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Microstructural and Mechanical Properties of Welded High Strength Steel Plate Using SMAW and SAW Method for LPG Storage Tanks

机译:焊接高强度钢板使用SMAW和SAW方法的微观结构和力学性能,用于LPG储罐

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摘要

Indonesian government policy to convert energy consumption for domestic household from kerosene to liquefied petroleum gas (LPG) may lead to the increasing demand for LPG storage tank. LPG storage tank with a large capacity generally used the HSLA steel material of ASTM A516 Grade 70 joined by SMAW or combination between SMAW and SAW method. The heat input can affect the microstructure and mechanical properties of the weld area. The input heat is proportional to the welding current and the arc voltage, but inversely proportional to its welding speed. The result shows that the combination of SMAW-SAW process yield the lower hardness in the HAZ and the fusion zone compared to the singe SMAW process. PWHT mainly applied to reduce residual stress of welded joint. The result shows that PWHT can reduce the hardness in the HAZ and the fusion zone in comparing with the singe SMAW process. The microstructure of weld joint shows a coarser structure in the combined welding process (SMAW-SAW) comparing with the single welding process (SMAW).
机译:印度尼西亚政府政策将国内家庭从煤油转换为液化石油气(LPG)的能源消耗可能导致对LPG储罐的需求不断增加。 LPG储罐具有大容量通常使用ASTM A516级70的HSLA钢材通过Smaw或Saw方法之间的组合连接。热输入可以影响焊接区域的微观结构和机械性能。输入热量与焊接电流和电弧电压成比例,但与其焊接速度成反比。结果表明,与单打Smaw工艺相比,Smaw-Saw过程的组合产生了HAZ和融合区的较低硬度。 PWHT主要应用于降低焊接接头的残余应力。结果表明,与单打Smaw过程相比,PWHT可以降低HAZ和融合区中的硬度。焊接接头的微观结构在与单焊接过程(SMAW)相比,组合焊接工艺(SMAW锯)中的较粗糙结构。

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