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Cu、Sn、Ag同位素在古金属制品溯源研究中的应用
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作者 程文斌 郎兴海 +6 位作者 欧阳辉 彭义伟 陈翠华 谢富伟 王勇 彭强 杨超 《地质学报》 EI CAS CSCD 北大核心 2024年第7期2001-2024,共24页
近年来,随着同位素分析方法的不断突破和新一代多接收电感耦合等离子体质谱(MC-ICP-MS)测试技术的广泛应用,Cu、Sn、Ag等非传统同位素在古代金属制品溯源研究中显示出较好的应用前景。本文综述了近20年来Cu、Sn、Ag同位素在古代金属制... 近年来,随着同位素分析方法的不断突破和新一代多接收电感耦合等离子体质谱(MC-ICP-MS)测试技术的广泛应用,Cu、Sn、Ag等非传统同位素在古代金属制品溯源研究中显示出较好的应用前景。本文综述了近20年来Cu、Sn、Ag同位素在古代金属制品应用研究的相关进展,并展望了其应用前景:①由于不同矿床之间Cu、Sn、Ag同位素存较大重叠,这些同位素均难以作为独立的证据追溯金属制品的地质来源;②Cu同位素在原生矿石与表生矿石之间存在较大的分馏,是示踪铜矿石类型的可靠方法,Ag同位素也具推断银矿石类型的潜力;③将Cu、Sn、Ag同位素与Pb同位素、微量元素相结合,并采用合理的统计方法,开展综合溯源研究将是今后应用非传统同位素进行古代金属制品溯源研究的发展方向。 展开更多
关键词 Cu同位素 sn同位素 ag同位素 古代金属制品 溯源研究
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银含量对快速热冲击下Sn−xAg−0.5Cu焊点显微组织和力学性能的影响
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作者 彭晨 王善林 +6 位作者 吴鸣 尹立孟 陈玉华 叶科江 陈维政 张体明 谢吉林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第6期1922-1935,共14页
使用高频感应加热设备研究Ag含量对快速热冲击下Sn−xAg−0.5Cu焊点的显微组织和剪切强度的影响。结果表明,Ag含量的增加使焊点表面更致密光滑,减少焊点内部长条状Cu6Sn5金属间化合物(IMC)的产生,从而提高焊点的抗氧化性。Ag能够加快焊点... 使用高频感应加热设备研究Ag含量对快速热冲击下Sn−xAg−0.5Cu焊点的显微组织和剪切强度的影响。结果表明,Ag含量的增加使焊点表面更致密光滑,减少焊点内部长条状Cu6Sn5金属间化合物(IMC)的产生,从而提高焊点的抗氧化性。Ag能够加快焊点界面IMC层的生长速度,Cu6Sn5层的生长速度由体扩散和晶界扩散共同决定,Cu3Sn层的生长速度由体扩散和界面反应共同决定。在快速热冲击环境下,焊点的断裂模式从韧性断裂转变为脆性断裂,而高Ag含量使得焊点的断裂模式转变时间更短,降低焊点的抗热疲劳性能。 展开更多
关键词 ag含量 快速热冲击 snag−Cu 焊点 生长动力学 断裂模式
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电镀参数对电沉积Sn-Ag-Cu合金镀层的影响
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作者 文思倩 闫焉服 +1 位作者 周慧 程江洋 《稀有金属与硬质合金》 CAS CSCD 北大核心 2024年第1期63-68,80,共7页
采用自主研发的甲磺酸锡银铜电镀液在黄铜基体上制备了Sn-Ag-Cu合金镀层。通过扫描电子显微镜(SEM)及其自带的能谱仪(EDS)分析了电镀工艺参数对Sn-Ag-Cu合金镀层的成分、表面形貌以及镀层厚度产生的影响。结果表明,当电流密度为4 A/dm^... 采用自主研发的甲磺酸锡银铜电镀液在黄铜基体上制备了Sn-Ag-Cu合金镀层。通过扫描电子显微镜(SEM)及其自带的能谱仪(EDS)分析了电镀工艺参数对Sn-Ag-Cu合金镀层的成分、表面形貌以及镀层厚度产生的影响。结果表明,当电流密度为4 A/dm^(2)、温度为25℃及pH为5.5时,可获得结晶较细且致密,表面平整光亮且厚度均匀的Sn-Ag-Cu合金镀层。 展开更多
关键词 sn-ag-Cu合金 电镀参数 甲磺酸锡银铜电镀液 表面形貌 镀层厚度 电流密度
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Sn和Ni对过冷Ag-28.1Cu共晶合金凝固组织的影响
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作者 李宏 金青林 林水根 《材料科学与工艺》 CAS CSCD 北大核心 2024年第5期50-57,共8页
为了揭示在共晶相中具有不同固溶度的Sn和Ni元素对过冷共晶凝固组织的影响和作用机理,使用熔融玻璃净化和循环过热相结合的方法制备了过冷Ag-28.1Cu-xM(x=0%0.5%、1%,质量分数;M=Sn,Ni)共晶合金试样,分析了第3组元Sn和Ni对过冷Ag-Cu共... 为了揭示在共晶相中具有不同固溶度的Sn和Ni元素对过冷共晶凝固组织的影响和作用机理,使用熔融玻璃净化和循环过热相结合的方法制备了过冷Ag-28.1Cu-xM(x=0%0.5%、1%,质量分数;M=Sn,Ni)共晶合金试样,分析了第3组元Sn和Ni对过冷Ag-Cu共晶合金凝固组织的影响。结果表明添加Sn元素不会改变宏观组织的分区特征,微观组织中出现反常共晶增多和粗化的现象,并具有随机的取向分布。凝固过程中Sn会形成垂直于固-液界面的浓度梯度,造成胞状界面失稳形成树枝状,但仍能够维持耦合共晶生长。而添加Ni元素会使宏观组织的分区特征消失,微观组织中则出现了单相枝晶,且表现出单一取向分布,原因是第3组元Ni平行于固-液界面扩散,使共晶合金生长方式从耦合生长转变为离异生长。 展开更多
关键词 ag-28.1Cu共晶合金 深过冷 合金元素sn和Ni 凝固组织 EBSD
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添加不同含量Ga对新型SnInAg无铅焊料合金耐酸碱性的影响研究
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作者 任鹏凯 徐冬霞 +2 位作者 曹福磊 褚亚东 张红霞 《材料保护》 CAS CSCD 2024年第5期25-32,共8页
为改进Sn-11In-1.5Ag无铅焊料合金焊料的耐蚀性,采用失重法和电化学实验研究了Sn-11In-1.5Ag-xGa(x=0,0.1,0.3,0.5,0.7,质量分数,%)焊料合金在腐蚀环境中的腐蚀行为。利用扫描电镜(SEM)观察Sn-11In-1.5Ag-xGa焊料合金的表面形貌,利用X... 为改进Sn-11In-1.5Ag无铅焊料合金焊料的耐蚀性,采用失重法和电化学实验研究了Sn-11In-1.5Ag-xGa(x=0,0.1,0.3,0.5,0.7,质量分数,%)焊料合金在腐蚀环境中的腐蚀行为。利用扫描电镜(SEM)观察Sn-11In-1.5Ag-xGa焊料合金的表面形貌,利用X射线衍射仪(XRD)对焊料表面的腐蚀产物进行表征。结果表明:无论是在酸性还是碱性溶液中,添加的Ga均能提高Sn-11In-1.5Ag焊料合金的耐蚀性。随Ga含量的增加,焊料的耐蚀性也随之增强。对于相同成分的焊料合金,其耐蚀性在碱性溶液中优于酸性溶液。SEM观察表明,在Sn-11In-1.5Ag合金中加入Ga可以明显减轻焊料的腐蚀程度。XRD分析表明,焊料合金在酸性和碱性溶液中的腐蚀产物均为In_(2)O_(3)。 展开更多
关键词 无铅焊料 sn-In-ag合金 GA 耐蚀性
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Twinning behaviors of Mg-Sn alloy with basal or prismatic Mg_2Sn
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作者 Rui-hao FU Yang-jie WAN +6 位作者 Xun-fei XIONG Dong-di YIN Man-ping LIU Bin JIANG Zi-rong ZHOU Yu-yang GAO Ying ZENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2800-2813,共14页
The Mg-Sn alloys,with basal or prismatic Mg2Sn laths,were employed to reveal the effect of precipitate orientation on twinning behavior quantitatively.The Mg-5wt.%Sn alloys with basal or prismatic Mg2Sn were compresse... The Mg-Sn alloys,with basal or prismatic Mg2Sn laths,were employed to reveal the effect of precipitate orientation on twinning behavior quantitatively.The Mg-5wt.%Sn alloys with basal or prismatic Mg2Sn were compressed to study the twinning behaviors.Subsequently,an Orowan strengthening model was developed to quantitatively investigate the critical resolved shear stress(CRSS)increment of precipitates on twinning.The results revealed that the prismatic precipitates hindered the transfer and growth of tensile twins more effectively compared with the basal precipitates.The decreased proportion of tensile twins containing prismatic Mg2Sn might be attributed to a larger CRSS increment for tensile twins compared with that for basal precipitates.The obvious decreased twinning transfer in the alloy with prismatic Mg2Sn could be due to its higher geometrically necessary dislocation and enhanced CRSS of tensile twins.Notably,the prismatic precipitates have a better hindering effect on tensile twins during compression. 展开更多
关键词 Mg−sn alloy orientation regulation twinning behavior Mg2sn lath Orowan strengthening
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Strengthening effect of prefabrication(10-12)tensile twinning on AZ80+0.4%Ce magnesium alloy and inhibition mechanism of discontinuous precipitation
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作者 Zhen Wang Xi Zhao +5 位作者 Zhimin Zhang Yaojin Wu Kai Chen Xianwei Ren Dengkui Wang Wei Wang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第5期1918-1930,共13页
This paper provided an effective method to further improve the mechanical properties of the AZ80+0.4%Ce magnesium alloy wheel spoke.The effect of high strength and ductility was obtained with a yield strength of 295.3... This paper provided an effective method to further improve the mechanical properties of the AZ80+0.4%Ce magnesium alloy wheel spoke.The effect of high strength and ductility was obtained with a yield strength of 295.36 MPa,an elongation of 10%,by the combination of pre-deformation(7%deformation)and two-stage aging treatment(120℃/9 h+175℃/24 h).The evolution of the microstructure and properties of the alloy was explored under the coupling conditions of different pre-deformation degrees and multi-stage aging.The results show that,pre-deformation introduced a large number of(1012)tensile twinning and dislocations,which greatly promoted the probability of continuous precipitates(CPs)appearing.On the contrary,the discontinuous precipitates(DPs)were limited by the vertical and horizontal twin structure.As a result,the pre-nucleation method of two-stage aging increased the proportion of CPs by 34%-38%.Owing to the DPs was effectively suppressed,the alloy's yield strength has been greatly improved.Besides,under multi-stage aging,the twin boundaries induce protruding nucleation to form static recrystallization by hindering the migration of dislocations,and the matrix swallows the twins,then the texture gradually tilts from the two poles to the basal plane.As an important supplement,the grain refinement and oblique texture promoted the improvement of the yield strength of the component. 展开更多
关键词 Magnesium alloy Pre-deformed Two-stage aging Tensile twinning Continuous precipitates Texture
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Evolution of mechanical properties,localized corrosion resistance and microstructure of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging
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作者 DAI Xuan-xuan LI Yu-zhang +2 位作者 LIU Sheng-dan YE Ling-ying BAO Chong-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1790-1807,共18页
The evolution of mechanical properties,localized corrosion resistance of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging(NIA)was investigated by hardness test,electrical conductivity test,tensile test,inte... The evolution of mechanical properties,localized corrosion resistance of a high purity Al-Zn-Mg-Cu alloy during non-isothermal aging(NIA)was investigated by hardness test,electrical conductivity test,tensile test,intergranular corrosion test,exfoliation corrosion test,slow strain rate tensile test and electrochemical test,and the mechanism has been discussed based on microstructure examination by optical microscopy,electron back scattered diffraction,scanning electron microscopy and scanning transmission electron microscopy.The NIA treatment includes a heating stage from 40℃to 180℃with a rate of 20℃/h and a cooling stage from 180℃to 40℃with a rate of 10℃/h.The results show that the hardness and strength increase rapidly during the heating stage of NIA since the increasing temperature favors the nucleation and the growth of strengthening precipitates and promotes the transformation of Guinier-Preston(GPI)zones toη'phase.During the cooling stage,the sizes ofη'phase increase with a little change in the number density,leading to a further slight increase of the hardness and strength.As NIA proceeds,the corroded morphology in the alloy changes from a layering feature to a wavy feature,the maximum corrosion depth decreases,and the reason has been analyzed based on the microstructural and microchemical feature of precipitates at grain boundaries and subgrain boundaries. 展开更多
关键词 Al-Zn-Mg-Cu alloy non-isothermal aging mechanical properties localized corrosion resistance MICROSTRUCTURE
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Effect of interrupted aging on mechanical properties and corrosion resistance of 7A75 aluminum alloy
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作者 Xian-wen YANG Ling-ying YE +1 位作者 Yong ZHANG Quan-shi CHENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2415-2430,共16页
The effects of interrupted aging on mechanical properties and corrosion resistance of 7A75 aluminum alloy extruded bar were investigated through various analyses,including electrical conductivity,mechanical properties... The effects of interrupted aging on mechanical properties and corrosion resistance of 7A75 aluminum alloy extruded bar were investigated through various analyses,including electrical conductivity,mechanical properties,local corrosion properties,and slow strain rate tensile stress corrosion tests.Microstructure characterization techniques such as metallographic microscopy,scanning electron microscopy(SEM),and transmission electron microscopy(TEM)were also employed.The results indicate that the tensile strength of the alloy produced by T6I6 aging is similar to that produced by T6I4 aging,and it even exceeds 700 MPa.Furthermore,the yield strength increases by 52.7 MPa,reaching 654.8 MPa after T6I6 aging treatment.The maximum depths of intergranular corrosion(IGC)and exfoliation corrosion(EXCO)decrease from 116.3 and 468.5μm to 89.5 and 324.3μm,respectively.The stress corrosion factor also decreases from 2.1%to 1.6%.These findings suggest that the alloy treated with T6I6 aging exhibits both high strength and excellent stress corrosion cracking resistance.Similarly,when the alloy is treated with T6I4,T6I6 and T6I7 aging,the sizes of grain boundary precipitates(GBPs)are found to be 5.2,18.4,and 32.8 nm,respectively.The sizes of matrix precipitates are 4.8,5.7 and 15.7 nm,respectively.The atomic fractions of Zn in GBPs are 9.92 at.%,8.23 at.%and 6.87 at.%,respectively,while the atomic fractions of Mg are 12.66 at.%,8.43 at.%and 7.00 at.%,respectively.Additionally,the atomic fractions of Cu are 1.83 at.%,2.47 at.%and 3.41 at.%,respectively. 展开更多
关键词 7A75 aluminum alloy interrupted aging aging precipitation behavior mechanical properties intergranular corrosion exfoliation corrosion stress corrosion cracking
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High density dislocations enhance creep ageing response and mechanical properties in 2195 alloy sheet
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作者 WEI Shuo MA Pei-pei +3 位作者 CHEN Long-hui YANG Jian-shi ZHAN Li-hua LIU Chun-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2194-2209,共16页
The creep strain of conventionally treated 2195 alloy is very low,increasing the difficulty of manufacturing Al-Cu-Li alloy sheet parts by creep age forming.Therefore,finding a solution to improve the creep formabilit... The creep strain of conventionally treated 2195 alloy is very low,increasing the difficulty of manufacturing Al-Cu-Li alloy sheet parts by creep age forming.Therefore,finding a solution to improve the creep formability of Al-Cu-Li alloy is vital.A thorough comparison of the effects of cryo-deformation and ambient temperature large pre-deformation(LPD)on the creep ageing response in the 2195 alloy sheet at 160℃with different stresses has been made.The evolution of dislocations and precipitates during creep ageing of LPD alloys are revealed by X-ray diffraction and transmission electron microscopy.High-quality 2195 alloy sheet largely pre-deformed by 80%without edge-cracking is obtained by cryo-rolling at liquid nitrogen temperature,while severe edge-cracking occurs during room temperature rolling.The creep formability and strength of the 2195 alloy are both enhanced by introducing pre-existing dislocations with a density over 1.4×10^(15)m^(−2).At 160℃and 150 MPa,creep strain and creep-aged strength generally increases by 4−6 times and 30−50 MPa in the LPD sample,respectively,compared to conventional T3 alloy counterpart.The elongation of creep-aged LPD sample is low but remains relevant for application.The high-density dislocations,though existing in the form of dislocation tangles,promote the formation of refined T1 precipitates with a uniform dispersion. 展开更多
关键词 creep ageing Al-Cu-Li alloy high dislocation density cryogenic rolling dislocation strengthening
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Ultrahigh strength and improved electrical conductivity in an aging strengthened copper alloy processed by combination of equal channel angular pressing and thermomechanical treatment
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作者 WANG Xu LI Zhou +1 位作者 MENG Xiang-peng XIAO Zhu 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1823-1837,共15页
In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and proper... In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and properties of the alloy were investigated in detail.The results showed that the samples deformed by the combination of cryogenic equal channel angular pressing(ECAP)and rolling had good comprehensive properties after aging at 400℃.The tensile strength of the peak-aged and over-aged samples was 1120 MPa and 940 MPa,with their corresponding electrical conductivity of 14.7%IACS and 22.1%IACS,respectively.ECAP and cryogenic rolling introduced high density dislocations,leading to the inhibition of the softening effects and refinement of the grains.After a long time aging at 400℃,the alloy exhibited ultra-high strength with obvious increasing electrical conductivity.The high strength was attributed to the synergistic effect of work hardening,grain refinement strengthening and precipitation strengthening.The precipitation of a large amount of Ti atoms from the matrix led to the high electrical conductivity of the over-aged sample. 展开更多
关键词 Cu-Ti alloy equal channel angular pressing ROLLING aging treatment high strength
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Strength and ductility optimization of HPDC AlSi8MgCuZn2 alloys by modifying pre-aging treatment
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作者 Yuan-hang Jiang Hui-ting Zheng +1 位作者 Fei Liu Hai-dong Zhao 《China Foundry》 SCIE EI CAS CSCD 2024年第4期343-351,共9页
Considering the components produced by high pressure die casting(HPDC)process usually with ultra-large sizes and complex morphologies,high temperature solid solution treatment is not a suitable method to further impro... Considering the components produced by high pressure die casting(HPDC)process usually with ultra-large sizes and complex morphologies,high temperature solid solution treatment is not a suitable method to further improve their mechanical properties.In this study,two-stage aging treatment with different pre-aging times was designed and employed to further improve the mechanical properties of HPDC Al8SiMgCuZn alloy.The characteristics of precipitates were evaluated by a transmission electron microscope(TEM),and the precipitation strengthening mechanism was discussed.The results reveal that the strengthening is mainly contributed by the precipitation ofβ″phase after two-stage aging,and the number density and size of the precipitates are significantly depended on the pre-aging time.The number density of precipitates is increased with the pre-aging time prolonged from 0 h to 4 h,and then decreases with the further increase of pre-aging time from 4 h to 6 h.The precipitates with the highest density and smallest size are observed after pre-aging for 4 h.After pre-aged at 100℃for 4 h and then artificial aged at 200℃for 30 min,the yield strength of 207 MPa,ultimate tensile strength of 325 MPa and elongation of 7.6%are achieved. 展开更多
关键词 high pressure die cast aluminum alloy microstructural heterogeneity mechanical properties precipitation strengthening two-stage aging
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Ag-GNSs/Sn-Ag-Cu复合钎料焊点的润湿性能及界面生长特征研究
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作者 高子旋 屈敏 +1 位作者 康博雅 崔岩 《热加工工艺》 北大核心 2024年第13期50-54,共5页
采用Ag涂覆石墨烯纳米片(Ag-GNSs)作为增强体,制备Sn-3.0Ag-0.5Cu-(Ag-GNSs)新型复合无铅钎料,然后在Cu基板上制备了钎料焊点,并进行了150℃不同时长的等温时效处理,研究了不同含量的Ag-GNSs对无铅钎料Sn-3.0Ag-0.5Cu的润湿性、Cu基板/... 采用Ag涂覆石墨烯纳米片(Ag-GNSs)作为增强体,制备Sn-3.0Ag-0.5Cu-(Ag-GNSs)新型复合无铅钎料,然后在Cu基板上制备了钎料焊点,并进行了150℃不同时长的等温时效处理,研究了不同含量的Ag-GNSs对无铅钎料Sn-3.0Ag-0.5Cu的润湿性、Cu基板/钎料界面金属间化合物(IMC)生长特性的影响。结果表明,适量的Ag-GNSs可以显著地改善钎料的润湿性,当Ag-GNSs含量达到0.05wt%时润湿性最佳,与Sn-3.0Ag-0.5Cu钎料相比润湿角降低了54.43%。随着等温时效时间的延长,IMC层厚度增大,其生长行为由扩散控制。Ag-GNSs的添加可以抑制IMC层的生长,当Ag-GNSs的含量为0.05wt%时扩散系数达到最小值2.356×10^(-18)m^(2)/s。在0~0.2wt%范围内,Ag-GNSs的最佳添加量为0.05wt%。 展开更多
关键词 ag涂覆石墨烯纳米片(ag-GNSs) sn-3.0ag-0.5Cu钎料 润湿性 IMC层
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精锡和Sn-Ag-Cu合金氧化过程中的微量Zn富集行为
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作者 梁华鑫 胡俊涛 +3 位作者 贾元伟 唐芸生 杨士玉 张家涛 《热加工工艺》 北大核心 2024年第17期64-68,72,共6页
采用纯度为99.9%的精锡原料制备Sn-3.0Ag-0.5Cu(SAC305)合金,对微量Zn元素在精锡和Sn-3.0Ag-0.5Cu合金氧化过程中的表面富集行为进行了研究。将精锡与SAC305在300℃条件下分别进行动态氧化试验,结果表明,SAC305的渣率低于精锡。用XPS深... 采用纯度为99.9%的精锡原料制备Sn-3.0Ag-0.5Cu(SAC305)合金,对微量Zn元素在精锡和Sn-3.0Ag-0.5Cu合金氧化过程中的表面富集行为进行了研究。将精锡与SAC305在300℃条件下分别进行动态氧化试验,结果表明,SAC305的渣率低于精锡。用XPS深度剖析法研究300℃静态条件下氧化后的精锡与SAC305的表面氧化情况。结果表明,氧化后的精锡和SAC305表面Zn元素的浓度是精锡原料中的1000倍以上,且SAC305较精锡表面具有更高的Zn元素浓度和更薄的氧化层厚度。综上,认为精锡原料中微量元素Zn在表面的高度富集会对锡及锡合金的氧化行为产生影响。在制备锡基合金焊料时,原料中的Zn元素应该予以关注。 展开更多
关键词 氧化 sn-3ag-0.5Cu合金 微量Zn 无铅焊料
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高银系Sn-Ag-Cu/Cu界面金属间化合物生长行为
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作者 张欣 秦俊虎 +2 位作者 龙登成 梁东成 严继康 《焊接》 2024年第8期38-46,共9页
【目的】为研究高银系(Ag质量分数大于3.0%)Sn-Ag-Cu在固相时效过程中的界面反应和生长动力学。【方法】高温条件下不同银含量对界面结构和界面生长的影响,为了确定焊点的长期可靠性,在150℃下进行了0 h,100 h,300 h,500 h的热加速老化... 【目的】为研究高银系(Ag质量分数大于3.0%)Sn-Ag-Cu在固相时效过程中的界面反应和生长动力学。【方法】高温条件下不同银含量对界面结构和界面生长的影响,为了确定焊点的长期可靠性,在150℃下进行了0 h,100 h,300 h,500 h的热加速老化试验。用SEM与EDS进行了IMC表面形貌、厚度和元素组成。【结果】研究结果表明,随着银含量的增加,Cu_(6)Sn_(5)的生长受到不同程度抑制。在等温时效过程中,金属间化合物(IMC,Cu_(6)Sn_(5)+Cu_(3)Sn)的生长动力学是一个扩散控制过程,Cu_(6)Sn_(5)逐渐生长为Cu_(3)Sn;在后期的老化阶段,扇贝状的形状消失,表明生长机制发生了变化,变化为向垂直于界面方向的稳定生长;通过有限元技术,得出在服役过程中,热应力主要集中于Cu_(3)Sn与Cu基板交界处;随着时效时间的增加,焊点等效蠕变应变上升,可靠性逐渐降低;利用阿仑尼乌斯公式计算了金属间化合物IMC(Cu_(6)Sn_(5)+Cu_(3)Sn)在界面Sn-3.0Ag-0.7Cu/Cu,Sn-3.4Ag-0.7Cu/Cu,Sn-3.8Ag-0.7Cu/Cu的表观活化能分别为67.13 kJ/mol,70.50 kJ/mol,69.54 kJ/mol。【结论】根据试验与数值模拟计算相结合的研究手段,得到Sn-3.4Ag-0.7Cu款无铅焊料在高温服役过程中比其他焊料更能满足电子元件的要求。 展开更多
关键词 锡银铜焊料 界面生长 等温时效 IMC厚度
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Influence of Non-Natural Ageing Temperature on the Microstructural Characteristics and Mechanical Properties of Cast Aluminum 6063 Alloy
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作者 Oluwole Oladele Ayodele Adedeke +1 位作者 Olajesu Olanrewaju Samuel Olusunle 《Journal of Minerals and Materials Characterization and Engineering》 2024年第2期91-99,共9页
This research considered the effect of non-natural aging on the microstructural characteristics and mechanical properties of as-cast aluminum 6063 alloys. The samples were developed through a sand casting process and ... This research considered the effect of non-natural aging on the microstructural characteristics and mechanical properties of as-cast aluminum 6063 alloys. The samples were developed through a sand casting process and machined into tensile and impact test samples before carrying out solution heat treatment at 550?C (0.83 T<sub>m</sub>) on two parts of the samples while retaining one part as the control. The two parts were further divided into sets denoted A and B and were aged at 180?C (0.27 T<sub>m</sub>) and 160?C (0.24 T<sub>m</sub>), respectively, for 12 hours. The results showed that sample A has the optimal yield strength and ultimate tensile strength of 192 and 206 MPa, respectively. Likewise, the sample gave the highest impact strength value of about 9.63 J/mm<sup>2</sup>. The observed results were supported by the optical micrograph, which revealed that the sample has evenly dispersed precipitates in its microstructure. This is deemed responsible for the observed increase in strength of the sample. 展开更多
关键词 Aluminum alloy Non-Natural ageing Mechanical Properties Microstructural Features
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生物可降解挤压态Mg-Sn-Zn-Zr合金组织与腐蚀性能的研究 被引量:1
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作者 刘德学 张全发 +1 位作者 郭菲菲 周田水 《热加工工艺》 北大核心 2024年第15期94-99,共6页
采用气体保护法制备了高强塑性Mg-Sn-Zn-Zr(TZK)合金,然后在不同温度(300、350、400℃)对其进行挤压变形,并对合金的微观组织、物相组成和体外降解行为进行研究。结果表明:300℃挤压后合金的组织为均匀细小的等轴晶,晶粒尺寸最小,为6.57... 采用气体保护法制备了高强塑性Mg-Sn-Zn-Zr(TZK)合金,然后在不同温度(300、350、400℃)对其进行挤压变形,并对合金的微观组织、物相组成和体外降解行为进行研究。结果表明:300℃挤压后合金的组织为均匀细小的等轴晶,晶粒尺寸最小,为6.57μm;析氢量和腐蚀速率最低,耐腐蚀性能最好。随挤压温度升高,合金的晶粒长大,组织中出现孪晶,导致其耐腐蚀性能变差。 展开更多
关键词 Mg-sn-Zn-Zr合金 挤压变形 微观组织 腐蚀性能
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铸态下Sn-Bi二元共晶焊料合金的组织特征及其力学性能
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作者 唐玲 张会 +1 位作者 孟凡莹 刘艳 《有色金属工程》 CAS 北大核心 2024年第7期52-59,共8页
研究了四种不同Bi含量(45%、50%、55%、60%)的Sn-Bi二元共晶合金自由凝固下的组织特征和力学性能,探讨了Sn-Bi二元共晶合金的晶体生长机制以及Bi元素含量对合金显微组织的影响。结果表明:Sn-Bi二元亚共晶合金铸态下的金相组织为初生Sn... 研究了四种不同Bi含量(45%、50%、55%、60%)的Sn-Bi二元共晶合金自由凝固下的组织特征和力学性能,探讨了Sn-Bi二元共晶合金的晶体生长机制以及Bi元素含量对合金显微组织的影响。结果表明:Sn-Bi二元亚共晶合金铸态下的金相组织为初生Sn固溶体相和Sn/Bi共晶层片集群构成,随着Bi含量的增加,呈树枝晶形态生长的初生Sn相数量减少,形态长大。初生Sn固溶体相内部脱溶析出大量的杆状或点状Bi相,形成杆状共晶结构;Sn-Bi二元过共晶合金铸态下的金相组织为初生Bi相和Sn/Bi共晶层片集群构成,初生Bi相中基本不固溶Sn元素,呈小平面方式生长,并在在初生Bi相周围包裹生长一层Sn晕圈相。在室温下,Sn-Bi二元共晶合金的硬度和强度随着Bi含量的增加而上升,延伸率随着Bi含量的增加先上升后下降。 展开更多
关键词 sn-Bi二元共晶合金 杆状共晶 晕圈相 显微组织 力学性能
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通过不同热挤压方式制备具有较优强塑性组合的新型Mg-5Sn-2Al-1Zn合金
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作者 石凤健 朴南瑛 +6 位作者 王冀恒 谭昊天 郭宇航 杨飞 陈书锦 芦笙 王泽鑫 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第7期2120-2137,共18页
制备新型Mg-5Sn-2Al-1Zn(TAZ521)合金。为提高合金的强度与塑性,采用正挤压(DE)和挤压-剪切(ES)两种工艺对该合金进行变形处理。通过XRD、SEM、TEM、EBSD和拉伸试验等方法研究均匀态和挤压态合金的显微组织演变、织构演变及强化机制。... 制备新型Mg-5Sn-2Al-1Zn(TAZ521)合金。为提高合金的强度与塑性,采用正挤压(DE)和挤压-剪切(ES)两种工艺对该合金进行变形处理。通过XRD、SEM、TEM、EBSD和拉伸试验等方法研究均匀态和挤压态合金的显微组织演变、织构演变及强化机制。结果表明,正挤压态合金的力学性能得到改善;然而,合金表现出由粗晶和细小动态再结晶(DRXed)晶粒组成的双峰组织。经过挤压-剪切变形后的合金组织变得更加均匀,并且实现更好的强韧性结合,变形后合金的屈服强度(YS)、极限抗拉强度(UTS)和伸长率(EL)分别达到212 MPa、303 MPa和21.7%。晶粒细化和Mg2Sn析出物的钉扎效应对强度的提高起到重要作用,此外,延展性的提高归因于基面纤维织构的弱化和非基面滑移系的激活。 展开更多
关键词 Mg-sn-Al-Zn合金 挤压-剪切 晶粒细化 力学性能 织构演变
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Effect of Sn substitution and heat treatment on microstructure and microhardness of Co_(38)Ni_(34)Al_(28-x)Sn_x magnetic shape memory alloys
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作者 苏佳佳 谢致薇 杨元政 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第9期2158-2163,共6页
Sn was used to replace Al in Co38Ni34Al28 alloy. The microstructure and microhardness of Co38Ni34Al28-xSnx (x=0, 1, 2, 3) magnetic shape memory alloys were investigated at different heat treatment temperatures (137... Sn was used to replace Al in Co38Ni34Al28 alloy. The microstructure and microhardness of Co38Ni34Al28-xSnx (x=0, 1, 2, 3) magnetic shape memory alloys were investigated at different heat treatment temperatures (1373 K, 1473 K, and 1573 K) for 2 h. The results show that more Sn substitution reduces the content of γ-phase and a partial phase of martensite can be obtained in Co38Ni34Al28-xSnx (x=1, 2, 3) alloys after treatment at 1573 K for 2 h. The maximum martensite phase appears when 2% Al is substituted by Sn. The reverse martensitic transformation temperature of Co38Ni34Al28-xSnx alloys increases at x=1 and 2, then decreases as x=3. As the content of Sn and the temperature increase, the microhardness will increase. 展开更多
关键词 magnetic shape memory alloy sn substitution Co-Ni-Al alloy MICROSTRUCTURE martensitic transformation
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