Mechanical and Micro-Structural Characterisations of Submerged Arc Welded Steel Plates

A. Shukla, Rajnish Singh
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Abstract

The goal of the study is to find out how the welding parameters current (I), voltage (V), and speed (S) affect the mechanical characteristics and mechanical characterization of the submerged arc welding (SAW) process. Tensile strength, Microhardness, Impact load was determined using the universal testing machine (UTM), micro Rockwell Hardness machine and Impact load by Charpy and Izod method. With the help of several Submerged Arc Welding (SAW) factors, notably welding voltage (V), welding current (I), and welding speed, this research aims to examine and analyze the mechanical characteristics of welded connections. (S). The investigation involves cutting and machining samples of welded joints, which are then tested for mechanical qualities using tensile, impact toughness, and hardness methods. Analyses were done on how welding parameters affect the mechanical characteristics of welded joints. It has been noted that when heat input increases, the hardness of the weld first increases up to 100 HRC before declining as heat input continues to increase. The ultimate tensile strength and yield strength of the welded joints increases as the heat input increases, but it decline as the heat input increases more. The slower cooling rate has been achieved with high input heat consequent the coarse grains achieved in the weld metal. In contrast the low input heat results in the faster cooling and finer microstructure.
埋弧焊钢板的力学和显微组织特性
研究的目的是找出焊接参数电流(I),电压(V)和速度(S)如何影响埋弧焊(SAW)过程的机械特性和力学特性。采用万能试验机(UTM)、微洛氏硬度仪和Charpy - Izod法分别测定试样的抗拉强度、显微硬度和冲击载荷。本研究旨在借助埋弧焊(SAW)的几个因素,特别是焊接电压(V)、焊接电流(I)和焊接速度,对焊接连接的力学特性进行检测和分析。(S)调查涉及焊接接头的切割和加工样品,然后使用拉伸,冲击韧性和硬度方法测试机械质量。分析了焊接参数对焊接接头力学特性的影响。当热输入增加时,焊缝的硬度首先增加到100 HRC,然后随着热输入的继续增加而下降。焊接接头的极限抗拉强度和屈服强度随热输入的增加而增大,但随热输入的增加而减小。在高输入热的情况下,冷却速度较慢,导致焊缝金属产生粗晶粒。相反,低输入热量导致更快的冷却和更精细的组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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