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Influence of multi-stage heat treatment on the microstructure and mechanical properties of TC21 titanium alloy 被引量:5
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作者 Wei Long Song Zhang +1 位作者 Yi-long Liang Mei-gui Ou 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2021年第2期296-304,共9页
Duplex-structured TC21 alloy samples were first solution-treated at a higher temperature in theα+βregion(940°C)with furnace cooling(FC),air cooling(AC),and water cooling(WC),followed by a second-stage solution ... Duplex-structured TC21 alloy samples were first solution-treated at a higher temperature in theα+βregion(940°C)with furnace cooling(FC),air cooling(AC),and water cooling(WC),followed by a second-stage solution treatment at a lower temperature in theα+βregion(900°C),and then finally aged at 590°C.The effects of the morphology and quantity ofαphases on the structure and properties of the TC21 alloy after the different heat treatments were analyzed.The in-situ tensile deformation process and crack propagation behavior were observed using scanning electron microscopy(SEM).The quantity of equiaxedαphases as well as the thickness of lamellarαphases reduced,the tensile strength increased firstly and then decreased,the elongation decreased with the increasing cooling rate after the first-stage solution treatment.The amount and size of lamellarαphases increased after the second-stage solution treatment because of sufficient diffusion of the alloying elements,thereby leading to increased tensile strength.The amount of dispersedαphases increased after the third-stage aging treatment owing to the increase in the nucleation rate,resulting in a noteworthy strengthening effect.After the third-stage aging treatment,the first-stage FC sample exhibited better mechanical properties because it contained more equiaxedαandβtrans phases than the first-stage AC and WC samples. 展开更多
关键词 multi-stage heat treatment titanium alloy in-situ tension MICROSTRUCTURE mechanical properties
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压力容器窄间隙埋弧焊热处理脆化机理研究
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作者 李五坡 任艺 《新技术新工艺》 2009年第11期106-108,共3页
用于制造高参数压力容器的低合金高强度钢采用窄间隙埋弧焊,为了消除焊接残余应力,在焊后需对焊接接头进行热处理,其冲击韧性大幅下降。为探讨其脆化机理,选用BHW-35钢为母材,H10Mn2NiMoA镀铜焊丝和SJ101焊剂为填充材料,焊后热处理工艺... 用于制造高参数压力容器的低合金高强度钢采用窄间隙埋弧焊,为了消除焊接残余应力,在焊后需对焊接接头进行热处理,其冲击韧性大幅下降。为探讨其脆化机理,选用BHW-35钢为母材,H10Mn2NiMoA镀铜焊丝和SJ101焊剂为填充材料,焊后热处理工艺为920℃正火+620℃和560℃二次回火。利用扫描透射电镜,对焊缝熔敷金属焊态和焊后热处理的显微组织变化进行了研究。结果表明,低合金高强度钢焊缝焊态时组织为针状铁素体,在晶内有细小碳化物弥散分布;经焊后热处理,由于回复作用板条状组织变粗或消失,在晶界磷元素的偏聚和大量的碳化物在晶界析出导致其冲击韧性下降。窄间隙埋弧焊是一种优质高效的焊接方法,焊接效率高,节约焊材,解决了大厚度工件焊接的技术问题。 展开更多
关键词 压力容器 窄间隙埋弧焊 坡口、接头形式 热处理 脆化 电压
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多级热处理对柔性立管用高强钢组织性能影响 被引量:2
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作者 张大征 高秀华 +1 位作者 杜林秀 王鸿轩 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2020年第1期49-54,共6页
通过对柔性立管用高强钢开展不同的热处理工艺实验并利用光学显微镜、扫描电镜、透射电镜和EBSD技术等表征手段研究了多级热处理对柔性立管用高强钢显微组织、力学性能以及抗氢致开裂性能的影响.结果表明:相对调质热处理而言,多级热处... 通过对柔性立管用高强钢开展不同的热处理工艺实验并利用光学显微镜、扫描电镜、透射电镜和EBSD技术等表征手段研究了多级热处理对柔性立管用高强钢显微组织、力学性能以及抗氢致开裂性能的影响.结果表明:相对调质热处理而言,多级热处理能够显著细化组织,促使析出相细小弥散地分布于组织中并提高了组织中的晶界密度,从而使柔性立管用高强钢的强度升高.多级热处理大大提高了组织中氢陷阱的数量,减小了析出相的尺寸并改善了氢陷阱的分布状态,进而提高了实验钢的溶氢能力,从而在提高实验钢强度的同时明显改善了其抗氢致开裂性能. 展开更多
关键词 多级热处理 柔性立管 低合金高强钢 回火马氏体 析出相
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