Strain-Induced Precipitation in a Multi-microalloyed Steel
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摘要: 采用透射電子顯微鏡結合納米束能譜技術,研究了含Nb,Ti,Mo等多種微合金元素的超低碳貝氏體鋼在奧氏體非冉結晶區終軋后弛豫階段的應變誘導析出行為.實驗結果表明:經30%預變形后,在850℃和900℃等溫弛豫時,鋼中析出開始主要有純Nb及Nb-Ti復合的兩類,以后者為主.隨弛豫時間延長,純Nb型析出物消失,復合夾雜中鈮鈦比增加.弛豫階段后期,Mo會以置換原子形式進入(Ti,Nb)(C,N)的面心立方晶格中,其量隨弛豫時間的延長而增加.析出物形狀以不規則外形為主,其密度及平均尺寸與變形溫度和弛豫時間密切相關.Abstract: Transmission electron microscopy (TEM) and nanobeam EDS technique were used to investigate the strain induced precipitation behavior during relaxation process after deformation in the non-recrystallization temperature range of a ultra-low carbon steel containing Nb, Ti and Mo. The experiment results indicate that after 30% predeformation at 850℃ and 900℃, two kinds of precipitates, combination of Nb and Ti and a few pure Nb, occur in the steel during isothermal holding. The atomic ratio of Nb to Ti in particles increased and pure Nb particles disappeared with the relaxation extended. After longer holding, some Nb and Ti atoms in the lattice sites of the precipitates were replaced by Mo atoms. The content of Mo in the precipitates rose with the relaxation time increased. The shape of the precipitates is mainly irregular and the density and average size of precipitates are related to deformation temperature and relaxation time.
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Key words:
- microalloyed steel /
- stress relaxation /
- strain induce precipitation
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