期刊文献+
共找到9篇文章
< 1 >
每页显示 20 50 100
镍对铜/不锈钢GTAW接头导电性及腐蚀性能的影响 被引量:8
1
作者 王瑞 石玗 +2 位作者 李广 李春凯 侯国清 《焊接学报》 EI CAS CSCD 北大核心 2019年第12期53-58,I0003,共7页
针对新型铜/不锈钢单缝直焊型电解铜永久阴极板焊接接头的特殊要求,采用S201,S231和CuNi-7三种不同Ni含量的焊丝对T2紫铜与316L不锈钢进行GTAW焊,并对接头微观组织、成分、电导率和耐腐蚀性进行了分析.结果表明,三种不同Ni含量的焊丝所... 针对新型铜/不锈钢单缝直焊型电解铜永久阴极板焊接接头的特殊要求,采用S201,S231和CuNi-7三种不同Ni含量的焊丝对T2紫铜与316L不锈钢进行GTAW焊,并对接头微观组织、成分、电导率和耐腐蚀性进行了分析.结果表明,三种不同Ni含量的焊丝所得焊缝界面清晰、无明显的宏观焊缝缺陷,但Ni含量的增加会对焊缝表面成形有一定影响;Ni含量低时会使钢侧焊缝中产生少量微裂纹,而随着Ni含量的增加焊缝中条状和块状Ni-Cr-Fe相随之增加;随着焊缝中Ni含量的增加,铜/不锈钢接头的电导率有所下降,这与焊缝中存在的Ni-Cr-Fe相数量成反比;铜/钢接头中Ni含量的增加可较为明显地提高铜/钢接头在酸性条件下的耐腐蚀性能. 展开更多
关键词 铜/不锈钢异种金属 钨极氩弧焊 导电性 腐蚀
下载PDF
铜与不锈钢焊接技术与工艺研究现状
2
作者 安明宇 但斌 +3 位作者 袁威杰 刘梓儒 李玉祥 董文轩 《时代汽车》 2024年第10期151-155,共5页
铜与不锈钢的合金结构件广泛应用于石油化学、空调冷凝、航空航天和汽车零部件等中高端工业领域,存在着广阔地展现出极高的实用价值和应用潜力。由于铜与不锈钢物理化学性质差异较大,使得两者之间的焊接相当困难,文章通过分析铜与不锈... 铜与不锈钢的合金结构件广泛应用于石油化学、空调冷凝、航空航天和汽车零部件等中高端工业领域,存在着广阔地展现出极高的实用价值和应用潜力。由于铜与不锈钢物理化学性质差异较大,使得两者之间的焊接相当困难,文章通过分析铜与不锈钢的焊接性,综述了各种焊接方法及其原理,分析了各种焊接缺陷以及解决办法,并指出当前领域内的研究热点与难点。同时,文章还将展望铜与不锈钢异种金属焊接技术的未来发展趋势,以期推动该领域的持续进步。 展开更多
关键词 铜/不锈钢 异种金属焊接 发展趋势 应用前景
下载PDF
铜-钨/不锈钢热等静压焊接界面组织的研究 被引量:5
3
作者 吴继红 张斧 严建成 《焊接》 2002年第6期13-15,共3页
用扫描电子显微镜和能谱仪对钨和铜以及不锈钢的热等静压焊接试样的焊接界面进行了分析研究。对不同工艺条件下和不同材料的焊接界面进行了对比分析。结果发现 ,钨和铜合金的结合主要是物理结合 ,它是靠高温高压下 ,材料表面微观的凹凸... 用扫描电子显微镜和能谱仪对钨和铜以及不锈钢的热等静压焊接试样的焊接界面进行了分析研究。对不同工艺条件下和不同材料的焊接界面进行了对比分析。结果发现 ,钨和铜合金的结合主要是物理结合 ,它是靠高温高压下 ,材料表面微观的凹凸不平而产生的犬齿交合结合在一起的 ,扩散结合只占很少的部分 ,铜和不锈钢的焊接界面由于添加了镍的中间层 ,因而有较好的扩散。 展开更多
关键词 -钨/不锈钢 接等静压 焊接界面 显微组织 偏滤器 聚变反应堆
下载PDF
铜/铝/不锈钢三层复合板成形工艺研究 被引量:1
4
作者 庞玉华 庄博 +3 位作者 孙列 于亮 米娇娇 廖毅 《轻合金加工技术》 CAS 北大核心 2015年第4期46-50,共5页
试验研究了铜/铝/不锈钢三层复合板成形工艺,旨在充分利用各组元的优越性,为应用于散热及炊具等方面用复合板原料提供技术支持。依据轧制复合及热处理工艺理论,主要对铜/铝/不锈钢复合板轧制及热处理成形工艺进行了试验研究。结果表明,... 试验研究了铜/铝/不锈钢三层复合板成形工艺,旨在充分利用各组元的优越性,为应用于散热及炊具等方面用复合板原料提供技术支持。依据轧制复合及热处理工艺理论,主要对铜/铝/不锈钢复合板轧制及热处理成形工艺进行了试验研究。结果表明,随着轧制压下率的增加,复合板的抗拉强度和界面结合强度逐渐增大,杯突值逐渐降低;不锈钢层与冲头接触的杯突值大于铜层与冲头接触的;最优轧制工艺参数:加热温度350℃,保温5 min^10min,压下率33.3%;350℃退火1 h获得了较为理想的抗拉强度及界面结合强度。 展开更多
关键词 铜//不锈钢复合板 力学性能 界面机制
下载PDF
Electron beam welding of 304 stainless steel to QCr0.8 copper alloy with copper filler wire 被引量:5
5
作者 张秉刚 赵健 +1 位作者 李晓鹏 冯吉才 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期4059-4066,共8页
Electron beam welding (EBW) of 304 stainless steel to QCr0.8 copper alloy with copper filler wire was carried out. Orthogonal experiment was performed to investigate the effects of process parameters on the tensile ... Electron beam welding (EBW) of 304 stainless steel to QCr0.8 copper alloy with copper filler wire was carried out. Orthogonal experiment was performed to investigate the effects of process parameters on the tensile strength of the joints, and the process parameters were optimized. The optimum process parameters are as follows:beam current of 30 mA, welding speed of 100 mm/min, wire feed rate of 1 m/min and beam offset of-0.3 mm. The microstructures of the optimum joint were studied. The results indicate that the weld is mainly composed of dendriticαphase with little globularεphase, and copper inhomogeneity only occurs at the top of the fusion zone. In addition, a melted region without mixing exists near the weld junction of copper side. This region with a coarser grain size is the weakest section of the joints. It is found that the microhardness of the weld decreases with the increase of the copper content in solid solution. The highest tensile strength of the joint is 276 MPa. 展开更多
关键词 304 stainless steel QCr0.8 copper alloy electron beam welding dissimilar joint mechanical properties
下载PDF
An insight into microstructural heterogeneities formation between weld subregions of laser welded copper to stainless steel joints 被引量:13
6
作者 Saranarayanan RAMACHANDRAN A.K.LAKSHMINARAYANAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第3期727-745,共19页
The effect of laser beam welding(LBW) process on the microstructure-mechanical property relationship of a dissimilar weld between the copper(Cu) and stainless steel(SS) was investigated.Backscattered electron(BSE) bas... The effect of laser beam welding(LBW) process on the microstructure-mechanical property relationship of a dissimilar weld between the copper(Cu) and stainless steel(SS) was investigated.Backscattered electron(BSE) based scanning electron microscopy(SEM) imaging was used to characterize the highly heterogeneous microstructural features across the LBW(Cu-SS) weld.The BSE analysis thoroughly evidenced the complex microstructures produced at dissimilar weld interfaces and fusion zone along with the compositional information.Widely different grain growths from coarse columnar grains to equiaxed ultrafine grains were also evident along the Cu-weld interface.A highresolution electron backscattered diffraction(EBSD) analysis confirmed the existence of the grain refinement mechanism at the Cu-weld interface.Both tensile and impact properties of the dissimilar weld were found to be closely aligned with the property of Cu base metal.Microhardness gradients were spatially evident in the non-homogeneous material composition zones such as fusion zone and the Cu-weld interface regions.The heterogeneous nucleation spots across the weld sub-regions were clearly identified and interlinked with their microhardness measurements for a holistic understanding of structure-property relationships of the local weld sub-regions.The findings were effectively correlated to achieve an insight into the local microstructural gradients across the weld. 展开更多
关键词 laser beam welding copper stainless steel microstructural characterization tensile property impact toughness
下载PDF
Gas tungsten arc welding of CP-copper to 304 stainless steel using different filler materials 被引量:5
7
作者 Sajjad Gholami SHIRI Mohsen NAZARZADEH +1 位作者 Mahmood SHARIFITABAR Mehdi Shafiee AFARANI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第12期2937-2942,共6页
The dissimilar joining of CP-copper to 304 stainless steel was performed by gas tungsten arc welding process using different filler materials. The results indicated the formation of defect free joint by using copper f... The dissimilar joining of CP-copper to 304 stainless steel was performed by gas tungsten arc welding process using different filler materials. The results indicated the formation of defect free joint by using copper filler material. But, the presence of some defects like solidification crack and lack of fusion caused decreasing tensile strength of other joints. In the optimum conditions, the tensile strength of the joint was 96% of the weaker material. Also, this joint was bent till to 180° without any macroscopic defects like separation, tearing or fracture. It was concluded that copper is a new and good candidate for gas tungsten arc welding of copper to 304 stainless steel. 展开更多
关键词 gas tungsten arc welding CP-copper 304 stainless steel dissimilar joint MICROSTRUCTURE mechanical properties
下载PDF
Application of response surface methodology to maximize tensile strength and minimize interface hardness of friction welded dissimilar joints of austenitic stainless steel and copper alloy 被引量:6
8
作者 G. VAIRAMANI T. SENTHIL KUMAR +1 位作者 S. MALARVIZHI V. BALASUBRAMANIAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第8期2250-2259,共10页
An attempt was made to optimize friction welding parameters to attain a minimum hardness at the interface and a maximum tensile strength of the dissimilar joints of AISI 304 austenitic stainless steel (ASS) and copp... An attempt was made to optimize friction welding parameters to attain a minimum hardness at the interface and a maximum tensile strength of the dissimilar joints of AISI 304 austenitic stainless steel (ASS) and copper (Cu) alloy using response surface methodology (RSM). Three-factor, five-level central composite design matrix was used to specify experimental conditions. Twenty joints were fabricated using ASS and Cu alloy. Tensile strength and interface hardness were measured experimentally. Analysis of variance (ANOVA) method was used to find out significant main and interaction parameters and empirical relationships were developed using regression analysis. The friction welding parameters were optimized by constructing response graphs and contour plots using design expert software. The developed empirical relationships can be effectively used to predict tensile strength and interface hardness of friction welded ASS-Cu joints at 95% confidence level. The developed contour plots can be used to attain required level of optimum conditions to join ASS-Cu alloy by friction welding process. 展开更多
关键词 friction welding austenitic stainless steel copper alloy tensile strength interface hardness response surface methodology
下载PDF
A gravity heat pipe for high voltage vacuum interrupter 被引量:4
9
作者 Xiao-ling YU Zhi-yuan LIU +3 位作者 Quan-ke FENG Yi-jiang WEI Ji-mei WANG Xiang-jun ZENG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第9期1305-1312,共8页
To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two... To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two coaxis tubes: the external tube is made of oxygen-free copper and the inner tube is made of stainless steel. The bottom end of the inner stainless steel tube is connected to the external copper tube by holes. Transient and static thermal performance of the heat pipe was measured, and the thermal resistance of it was compared with that of a solid copper rod with the same dimensions. Experimental results showed that thermal resistance of the heat pipe was about 1/3 of that of the copper rod, and it decreased slightly with the rising of the input heat flux. 3D thermal simulation on a 126 kV/2000 A single break VCB was done to compare the thermal performance between the proposed gravity heat pipe and the copper rod serving as the stationary conducting rod of the vacuum interrupter. Simulation results revealed that in the heat pipe case, the maximum temperature between contacts was 67 ℃ lower than that in the copper rod case. 展开更多
关键词 Heat pipe Vacuum circuit breakers (VCBs) Vacuum interrupters Nominal current Thermal simulation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部