首页> 外文期刊>Transactions of the Indian Institute of Metals >Mechanical Properties of a Ni-Cr-Mo Steel Subjected to Room Temperature Carburizing Using Surface Mechano-Chemical Carburizing Treatment (SMCT)
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Mechanical Properties of a Ni-Cr-Mo Steel Subjected to Room Temperature Carburizing Using Surface Mechano-Chemical Carburizing Treatment (SMCT)

机译:利用表面机械化学渗碳处理(SMCT)进行室温渗碳的Ni-Cr-Mo钢的力学性能(SMCT)

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摘要

Surface mechano-chemical carburizing treatment (SMCT) is a modified version of surface mechanical attrition treatment and it is one of the cutting-edge technologies for producing hard nano-crystalline surface in metallic materials. In the present study, a case carburized surface layer is achieved in 1.75 Ni-Cr-Mo steel at room temperature using SMCT. Activated charcoal powder is continuously fed during the process so as to achieve the carbon diffusion into the surface layer. The SMCT process has been carried out for different periods say 15, 30, 45 and 60 min respectively. The microstructure and surface chemical composition is investigated by using TEM and XRF analysis. The mechanical properties such as yield strength (YS), ultimate tensile strength (UTS), fracture toughness and surface hardness of SMCT samples have been investigated using universal testing machine, Plain strain fracture toughness test and Microvickers hardness test respectively. The surface carbon content has been found to increase linearly and grain size reduces continuously with processing time. A 60 min SMCT samples reveal 0.8% C and about 10 nm grains over the surface. The SMCT samples show significant improvement in mechanical properties. The surface hardness increases from 180 HV0.1 to similar to 878 HV0.1 by 60 min of treatment. About 55% increment in the YS and 30% increment in UTS is achieved by 60 min of SMCT. It is also interesting to note that the fracture toughness of the samples enhances from 24 to 47 MPa after 60 min of SMCT.
机译:表面机械化学渗碳处理(SMCT)是一种改进的表面机械磨损处理版本,它是用于在金属材料中生产硬纳米结晶表面的尖端技术之一。在本研究中,使用SMCT在室温下在1.75 Ni-Cr-Mo钢中实现渗碳表面层。在该过程期间连续进料活性炭粉末,以使碳扩散到表面层中。已经为不同的时期进行了SMCT过程,分别为15,30,45和60分钟。通过使用TEM和XRF分析研究了微观结构和表面化学组合物。采用通用试验机,普通菌株断裂韧性试验和微孔硬度试验,研究了屈服强度(ys),极限拉伸强度(UTS),裂缝韧性和表面硬度等机械性能。已经发现表面碳含量随着处理时间连续减少线性和晶粒颗粒。 60分钟的SMCT样品在表面上显示0.8%C和约10nm颗粒。 SMCT样品显示出机械性能的显着改善。表面硬度从180 HV0.1增加到类似于878 HV0.1的60分钟处理。 ys中的约55%递增约55%,通过60分钟的SMCT实现了UTS中的30%。值得注意的是,样品的断裂韧性在SMCT 60分钟后的24至47MPa可增强。

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