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A discussion of the effects of composition and heat treatment on the toughness of a medium carbon secondary hardening steel

机译:成分和热处理对中碳二次硬化钢的韧性影响的讨论

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In our development of a lower cost, high toughness ultra-high strength steel we have examined the effect of nickel content on the strength and toughness of a base heat whose composition was similar to that of the hot work die steel H-11. The base heat was found to have exceptionally low toughness. Nickel additions improved the toughness significantly. Possible reasons for the low toughness of this base composition include: effect of secondary carbides precipitated with the grains; the decomposition of retained austenite to sheet like inter-lath cementite upon tempering; carbide precipitation on austenite grain boundaries during the air cool from the austenitizing temperature, and the formation of upper bainite during the air cool from the austenitizing temperature. The purpose of this work has been to examine these four hypotheses. The results suggest that the primary reason for the low toughness of the heat with no nickel was due to the formation of upper bainite during the air cool from the austenitizing temperature. It was found that nickel additions improve the hardenability and suppress the formation of bainite during the air cool. As a result, the toughnesses of heats modified with nickel additions were quite high.
机译:在开发低成本,高韧性超高强度钢的过程中,我们研究了镍含量对基础热成分的强度和韧性的影响,该成分的成分与热作模具钢H-11相似。发现基础热具有极低的韧性。镍的添加显着提高了韧性。该基础组合物的低韧性的可能原因包括:晶粒中析出的二次碳化物的影响;回火时残余奥氏体分解成片状层间渗碳体;从奥氏体化温度进行空冷时,碳化物在奥氏体晶界上析出;在从奥氏体化温度进行空冷时,上贝氏体的形成。这项工作的目的是检验这四个假设。结果表明,没有镍的热的低韧性的主要原因是由于从奥氏体化温度进行空冷时上贝氏体的形成。发现在空气冷却期间添加镍改善了淬透性并抑制了贝氏体的形成。结果,通过添加镍改性的热的韧性非常高。

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