...
首页> 外文期刊>Materials science forum >Investigations on Impact Toughness and Microstructure Characteristics of Gas Metal Arc Welded HY-80 Steel Plate
【24h】

Investigations on Impact Toughness and Microstructure Characteristics of Gas Metal Arc Welded HY-80 Steel Plate

机译:气金属弧焊焊接钢板冲击韧性和微观结构特性的研究

获取原文
获取原文并翻译 | 示例

摘要

HY-80 is the high yield steel that commonly used for naval ship and submarine. Arc welding operations are critical stage in fabrication of this steel. During welding, the problem may occur in the heat affected zone due to the high temperature makes the microstructure suddenly changes. Coarse grain heat affected zone (CGHAZ) develops close to the fusion line, steel become brittle and the impact toughness decrease. This research investigated the microstructure of HY-80 weldment, impact toughness at sub-zero temperatures, and hardness distribution along cross-section of the welded joint. ER100S welding wire, Ar+10%CO_(2) shielding gas mixture and single V-groove butt joint with an angle of 60° were selected prior to welding. 12 mm thick of HY-80 steel plate that used in this experiment was multipass welded by gas metal arc welding (GMAW). Impact toughness at sub-zero temperature, hardness and microstructure evolutions of base metal (BM), heat affected zone (HAZ) and weld metal (WM) were observed. The result shows at a temperature of-80 °C, the lowest impact toughness was measured at WM (61 J) as compared to fusion line (101 J) and BM (217 J). The hardness measurement shows the maximum hardness was measured in CGHAZ followed WM and BM. Vickers hardness test result of weld joint at bottom area are higher than top area. It may caused of the low heat input of back weld compared to other passes. The lower heat input, cooling rate increased and initiate the formation of hard phase. The microstructure of WM shows acicular ferrites and non-metallic inclusions, these inclusions may deteriorate the impact toughness.
机译:HY-80是常用于海军船舶和潜艇的高产量钢。电弧焊接操作是该钢制造的关键阶段。在焊接期间,由于高温,在热影响区域中可能发生问题使得微观结构突然变化。粗晶热影响区(CGHAZ)开发靠近熔合线,钢变脆,冲击韧性降低。该研究研究了Hy-80焊接的微观结构,亚零温度下的冲击韧性,以及沿焊接接头的横截面的硬度分布。 ER100S焊丝,AR + 10%CO_(2)在焊接之前选择屏蔽气体混合物和具有60°的角度的单个V槽对接接头。在本实验中使用的12毫米厚的HY-80钢板是通过气体金属弧焊(GMAW)焊接的多峰。观察到亚零温度,硬度和微观结构演进的冲击韧性,基础金属(BM),热影响区(HAZ)和焊接金属(WM)。结果在-80℃的温度下表示,与融合线(101J)和BM(217J)相比,在WM(61J)下测量最低冲击韧性。硬度测量表明在CGHAZ中测量的最大硬度随后是WM和BM。底部区域焊接接头的维氏硬度测试结果高于顶部区域。与其他通道相比,它可能导致背部焊接的低热量输入。较低的热输入,冷却速率增加并引发了硬相的形成。 WM的微观结构显示针状铁氧体和非金属夹杂物,这些夹杂物可能会劣化冲击韧性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号