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Experimental study of the creep behavior of parent, simulated HAZ and weld materials for cold-drawn 304L stainless steel

机译:304L不锈钢冷轧母材,模拟热影响区和焊接材料蠕变行为的实验研究

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摘要

In this paper, the creep behavior and constitutive equations of different layers of the weldment for cold-drawn 304L stainless steel have been determined using experimental data. This alloy can be used in the "as-welded" condition, even in severe corrosive conditions due to its lower carbon, which minimizes both chromium carbide precipitation and inter-granular corrosion during the welding. As a result, welded Austenitic Stainless Steel 304L joints have extensive application in power generation and petrochemical industries and it is critical to study their high temperature creep resistance. For this purpose, test samples have been obtained from cold drawn bars, simulated HAZ and weld material according to the ASTM A276-05a. The creep behavior and properties have been examined for these materials by conducting uni-axial creep tests. Constant temperatures and constant load uni-axial creep tests have been carried out at three temperatures of 680, 700 and 720 °C, subjected to constant loads, which produce initial stresses ranging from 140 to 360 MPa that are either below or above yield. The experimental data have been used to obtain the creep constitutive parameters using numerical optimization techniques. In addition, the temperature and stress dependency of the creep properties for Parent, HAZ and Weld materials have been investigated using Larson-Miller and Monkman-Grant parameters.
机译:本文利用实验数据确定了冷拔304L不锈钢焊缝不同层的蠕变行为和本构方程。由于其较低的碳含量,即使在严重的腐蚀条件下,该合金也可以在“焊接状态”下使用,从而将碳化铬沉淀和焊接过程中的晶间腐蚀最小化。因此,奥氏体不锈钢304L焊接接头在发电和石化行业中得到广泛应用,因此研究其耐高温蠕变性能至关重要。为此,已根据ASTM A276-05a从冷拔钢筋,模拟热影响区和焊接材料中获取了测试样品。通过进行单轴蠕变测试,已经检查了这些材料的蠕变行为和性能。已在680、700和720°C的三个温度下进行了恒定温度和恒定载荷单轴蠕变试验,这些载荷承受恒定载荷,产生的初始应力范围为140到360 MPa,低于或高于屈服。实验数据已被用于使用数值优化技术获得蠕变本构参数。另外,已经使用Larson-Miller和Monkman-Grant参数研究了母体,HAZ和Weld材料的蠕变特性的温度和应力依赖性。

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