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SOTER支持下ALES模型对海南省热带作物适宜性评价研究 被引量:15
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作者 张学雷 张甘霖 龚子同 《地理科学》 CSCD 北大核心 2001年第4期344-349,共6页
在海南省 1:2 5万SOTER数据库的支持下 ,根据联合国土地评价框架的有关原则和概念 ,选取海南省 4种热带作物建立了 8种评价模型 ,运行ALES评价系统 ,得出不同气候条件下、不同土地利用状况下SOTER单元上作物适宜性评价指数 ,将此评价指... 在海南省 1:2 5万SOTER数据库的支持下 ,根据联合国土地评价框架的有关原则和概念 ,选取海南省 4种热带作物建立了 8种评价模型 ,运行ALES评价系统 ,得出不同气候条件下、不同土地利用状况下SOTER单元上作物适宜性评价指数 ,将此评价指数与GIS相连 。 展开更多
关键词 SOTER ales 海南 作物适宜性评价 热带作物 土地评价 气候条件
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灭菌过程中AGEs和ALEs的形成及抑制
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作者 王婧 朴春红 +3 位作者 王玉梅 刘俊梅 胡洋 唐玉芳 《吉林农业大学学报》 CAS CSCD 北大核心 2022年第5期541-547,共7页
在巴氏杀菌和高温高压灭菌条件下,研究葡萄糖/果糖-BSA,亚油酸-赖氨酸/BSA和豆乳中晚期糖基化终末产物(Advanced glycation end products,AGEs)或晚期脂质过氧化终产物(Advanced lipid peroxidation end products,ALEs)形成情况及荞麦... 在巴氏杀菌和高温高压灭菌条件下,研究葡萄糖/果糖-BSA,亚油酸-赖氨酸/BSA和豆乳中晚期糖基化终末产物(Advanced glycation end products,AGEs)或晚期脂质过氧化终产物(Advanced lipid peroxidation end products,ALEs)形成情况及荞麦壳提取物(Buckwheat hull extract,BHE)对其的抑制作用,以氨基胍(Amino guanidine,AG)作为阳性对照。结果表明:在不同的体系灭菌过程中均形成了大量的AGEs或ALEs。在葡萄糖/果糖-BSA体系中BHE呈现出高抑制AGEs活性,最高抑制率达到66.55%(80℃,1 h),其抑制方式与AG不同。在亚油酸-赖氨酸/BSA体系中,BHE对其ALEs的形成抑制效果也高于AG,但其抑制率低于葡萄糖/果糖-BSA体系,最高抑制率为39.14%(80℃,6 h)。加入BHE豆乳经灭菌后,其荧光值与未加入的豆乳相比,均显著性下降,下降幅度为11.78%(80℃,1 h)、14.32%(115℃,20 min)和14.09%(121℃,20 min)。荞麦壳提取物能显著降低食品加工中AGEs和ALEs的形成,在低褐变食品加工中具有重要意义。 展开更多
关键词 荞麦壳提取物 美拉德反应 AGES ales 巴氏杀菌 高温高压灭菌
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Stonehenge Has Got a Younger Sister Ales Stones in Sweden Decoded
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作者 Nils-Axel Morner Bob G.Lind 《International Journal of Astronomy and Astrophysics》 2012年第1期23-27,共5页
We report a novel finding that Stonehenge in England and Ales Stones in Sweden were built with the same basic geometry and using the megalithic yard as standard of measure. This opens quite new perspectives into cultu... We report a novel finding that Stonehenge in England and Ales Stones in Sweden were built with the same basic geometry and using the megalithic yard as standard of measure. This opens quite new perspectives into cultural influence, travel and trading in the Bronze Age. 展开更多
关键词 ARCHAEOASTRONOMY Stone Calendars STONEHENGE ales Stones
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04034 抗过敏口服干糖浆Alesion在日本获准制造
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作者 刘敏 《国外药讯》 2005年第4期16-16,共1页
Alesion(epinastine hydrochloride,盐酸依匹斯汀)(Ⅰ)1%干糖浆是一种过敏病治疗药,对儿童皮肤病和过敏性鼻炎相关性紫癜高度有效且安全。它有强抗组胺作用,但几乎没有中枢神经系统作用,因其在大脑内的分布水平较低。这个产品是日... Alesion(epinastine hydrochloride,盐酸依匹斯汀)(Ⅰ)1%干糖浆是一种过敏病治疗药,对儿童皮肤病和过敏性鼻炎相关性紫癜高度有效且安全。它有强抗组胺作用,但几乎没有中枢神经系统作用,因其在大脑内的分布水平较低。这个产品是日本第一个儿童用一天给药一次的抗过敏干糖浆制剂,预期将改善儿童病人的顺从性。 展开更多
关键词 抗过敏口服干糖浆 alesion 日本 获准制造
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PROTECTION AND DAMAGE OF PREFORMED OXIDE SCALES OF Fe-25Cr-5Al AND-10Al ALLOYS DURING THEIR SUBSEQUENT SULFIDATION
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作者 Qi, Huibin Zhu, Rizhang +1 位作者 He, Yedong Wang, Shujuan (Department of Surface Science and Corrosion Engineering,University of Science and Technology Beijing,Beijing100083) 《中国有色金属学会会刊:英文版》 CSCD 1994年第4期66-71,共6页
PROTECTIONANDDAMAGEOFPREFORMEDOXIDESCALESOFFe-25Cr-5AlAND-10AlALLOYSDURINGTHEIRSUBSEQUENTSULFIDATION¥Qi,Huib... PROTECTIONANDDAMAGEOFPREFORMEDOXIDESCALESOFFe-25Cr-5AlAND-10AlALLOYSDURINGTHEIRSUBSEQUENTSULFIDATION¥Qi,Huibin;Zhu,Rizhang;He... 展开更多
关键词 Fe-25Cr-5Al Fe-25Cr-10Al PREOXIDATION SULFIDATION
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异种金属铝/镍片微连接及接头可靠性分析
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作者 郑亚杰 吴集思 +3 位作者 叶钫 王文华 杨成刚 杨平 《热加工工艺》 北大核心 2026年第1期172-178,共7页
采用微电阻点焊方法实现厚度均为0.1 mm的铝片和镍片的连接,研究了焊接电流对焊缝显微组织、力学性能及电性能的影响,最后采用加速通电试验对接头的可靠性进行了测试。采用扫描电镜、X射线衍射、四探针检测和拉伸试验等方法,研究了接头... 采用微电阻点焊方法实现厚度均为0.1 mm的铝片和镍片的连接,研究了焊接电流对焊缝显微组织、力学性能及电性能的影响,最后采用加速通电试验对接头的可靠性进行了测试。采用扫描电镜、X射线衍射、四探针检测和拉伸试验等方法,研究了接头的微观结构、相组成、电性能和力学性能。结果表明,随着微电阻点焊电流在1.20~1.40 kA范围内增加,焊缝晶粒尺寸逐渐减小,接头电阻率增加。因焊缝区与环境间温差较大,更易形核,晶粒细小;这加剧了电子在晶界处的散射,导致电阻率升高。在可靠性测试中,随通电时间增加,焊缝晶粒尺寸减小,接头电阻率增大,而接头拉剪力减小。这是由于连续电流焦耳热效应和接头组织的差异,导致每个区域的热失配,加快了微裂纹的萌生,并沿晶界扩展。 展开更多
关键词 Al/Ni异种金属 微电阻点焊 可靠性 电阻率 拉剪力
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含Al-Si镀层的22MnB5板激光焊接接头金属间化合物生长分析
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作者 钱朱青 刘海江 +1 位作者 汪乾 魏冉 《机械科学与技术》 北大核心 2026年第1期75-84,共10页
为得到含有Al-Si镀层的22MnB5钢板在激光焊接接头处金属间化合物的生成情况,采用实验和理论计算相结合的方法,针对焊接过程中Al元素流入熔池与母材中的Fe、Mn形成的二元和三元金属间化合物,以界面元素分布及力学性能为基础,从最大形核... 为得到含有Al-Si镀层的22MnB5钢板在激光焊接接头处金属间化合物的生成情况,采用实验和理论计算相结合的方法,针对焊接过程中Al元素流入熔池与母材中的Fe、Mn形成的二元和三元金属间化合物,以界面元素分布及力学性能为基础,从最大形核驱动力角度出发,利用金属间化合物吉布斯自由能变化量为依据分析Al/Fe/Mn金属间化合物的种类和生长成形序列。结果表明,脆性金属间化合物的生成对焊缝区显微硬度有增强效应;Al-Fe二元金属间化合物的生成序列最为靠前,Al-Mn二元金属间化合物与Al-Fe-Mn三元金属间化合物的生成序列相近,Fe-Mn二元金属间化合物生成序列靠后在界面层基本不会生成;在Al元素均质化程度较好的区域其基本以Al-Fe二元金属间化合物形式存在,在Al元素偏聚情况严重的焊趾区域Al-Fe、Al-Mn及Al-Fe-Mn的吉布斯自由能结果近似,金属间化合物种类丰富。 展开更多
关键词 激光焊接 22MnB5钢板 AL元素 金属间化合物 金属材料
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激光合金化磨削Ti6Al4V表面硼碳共渗机理研究
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作者 魏永乐 孙聪 《表面技术》 北大核心 2026年第1期70-80,共11页
目的激光合金化技术常用于Ti6Al4V零部件表面强化涂层制备。然而,传统制造方法需要对合金化表面进行二次光整加工,导致工艺过程复杂,生产效率低。为实现高性能Ti6AlV表面的高效性-形协同制造,提出一种钛合金表面加工-强化一体化新技术,... 目的激光合金化技术常用于Ti6Al4V零部件表面强化涂层制备。然而,传统制造方法需要对合金化表面进行二次光整加工,导致工艺过程复杂,生产效率低。为实现高性能Ti6AlV表面的高效性-形协同制造,提出一种钛合金表面加工-强化一体化新技术,即激光辅助磨削。方法制备可分离式B4C涂层,将激光合金化过程耦合到磨削加工过程中去,在单次进给过程中实现Ti6Al4V磨削表面的硼碳共渗强化。结果激光余热促进了多磨粒对重熔层材料的协同去除过程,使动态磨削加工更加稳定。与常规磨削方法相比,激光合金化磨削表面的粗糙度Sa降低了30%。激光合金化磨削可以在Ti6Al4V表面形成含有物弥散分布碳化物和硼化的重熔层。重熔层硬度达到710HV,其耐磨性远超Ti6Al4V基体。同时,重熔层可以有效地阻隔腐蚀介质与基体材料接触,加工表面自腐蚀电流密度Jcorr仅为基体磨削表面的1/3。结论在外置B4C涂层的辅助作用下,激光合金化磨削可实现Ti6Al4V零部件表面的硼碳强化和磨削光整,该技术推动了高性能Ti6Al4V表面性能-精度协同制造向工业化迈进,并为表面抗疲劳领域提供了重要的理论指导。 展开更多
关键词 激光合金化磨削 TI6AL4V B_(4)C涂层 性能-精度协同制造
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基于ScCO_(2)低温微量润滑工艺的CFRP/Ti6Al4V叠层结构钻削试验研究
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作者 李迎港 陈燕 +2 位作者 杨浩骏 郭南 陈德雄 《航空制造技术》 北大核心 2026年第1期162-172,共11页
为了降低CFRP/Ti6Al4V叠层结构的钻削温度,提高钻削质量,利用超临界二氧化碳(Supercritical carbon dioxide,ScCO_(2))对润滑油具有高溶解性的特点,提出了低温微量润滑(Cryogenic minimum quantity lubrication,CMQL)工艺,进行了CMQL系... 为了降低CFRP/Ti6Al4V叠层结构的钻削温度,提高钻削质量,利用超临界二氧化碳(Supercritical carbon dioxide,ScCO_(2))对润滑油具有高溶解性的特点,提出了低温微量润滑(Cryogenic minimum quantity lubrication,CMQL)工艺,进行了CMQL系统油滴雾化效果测试和输出温度测试,开展了CMQL条件下CFRP/Ti6Al4V叠层结构的低频振动钻削试验,分析了CO_(2)压力对切削加工性的影响。结果表明,增加CO_(2)压力可以提高CMQL装置的雾化效果和冷却能力,压力增加至8 MPa,CO_(2)为超临界态,其输出温度可低至-80℃以下;系统压力从5 MPa增至9 MPa,CFRP与Ti6Al4V层的钻削温度分别降低了15.91%和50.78%,轴向力分别增大了65.22%和20.26%,扭矩分别减小了23.33%和16.77%;Ti6Al4V层的出口毛刺高度降低42.04%,CFRP出口分层因子减小5.41%;在压力为7 MPa、8 MPa和9 MPa时,CFRP/Ti6Al4V叠层结构可得到较低的孔壁粗糙度。 展开更多
关键词 CFRP/Ti6Al4V叠层结构 低温微量润滑(CMQL)工艺 超临界二氧化碳(ScCO_(2)) 钻削温度 钻削质量
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Al含量对耐蚀钢相变行为及组织性能的影响
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作者 孙傲 杨博 +4 位作者 付青才 刘志伟 张瑞琦 孙继鸿 刘志众 《特殊钢》 2026年第1期112-119,共8页
利用Thermo-Calc热力学计算软件、扫描电镜、拉伸试验机等设备对比研究了不同Al含量对耐蚀试验钢的相变行为、组织及力学性能的影响,并通过电化学腐蚀试验及周浸腐蚀试验对不同Al含量试验钢的耐蚀性能进行了研究与分析。结果表明,w[Al]... 利用Thermo-Calc热力学计算软件、扫描电镜、拉伸试验机等设备对比研究了不同Al含量对耐蚀试验钢的相变行为、组织及力学性能的影响,并通过电化学腐蚀试验及周浸腐蚀试验对不同Al含量试验钢的耐蚀性能进行了研究与分析。结果表明,w[Al]从0.5%增加到1%,试验钢中铁素体+奥氏体两相区范围缩小,奥氏体形成温度从1 450℃降低到1 430℃、渗碳体的析出温度从760℃升高到770℃,Al含量的提升对铁素体相的影响较大,但对钢中的析出相影响较小。Al含量的提升有助于组织中铁素体相的形成,尽管Al含量的提升会增大钢中晶粒粗化的倾向性,强度略有降低,但可提高钢的塑性及低温冲击韧性,尤其是对于提高钢的冲击韧性尤为显著。Al含量的提升不仅有助于腐蚀电位正移、减小钢的腐蚀电流密度,还可降低试验钢的腐蚀速率;随着Al含量的增加,试验钢的致密度及锈层中的具有保护作用的α-FeOOH相比例提升,有效地阻碍了腐蚀介质(Cl-)的进一步渗透,降低了腐蚀介质在锈层中的含量,从而提高钢的耐海洋大气腐蚀性能。 展开更多
关键词 AL含量 相变行为 显微组织 力学性能
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Influence of interface shape on microstructure and mechanical properties of Mg/Al composite plates fabricated by hot-pressing
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作者 Shi-jun TAN Bo SONG +6 位作者 Hao-hua XU Ting-ting LIU Jia SHE Sheng-feng GUO Xian-hua CHEN Kai-hong ZHENG Fu-sheng PAN 《Transactions of Nonferrous Metals Society of China》 2026年第1期124-143,共20页
A new method was proposed for preparing AZ31/1060 composite plates with a corrugated interface,which involved cold-pressing a corrugated surface on the Al plate and then hot-pressing the assembled Mg/Al plate.The resu... A new method was proposed for preparing AZ31/1060 composite plates with a corrugated interface,which involved cold-pressing a corrugated surface on the Al plate and then hot-pressing the assembled Mg/Al plate.The results show that cold-pressing produces intense plastic deformation near the corrugated surface of the Al plate,which promotes dynamic recrystallization of the Al substrate near the interface during the subsequent hot-pressing.In addition,the initial corrugation on the surface of the Al plate also changes the local stress state near the interface during hot pressing,which has a large effect on the texture components of the substrates near the corrugated interface.The construction of the corrugated interface can greatly enhance the shear strength by 2−4 times due to the increased contact area and the strong“mechanical gearing”effect.Moreover,the mechanical properties are largely depended on the orientation relationship between corrugated direction and loading direction. 展开更多
关键词 Mg/Al composite plate interface shape MICROSTRUCTURE mechanical properties TEXTURE
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3D morphological characteristics of shrinkage porosities and their relationship with microstructures in Mg−12Al magnesium alloy
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作者 Chuang-ming LI Ang ZHANG +6 位作者 Yong-feng LI Heng-rui HU He LIU Yu-yang GAO Zhi-hua DONG Bin JIANG Fu-sheng PAN 《Transactions of Nonferrous Metals Society of China》 2026年第1期96-111,共16页
The dependence of shrinkage porosities on microstructure characteristics of Mg−12Al alloy was investigated.The distribution,morphology,size,and number density of shrinkage porosities were analyzed under different cool... The dependence of shrinkage porosities on microstructure characteristics of Mg−12Al alloy was investigated.The distribution,morphology,size,and number density of shrinkage porosities were analyzed under different cooling rates.The relationship between shrinkage porosities and microstructure characteristics was discussed in terms of temperature conditions,feeding channel characteristics,and feeding capacity.Further,the feeding behavior of the residual liquid phase in the solid skeleton was quantified by introducing permeability.Results show a strong correlation between the solid microstructure skeleton and shrinkage porosity characteristics.An increase in permeability corresponds to a declining number density of shrinkage porosities.This study aims to provide a more complete understanding how to reduce shrinkage porosities by controlling microstructure characteristics. 展开更多
关键词 Mg−12Al alloy shrinkage porosity SOLIDIFICATION microstructure characteristics morphological characteristics
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Electron-Deficient Type Electride Li_(4)Al under High Pressure:Bonding Properties and Superconductivity
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作者 Daoyuan Zhang Yanliang Wei +3 位作者 Chenlong Xie Yilong Pan Zhao Liu Tian Cui 《Chinese Physics Letters》 2026年第1期142-155,共14页
High-pressure electrides,characterized by the presence of interstitial quasi-atoms(ISQs),possess unique electronic structures and physical properties,such as diverse dimensions of electride states exhibiting different... High-pressure electrides,characterized by the presence of interstitial quasi-atoms(ISQs),possess unique electronic structures and physical properties,such as diverse dimensions of electride states exhibiting different superconductivity,which has attracted significant attention.Here,we report a new electron-deficient type of electride Li_(4)Al and identify its phase transition progress with pressurization,where the internal driving force behind phase transitions,bonding characteristics,and superconducting behaviors have been revealed based on first-principles density functional theory.Through analysis of the bonding properties of electride Li_(4)Al,we demonstrate that the ISQs exhibiting increasingly covalent characteristics between Al ions play a critical role in driving the phase transition.Our electron–phonon coupling calculations indicate that all phases exhibit superconducting behaviors.Importantly,we prove that the ISQs behave as free electrons and demonstrate that the factor governing T_(c) is primarily derived from Li-p-hybridized electronic states with ISQ compositions.These electronic states are scattered by low-frequency phonons arising from mixed vibrations of Li and Al affected by ISQs to enhance electron–phonon coupling.Our study largely expands the research scope of electrides,provides new insight for understanding phase transitions,and elucidates the effects of ISQs on superconducting behavior. 展开更多
关键词 low frequency phonons bonding properties Li Al phase transition electride interstitial quasi atoms SUPERCONDUCTIVITY electron phonon coupling
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Advancements in titanium nanocomposites:Microstructure and fretting wear resistance via spark plasma sintering
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作者 Basant Lal Abhijit Dey 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期265-281,共17页
This study investigated enhancing the wear resistance of Ti6Al4V alloys for medical applications by incorporating Ti C nanoreinforcements using advanced spark plasma sintering(SPS). The addition of up to 2.5wt% Ti C s... This study investigated enhancing the wear resistance of Ti6Al4V alloys for medical applications by incorporating Ti C nanoreinforcements using advanced spark plasma sintering(SPS). The addition of up to 2.5wt% Ti C significantly improved the mechanical properties, including a notable 18.2% increase in hardness(HV 332). Fretting wear tests against 316L stainless steel(SS316L) balls demonstrated a 20wt%–22wt% reduction in wear volume in the Ti6Al4V/Ti C composites compared with the monolithic alloy. Microstructural analysis revealed that Ti C reinforcement controlled the grain orientation and reduced the β-phase content, which contributed to enhanced mechanical properties. The monolithic alloy exhibited a Widmanstätten lamellar microstructure, while increasing the Ti C content modified the wear mechanisms from ploughing and adhesion(0–0.5wt%) to pitting and abrasion(1wt%–2.5wt%). At higher reinforcement levels, the formation of a robust oxide layer through tribo-oxide treatment effectively reduced the wear volume by minimizing the abrasive effects and plastic deformation. This study highlights the potential of SPS-mediated Ti C reinforcement as a transformative approach for improving the performance of Ti6Al4V alloys, paving the way for advanced medical applications. 展开更多
关键词 Ti6Al4V alloy TiC particle MICROSTRUCTURE wear mechanism spark plasma sintering
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Quantitative analysis on T1 phase precipitation behaviors and mechanicalproperties of 2195 Al−Li alloy after cryogenic deformation and aging
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作者 Meng-jia YAO Hua-bo ZHOU +1 位作者 Rui-qian WANG Wei LIU 《Transactions of Nonferrous Metals Society of China》 2026年第1期25-42,共18页
The water-quenched(WQ)2195 Al−Li alloy was subjected to stretching at different temperatures,from room temperature(RT)to−196℃(CT),to investigate the effect of cryogenic deformation on the aging precipitation behavior... The water-quenched(WQ)2195 Al−Li alloy was subjected to stretching at different temperatures,from room temperature(RT)to−196℃(CT),to investigate the effect of cryogenic deformation on the aging precipitation behaviors and mechanical properties.The precipitation kinetics of the T1 phase and the microstructures in peak aging state were investigated through the differential scanning calorimetric(DSC)tests and electron microscopy observation.The results show that−196℃deformation produces a high dislocation density,which promotes the precipitation of the T1 phase and refines its sizes significantly.In addition,the grain boundary precipitates(GBPs)of−196℃-stretched samples are suppressed considerably due to the high dislocation density in the grain interiors,which increases the ductility.In comparison,the strength remains nearly constant.Thus,it is indicated that cryogenic forming has the potential to provide the shape and property control for the manufacture of critical components of aluminum alloys. 展开更多
关键词 Al−Li alloy cryogenic stretching T1 phase precipitation kinetics grain boundary precipitates
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Microstructure evolution and corrosion behavior of refill friction stir spot welding joint for dissimilar Al alloys
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作者 Fang-yuan JIANG Da ZHANG +3 位作者 Yan-kun MA Jiang-tao XIONG Wei GUO Jing-long LI 《Transactions of Nonferrous Metals Society of China》 2026年第1期80-95,共16页
The dissimilar 2B06 and 7B04 Al alloy joints were prepared by refill friction stir spot welding(RFSSW),and the microstructural evolution and corrosion behavior of the joints were investigated.Based on microstructural ... The dissimilar 2B06 and 7B04 Al alloy joints were prepared by refill friction stir spot welding(RFSSW),and the microstructural evolution and corrosion behavior of the joints were investigated.Based on microstructural analysis,the welded joints exhibit distinct microstructural zones,including the stir zone(SZ),thermomechanically affected zone(TMAZ),and heat-affected zone(HAZ).The grain size of each zone is in the order of HAZ>TMAZ>SZ.Notably,the TMAZ and HAZ contain significantly larger secondary-phase particles compared to the SZ,with particle size in the HAZ increasing at higher rotational speeds.Electrochemical tests indicate that corrosion susceptibility follows the sequence of HAZ>TMAZ>SZ>BM,with greater sensitivity observed at increased rotational speeds.Post-corrosion mechanical performance degradation primarily arises from crevice corrosion at joint overlaps,but not from the changes in the microstructure. 展开更多
关键词 refill friction stir spot welding high strength Al alloy dissimilar joint microstructure evolution corrosion behavior
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Precipitation behavior of S' phase in rapid cold punched Al−Cu−Mg alloy
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作者 Ze-yi HU Pu-yu LI +4 位作者 Cai-he FAN Shuai WU Yi-ling LU Yin-chun XIAO Ling OU 《Transactions of Nonferrous Metals Society of China》 2026年第1期68-79,共12页
The evolution of the S'precipitate in Al−Cu−Mg alloy was investigated using transmission electron microscopy(TEM),high-angle annular dark-field scanning transmission electron microscopy(HAADF−STEM),molecular dynam... The evolution of the S'precipitate in Al−Cu−Mg alloy was investigated using transmission electron microscopy(TEM),high-angle annular dark-field scanning transmission electron microscopy(HAADF−STEM),molecular dynamics(MD)simulations,and other analytical techniques.The precipitation behavior during different aging stages of the supersaturated solid solution formed after rapid cold punching was focused,which induces rapid dissolution of precipitates.The findings reveal that the precipitation sequence is significantly influenced by aging temperature.At higher aging temperatures,which mitigate lattice distortion in the matrix,the precipitation sequence follows the conventional path.Conversely,at lower aging temperatures,where lattice distortion persists,the sequence deviates,suppressing the formation of Guinier−Preston−Bagaryatsky(GPB)zones.MD simulations confirm that the variations in solute atom diffusion rates at different aging temperatures lead to the differences in the S'phase precipitation sequence. 展开更多
关键词 Al−Cu−Mg alloy aging treatment S'phase evolution rapid cold punching molecular dynamics simulations
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Effect of different artificial aging treatments on tensile creep behavior of extruded lean Mg−Al−Ca−Mn alloy
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作者 Ming-yu LI Zhi-ping GUAN +6 位作者 Jia-wang SONG Hong-jie JIA Pin-kui MA Gang WANG Wei YAN Ming-hui WANG Zhi-gang LI 《Transactions of Nonferrous Metals Society of China》 2026年第1期112-123,共12页
The effects of artificial aging(T6)on the creep resistance with tensile stresses in the range of 50−80 MPa at 175℃were investigated for an extruded Mg−1.22Al−0.31Ca−0.44Mn(wt.%)alloy.The Guinier-Preston(G.P.)zones pr... The effects of artificial aging(T6)on the creep resistance with tensile stresses in the range of 50−80 MPa at 175℃were investigated for an extruded Mg−1.22Al−0.31Ca−0.44Mn(wt.%)alloy.The Guinier-Preston(G.P.)zones primarily precipitate in the sample aged at 200℃for 1 h(T6-200℃/1h),while the Al_(2)Ca phases mainly precipitate in the sample aged at 275℃for 8 h(T6-275℃/8h).The T6-200℃/1h sample exhibits excellent creep resistance,with a steady-state creep rate one order of magnitude lower than that of the T6-275℃/8h sample.The abnormally high stress exponent(~8.2)observed in the T6-200℃/1h sample is associated with the power-law breakdown mechanism.TEM analysis illuminates that the creep mechanism for the T6-200℃/1h sample is cross-slip between basal and prismatic dislocations,while the T6-275℃/8h sample exhibits a mixed mechanism of dislocation cross-slip and climb.Compared with the Al_(2)Ca phase,the dense G.P.zones effectively impede dislocation climb and glide during the creep process,demonstrating superior creep resistance of the T6-200℃/1h sample. 展开更多
关键词 Mg−Al−Ca−Mn alloy tensile creep artificial aging cross slip
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Low-temperature bonding of W90 tungsten heavy alloy using Sn−2Al filler metal by ultrasonic-assisted coating technology
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作者 Xiao-guo SONG Xu-dong ZHANG +3 位作者 Wei FU Xiao-yu TIAN Guang-dong WU Sheng-peng HU 《Transactions of Nonferrous Metals Society of China》 2026年第1期259-272,共14页
The Sn−2Al filler metal was utilized to bond W90 tungsten heavy alloys by the ultrasonic-assisted coating technology in atmospheric environment at 250℃.The effects of ultrasonic power and ultrasonic time on microstru... The Sn−2Al filler metal was utilized to bond W90 tungsten heavy alloys by the ultrasonic-assisted coating technology in atmospheric environment at 250℃.The effects of ultrasonic power and ultrasonic time on microstructure and interfacial strength of Sn−2Al/W90 interface were investigated.The ultrasound improved the wettability of Sn−2Al filler metal on W90 surface.As the ultrasonic power increased and ultrasonic time increased,the size of Al phase in seam decreased.The maximum value of Sn−2Al/W90 interfacial strength reached 30.1 MPa.Based on the acoustic pressure simulation and bubble dynamics,the intensity of cavitation effect was proportional to ultrasonic power.The generated high temperature and high pressure by cavitation effect reached 83799.6 K and 1.26×10^(14) Pa,respectively. 展开更多
关键词 W−Ni−Fe alloy Sn−Al filler metal ultrasonic-assisted coating technology acoustic pressure CAVITATION bubble dynamics
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