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High temperature mechanical properties of triple phase steels

机译:三相钢的高温力学性能

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A 0.15% C-1.2% Si-1.7% Mn steel was intercritically annealed at 780℃ for 5 min and then isothermally held at 400℃ for 4 min followed by oil quenching to room temperature and the annealed microstructure consist of 75% ferrite, 15% bainite and 10% retained austenite was produced. Samples of this steel with triple phase structure were tensile tested at temperature range of 25-450℃. Stress-strain curves showed serration flow at temperature range of 120-400℃ and smooth flow at the other temperatures. All of the stress-strain curves showed discontinuous yielding at all testing temperatures. Both yield and ultimate tensile strength decreased with increasing temperature, but there exists a temperature region (120-400℃) where a reduction of strength with increasing temperature is retarded or even slightly increased. The variation in the mechanical properties with temperature was related to the effects of dynamic strain aging, high temperature softening, bainite tempering and austenite to martensite transformation during deformation.
机译:将0.15%C-1.2%Si-1.7%Mn钢在780℃下进行临界退火5分钟,然后在400℃等温保持4分钟,然后油淬火至室温,该退火组织由75%的铁素体,15产生%贝氏体和10%残余奥氏体。在25-450℃的温度范围内对该钢的三相结构样品进行了拉伸测试。应力-应变曲线表明,在120-400℃的温度范围内锯齿状流动,在其他温度下均呈平滑状。所有的应力-应变曲线在所有测试温度下均显示出不连续的屈服。屈服强度和极限抗拉强度均随温度的升高而降低,但存在一个温度区域(120-400℃),在该温度范围内,强度的降低随温度的升高而减缓甚至略有增加。力学性能随温度的变化与变形过程中动态应变时效,高温软化,贝氏体回火以及奥氏体向马氏体转变的影响有关。

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