Evaluation of embrittlement of construction steels by microindentation

A. E. Zorin, A. S. Romantsov
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Abstract

The mechanical characteristics of a metal are determined by a combination of three groups of factors: the chemical composition, structural features and the deformation ability of the structure, i.e., the ability of elements to relax internal stresses during deformation through dislocation sliding which does not lead to the crack formation and destruction. The possibility of using microindentation to assess the deformation ability of the structure of structural steels with a relatively high ductility is the goal of the study. The theoretical analysis revealed that an increase in the stiffness and a decrease in the plasticity of a metal leads to a change in the deformation model during indentation and, in particular, to the occurrence of deformation effects of various morphologies on the surface near the imprint, which can be indicative of the metal plasticity. Experimental studies performed on pipe steels of various strength and types of the structure confirmed that as the deformation ability of the metal decreases (primarily as a result of deformation hardening), a system of localized shears is formed near the imprint along the lines of action of maximum tangential stresses. A scale for ranking data of localized shears is proposed and the optimal load value and shape of the indenter are determined which provide gaining maximum information by microindentation. A methodology for assessing the embrittlement of plastic construction steels based on the results of microindentation has been developed, which can form a basis for creating an effective technology of nondestructive evaluation of the metal state.
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用微压痕评价建筑用钢的脆化
金属的力学特性是由三组因素的组合决定的:化学成分、结构特征和结构的变形能力,即在变形过程中通过位错滑动使内应力松弛而不导致裂纹形成和破坏的能力。利用微压痕评估具有较高延性的结构钢结构变形能力的可能性是本研究的目标。理论分析表明,金属刚度的增加和塑性的降低会导致压痕过程中变形模式的变化,特别是在压痕附近表面出现各种形态的变形效应,这可以表明金属的塑性。对各种强度和结构类型的管材进行的实验研究证实,随着金属变形能力的降低(主要是变形硬化的结果),沿着最大切向应力的作用线在印记附近形成了局部剪切系统。提出了一种局部化剪切机数据排序的尺度,确定了最优载荷值和压头形状,使微压痕能获得最大的信息。本文提出了一种基于微压痕结果的塑料结构钢脆化评估方法,为创建一种有效的金属状态无损评估技术奠定了基础。
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