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Micro- and Nanostructural Nonuniformity Through the Thickness of 100 mm Structural Steel Plate After TMT and HT

机译:微型和纳米结构的不均匀性通过TMT和HT后通过100mm结构钢板的厚度厚度

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摘要

Traditionally high strength (sigma(y) ae 400 N/mm(2)) rolled sheet thicker than 50-60 mm of low-carbon structural steel is produced by hot rolling technology followed by normalizing or hardening and tempering. Contemporary equipment makes it possible to produce rolled product 50-140 mm thick of low carbon steel by thermomechanical rolling and to obtain a required set of properties without expenditure on production operations connected with additional metal heating such as normalizing and tempering. Results are given in this article for studying one of the thick sheet property indices, i.e., structure nonuniformity through plate thickness. The microstructure is compared for rolled sheet 100 mm thick of low-carbon microalloyed steel structural steel produced in the 4200 NLMK Dansteel mill by thermomechanical rolling technology (TMT) with the microstructure obtained as a result of hot rolling followed by normalizing (HT). Grain sizes are determined at different points of rolled product layer thickness, and histograms are plotted for their distribution, making it possible to compare the degree of inhomogeneity for the microstructure with respect to grain size. The type, size, and density of carbonitride particles are determined at distances of 1/2 and 1/4 through the thickness of 100 mm plate after TMT and HT.
机译:传统上高强度(Sigma(Y)AE 400 n / mm(2))轧制厚度小于50-60mm的低碳结构钢,通过热轧技术制造,然后归一化或硬化和回火。当代设备可以通过热机械轧制生产50-140毫米厚的低碳钢,并获得所需的特性,而无需支出与额外金属加热相连的生产操作,例如归一化和回火。在本文中给出了用于研究厚板特性指数,即通过板厚度的结构不均匀的结果。通过热机械轧制技术(TMT)在4200 nLMK丹斯泰尔工厂中生产的低碳微合金钢结构钢100mm厚的轧制片材的微观结构进行比较,其微观结构作为热轧而得到的,然后归一化(HT)。晶粒尺寸在不同点处确定在不同的轧制产品层厚度上,并且绘制直方图的分布,使得可以比较相对于晶粒尺寸的微观结构的不均匀性程度。碳氮化物颗粒的类型,尺寸和密度在TMT和HT之后通过100mm板的厚度为1/2和1/4的距离确定。

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