值为367 +/- 8.2 HV0.1,而键合的结果高达1997年+/- 17.2 HV0.1。由于进行了磨损测试,观察到磨损非常依赖于形成在硼化物层中形成的相,并且确定最合适的烫伤时间。已经确定所有粘合样品将原料钢的耐磨性提高约4次。

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