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Effects of Tempering Temperature on the Microstructure and Mechanical Properties of Low Alloy Ultra-High Strength 45CrNiSiMnMoVA Steel

机译:回火温度对低合金超高强度的微观结构和力学性能的影响45crnisimnmova钢

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The effects of different tempering temperatures on the microstructure evolution and mechanical properties of the new low-alloy ultra-high-strength 45CrNiSiMnMoVA steel after quenching were investigated by mechanical property tests, SEM and TEM. The results show that a complex phase organization consisting of martensite/ lower bainite of the tested steel after treated at 920°C×1h+(320~380)°C×4h was obtained, and the partition interface of the lath martensite bundle became blurred from clear with the increase of tempering temperature; In the proposed tempering temperature range, the toughness of the alloy has become better while maintain the strength without decreasing basically, and when the tempering temperature is 350°C, the alloy has the optimal comprehensive mechanical properties of strength, plasticity and toughness together. The analysis concluded that the strong toughening of the tested steel was mainly attributed to the coupling effect of the alloying elements in the steel and the composite toughening of the nano-precipitated phases, among other aspects.
机译:用机械性能试验,SEM和TEM研究了不同回火温度对新的低合金超高强度45crnisimnmova钢的微观结构演化和机械性能的影响。结果表明,在920°C×1H +(320〜380)℃×4H处处理后,由经过测试钢的马氏体/下贝氏体组成的复杂相组织,并且Lath Martensite束的分区界面变得模糊随着回火温度的增加而清晰;在提出的回火温度范围内,合金的韧性已经好转,同时保持强度而不会降低而基本上,当回火温度为350℃时,合金具有强度,可塑性和韧性的最佳综合力学性能。该分析得出结论,测试钢的强增韧主要归因于钢中合金元素的耦合效应和纳米沉淀相的复合阶段的复合增韧。

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