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Instrumented indentation testing and FE analysis for investigation of mechanical properties in structural steel weld zone

机译:仪器压痕测试和有限元分析,用于研究结构钢焊接区的力学性能

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In this paper, a procedure for determining mechanical properties in structural steel weld zone using indentation test and finite element (FE) analysis was established and applied for investigating mechanical properties in an SS400 steel weld zone. Instrumented indentation tests were performed across the weld zone and the mechanical properties (E, H, sigma(y), and n) were then determined from their load-depth data with the aid of FE analysis. The obtained mechanical properties in the weld zone were verified to be reliable by comparing with the results from tensile tests and their FE simulations of both steel and welded specimens. It is shown that in the investigated weld zone, base metal has lower values of mechanical properties (E, H, sigma (y), and n) than does the weld metal, and mechanical properties within heat affected zone (HAZ) gradually increase from the base metal to weld metal regions. Based on the optical microscopy examination results, the gradient of mechanical within HAZ is found to be associated with the change of grain sizes from base metal to weld metal regions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文建立了使用压痕试验和有限元分析确定结构钢焊接区力学性能的程序,并将其用于研究SS400钢焊接区的力学性能。在整个焊接区域进行了压痕测试,然后借助有限元分析从其载荷深度数据中确定了机械性能(E,H,sigma(y)和n)。通过与拉伸试验的结果以及钢和焊接试样的有限元模拟结果进行比较,验证了在焊接区获得的机械性能是可靠的。结果表明,在所研究的焊接区内,贱金属的机械性能(E,H,sigma(y)和n)值比焊接金属低,并且热影响区(HAZ)内的机械性能从基本金属以焊接金属区域。根据光学显微镜检查结果,发现热影响区中的机械梯度与从贱金属到焊接金属区域的晶粒尺寸变化有关。 (C)2015 Elsevier Ltd.保留所有权利。

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