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Impact Toughness of Gas Metal Arc Welded HY-80 Steel Plate at Sub-zero Temperatures

机译:零以下温度下HY-80气保弧焊钢板的冲击韧性

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摘要

Various welding methods are widely applied in large fabrication of high strength steel. However, commonly the problem occurs where a coarse grain is formed near fusion zone causing reduce the impact toughness due to the weld joint become brittle. Ductility and toughness in a coarse grain heat affected zone (CGHAZ) is low due to the formation of coarsening grain size. The objective of this research is to investigate the microstructure evolution, impact toughness and fracture appearance at sub-zero temperatures of the high strength steel arc welded. The steel that used in this experiment is a HY-80 steel welded by gas metal arc welding (GMAW) with a mixture of argon and carbon dioxide (90%Ar and 10%CO_(2)) and ER100S solid wire. Microstructure observation and Charpy V-notch (CVN) tests were performed on the weld joint which consist of base metal (BM), heat affected zone (HAZ), and weld metal (WM). The CVN tests on the HY-80 steel plate at various temperatures (20, -20, -60 and -80 °C) show impact toughness decrease when the test temperature decrease. The CVN tests on the HY-80 weld joint at a temperature of 80 °C show the lowest impact toughness was measured at WM (61 J) and followed fusion line-FL (101 J) with brittle fracture appearance.
机译:各种焊接方法广泛应用于高强度钢的大型制造中。然而,通常会出现这样的问题,即在熔合区附近形成粗大晶粒,由于焊接接头变脆,导致冲击韧性降低。粗晶粒热影响区(CGHAZ)的延展性和韧性较低,这是由于形成了粗化晶粒尺寸。本研究的目的是研究高强度钢弧焊在零度以下温度下的组织演变,冲击韧性和断裂外观。本实验中使用的钢是通过气体金属电弧焊(GMAW)将氩气和二氧化碳(90%Ar和10%CO_(2))和ER100S实心焊丝的混合物焊接而成的HY-80钢。对由母材(BM),热影响区(HAZ)和焊缝金属(WM)组成的焊接接头进行了显微组织观察和夏比V型缺口(CVN)测试。在HY-80钢板在各种温度(20,-20,-60和-80°C)下进行的CVN测试表明,当测试温度降低时,冲击韧性会降低。在80°C的温度下对HY-80焊接接头进行的CVN测试显示,在WM(61 J)下测得的冲击韧性最低,其次是融合线FL(101 J),且脆性断裂。

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