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首页> 外文期刊>Scientific reports. >Yield-strength prediction of flattened steel pipes by competing Bauschinger effect and strain hardening during pipe-forming
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Yield-strength prediction of flattened steel pipes by competing Bauschinger effect and strain hardening during pipe-forming

机译:通过竞争Bauschinger效应扁平钢管的屈服强度预测及管成型菌株硬化

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Since flattened steel sheets often show the unexpectedly lower or higher yield strength than leveled sheets, unceasing efforts have been made to accurately predict the yield strength in pipe-forming industries. In the present investigation, the yield strength of line-pipe or casing-pipe steels was predicted by competing Bauschinger effect and strain hardening occurred during the pipe-forming. Yield drop (YD) and yield rise (YR) parameters were newly defined from cyclic simulation analyses of outer and inner walls of pipes to express more reasonably the Bauschinger effect and strain hardening. The YD increased abruptly until the pre-strain of about 1%, and then saturated, while the YR increased linearly with increasing pre-strain. By combining the YD and YR, the variation in yield strength (Δσ) showed a down-and-up behavior as the Bauschinger effect and strain hardening were dominant at low and high pre-strains, respectively, and plausibly explained the relationship of Δσ and piping strain used in pipe-forming industries. According to the microstructural analyses related to the down-and-up Δσ behavior, the polygonal ferrite reduced the yield-strength reduction in the low pre-strain range, whereas the granular bainite or pearlite expanded it. This yield strength prediction coupled with microstructural analyses provide a good idea for designing and reliably predicting the yield strength of in various steel pipes.
机译:由于扁平的钢板往往显示出比拉平片的意外降低或更高的屈服强度,不断努力已经进行了精确地预测在管形成产业的屈服强度。在本研究中,线路导管或套管管钢的屈服强度通过竞争鲍辛格效应预测和管形成的过程中出现应变硬化。产率下降(YD)和产率上升(YR)参数重新从管的外壁和内壁的环状的模拟分析中定义表示更合理的鲍辛格效应和应变硬化。的YD突然增加,直至约1%的预应变,然后饱和的,而YR随着预应变线性增加。通过组合YD和YR,在屈服强度(Δσ)的变化显示出向下和向上的行为与鲍辛格效应和应变硬化分别以低和高的预应变,占主导地位,并且振振有词解释Δσ的关系和管道在管形成工业中使用的菌株。根据相关的向下和向上Δσ行为微观结构的分析中,多边形铁素体减少在低预应变范围的屈服强度降低,而粒状贝氏体或珠光体扩展它。这个加上的微观结构分析的屈服强度预测提供用于设计和可靠地预测在各种钢管的屈服强度是个好主意。

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