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Application of Response Surface Methodology for Modeling of Postweld Heat Treatment Process in a Pressure Vessel Steel ASTM A516 Grade 70

机译:响应面法在压力容器钢ASTM A516 70级焊后热处理过程建模中的应用

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摘要

This research studied the application of the response surface methodology (RSM) and central composite design (CCD) experiment in mathematical model and optimizes postweld heat treatment (PWHT). The material of study is a pressure vessel steel ASTM A516 grade 70 that is used for gas metal arc welding. PWHT parameters examined in this study included PWHT temperatures and time. The resulting materials were examined using CCD experiment and the RSM to determine the resulting material tensile strength test, observed with optical microscopy and scanning electron microscopy. The experimental results show that using a full quadratic model with the proposed mathematical model is Y TS = −285.521 + 15.706X 1 + 2.514X 2 − 0.004X 1 2 − 0.001X 2 2 − 0.029X 1 X 2. Tensile strength parameters of PWHT were optimized PWHT time of 5.00 hr and PWHT temperature of 645.75°C. The results show that the PWHT time is the dominant mechanism used to modify the tensile strength compared to the PWHT temperatures. This phenomenon could be explained by the fact that pearlite can contribute to higher tensile strength. Pearlite has an intensity, which results in increased material tensile strength. The research described here can be used as material data on PWHT parameters for an ASTM A516 grade 70 weld.
机译:这项研究研究了响应面方法学(RSM)和中心复合设计(CCD)实验在数学模型中的应用,并优化了焊后热处理(PWHT)。研究的材料是压力容器钢ASTM A516,等级70,用于气体保护金属电弧焊。在这项研究中检查的PWHT参数包括PWHT温度和时间。使用CCD实验和RSM检查所得材料,以确定所得材料的抗拉强度测试,用光学显微镜和扫描电子显微镜观察。实验结果表明,将完整的二次模型与所提出的数学模型一起使用时,Y TS = -285.521 + 15.706X 1 + 2.514X 2-0.004X 1 2 -0.001X 2 2 < / sup>-0.029X 1 X2。PWHT的拉伸强度参数优化为5.00 hr的PWHT时间和645.75°C的PWHT温度。结果表明,与PWHT温度相比,PWHT时间是改变拉伸强度的主要机理。珠光体可有助于更高的拉伸强度这一事实可以解释这种现象。珠光体具有一定的强度,从而提高了材料的抗张强度。此处描述的研究可以用作ASTM A516 70级焊接的PWHT参数的材料数据。

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