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High Temperature Wear Characteristics of a New Hot Work Die Steel CH95

机译:新型热作模具钢CH95的高温磨损特性

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High temperature wear characteristics of a new hot work die steel CH95 doped with a small amount of rare earth (Re) and boron (B) have been investigated and compared with those of conventional die steel H11 at a series of temperatures and- loads. Worn surfaces of CH95 steel and H11 steel were analyzed with a scanning electron microscope. It is found that high temperature mechanical properties of CH95 steel are much better than those of H11 steel, The oxide layer formed on the worn surface plays an important, role in wear resistance at high temperature. When the load is less than, 63 N, the surface oxide layer keeps integrated and the effect of load on high temperature wear is small. When the load is higher than 63 N, the supporting ability of matrix to the oxide layer decreases with the increase of load, which results in an increase of wear rate. Compared with H11 steel, the wear resistance of CH95 steel is much better and the worn surface of CH95 steel is smoother. It is easier for CH95 steel to form a compact and integrated surface oxide layer at high temperature than for H11 steel, which protects the worn surface and reduces wear.
机译:已经研究了掺有少量稀土(Re)和硼(B)的新型热作模具钢CH95的高温磨损特性,并在一系列温度和载荷下将其与常规模具钢H11的高温磨损特性进行了比较。用扫描电子显微镜分析CH95钢和H11钢的磨损表面。发现CH95钢的高温机械性能比H11钢好得多。在磨损表面上形成的氧化层在高温下的耐磨性中起着重要的作用。当载荷小于63N时,表面氧化物层保持一体,并且载荷对高温磨损的影响小。当负载高于63 N时,基体对氧化物层的支撑能力随着负载的增加而降低,这导致磨损率的增加。与H11钢相比,CH95钢的耐磨性要好得多,并且CH95钢的磨损表面更光滑。 CH95钢比H11钢更容易在高温下形成致密且完整的表面氧化物层,从而保护了磨损的表面并减少了磨损。

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