...
首页> 外文期刊>Journal of Materials Processing Technology >Effect of long-term aging on the microstructure and mechanical properties of T23 steel weld metal without post-weld heat treatment
【24h】

Effect of long-term aging on the microstructure and mechanical properties of T23 steel weld metal without post-weld heat treatment

机译:长期老化对T23钢焊接金属微观结构和机械性能的影响,无焊接热处理

获取原文
获取原文并翻译 | 示例

摘要

T23 steel welds without post-weld heat treatment (PWHT) were aged for 3000 h at temperatures in the range 773-923 K. Microstructural evolution in the aged weld metal (WM) was observed and its influence on the hardness and Charpy impact toughness were investigated. The as-welded WM exhibits a martensitic/bainitic microstructure with moderate hardness less than 350 HB and impact toughness value above 110 J/cm(2). Aged WM exhibits deterioration of mechanical properties dependent on the temperature of aging. When the aging temperature is below 823 K, the WM shows little change in hardness but its impact toughness drops significantly. When the aging temperature is above 823 K, the hardness of the WM starts to decrease quickly while its impact toughness increases gradually. As the aging temperature increases to 923 K, its impact toughness further increases and recovers to a value comparable to that of the as-welded condition. Embrittlement occurring during aging at 773-823 K results from tempered martensite embrittlement (TME), which is caused by the decomposition of retained austenite. When the aging temperature exceeds 823 K, M23C6 carbides precipitate rapidly inside grains and at grain boundaries and MX carbides begin to precipitate inside grains. These cause the release of carbon from the matrix, reduction of lattice distortion, and accelerated recovery of laths causing the hardness to decrease rapidly and the impact toughness to increase. W-rich carbides are observed in a minority of grain boundaries in the WM aged at temperatures higher than 823 K, which may cause intergranular fracture and retard the improvement of impact toughness.
机译:在没有焊接后热处理的T23钢焊缝(PWHT)在773-923K的温度下老化3000小时,观察到老化焊接金属(WM)中的微观结构演化,其对硬度和夏奇的影响韧性的影响调查。 AS焊接的WM表现出马氏体/贝氏体微观结构,中等硬度小于350 HB,并冲击韧性值高于110J / cm(2)。老化的WM依赖于衰老温度的机械性能恶化。当老化温度低于823K时,WM的硬度变化很小,但其冲击韧性显着下降。当老化温度高于823K时,WM的硬度开始快速减小,而其冲击韧性逐渐增加。随着老化温度升高至923k,其冲击韧性进一步增加并恢复到与焊接条件相当的值。在773-823K的老化期间发生的脆化,由回火马氏体脆化(TME),这是由保留奥氏体的分解引起的。当老化温度超过823k时,M23C6碳化物迅速沉淀在晶粒中,并且在晶界和MX碳化物中开始沉淀在晶粒内。这些原因导致碳从基质中释放碳,晶格畸变的降低,并加速恢复车道,导致硬度迅速降低和增加韧性。在高于823 k的温度下的WM的少数晶界中观察到富含Wm的碳化物,这可能导致晶间骨折并延缓改善冲击韧性。

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