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Experimental and numerical study of ball indentation for evaluation of mechanical properties and fracture toughness of structural steel

机译:球形压痕评估结构钢力学性能和断裂韧性的实验和数值研究

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摘要

Determination of mechanical properties of materials using non-conventional techniques has been an active area of research for a long time. Among various small specimen techniques to determine mechanical properties of materials, the ball indentation technique (BIT) has proved to be advantageous. BIT is used to measure material's mechanical properties including fracture toughness when a tensile test cannot be performed: on welded joints or critical locations of components under service. The present work highlights the applicability of BIT for evaluating flow behaviour of engineering structural steels En24. Standard mechanical properties like ultimate tensile strength, yield stress, strain hardening coefficient evaluated for steels with varying microstructures generated through heat treatment. To determine fracture toughness from the flow behaviour, non linear damage models have been utilized. Using this model, fracture toughness of the En24 steel at different heat treated conditions has been computed using the results generated by the BIT. These results are verified with the already established correlation in literature. Numerical validation of the results generated by the BIT has been carried out by Finite Element Modelling (FEM) using standard ABAQUS software package. The FE model of the BI simulation helps to compute sub indenter stress-strain fields which determine the extent of pile-up in highly ductile materials.
机译:使用非常规技术确定材料的机械性能一直是研究的活跃领域。在确定材料机械性能的各种小样本技术中,球压痕技术(BIT)已证明是有利的。当无法执行拉伸测试时,BIT用于测量材料的机械性能,包括断裂韧性:在焊接接头或使用中的组件的关键位置。本工作强调了BIT在评估工程结构钢En24的流动行为方面的适用性。评估了通过热处理产生的具有不同组织的钢的标准机械性能,如极限抗拉强度,屈服应力,应变硬化系数。为了从流动特性确定断裂韧性,已经使用了非线性损伤模型。使用该模型,已使用BIT生成的结果计算了En24钢在不同热处理条件下的断裂韧性。这些结果已通过文献中已建立的相关性进行了验证。使用标准ABAQUS软件包的有限元建模(FEM)已对BIT产生的结果进行了数值验证。 BI模拟的FE模型有助于计算压头下的应力应变场,该应力场确定了高延展性材料中堆积的程度。

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