Effects of tempering temperature on the microstructure and mechanical properties of 1500 MPa grade steel directly quenched
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摘要: 設計了一種新型1500MPa級Si-Mn-Cr-Ni-Mo多組元系低合金、超高強度工程結構鋼,研究了回火溫度對直接淬火鋼組織與力學性能的影響.結果表明,抗拉強度隨回火溫度的升高而不斷降低,屈服強度隨回火溫度升高先升高后下降,延伸率和沖擊功均隨回火溫度升高呈現先升高、后降低、再升高的變化趨勢.分析認為,回火過程組織演變的物理機制一方面包括板條馬氏體和位錯亞結構的回復、再結晶軟化過程,另一方面包括殘余奧氏體的分解與馬氏體中過飽和碳的脫溶及析出第2相的強化機制綜合作用.250℃回火后,板條馬氏體內析出ε碳化物;400℃回火后ε碳化物明顯粗化,產生回火脆性;600℃回火后部分析出相在奧氏體中形核,在馬氏體基體內長大和粗化,最終形態為近似球形,另一部分析出相在馬氏體內形核、生長,呈現橢球形或矩形.Abstract: A novel type of 1 500 MPa grade Si-Mn-Cr-Ni-Mo multi-component ultrahigh-strength low-alloy structural steel was designed.The effects of tempering temperature on the microstructure and mechanical properties of the directly-quenched steel were investigated.The results showed that with increasing tempering temperature the tensile strength continuously reduced while the yield strength gradually increased and then decreased.The elongation and impact energy firstly increased,then decreased and increased again with increasing tempering temperature.The physical mechanism of microstructural evolution during tempering includes two aspects:(1) recovery and recrystallization softening processes of lath martensite and dislocation substructure;(2) strengthening mechanism due to decomposition of retained austenite,dissolution of supersaturated carbon and precipitation of the second phase in martensite.ε-carbide precipitation was found in lath martensite after tempering at 250 ℃,and coarsened after tempering at 400 ℃,leading to temper embrittlement.After tempering at 600 ℃,part of the precipitate phase nucleated in austenite,grew up and coarsened in martensite,eventually showed quasi-spherical shape,the other part of the precipitate nucleated and grew up in martensite,and appeared ellipsoidal or rectangular.
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Key words:
- high strength steel /
- tempering /
- martensite /
- precipitation /
- mechanical properties
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