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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Influence of temperature and strain rate on tensile deformation and fracture behaviour of boron added P91 steel
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Influence of temperature and strain rate on tensile deformation and fracture behaviour of boron added P91 steel

机译:温度和应变率对硼钢筋混凝变形及裂缝行为的影响

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Tensile tests were performed at the strain rates ranging from 3.16 x 10(-5) to 1.26 x 10(-3) s(-1) over a temperature range 300-873 K to examine the influence of temperature and strain rate on tensile deformation and fracture behaviour of boron added P91 ferritic steel. The variations of flow stress/strength values, work hardening rate and tensile ductility with respect to temperature exhibited three distinct temperature regimes. The steel exhibited anomalous variations in tensile properties due to dynamic strain ageing occurring at intermediate temperatures and the dominance of dynamic recovery at high temperatures. The fracture mode remained transgranular. Presence of large amount of chisel tip appearance along with dimples at 300 K and dominance of ductile dimples at intermediate and high temperatures were observed. Boron added P91 steel with reduced nitrogen exhibited strength values comparable to those reported for the plates and tubes of P91 steel.
机译:在300-873k的温度范围内的3.16×10(-5)至1.26×10(-3)S(-1)的应变速率下进行拉伸试验,以检查温度和应变率对拉伸变形的影响 硼添加P91铁素体钢的断裂行为。 流动应力/强度值,工作服硬化率和拉伸延展性相对于温度的变化表现出三个不同的温度制度。 由于在中间温度下发生的动态应变老化以及高温下动态恢复的主导地相表,钢在拉伸性能的异常变化。 裂缝模式仍然是跨晶的。 观察到大量凿尖外观以及300k的凹槽以及中间体和高温下的延展性凹槽的优势。 硼添加了P91钢,氮气的降低表现出强度值与P91钢板的板材和管子的表达相当。

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