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Structure and Phase Composition of Deformed Heat-Affected Zone of the Weld Steel St3

机译:焊接钢ST3变形热影响区的结构和相位组成

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The paper presents the transmission electron microscopy (TEM) investigations of the structural and phase conditions of the heat-affected zone of welded joint modified by plastic deformation. Tensile tests are carried out on INSTRON-1185 testing system at room temperature and 370 MPa loading. TEM investigations are carried out nearby the joint between the deposited and base metal, namely the type St3 steel. It is shown that the degree of plastic deformation has an effect on the material morphology, phase composition, defect structure and its parameters. It is shown that plastic deformation has no qualitative effect on the material structure, however it modifies its quantitative parameters. With the increase of the deformation degree, the perlite component becomes incomplete and transforms at first, to a fractured perlite and then to ferrite, thereby decreasing the volume ratio of perlite. The polarization of the dislocation structure is observed that, nevertheless, does not lead to the internal stresses that induce the specimen fracture.
机译:本文呈现透射电子显微镜(TEM)对通过塑性变形改性的焊接接头区域的结构和相条件的研究。在室温下对Instron-1185测试系统进行拉伸试验,370 MPa负载。 TEM调查在沉积和贱金属之间的关节附近进行,即ST3钢。结果表明,塑性变形程度对材料形态,相组合物,缺陷结构及其参数产生了影响。结果表明,塑性变形对材料结构没有定性效果,但是它改变了其定量参数。随着变形程度的增加,珍珠岩组分首先变得不完全并转化为裂缝的珍珠岩,然后达到铁素体,从而降低珍珠岩的体积比。观察到位错结构的偏振,然而,不导致诱导样品骨折的内应力。

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