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首页> 外文期刊>Journal of Iron and Steel Research International >Effect of Alloying Elements on Thermal Wear of Cast Hot-Forging Die Steels
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Effect of Alloying Elements on Thermal Wear of Cast Hot-Forging Die Steels

机译:合金元素对铸造热锻模具钢热磨损的影响

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摘要

The effect of main alloying elements on thermal wear of cast hot-forging die steels was studied. The wear mechanism was discussed. The results show that alloying elements have significant influences on the thermal wear of cast hot-forging die steels. The wear rates decrease with an increase in chromium content from 3 percent to 4 percent and molybdenum content from 2 percent to 3 percent, respectively. With further increase of chromium and molybdenum contents, chromium slightly reduces the wear resistance and molybdenum severely deteriorates the wear resistance with high wear rate. Lower vanadium/carbon ratio (1. 5 - 2. 5) leads to a lower wear resistance with higher wear rate. With an increase in vanadium/carbon ratio, the wear resistance of the cast steel substantially increases. When vanadium/carbon ratio is 3, the wear rate reaches the lowest value. The predominant mechanism of thermal wear of cast hot-forging die steels are oxidation wear and fatigue delamination. The Fe_2O_3 and Fe_3O_4 or lumps of brittle wear debris are formed on the wear surface.
机译:研究了主要合金元素对铸造热锻模具钢热磨损的影响。讨论了磨损机理。结果表明,合金元素对铸造热锻模具钢的热磨损有显着影响。磨损率随着铬含量从3%增加到4%和钼含量从2%增加到3%而降低。随着铬和钼含量的进一步增加,铬稍微降低了耐磨性,并且钼以高磨损率严重恶化了耐磨性。较低的钒/碳比(1.5-2. 5)导致较低的耐磨性和较高的磨损率。随着钒/碳比的增加,铸钢的耐磨性显着提高。当钒/碳比为3时,磨损率达到最低值。铸造热锻模具钢热磨损的主要机理是氧化磨损和疲劳分层。在磨损表面上形成Fe_2O_3和Fe_3O_4或块状的易碎磨屑。

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