The methodical peculiarities of the investigation of portal crane rolled steels degradation

O. Nesterov
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Abstract

Rolled structural steels of port structures, operating under intensive cyclic loading, are particularly susceptible to the degradation of their mechanical properties. Advantages of the investigation of operational degradation of steels based not on fatigue strength characteristics, but on characteristics of resistance to brittle fracture using the example of determining the impact strength of longitudinal and transverse Charpy samples in relation to the rolling direction of sheet metal for 10 local areas at different structural nodes of portal crane are analyzed. This is caused to a great extend by micro-layering along the stretched fibers in the rolling direction of the rolled product. Accordingly, the mechanical properties of the metal become particularly sensitive to the direction of samples cutting in relation to the direction of rolling. Therefore, in order to evaluate the steel operational degradation it is recommended to use transverse samples in which the direction of micro-laayering coincides with the direction of rolling. Possible role of the marine environment in enhancing the degradation of steel due to its flooding properties is also considered in this paper.
门机轧钢退化研究的方法特点
港口结构的轧制结构钢在剧烈的循环荷载下工作,其力学性能特别容易退化。以门式起重机不同结构节点10个局部区域的纵向和横向Charpy试样的冲击强度与板料轧制方向的关系为例,分析了基于抗脆性断裂特性而不是基于疲劳强度特性来研究钢的使用退化的优点。这在很大程度上是由于在轧制产品的轧制方向上沿拉伸纤维的微分层造成的。因此,相对于轧制方向,金属的机械性能对试样的切削方向变得特别敏感。因此,为了评价钢的使用退化,建议使用横向试样,其中微层的方向与轧制方向一致。由于钢铁的水淹特性,海洋环境在促进其降解方面可能发挥的作用也在本文中得到了考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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