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首页> 外文期刊>Metals and Materials International >Effect of Molybdenum and Chromium on Hardenability of Low-Carbon Boron-Added Steels
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Effect of Molybdenum and Chromium on Hardenability of Low-Carbon Boron-Added Steels

机译:钼和铬对低碳硼添加钢淬透性的影响

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摘要

The hardenability of low-carbon boron-added steels containing molybdenum or chromium was studied using dilatometry, thermodynamic calculations, and secondary ion mass spectroscopy (SIMS). The combined addition of boron and molybdenum was found to be more effective than that of boron and chromium in enhancing the hardenability of boron-added steels. In particular, the addition of 0.5 wt. percent molybdenum to the boron-added steel almost completely suppressed the formation of polygonal ferrite even at a slow cooling rate of 0.5 deg C/s. The synergistic effect of the combined addition of molybdenum and boron is thought to be due to both the suppression of M_(23)(C,B)_6 precipitation resulting from the deterioration of phase stability and the reduction of carbon diffusivity by the molybdenum addition.
机译:使用膨胀法,热力学计算和二次离子质谱(SIMS)研究了含钼或铬的低碳硼添加钢的淬透性。发现在增加添加硼的钢的淬透性方面,硼和钼的组合添加比硼和铬的添加更有效。特别地,添加0.5wt。%。即使在0.5℃/ s的缓慢冷却速率下,钼对含硼钢的百分含量钼几乎完全抑制了多边形铁素体的形成。钼和硼的组合添加的协同作用被认为是由于相稳定性的降低和钼添加引起的碳扩散率降低而抑制了M_(23)(C,B)_6沉淀。

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