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Effect of Interface Form on Creep Failure and Life of Dissimilar Metal Welds Involving Nickel-Based Weld Metal and Ferritic Base Metal
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作者 Xiaogang Li Junfeng Nie +2 位作者 Xin Wang Kejian Li Haiquan Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第1期265-285,共21页
For dissimilar metal welds(DMWs)involving nickel-based weld metal(WM)and ferritic heat resistant steel base metal(BM)in power plants,there must be an interface between WM and BM,and this interface suffers mechanical a... For dissimilar metal welds(DMWs)involving nickel-based weld metal(WM)and ferritic heat resistant steel base metal(BM)in power plants,there must be an interface between WM and BM,and this interface suffers mechanical and microstructure mismatches and is often the rupture location of premature failure.In this study,a new form of WM/BM interface form,namely double Y-type interface was designed for the DMWs.Creep behaviors and life of DMWs containing double Y-type interface and conventional I-type interface were compared by finite element analysis and creep tests,and creep failure mechanisms were investigated by stress-strain analysis and microstructure characterization.By applying double Y-type interface instead of conventional I-type interface,failure location of DMW could be shifted from the WM/ferritic heat-affected zone(HAZ)interface into the ferritic HAZ or even the ferritic BM,and the failure mode change improved the creep life of DMW.The interface premature failure of I-type interface DMW was related to the coupling effect of microstructure degradation,stress and strain concentrations,and oxide notch on the WM/HAZ interface.The creep failure of double Y-type interface DMW was the result of Type IV fracture due to the creep voids and micro-cracks on fine-grain boundaries in HAZ,which was a result of the matrix softening of HAZ and lack of precipitate pinning at fine-grain boundaries.The double Y-type interface form separated the stress and strain concentrations in DMW from the WM/HAZ interface,preventing the trigger effect of oxide notch on interface failure and inhibiting the interfacial microstructure cracking.It is a novel scheme to prolong creep life and enhance reliability of DMW,by means of optimizing the interface form,decoupling the damage factors from WM/HAZ interface,and then changing the failure mechanism and shifting the failure location. 展开更多
关键词 dissimilar metal weld Nickel-based weld metal Ferritic heat resistant steel INTERFACE Creep strain MICROSTRUCTURE Failure mechanism Creep life
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Research on microstructure and properties of boron/Q235 steel laser welded dissimilar joints under synchronous thermal field 被引量:1
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作者 周广涛 黄涛 +2 位作者 郭玉龙 黄奇凡 张波 《China Welding》 CAS 2023年第4期38-48,共11页
The mechanical mismatch effect frequently occurs in the dissimilar materials welded joints, thus leading to plastic gradient at the interface between the weld and heat-affected zone(HAZ). In this work, the boron steel... The mechanical mismatch effect frequently occurs in the dissimilar materials welded joints, thus leading to plastic gradient at the interface between the weld and heat-affected zone(HAZ). In this work, the boron steel and Q235 steel were selected for laser tailor welding,which obtained boron/Q235 steel tailor-welded blanks(TWBs). The method of welding with synchronous thermal field(WSTF) was utilized to eliminate the mismatch effects in TWBs. The WSTF was employed to adjust cooling rates of welded joints, thereby intervening in the solidification behaviors and phase transition of the molten pool. Boron/Q235 steel was welded by laser under conventional and WSTF(300-600 ℃) conditions, respectively. The results show that the microstructure of weld and HAZ(boron) was adequately transitioned to ferrites and pearlites instead of abundant martensite by WSTF. Meanwhile, the discrepancy of microhardness and yield strength between various regions of welded joints was greatly reduced, and the overall plasticity of welded joints was enhanced by WSTF. It is indicated that WSTF can effectively contribute to reducing plastic gradient and achieving mechanical congruity in welded joints by restraining the generation of hardbrittle phase, which could significantly improve the formability of TWBs in subsequent hot stamping. 展开更多
关键词 dissimilar metal welding laser tailor welded blank synchronous thermal field boron steel microstructure mechanical property
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Dissimilar welding of high nitrogen stainless steel and low alloy high strength steel under different shielding gas composition:Process,microstructure and mechanical properties
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作者 Zeng Liu Cheng-lei Fan +3 位作者 Chun-li Yang Zhu Ming San-bao Lin Lang-ping Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期138-153,共16页
Ar-N_(2)-O_(2)ternary shielding gas is employed in dissimilar welding between high nitrogen steel and low alloy steel.The effect of O_(2)and N_(2)is investigated based on the systematical analysis of the metal transfe... Ar-N_(2)-O_(2)ternary shielding gas is employed in dissimilar welding between high nitrogen steel and low alloy steel.The effect of O_(2)and N_(2)is investigated based on the systematical analysis of the metal transfer,nitrogen escape phenomenon,weld appearance,nondestructive detection,nitrogen content distribution,microstructure and mechanical properties.There are two nitrogen sources of the nitrogen in the weld:high nitrogen base material and shielding gas.The effect of shielding gas is mainly reflected in these two aspects.The change of the droplet transfer mode affects the fusion ratio,N2in the shielding gas can increase nitrogen content and promote the nitrogen uniform distribution.The addition of 2%O_(2)to Ar matrix can change the metal transfer from globular transfer to spray transfer,high nitrogen base material is thereby dissolved more to the molten pool,making nitrogen content increase,ferrite decrease and the mechanical properties improve.When applying N2-containing shielding gas,arc stability becomes poor and short-circuiting transfer frequency increases due to the nitrogen escape from droplets and the molten pool.Performance of the joints is improved with N_(2)increasing,but internal gas pores are easier to appear because of the poor capacity of low alloy steel to dissolve nitrogen,The generation of pores will greatly reduce the impact resistance.4-8%N2content in shielding gas is recommended in this study considering the integrated properties of the dissimilar welded joint. 展开更多
关键词 High nitrogen steel dissimilar steel joints Shielding gas metal transfer MICROSTRUCTURE Mechanical properties
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Corrosion behavior of aluminum/steel dissimilar metals friction stir welding joint 被引量:7
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作者 莫淑娴 董少康 +2 位作者 朱浩 焦忆楠 王军 《China Welding》 CAS 2021年第3期20-30,共11页
The corrosion performance of aluminum/steel contact and aluminum/steel FSW joint in 3.5 wt.%NaCl solution were analyzed using potentiostatic tests.The post-corrosion microstructure of the welding joint was characteriz... The corrosion performance of aluminum/steel contact and aluminum/steel FSW joint in 3.5 wt.%NaCl solution were analyzed using potentiostatic tests.The post-corrosion microstructure of the welding joint was characterized by optical microscope(OM),scanning electron microscopy(SEM)and energy dispersive spectroscopy(EDS).The results showed that the localized corrosion of FSW joint of Al/steel dissimilar metals mainly initiated at the interface transition zone(ITZ).Precipitation of intermetallic compounds(IMCs)and Fe-rich phase particles in ITZ accelerated the corrosion of the FSW joint.This phenomenon has been attributed to distinct corrosion potentials between IMCs and steel,aluminum base metal.The corrosion resistance sequence of IMCs in ITZ is Fe_(3)Al>FeAl>Fe_(2)Al_(5). 展开更多
关键词 aluminum/steel dissimilar metals joining corrosion behavior Intermetallic compounds
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New methods of predicting dissimilar steel weld metal microstructures by Schaeffler Diagram 被引量:1
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作者 ZHANG Hanqian WANG Bao and ZHANG Wenyue(The Research Institute of Welding Materials. Taiyuan University of Technology.Taiyuan. 030024. Prof. ZHANG Wenyue. Welding Department. Tianjin University. Tianjin. 300072) 《China Welding》 EI CAS 1996年第1期43-48,共6页
On the base of a number of analyses and researches, some new methods of predicting and expressing the microstructure kinds, of the dissimilar steel welded joint of austenite/pearlite(ferrite) have been presented Those... On the base of a number of analyses and researches, some new methods of predicting and expressing the microstructure kinds, of the dissimilar steel welded joint of austenite/pearlite(ferrite) have been presented Those new methods can ascertain the microstructure kind not only in the different characteristic zones of weld metal but also in the different morphologies in the heterogeneous mixture zone of weld metal. Those new methods. enrich and develop the traditional methods of predicting the microstructure of weld metal by Schaeffler Diagram, and are more concise and practical. 展开更多
关键词 Schaeffler Diagram dissimilar steels microstructure prediction weld metal WELDING
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Microstructure in the Weld Metal of Austenitic-Pearlitic Dissimilar Steels and Diffusion of Element in the Fusion Zone 被引量:6
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作者 Yajiang LI, Zengda ZOU and Bing ZHOU Department of Materials Engineering, Shandong University, Jinan 250061, China E-mail: yajli@jn-public.sd.cninfo.net 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第3期338-342,共5页
Microstructure and alloy element distribution in the welded joint between austenitic stainless steel (1Cr18Ni9Ti) and pearlitic heat-resistant steel (lCr5Mo) were researched by means of light microscopy, scanning elec... Microstructure and alloy element distribution in the welded joint between austenitic stainless steel (1Cr18Ni9Ti) and pearlitic heat-resistant steel (lCr5Mo) were researched by means of light microscopy, scanning electron microscopy (SEM) and electron probe microanalysis (EPMA). Microstructure, divisions of the fusion zone and elemental diffusion distributions in the welded joints were investigated. Furthermore, solidification microstructure and &-ferrite distribution in the weld metal of these steels are also discussed. 展开更多
关键词 Microstructure in the Weld metal of Austenitic-Pearlitic dissimilar steels and Diffusion of Element in the Fusion Zone
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New methods of predicting dissimilar steel weld metal microstructures by Schaeffler Diagram(Part 2)
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作者 张汉谦 王宝 张文钺 《China Welding》 EI CAS 1997年第1期58-63,共6页
On the base of the methods of predicting weld metal microstructures of pearlitic dissimilar steel welded joints using austenitic type filler materials by Schaeffler Diagram[1], the other new methods of predicting and ... On the base of the methods of predicting weld metal microstructures of pearlitic dissimilar steel welded joints using austenitic type filler materials by Schaeffler Diagram[1], the other new methods of predicting and expressing weld metal microstnictiires of two kinds of dissimilar steel welded joints (pearlite/pearlite and austenite/pearlite) using austenitic filler materials by Schaeffler Diagram are suggested. Those new methods resolve some difficult problems which the microstructure kinds in two heterogeneous mixture zones of weld metal neighbouring two kinds of welded base metals are difficult to be accurately ascertained and the fluctuations of weld metal microstnictiires across fusion line are difficult to be conveniently expressed according to the traditional predicting method. The new predicting methods are more concise and practical. 展开更多
关键词 Schaeffler Diagram dissimilar steel microstructure prediction weld metal
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Effect of welding process on the microstructure and properties of dissimilar weld joints between low alloy steel and duplex stainless steel 被引量:4
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作者 Jing Wang Min-xu Lu +3 位作者 Lei Zhang Wei Chang Li-ning Xu Li-hua Hu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第6期518-524,共7页
To obtain high-quality dissimilar weld joints, the processes of metal inert gas (MIG) welding and tungsten inert gas (TIG) welding for duplex stainless steel (DSS) and low alloy steel were compared in this paper... To obtain high-quality dissimilar weld joints, the processes of metal inert gas (MIG) welding and tungsten inert gas (TIG) welding for duplex stainless steel (DSS) and low alloy steel were compared in this paper. The microstructure and corrosion morphology of dissimilar weld joints were observed by scanning electron microscopy (SEM); the chemical compositions in different zones were detected by en- ergy-dispersive spectroscopy (EDS); the mechanical properties were measured by microhardness test, tensile test, and impact test; the corro- sion behavior was evaluated by polarization curves. Obvious concentration gradients of Ni and Cr exist between the fusion boundary and the type II boundary, where the hardness is much higher. The impact toughness of weld metal by MIG welding is higher than that by TIG weld- ing. The corrosion current density of TIG weld metal is higher than that of MIG weld metal in a 3.5wt% NaC1 solution. Galvanic corrosion happens between low alloy steel and weld metal, revealing the weakness of low alloy steel in industrial service. The quality of joints pro- duced by MIG welding is better than that by TIG welding in mechanical performance and corrosion resistance. MIG welding with the filler metal ER2009 is the suitable welding process for dissimilar metals jointing between UNS $31803 duplex stainless steel and low alloy steel in practical application. 展开更多
关键词 dissimilar metals WELDS stainless steel alloy steel microstructure mechanical properties corrosion
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Ni镀层对Cu/Al钎焊接头界面组织与力学性能的影响
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作者 张学智 黄玲玲 +5 位作者 李云鹏 于卓立 曹新娜 宋路阳 安鹏涛 魏世忠 《河南科技大学学报(自然科学版)》 CAS 北大核心 2024年第4期23-29,M0003,M0004,共9页
为探究Ni-P镀层对Cu/Al异种金属钎焊界面反应的影响,采用化学镀方法对T2紫铜进行化学镀镍处理,使用BAl88Si药芯钎料通过感应钎焊方法钎焊Cu/Al接头。采用扫描电子显微镜和电子背散射衍射技术对接头进行微观组织观察与物相分析,并对接头... 为探究Ni-P镀层对Cu/Al异种金属钎焊界面反应的影响,采用化学镀方法对T2紫铜进行化学镀镍处理,使用BAl88Si药芯钎料通过感应钎焊方法钎焊Cu/Al接头。采用扫描电子显微镜和电子背散射衍射技术对接头进行微观组织观察与物相分析,并对接头进行力学性能测试,分析镀层对Cu/Al接头微观组织结构及力学性能的影响,探讨钎焊过程中不同钎焊接头的界面形成机理。结果表明:无镀层接头在界面处形成了Cu_(9)Al_(4)和CuAl_(2)两层金属间化合物,有镀层接头界面处形成了Al_(2)Ni和Al_(3)Ni金属间化合物。无镀层接头的抗拉强度可达56.4 MPa,优于有镀层接头。接头均发生脆性断裂,断裂位置从无镀层接头的CuAl2和α-Al固溶体的界面处转变为有镀层接头的Al3Ni金属间化合物处。 展开更多
关键词 Cu/al异种金属 NI-P镀层 金属间化合物 微观组织 力学性能
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Influence of Creep Strength of Weld on Interfacial Creep Damage of Dissimilar Welded Joint between Martensitic and Bainitic Heat-Resistant Steel 被引量:1
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作者 张建强 ZHANG Guodong +1 位作者 LUO Chuanhong ZHANG Yinglin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第1期178-183,共6页
The mechanical properties, creep rupture strength, creep damage and failure characteristics of dissimilar metal welded joint (DMWJ) between martensitic (SA213T91) and bainitic heat-resistant steel (12Cr2MoWVTiB(... The mechanical properties, creep rupture strength, creep damage and failure characteristics of dissimilar metal welded joint (DMWJ) between martensitic (SA213T91) and bainitic heat-resistant steel (12Cr2MoWVTiB(G102)) have been investigated by means of pulsed argon arc welding, high temperature accelerated simulation, mechanical and creep rupture test, and scanning electronic microscope (SEM). The results show that there is a marked drop of mechanical properties of undermatching joint, and low ductility cracking along weld/G102 interface is induced due to creep damage. Creep rupture strength of overmatching joint is the least. The mechanical properties of medium matching joint are superior to those of overmatching and undermatching joint, and creep damage and failure tendency along the interface of weld/G102 are lower than those of overmatching and undermatching joint after accelerated simulation for 500 h, 1 000 h, 1 500 h, and the creep rupture strength of medium matching joint is the same as that of undermatching joint. Therefore, it is reasonable that the medium matching material is used for dissimilar welded joint between martensitic and bainitic steel. 展开更多
关键词 martensitic heat-resistant steel bainitic heat-resistant steel dissimilar metal welding joint creep damage interracial failure
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Interfacial microstructure evolution of 12Cr1MoV/TP347H dissimilar steel welded joints during aging 被引量:1
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作者 Yuan Li Yan-ping Zeng Zhi-chun Wang 《International Journal of Minerals,Metallurgy and Materials》 CSCD 2021年第9期1497-1505,共9页
The interfacial microstructure evolution of 12Cr1MoV/TP347H dissimilar steel welded joints with a nickel-based filler metal during aging was studied in detail to elucidate the mechanism of premature failures of this k... The interfacial microstructure evolution of 12Cr1MoV/TP347H dissimilar steel welded joints with a nickel-based filler metal during aging was studied in detail to elucidate the mechanism of premature failures of this kind of joints.The results showed that not only a band of granular Cr_(23)C_(6)carbides were formed along the fusion boundary in the ferritic steel during aging,but also a large number of granular or plate-like Cr_(23)C_(6)carbides,which have a cube-cube orientation relationship with the matrix,were also precipitated on the weld metal side of the fu-sion boundary,making this zone be etched more easily than the other zone and become a dark etched band.Stacking faults were found in some Cr_(23)C_(6)carbides.In the as-welded state,deformation twins were observed in the weld metal with a fully austenitic structure.The peak micro-hardness was shifted from the ferritic steel side to the weld metal side of the fusion boundary after aging and the peak value increased signific-antly.Based on the experimental results,a mechanism of premature failures of the joints was proposed. 展开更多
关键词 ferritic/austenitic dissimilar steel welded joint interfacial microstructure AGING nickel-based filler metal mechanism of premature failures
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Microstructural Evolution on the T91 Dissimilar Metal Joints during Creep Rupture Tests
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作者 GuangminLUO JianshengWU QingsenMENG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第4期383-386,共4页
T91 steel is one of the new materials presently employed in power plant pipe components. The creep rupture strength and microstructure of the T91+10CrMo910 and T91+13CrMo44 welded joints were analyzed during creep rup... T91 steel is one of the new materials presently employed in power plant pipe components. The creep rupture strength and microstructure of the T91+10CrMo910 and T91+13CrMo44 welded joints were analyzed during creep rupture tests. Creep transgranular ductile rupture occurred at the 10CrMo910 matrix in the T91+10CrMo910 welded joints and creep intergranular brittle rupture occurred at the 13CrMo44 HAZ in the T91+13CrMo44 joints. Microhardness measurements showed high hardness at the heat affected zone (HAZ) of T91 and a sharply drop at the 13CrMo44 HAZ during creep rupture. The metallographic tests showed that no obvious microstructure degradation was observed in the 10CrMo910 HAZ and matrix, while creep cracks appeared at the 13CrMo44 HAZ. T91 steel had relatively high creep resistant strength in the welded joints tested. Recovery occurred in the T91 HAZ with the growth of subgrain size and the decrease of dislocation density during creep. It was concluded that the dissimilar joints of T91 and low alloy heat-resistant steel should have close creep strength matching to increase the service life of the overall joints at elevated temperature. 展开更多
关键词 T91 steel dissimilar metal joint Creep rupture test
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精炼渣Al_(2)O_(3)含量对铝脱氧钢中夹杂物的影响 被引量:2
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作者 于会香 邱光元 +2 位作者 郝丽霞 赵艳宇 王新华 《炼钢》 CAS 北大核心 2023年第2期18-23,共6页
为研究中等碱度精炼渣中Al_(2)O_(3)含量对钢洁净度和夹杂物的影响,在1873 K温度下用MgO坩埚开展了初始碱度为4、不同Al_(2)O_(3)含量的CaO-SiO_(2)-Al_(2)O_(3)-MgO顶渣与铝脱氧钢的平衡试验。结果表明,渣-钢反应后,夹杂物类型由反应前... 为研究中等碱度精炼渣中Al_(2)O_(3)含量对钢洁净度和夹杂物的影响,在1873 K温度下用MgO坩埚开展了初始碱度为4、不同Al_(2)O_(3)含量的CaO-SiO_(2)-Al_(2)O_(3)-MgO顶渣与铝脱氧钢的平衡试验。结果表明,渣-钢反应后,夹杂物类型由反应前的MgO-Al_(2)O_(3)-MnS复合类转变为中心为MgO-Al_(2)O_(3),边部为MgO-Al_(2)O_(3)-SiO_(2)-CaO(-MnO)系的包裹体复合类;形貌由边界多棱角的块状和簇群状转变为边界圆滑的类球状。随着渣中Al_(2)O_(3)含量的增加,夹杂物中Al_(2)O_(3)含量显著增加,MgO含量减少,其他组分含量变化不大;夹杂物尺寸呈现增大的趋势;夹杂物数量密度增大,钢的洁净度降低。该试验条件下,当w(Al_(2)O_(3))≈20%时,夹杂物数量密度最小,钢液的洁净度最高。基于试验结果,对渣、钢的成分变化和夹杂物转变做了热力学讨论。 展开更多
关键词 精炼渣 铝脱氧钢 中等碱度 al_(2)O_(3)含量 非金属夹杂物
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热场辅助电磁脉冲焊接Al/Cu异种金属接头组织性能研究
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作者 陈玉华 吴鸿燕 +3 位作者 周春培 贾立超 沈文龙 谢吉林 《电焊机》 2023年第8期16-21,共6页
采用热场辅助电磁脉冲焊接技术对Al/Cu异种金属进行焊接,对比分析了热场温度分别为室温、100℃和200℃条件下焊接接头的宏观形貌、界面组织及力学性能。结果表明:热场辅助电磁脉冲焊接技术能够实现Al/Cu异种金属的优质焊接;随着热场温... 采用热场辅助电磁脉冲焊接技术对Al/Cu异种金属进行焊接,对比分析了热场温度分别为室温、100℃和200℃条件下焊接接头的宏观形貌、界面组织及力学性能。结果表明:热场辅助电磁脉冲焊接技术能够实现Al/Cu异种金属的优质焊接;随着热场温度的增加,焊接接头有效结合区的尺寸增大。而波状界面形貌随着热场温度不同呈现不同的形态,室温下界面呈现正弦波和剪切波的混合波形,100℃下呈不规则的嵌入式波形形貌,200℃下的形貌与室温类似,但是界面反应层的厚度最大;三种温度下的界面反应区都检测到了Al-Cu化合物的存在。力学性能测试结果表明,随着热场温度的升高,焊接接头的力学性能逐渐提高。当加热温度为200℃时,焊接接头的抗拉剪力达到了4076 N;所有试样都在界面处发生断裂,断裂区域存在断口形貌呈现“河流状”和韧窝结构混合形式,推断焊接接头的失效模式为韧脆混合断裂。在外场温度作用下,焊接接头的有效结合区增大,界面波形结构发生改变,进而有效地提升了接头的力学性能。 展开更多
关键词 电磁脉冲焊接 热场辅助 al/Cu异种金属 微观组织 力学性能
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Microstructure characteristics and mechanical properties of steel stud to Al alloy by CMT welding-brazing process 被引量:8
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作者 葛佳棋 王克鸿 +2 位作者 张德库 顾民乐 薛守立 《China Welding》 EI CAS 2016年第1期49-56,共8页
Cold metal transfer (CMT) welding of nickel-coated Q235 steel studs with 606l Al alloy was carried out using ER4043 as filler metal. The welding process was stable, and appearance of weld formed well without surface... Cold metal transfer (CMT) welding of nickel-coated Q235 steel studs with 606l Al alloy was carried out using ER4043 as filler metal. The welding process was stable, and appearance of weld formed well without surface defect under the parameters of welding current 121 A, welding voltage 15.4 V and welding speed 6 r/min. The microstructure of fiUer metal was analyzed by means of scanning electron microscopy. The filler metal and 6061 Al alloy were fused to form fusion welding interface, the fusion zone had a good bonding without any micro defect. The steel stud did not melt and brazing interface was formed between the filler metal and steel stud. Two different reaction layers existed in the brazing interface, the Fe2Al5 layer about 10 -12 p^m formed near the steel stud side, and the other layer was mainly composed of FeAl3. Nickel-rich zone was formed in the root toe area of the fillet weld, which was mainly composed of Al3Ni2. The tensile tests showed that the maximum shearing strength of the joints was 129 MPa. The joint was brittle fractured in the intermetallic compound layer where plenty of FeAl3 were distributed continuously. 展开更多
关键词 Q235 steel stud 6061 A1 alloy dissimilar metal joint cold metal transfer welding microstructure
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Effect of RE-Al-N on Structures and Properties of M2 Cast High Speed Steel 被引量:2
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作者 符寒光 杜建铭 +1 位作者 蒋志强 邢建东 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第6期664-668,共5页
M2 cast high speed steel was inoculated by addition of rare earth(RE)-Al-N, network eutectic carbides were eliminated, matrix microstructures were refined and the segregation of tungsten and molybdenum elements was re... M2 cast high speed steel was inoculated by addition of rare earth(RE)-Al-N, network eutectic carbides were eliminated, matrix microstructures were refined and the segregation of tungsten and molybdenum elements was relieved. In the condition that the hardness does not decrease, impact toughness obviously increases. Quenching at 1180 ℃ and three-times tempering at 560 ℃, the hardness of M2 cast high speed steel is 65~66 HRC, and impact toughness reaches 21.3 (J·cm^(-2)). Modified M2 cast high speed steel has excellent thermal fatigue resistance and high temperature wear resistance. Roller made in modified M2 cast high speed steel has excellent service effect when it is used in slit rolling mill of hot rolling bar mill. 展开更多
关键词 metal materials high speed steel RE-al-N modification thermal fatigue wear resistance rare earths
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The effect of zinc coating during joining aluminium to zinc-coated steel by welding-brazing process
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作者 张洪涛 冯吉才 +1 位作者 韩超 刘积厚 《China Welding》 EI CAS 2012年第4期55-58,共4页
An optical sensing system was constructed to study the coating when joining ahtminium alloy to zinc-coated steel by MIG welding-brazing process. The results showed that the coating fused to form a liquid zinc film on ... An optical sensing system was constructed to study the coating when joining ahtminium alloy to zinc-coated steel by MIG welding-brazing process. The results showed that the coating fused to form a liquid zinc film on surface during process. The Al-Si filler metal reacted with the liquid zinc film to improve the spreadability of filler metal and thus a new method was established to join aluminium alloy and uncoated steel by depositing a mixed layer on steel surface. 展开更多
关键词 WELDING-BRAZING liquid zinc film dissimilar metals joining aluminium alloy steel
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Zr基非晶夹层对Al/TA1异种金属电子束焊接头组织和性能的影响
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作者 陈磊 徐荣正 +4 位作者 张利 刘亚光 李正坤 张海峰 张波 《材料导报》 EI CAS CSCD 北大核心 2023年第8期80-83,共4页
影响钛/铝异种金属电子束焊(Electron beam welding, EBW)接头强度的主要因素是界面处连续分布的脆性Ti-Al金属间化合物(Intermetallic compounds, IMCs)的种类、分布和厚度。本工作针对TA1钛合金和工业高纯Al的EBW,采用厚度为40~45μm... 影响钛/铝异种金属电子束焊(Electron beam welding, EBW)接头强度的主要因素是界面处连续分布的脆性Ti-Al金属间化合物(Intermetallic compounds, IMCs)的种类、分布和厚度。本工作针对TA1钛合金和工业高纯Al的EBW,采用厚度为40~45μm的Zr_(52)Cu_(32)Ni_(6)Al_(10)非晶条带作为预置夹层,分析夹层材料的添加对接头组织和性能的影响。结果表明:异种金属直接焊接时,焊缝组织全部由Ti-Al IMCs组成,厚度为1~1.5 mm,焊接接头的抗拉强度仅为40.5 MPa,呈脆性断裂特征。添加非晶夹层后,在靠近TA1一侧形成一层厚度为3~5μm的连续IMCs层,而靠近Al侧未产生连续反应层,只在熔化区内存在弥散分布的细小IMCs,焊接接头抗拉强度为90.9 MPa,达到Al母材强度的94%左右,拉伸断裂位置位于焊缝附近近Al侧,断口处有明显颈缩现象,呈韧性断裂特征。 展开更多
关键词 ZR基非晶合金 al/TA1异种金属 电子束焊接 微观组织 力学性能
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Characterization of Dissimilar Welding between 304 Stainless Steel and Gray Iron Using Nickel Coated Electrode
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作者 Jesús García-Lira Enrique Curiel-Reyna +2 位作者 Yajaira Curiel-Razo Alberto Lara-Guevara Ignacio Rojas-Rodríguez 《Materials Sciences and Applications》 2021年第12期614-621,共8页
This paper presents the study carried out to study the microstructure and mechanical properties of AISI 304 stainless steel and gray iron, in order to recognize the effect of welding parameters on the joint. The shiel... This paper presents the study carried out to study the microstructure and mechanical properties of AISI 304 stainless steel and gray iron, in order to recognize the effect of welding parameters on the joint. The shielded metal arc welding technique was applied with a 3.2 mm diameter nickel coated electrode under preheating and post heat conditions at 350&deg;C. Vickers hardness test and metallographic analysis were carried out at the heat affected zone and at the interface to determine the effect on mechanical and metallurgical characteristics. Vickers hardness differences among joint areas were directly related to microstructural changes. There are no significant differences in AISI 304 hardness, but the hardness increased at the heat affected zone and decreased at the filler metal. Grey iron hardness at the heat affected zone was even lower and more slightly superior than grey iron hardness. 展开更多
关键词 dissimilar metal Welding Gray Cast Iron Heat Affected Zone Preheat and Post Heat Conditions Stainless steel AISI 304
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6A01-T5铝合金/304不锈钢的缝隙腐蚀行为研究 被引量:1
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作者 孙晓光 王鹏跃 +2 位作者 王睿 王岗 台闯 《装备环境工程》 CAS 2024年第1期105-113,共9页
目的 研究6A01-T5铝合金和304不锈钢异种金属间的缝隙腐蚀行为规律。方法 采用常温常压浸泡腐蚀方法,结合SEM、EDS、XRD和白光干涉检测,对6A01-T5铝合金/304不锈钢缝隙结构在碱性Na Cl溶液中的腐蚀行为进行研究。结果 6A01-T5铝合金/30... 目的 研究6A01-T5铝合金和304不锈钢异种金属间的缝隙腐蚀行为规律。方法 采用常温常压浸泡腐蚀方法,结合SEM、EDS、XRD和白光干涉检测,对6A01-T5铝合金/304不锈钢缝隙结构在碱性Na Cl溶液中的腐蚀行为进行研究。结果 6A01-T5铝合金/304不锈钢缝隙腐蚀表现为在缝口处产生沿缝口方向的凹陷渠,在缝内,以局部减薄和腐蚀坑为主,并随着腐蚀时间的延长,腐蚀程度逐渐加重。不同区域腐蚀产物的形貌和成分组成不尽相同,缝外暴露区的腐蚀产物表现为晶体颗粒状,主要成分为Ca CO3和Al(OH)3等铝的腐蚀产物。缝口附近沿缝口方向形成一层有明显界线的腐蚀产物覆盖层,缝隙内部的腐蚀产物相对较少,表现为尺寸相对较小的结块,主要成分为Al(OH)3等铝的腐蚀产物。结论 在6A01-T5铝合金与304不锈钢非电连接情况下,6A01-T5铝合金/304不锈钢缝隙内2种金属分别独立发生缝隙腐蚀,因2种金属在腐蚀过程中争夺O2,使得304不锈钢对6A01-T5铝合金的缝隙腐蚀起到抑制作用。 展开更多
关键词 6A01-T5铝合金 304不锈钢 缝隙腐蚀 异种金属 碱性 Na Cl溶液
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