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Phase and Structural Transformations in a Low-Carbon Steel that Occur upon the Collapse of a Cylindrical Shell

机译:在圆柱形壳体塌陷时发生的低碳钢中的相位和结构变换

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An experiment has been performed on the collapse of a thick-walled shell (tube) made of steel 20 (Fe-0.2 wt % C) to a continuous cylinder under the action of explosion. The changes of the microstructure of the cylinder have been investigated that arise under the effect of two factors, i.e., a shock wave, which causes the initial pulse to the collapse, and high-strain-rate deformation upon the subsequent inertial convergence of the shell walls. Changes in the time-dependent temperature distribution in the cylinder have been calculated. As a result of the deformation, the new structure has been obtained in steel 20 due to barothermic quenching that consists of fine crystals of the alpha phase, which arise during the quenching at the place of free ferrite, and of regions of the retained initial pearlite. It has been shown that the uncommon order of the occurrence of the alpha -> gamma transformation is explained by the different degree of heating of the structural constituents of the steel (free ferrite; and pearlite). The conclusion has been drawn that the high-strain-rate deformation that occurs in this experiment can be used as the method that makes it possible not only to differently deform but also to differently heat the different structural components of multiphase materials.
机译:在爆炸作用下对由钢20(Fe-0.2wt%c)制成的厚壁壳(管)的沉壳(管)的坍塌进行了实验。已经研究了气缸的微观结构的变化,其在两个因素的效果下产生,即减震波,这导致初始脉冲到坍塌,以及在随后的壳体的惯性收敛时的高应变率变形墙壁。已经计算了气缸中的时间依赖温度分布的变化。由于变形的结果,由于热水淬火,由α相的细晶体组成的热水淬火,在钢热晶体中产生的新结构,其在游离铁氧体的淬火期间产生,并且保留的初始珠光体的区域产生。已经表明,通过钢的结构成分的不同程度(游离铁氧体;和珠光体)解释了α - γ转化的发生的不常见顺序。已经得出的结论是,在该实验中发生的高菌速变形可以用作使得不仅可以不同变形的方法,而且还可以不同地加热多相材料的不同结构组分。

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