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Microstructure and Fracture Morphology in the Welding Zone of T91 Heat-resisting Steel Used in Power Station
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作者 YajiangLI BingZHOU +1 位作者 TaoFENG JiangweiREN 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2002年第5期427-430,共4页
Microstructure performance in the welding zone of T91 heat-resistant steel under the condition of TIG welding was researched by means of metallography, X-ray diffraction and scanning electron microscope (SEM). Experim... Microstructure performance in the welding zone of T91 heat-resistant steel under the condition of TIG welding was researched by means of metallography, X-ray diffraction and scanning electron microscope (SEM). Experimental results indicated that microstructure of T91 weld metal was austenite + a little amount of S ferrite when using TGS-9cb filler wire. Substructure inside the austenite grain was crypto-crystal lath martensite, on which some Cr23C6 blocky carbides were distributed. The maximum hardness (HRC44) in the welding zone is near the fusion zone. There existed no obvious softening zone in the heat-affected zone (HAZ). For T91 steel tube of $63 mmx5 mm, when increasing welding heat input (E) from 4.8 kJ/cm to 12 5 kJ/cm, fracture morphology in the fusion zone and the HAZ changed from dimple fracture into quasi-cleavage fracture (QC). Controlling the welding heat input of about 9.8 kJ/cm is suitable in the welding of T91 heat-resistant steel. 展开更多
关键词 t91 heat-resistant steel. Welding. Microsrructure
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Effects of Austenite Stabilization on the Onset of Martensite Transformation in T91 Steel 被引量:2
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作者 Baoqun NING Yongchang LIU +2 位作者 Qingzhi SHI Zhiming GAO Liushuan YANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第2期202-206,共5页
The influences of thermal stabilization of austenitic on the onset temperature for a martensite transformation in T91 ferritic heat-resistant steel were studied by high-resolution differential dilatometer. The phase t... The influences of thermal stabilization of austenitic on the onset temperature for a martensite transformation in T91 ferritic heat-resistant steel were studied by high-resolution differential dilatometer. The phase transformation kinetic information was obtained by adopting lever rule from the recorded dilatometric curves. The results show that an inverse stabilization, featured by the damage of "the atmosphere of carbon atoms" and the increase of the starting temperature for martensite transformation takes place when the T91 ferritic steel is isothermally treated above the Ms point, and it becomes strong with increasing the holding time. While the continued temperature for martensite transformation decreases gradually when isothermally holding at a temperature below Ms point. The observed inverse stabilization behavior could be attributed to the relatively high temperature of Ms point in the explored T91 ferritic heat-resistant steel. 展开更多
关键词 t91 ferritic heat-resistant steel Austenitic thermal stabilization MARtENSItE MICROStRUCtURE
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T/P 91钢持久强度评估方法分析 被引量:1
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作者 孙林根 梅林波 陆翌昕 《热力透平》 2021年第2期88-92,共5页
持久强度是燃煤发电机组高温部件材料选材与设计的关键性能指标之一。Larson-Miller参数法和等温法是目前工程上常用的持久强度评估方法。针对典型高温管道材料91钢开展持久强度计算方法的研究,评估不同方法外推结果的合理性。等温法简... 持久强度是燃煤发电机组高温部件材料选材与设计的关键性能指标之一。Larson-Miller参数法和等温法是目前工程上常用的持久强度评估方法。针对典型高温管道材料91钢开展持久强度计算方法的研究,评估不同方法外推结果的合理性。等温法简单而直观,但持久强度外推结果受测试温度的制约。Larson-Miller参数法相对复杂,Larson-Miller常数C对外推结果有较大影响,最佳C值与方程形式直接相关,不同方程形式的Larson-Miller参数法持久强度外推结果略有差异,但Larson-Miller参数法的适用温度范围更宽。总体而言,Larson-Miller参数法的持久强度外推结果更加可靠。 展开更多
关键词 t/p 91 持久强度 评估方法
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