...
首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Comparison of creep behaviour of 2-25Cr-1Mo/9Cr-1Mo dissimilar weld joint with its base and weld metals
【24h】

Comparison of creep behaviour of 2-25Cr-1Mo/9Cr-1Mo dissimilar weld joint with its base and weld metals

机译:2-25Cr-1Mo / 9Cr-1Mo异种焊接接头及其母材和焊接金属的蠕变行为比较

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Evaluation of the creep behaviour of 2.25Cr - 1Mo and 9Cr- 1Mo ferritic steel base metals, 9Cr- 1Mo steel weld metal, and 2.25Cr - lMo/9Cr - 1Mo ferritic - ferritic dissimilar weld joints has been carried out at 823 K in the stress range 100 - 260 MPa. The weld joint was fabricated by shielded metal arc welding using basic coated 9Cr- 1Mo electrodes. Investigations of the microstructure and hardness variations across the joint in the as welded, post-weld heat treated (973 K/1 h), and creep tested conditions were performed. The heat affected zone (HAZ) in both the steels consisted of a coarse prior austenitic grain region, a fine prior austenitic grain region, and an intercritical structure. In the post-weld heat treated condition, a white etched soft decarburised zone in 2.25Cr - iMo steel base metal and a black etched hard carburised zone in 9Cr- 1Mo steel weld metal around the weld fusion line developed. Hardness troughs also developed in the intercritical HAZ regions of both the steels. The width of the carburised and decarburised zones and hardness differences of these zones were found to increase with creep exposure. The 9Cr- 1Mo steel weld metal showed higher creep strength compared to both the base metals. The 9Cr- 1Mo steel base metal exhibited better creep resistance than the 2.25Cr - 1Mo steel base metal at lower applied stresses. The dissimilar joint revealed lower creep rupture strength than both the base metals and weld metal. The creep strain was found to concentrate in the decarburised zone of 2.25Cr - 1Mo steel and in the intercritical HAZ regions of both the steels. Creep failure in the stress range examined occurred in the intercritical HAZ of 2.25Cr - 1Mo steel even though this region showed higher hardness than the decarburised zone. Extensive creep cavitation and cracks were observed in the decarburised zone.
机译:已经在823 K下对2.25Cr-1Mo和9Cr-1Mo铁素体钢基体金属,9Cr-1Mo钢焊接金属和2.25Cr-1Mo / 9Cr-1Mo铁素体-铁素体异种焊接接头的蠕变行为进行了评估。应力范围100-260 MPa。焊接接头是通过使用基本涂覆的9Cr-1Mo电极通过屏蔽金属电弧焊制造的。在焊接,焊后热处理(973 K / 1 h)和蠕变测试条件下,研究了整个接头的显微组织和硬度变化。两种钢中的热影响区(HAZ)均由一个粗的先验奥氏体晶粒区,一个细的先验奥氏体晶粒区和一个临界结构组成。在焊后热处理条件下,在焊接熔合线周围形成了2.25Cr-iMo钢母材中的白色蚀刻软脱碳区和9Cr-1Mo钢焊接金属中的黑色蚀刻硬渗碳区。两种钢的临界HAZ区也形成了硬度槽。发现渗碳和脱碳区的宽度以及这些区的硬度差随着蠕变暴露而增加。与两种贱金属相比,9Cr-1Mo钢焊缝金属的蠕变强度更高。在较低的施加应力下,9Cr-1Mo钢母材的抗蠕变性比2.25Cr-1Mo钢母材更好。异种接头的蠕变断裂强度低于母材和焊缝金属。发现蠕变应变集中在2.25Cr-1Mo钢的脱碳区和这两种钢的临界HAZ区中。即使在该区域显示出比脱碳区更高的硬度,在2.25Cr-1Mo钢的临界HAZ中也会发生应力范围内的蠕变破坏。在脱碳区观察到广泛的蠕变空化和裂纹。

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