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Welding Effect at the Heat Affected Zone by Joining a Gray Cast Iron with Stainless Steel E308-16
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作者 Yajaira Curiel-Razo Enrique Curiel-Reyna +2 位作者 Minerva Robles-Agudo Alberto Lara-Guevara Ignacio Rojas-Rodríguez 《Materials Sciences and Applications》 2023年第6期336-345,共10页
Different investigations of the union of dissimilar materials such as stainless steel and different castings have been carried out, but rapid cooling immediately after welding has not been considered, in this work it ... Different investigations of the union of dissimilar materials such as stainless steel and different castings have been carried out, but rapid cooling immediately after welding has not been considered, in this work it was investigated how rapid cooling affects the metallurgical microstructure and consequently the mechanical properties. The effect of welding parameters on the microstructure and mechanical properties of the joint between dissimilar metals, an E-308-16 austenitic stainless steel and Gray Cast Iron was also analyzed. Gray cast iron samples (GCI) were fabricated, welded and cooled. The main welding parameters studied in this work are the welding technique and the type of filler electrodes. Flux-coated electrode E-308-16 was applied for this different joint. An experimental study was carried out for the analysis of welded joints of similar and dissimilar steels. The microstructure of the welded joints was analyzed using an optical microscope, in the base metals, heat affected zone (HAZ) and filler metal. The mechanical properties of the welded joints were evaluated by Vickers microhardness and tensile strength tests. The hardness profile showed differences in hardness between the base metals, the heat affected zone and the filler metal. The metallurgical microstructures observed along the welded areas corresponded to the profile. The hardness differences determined the effect on the mechanical and metallurgical characteristics of the welded samples as a result of the cooling rate differences. This research work is important because it allows us to analyze the possibility of reworking pieces of dissimilar materials by welding or, failing that, to determine if this may or may not be possible. 展开更多
关键词 Gray Iron weldING Hot Affected zone Filler Metal Microstructure Dissimilar Metals
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Effect of welding parameters on the heat-affected zone of AISI409 ferritic stainless steel 被引量:6
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作者 Eslam Ranjbarnodeh Stefanie Hanke +1 位作者 Sabine Weiss Alfons Fischer 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第10期923-929,共7页
One of the main problems during the welding of ferritic stainless steels is severe grain growth within the heat-affected zone (HAZ) In the present study, the microstmctural characteristics of tungsten inert gas (TI... One of the main problems during the welding of ferritic stainless steels is severe grain growth within the heat-affected zone (HAZ) In the present study, the microstmctural characteristics of tungsten inert gas (TIG) welded AISI409 ferritic stainless steel were investigated by electron backscattered diffraction (EBSD), and the effects of welding parameters on the grain size, local misorientation, and low-angle grain boundaries were studied. A 3-D finite element model (FEM) was developed to predict the effects of welding parameters on the holding time of the HAZ above the critical temperature of grain growth. It is found that the base metal is not fully recrystallized. During the welding, complete recrystallization is followed by severe grain growth. A decrease in the number of low-angle grain boundaries is observed within the HAZ. FEM results show that the final state of residual sWains is caused by competition between welding plastic strains and their release by recrystallization. Still, the decisive factor for grain growth is heat input. 展开更多
关键词 ferritic stainless steel weldING heat affected zone RECRYSTALLIZATION grain growth finite element method
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INFLUENCE OF LOCAL BRITTLE ZONE ON THE FRACTURETOUGHNESS OF HIGH-STRENGTH LOW-ALLOYEDMULTIPASS WELD METALS 被引量:1
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作者 Z.L.Zhou S.H.Liu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1998年第2期87-92,共6页
In this paper, toughness properties and microstructurc of low-alloyed multipass welds with yield strength above 700MPa have 6een studied using the weld thermal simulation and throughout thickness CTOD fracture mechani... In this paper, toughness properties and microstructurc of low-alloyed multipass welds with yield strength above 700MPa have 6een studied using the weld thermal simulation and throughout thickness CTOD fracture mechanics tests. Impact testing of thermal simulated specimens showed that the primary weld metal and the fine gmmed weld metal had good toughness, while the coarse grained weld metal had the lowest toughness value as the local brittle zone (LBZ) in multipass weld metals. Cleavage fracture in CTOD testing of thick multipass weld metals was initiated from martensite-austenite (MA) phases in the LBZ. MA phases were distributed at the prior austenite grain boundaries and around ferrite grains. As the size of the local brittle zone along the fatigue crack front increases, CTOD frncture toughness of multipass weld metals decreases. The weakest link theory was used to evaluate effect of the local brittle zone on fracture toughness of thick multipass weld metals. The estimated curves agree well with the eaperimental data. 展开更多
关键词 multipass weld metal local brittle zone weld thermal simulation CTOD fracture toughness
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Study on shape factor of the fusion-solidification zone of electron beam weld 被引量:2
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作者 王亚军 关永军 +2 位作者 付鹏飞 危银涛 卢志军 《China Welding》 EI CAS 2008年第4期62-67,共6页
The concept of shape factors of the fusion-solidification zone is proposed to describe the weld cross section geometry. According to these shape factors, the electron beam weld fusion-solidification zone is divided in... The concept of shape factors of the fusion-solidification zone is proposed to describe the weld cross section geometry. According to these shape factors, the electron beam weld fusion-solidification zone is divided into four typical shapes and the classification criterion for these typical shapes is suggested. An integrated parameter n, combining the line power density of electron beam and material thermal properties is proposed to describe the relative power input, and another integrated parameter n2 combing the accelerating voltage and focusing current is proposed to reflect the power distribution in the keyhole. A series of new expressions, which can reflect the influence of focusing current, accelerating voltage, beam current, and material thermal properties, are developed to predict the fusion-solidification zone shape based on experimental results nonlinear fitting of n1 and n2. 展开更多
关键词 eleetron beam weld fusion-solidification zone shape factor mathematical model
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MICROSTRUCTURE TRANSFORMATION IN THE WELDING HEAT AFFECTED ZONE OF 800MPa GRADE ULTRA FINE STRUCTURED STEEL 被引量:1
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作者 J.B. Liu L.J. Hu +3 位作者 Y.T.Wang Z. Q. Liu K. Miao Z.L. Tian 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2004年第3期238-246,共9页
The transformation behavior and microstructure development in the heat affected zone(HAZ)of 800MPa grade ultra fine structured steel was investigated.It was found that the HAZ has intermediate temperature transformati... The transformation behavior and microstructure development in the heat affected zone(HAZ)of 800MPa grade ultra fine structured steel was investigated.It was found that the HAZ has intermediate temperature transformation characteristics in a wide range of cooling rates,with the bainite sheaves consisting of bainite ferrite plates without carbide precipitation and retained austenite in the fast cooling regime.At relatively high cooling rates,which corresponded to low heat inputs,the hardness of the simulated HAZ was above that of the base metal.When the cooling rate was below 9C/s,the welding HAZ would have an obvious softening.The analysis of transformation rates in continuous cooling processes was completed by numerical differential method.The result indicated that the microstructure transformation rate of the HAZ in 800MPa grade ultra fine structured steel changed sharply to slow speeds when the cooling time t8/5 is longer than 7s. 展开更多
关键词 ultra fine structured steel weld heat affected zone transformation rate microstructure
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Microstructure and toughness of local brittle zone of HSLA steel multipass weld metals 被引量:1
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作者 Yan Cheng Chen Jianhong Gansu University of Technology,Lanzhou 《China Welding》 EI CAS 1992年第2期122-127,共6页
By using thermo-simulation,Auger analysis and Charpy Ⅴ impact test and with the observation of the microstructures in which cleavage crack was initiated,the morphology and toughness of the local brittle zone of C-Mn ... By using thermo-simulation,Auger analysis and Charpy Ⅴ impact test and with the observation of the microstructures in which cleavage crack was initiated,the morphology and toughness of the local brittle zone of C-Mn and Cr-Ni-Mo multipass weld metals have been investigated.The results indicated that the local brittle zone in C-Mn weld metals with low and high Mn% and Cr- Ni-Mo weld metals is different.With statistical analysis,it has been revealed that the more the local brittle zone and the lower their toughness,the lower the toughness of the entire weld metals.The alloy elements have a noticeable influ- ence on the toughness of the local brittle zone,thereby changing the toughness of weld metals. 展开更多
关键词 weld metals local brittle zone microstructure toughness
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Quantitative research on the heat affected zone of weave bead welding for Invar alloy 被引量:2
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作者 陈洁 占小红 +3 位作者 夏令 张聃 刘芸 魏艳红 《China Welding》 EI CAS 2017年第2期18-22,共5页
Quantitative research on the heat affected zone ( HAZ) o f weave bead welding ( WBW) joint fo r Invar alloy is carried out in this paper. Based on the morphology and related data analysis of the weld se... Quantitative research on the heat affected zone ( HAZ) o f weave bead welding ( WBW) joint fo r Invar alloy is carried out in this paper. Based on the morphology and related data analysis of the weld seam, the width difference o f each layer and the forming mechanism are analyzed. Results show that the bottom layer ( Layer 1 ) has the widest HAZ and the smallest fluctuation, which reaches 1 200 |jLm. HAZ width o f layer 2 to 5 is relatively narrower which is basically below 600 jjim, while the amplitude fluctuation is greater. The main reason lies in the welding path. The long straight welding without weave causes the base metal near the groove fully melts which causes by the long straight welding without weave, while welding with weave leads to the uneven and inadequate melting of metal near groove. 展开更多
关键词 heat affected zone weave bead welding Invar alloy
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Residual Stresses and Micro-Hardness Testing in Evaluating the Heat Affected Zone’s Width of Ferritic Ductile Iron Arc Welds 被引量:1
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作者 Georgios K. Triantafyllidis Dimitrios I. Zagliveris +5 位作者 Dionysios L. Kolioulis Christos S. Tsiompanis Titos N. Pasparakis Athanasios P. Gredis Melina L. Sfantou Ioannis E. Giouvanakis 《Materials Sciences and Applications》 2016年第1期73-82,共10页
Shielded Metal Arc Welding (SMAW) in Ductile Irons (DI) is often required by foundries for practical manufacturing reasons. The mechanical properties of the welded structures are strongly dependent on their HAZ’s wid... Shielded Metal Arc Welding (SMAW) in Ductile Irons (DI) is often required by foundries for practical manufacturing reasons. The mechanical properties of the welded structures are strongly dependent on their HAZ’s width. A model based on the behaviour of the ferritic matrix of high-Si DIs in order to make an approach in measuring their HAZ’s width is developed in this study. A series of thermal treatments on 3.35 and 3.75 wt% Si as-cast DIs and spot SMAWs is applied on these materials. The applied SMAWs are done on non-preheated and preheated samples (150℃ - 300℃). For welding we modify the amperage (100 - 140A). The micro-hardness Vickers changes in the ferrite of the as-cast samples and inside the HAZ of the welded ones can be attributed to the existence of residual stresses (RS) in the ferritic matrix and assist in estimating the HAZ’s width. 展开更多
关键词 weldS Heat Affected zone Residual Stresses Micro-Hardness Vickers Heat Affected zone’s Width
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Study on laser welded heat-affected zone in new ultralow carbon bainitic steel
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作者 Lin Zhao Wuzhu Chen +1 位作者 Xudong Zhang Jiguo Shan 《Journal of University of Science and Technology Beijing》 CSCD 2007年第2期136-140,共5页
800 MPa grade ultralow carbon bainitic (NULCB) steel is the recently developed new generation steel, which was produced by thermo mechanical controlled processing & relaxation-precipitation controlling transformati... 800 MPa grade ultralow carbon bainitic (NULCB) steel is the recently developed new generation steel, which was produced by thermo mechanical controlled processing & relaxation-precipitation controlling transformation (TMCP&RPC) tech- nique. The microstructure and the mechanical properties of the heat-affected zone (HAZ) in NULCB steel under laser welding conditions were investigated by using a Gleeble-1500 thermal simulator. The experimental results indicate that the simplex microstructure in the HAZ is granular bainite that consists of bainite-ferrite (BF) lath and M-A constituent when the cooling time from 800 to 500℃ (t8/5) is 0.3-30 s, and the M-A constituent consists of twinned martensite and residual austenite. As t8/5 increases, the hardness and tensile strength of HAZ decreases, but they are higher than that of the base metal, indicating the absence of softened zone after laser welding. The impact toughness of HAZ increases at first and then decreases when t8/5 increases. The impact energy of HAZ is much higher than that of the base metal when t8/5 is between 3 and 15 s. It indicates that excellent low temperature toughness can be obtained under appropriate laser welding conditions. 展开更多
关键词 ultralow carbon bainitic steel laser welding heat-affected zone MICROSTRUCTURE mechanical properties
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Microstructure and defect of titanium alloy electron beam deep penetration welded joint 被引量:8
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作者 张秉刚 石铭霄 +1 位作者 陈国庆 冯吉才 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第11期2633-2637,共5页
The microstructure, phase composition and cold shut defect of thick titanium alloy electron beam welded joint were studied. The results showed that the microstructure of weld zone was composed of α′ phase; the heat ... The microstructure, phase composition and cold shut defect of thick titanium alloy electron beam welded joint were studied. The results showed that the microstructure of weld zone was composed of α′ phase; the heat affected zone was divided into fine-grained zone and coarse-grained zone, the microstructure of fine-grained zone was primary α phase + β phase + equiaxed α phase, and the microstructure of coarse-grained zone was primary α phase + acicular α′ phase; the microstructure of base metal zone basically consisted of primary α phase, and a small amount of residual β phase sprinkled. The forming. reason of cold shut was analyzed, and the precaution of cold shut was proposed. 展开更多
关键词 TA15 titanium alloy electron beam welding MICROSTRUCTURE phase composition cold shut defect weld zone heataffected zone
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High-temperature creep properties of fine grained heat-affected zone in P92 weldment
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作者 王学 史专 +1 位作者 潘乾刚 吴洪亮 《中国有色金属学会会刊:英文版》 CSCD 2009年第S3期772-775,共4页
The simulated fine grained heat-affected zone (FGHAZ) specimens for P92 welded joints were prepared by heat treatment, then the creep tests were carried out at 650 ℃ under the applied stress of 90-120 MPa to investig... The simulated fine grained heat-affected zone (FGHAZ) specimens for P92 welded joints were prepared by heat treatment, then the creep tests were carried out at 650 ℃ under the applied stress of 90-120 MPa to investigate high-temperature creep behavior of FGHAZ. The results show that the creep property of FGHAZ is much inferior to that of the base metal, which exhibits the much higher steady creep rate and shorter time to creep fracture. The power law equation can describe the steady creep rate dependence on applied stress, indicating that the stress exponent n of FGHAZ is distinguished between two regions with n=15.1 at high stresses (more than 100 MPa) and n=8.64 at lower stresses. Based on Monkman-Grant equation, the relationship between the secondary creep rate and time to rupture is obtained to evaluate the creep life of FGHAZ with the applied stress above 100 MPa. 展开更多
关键词 RESISTANT heat steel welding FINE grained heat-affected zone(FGHAZ) CREEP
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Effect of Zr-Ti combined deoxidation on impact toughness of coarse-grained heat-affected zone with high heat input welding
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作者 万响亮 吴开明 +2 位作者 王红鸿 卢伟煜 成林 《China Welding》 EI CAS 2014年第4期56-62,共7页
In this study, the effects of Zr-Ti combined deoxidation and AI deoxidation on the impact toughness of coarse- grained heat-affected zone in high-strength low-alloy steels were investigated. More fine oxides were form... In this study, the effects of Zr-Ti combined deoxidation and AI deoxidation on the impact toughness of coarse- grained heat-affected zone in high-strength low-alloy steels were investigated. More fine oxides were formed in the Zr-Ti-killed steel than in Al-killed steel. It was also found that more acicular ferrite grains were formed in the coarse-grained heat-affected zone in the Zr-Ti-killed steel than in Al-killed steel. The impact toughness of coarse-grained heat-affected zone of Zr-Ti-kiUed steel was higher than that of Al-killed steel. The good impact toughness was attributable to the pinning effect of fine oxides and the formation of acicular ferrite grains on fine oxides. 展开更多
关键词 STEELS heat-affected zone high heat input welding TOUGHNESS DEOXIDATION
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重型运载火箭燃料贮箱FSW核心区温度监测
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作者 卢晓红 张昊天 +1 位作者 滕乐 隋国川 《焊接学报》 EI CAS CSCD 北大核心 2024年第9期30-41,共12页
重型运载火箭燃料贮箱目前通常采用2219-T8高强铝合金,贮箱壁厚高达18 mm,采用搅拌摩擦焊(friction stir welding,FSW)工艺实现筒段纵缝和环缝焊装,FSW核心区极值温度直接影响焊接质量,但由于搅拌头旋转、轴肩遮挡等原因导致FSW核心区... 重型运载火箭燃料贮箱目前通常采用2219-T8高强铝合金,贮箱壁厚高达18 mm,采用搅拌摩擦焊(friction stir welding,FSW)工艺实现筒段纵缝和环缝焊装,FSW核心区极值温度直接影响焊接质量,但由于搅拌头旋转、轴肩遮挡等原因导致FSW核心区温度获取困难.文中提出了一种FSW核心区极值温度在位表征方法,首先,基于Deform-3D建立了18 mm厚2219-T8铝合金的FSW温度场仿真模型,实现了18 mm厚2219-T8铝合金平板和环焊温度场表征;然后,基于温度场仿真模型,提取焊件表面特征点温度与核心区极值温度的数据集,采用支持向量回归机算法(support vector regression,SVR)建立FSW核心区极值温度预测模型;最后,红外热像仪实时测得焊件表面特征点温度,结合核心区极值温度预测模型,实现贮箱FSW核心区极值温度监测.试验结果表明,FSW核心区峰值温度监测相对误差<7.22%,核心区最低温度相对误差<9.54%,证实了FSW核心区极值温度监测方法的有效性. 展开更多
关键词 搅拌摩擦焊 核心区温度 监测 红外热像仪 支持向量回归机
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基于Roe-Siegmund循环内聚力模型焊趾疲劳裂纹萌生仿真
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作者 赵秋 唐琨 +1 位作者 李英豪 吴维青 《焊接学报》 EI CAS CSCD 北大核心 2024年第3期61-67,I0006,共8页
为建立焊趾疲劳裂纹萌生行为仿真方法,基于Roe-Siegmund循环内聚力模型对ABAQUS进行二次开发,形成用于反映疲劳累积损伤的VUMAT子程序,依据文献方法及试验数据获取Q345焊接区域材料的内聚力参数,通过Voronoi图法和内聚力单元法生成具有... 为建立焊趾疲劳裂纹萌生行为仿真方法,基于Roe-Siegmund循环内聚力模型对ABAQUS进行二次开发,形成用于反映疲劳累积损伤的VUMAT子程序,依据文献方法及试验数据获取Q345焊接区域材料的内聚力参数,通过Voronoi图法和内聚力单元法生成具有疲劳累积损伤特性和晶粒特征的微观模型,并与宏观对接焊缝模型合并,进行多尺度疲劳裂纹萌生仿真模拟,获得裂纹萌生路径、临界循环次数及晶粒力学响应特征.结果表明,此方法能够自发地选择符合实际情况的裂纹萌生位置以及短裂纹扩展路径,完成对焊接区域材料微观断裂过程的模拟,不同仿真组获取的临界循环次数存在于一定的分布范围内,模型中的累积内聚力长度需通过试验数据进行拟合. 展开更多
关键词 焊趾 裂纹萌生 循环内聚力模型 内聚力单元法 Voronoi图法
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蜂窝与K418B高温合金电阻定位焊工艺研究
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作者 黄斌 徐相波 +3 位作者 刘汉明 邓黎鹏 刘强 黄永德 《精密成形工程》 北大核心 2024年第1期140-147,共8页
目的获得蜂窝电阻定位焊的最佳工艺参数并提高焊接接头的力学性能。方法通过正交试验法,对15mm×10mm×4.2mm的GH3536蜂窝和15mm×10mm×2.5mm的K418B基板进行系列电阻焊实验,主要的焊接工艺控制参数包括焊接电流、焊... 目的获得蜂窝电阻定位焊的最佳工艺参数并提高焊接接头的力学性能。方法通过正交试验法,对15mm×10mm×4.2mm的GH3536蜂窝和15mm×10mm×2.5mm的K418B基板进行系列电阻焊实验,主要的焊接工艺控制参数包括焊接电流、焊接时间和焊接压力。对焊接接头进行了抗拉强度测试,系统分析了工艺参数对接头力学性能的影响;通过光学显微镜和扫描电镜(SEM)对拉伸试样的断口形貌和失效形式进行了观测;采用电镜配套的能谱(EDS)探头对焊接接头的界面元素进行了分析。结果GH3536蜂窝与K418B基板定位焊系列接头的最高平均抗拉载荷为123.76N。接头界面处的K418B基板为细小等轴晶组织。基板与蜂窝之间存在宽度约2μm的界面层,其成分与基板相近。接头断口焊合区面积随电流的增大而增大,且在高电流下焊合区焊痕呈蝴蝶状分布。结论在电阻定位焊工艺参数中,焊接电流对接头强度的影响最为显著,其次为焊接压力,焊接时间的影响程度相对较弱。得到的最优参数组合如下:焊接时间为2 ms,焊接电流为4.5kA,焊接压力为17.5N。在该参数下能够获得最高的接头平均抗拉载荷(123.76N)。 展开更多
关键词 蜂窝密封 电阻定位焊 焊接工艺 接头界面 接头断口焊合区
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焊接工艺参数对旋转摩擦焊铝-铜接头弯曲性能的影响
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作者 丁凯 刘伟 +4 位作者 敖余达 余乃铨 董武峰 胡天寒 高玉来 《上海金属》 CAS 2024年第2期26-33,共8页
对1070纯铝和T2纯铜进行了旋转摩擦焊接。研究了摩擦焊工艺参数对铝-铜接头弯曲性能的影响。采用电子探针显微分析仪检测了铝-铜接头界面的微观形貌和元素分布。结果表明:较短时间(2 s)摩擦焊制备的铝-铜接头(1号试样)弯曲试验时断裂于... 对1070纯铝和T2纯铜进行了旋转摩擦焊接。研究了摩擦焊工艺参数对铝-铜接头弯曲性能的影响。采用电子探针显微分析仪检测了铝-铜接头界面的微观形貌和元素分布。结果表明:较短时间(2 s)摩擦焊制备的铝-铜接头(1号试样)弯曲试验时断裂于铝-铜界面,为脆性断裂,随着摩擦时间的增加,铝-铜接头弯曲试验时断裂于铝侧,为韧性断裂;以2~5 s的摩擦时间制备的铝-铜接头界面均未发现有明显的金属间化合物,但发生了成分变化;较短时间摩擦焊制备的1号试样成分变化区宽约1.6μm,较长时间(5 s)摩擦焊制备的4号试样成分变化区宽约2.7μm;较宽的成分变化区能提高铝-铜接头界面的结合强度,从而提高铝-铜接头的弯曲性能,较窄的成分变化区是弯曲试验过程中铝-铜接头界面断裂的主要原因。 展开更多
关键词 焊接工艺参数 旋转摩擦焊 铝-铜接头 弯曲性能 成分变化区
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基于渐进损伤模型的热固性复合材料电阻焊接头强度的尺寸效应研究
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作者 赵艺 赵刚 +3 位作者 范欣愉 闫忠伟 葛亚琼 徐剑 《复合材料科学与工程》 CAS 北大核心 2024年第2期45-51,共7页
研究了拉剪载荷下热固性复合材料电阻焊接头强度的尺寸效应,揭示了不同搭接尺寸对焊接强度和焊接界面渐进损伤行为的影响规律。为了研究焊接界面的渐进损伤行为,引入双线性内聚力单元,进而建立焊接接头的有限元模型,然后通过电阻焊接的... 研究了拉剪载荷下热固性复合材料电阻焊接头强度的尺寸效应,揭示了不同搭接尺寸对焊接强度和焊接界面渐进损伤行为的影响规律。为了研究焊接界面的渐进损伤行为,引入双线性内聚力单元,进而建立焊接接头的有限元模型,然后通过电阻焊接的拉剪试验验证了模型的准确性。在此基础上,建立了不同搭接尺寸的数值模型并对其进行研究。研究结果表明,增大搭接长度或者宽度可以提高接头结构的承载能力,但是当搭接长度较长时,在搭接区域边缘易发生翘曲失效,降低了接头单搭接剪切强度,而宽度则对接头的剪切强度影响很小。 展开更多
关键词 复合材料 电阻焊 内聚力模型 有限元分析
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焊接热循环峰值温度对1000 MPa级超高强钢热影响区组织性能的影响
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作者 孙琦 李太江 +6 位作者 李巍 李生文 余阳 李聚涛 娄正计 许博炜 程晔锋 《热力发电》 CAS CSCD 北大核心 2024年第4期165-173,共9页
为研究1 000 MPa级超高强钢焊接热影响区(HAZ)不同区域的组织性能,采用焊接热模拟技术制备了试验钢在不同热循环峰值温度下的试样,通过夏比冲击试验研究了HAZ不同区域的冲击韧性。结果表明:在亚临界区(SCHAZ)、临界区(ICHAZ)和细晶区(FG... 为研究1 000 MPa级超高强钢焊接热影响区(HAZ)不同区域的组织性能,采用焊接热模拟技术制备了试验钢在不同热循环峰值温度下的试样,通过夏比冲击试验研究了HAZ不同区域的冲击韧性。结果表明:在亚临界区(SCHAZ)、临界区(ICHAZ)和细晶区(FGHAZ),样品冲击吸收能量、裂纹扩展能量和动态冲击韧度较大,断口上形成较大面积的脚跟形纤维区和剪切唇,微观可看到大小不一的韧窝,样品冲击韧性较好;在粗晶区(CGHAZ),样品各项冲击数据均急剧下降,断口呈宏观脆性断裂,几乎全为放射区,微观下显示准解理断裂特征,表明裂纹扩展时受到的阻力减小,裂纹萌生后稳定扩展的时间减少,失稳扩展较快,样品的冲击韧性恶化,CGHAZ为HAZ中的韧性谷区;组织分析表明,粗大的晶粒和粗大的马氏体板条是导致CGHAZ脆化的主要原因。该结论为探究1 000 MPa级超高强钢在水电工程中的优选研制及工程应用奠定了理论基础。 展开更多
关键词 超高强钢 焊接热模拟 焊接热影响区 冲击吸收能量 断裂韧度
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Ti_(2)AlNb合金热模拟焊接热影响区的组织与力学性能
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作者 马秀萍 卜志强 +2 位作者 李然 吴家云 李金富 《材料热处理学报》 CAS CSCD 北大核心 2024年第2期204-210,共7页
Ti_(2)AlNb合金因其较高的比强度和高温抗氧化能力,是先进航空发动机热端部件的重要候选材料。但作为金属间化合物材料,其焊接性能是一重要挑战。为了解焊接热循环对合金组织性能的影响规律,使用Gleeble3500热模拟试验机模拟了Ti_(2)AlN... Ti_(2)AlNb合金因其较高的比强度和高温抗氧化能力,是先进航空发动机热端部件的重要候选材料。但作为金属间化合物材料,其焊接性能是一重要挑战。为了解焊接热循环对合金组织性能的影响规律,使用Gleeble3500热模拟试验机模拟了Ti_(2)AlNb合金焊缝附近热影响区的热循环,研究了冷却速度对焊接热影响区组织与性能的影响;根据热膨胀-温度曲线,结合不同冷速下合金的显微组织,建立了Ti_(2)AlNb合金焊接热影响区连续冷却转变(SH-CCT)曲线。结果表明:在快速加热至B2单相区后的连续冷却过程中Ti_(2)AlNb合金中主要析出相为O相,α_(2)相的析出量很少。随着冷却速度的增加,析出相的数量逐渐减少、尺寸降低,且α_(2)相的析出率先被抑制,B2相向O相转变的温度区间缩小。冷却速度低,合金中析出相数量多,强度高,但塑性低。反之,随着冷速的增加,残留B2相增多,合金的塑性得到改善。 展开更多
关键词 Ti_(2)AlNb合金 热模拟 焊接热影响区 显微组织 力学性能
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国产P91钢焊接接头热影响区各亚区域的热处理模拟
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作者 方利鹏 要玉宏 +3 位作者 金耀华 冯琳杰 张巍 刘福广 《机械工程材料》 CAS CSCD 北大核心 2024年第10期55-64,共10页
采用不同温度(800,850,950,1 300℃)×25 min的正火+755℃×60 min回火处理分别模拟P91钢接头热影响区不同亚区域,采用650℃×200 h高温加速时效热处理工艺模拟服役50 000 h工况,通过对比热模拟和实际接头试样研究了服役50 ... 采用不同温度(800,850,950,1 300℃)×25 min的正火+755℃×60 min回火处理分别模拟P91钢接头热影响区不同亚区域,采用650℃×200 h高温加速时效热处理工艺模拟服役50 000 h工况,通过对比热模拟和实际接头试样研究了服役50 000 h后P91钢焊接接头热影响区不同亚区域的组织及性能。结果表明:粗晶区、细晶区服役态热模拟试样的马氏体板条形态以及MX相、M_(23)C_(6)碳化物和Laves相的数量、分布、颗粒尺寸与实际接头相应亚区域均十分接近;除粗晶区外,热影响区各亚区域服役态热模拟试样和实际服役接头相应区域的平均晶粒尺寸十分接近,相对误差不超过12.5%,显微硬度和微型杯突力学性能相近,强度、韧度和断裂挠度率相对误差均在5%以内,断口呈典型微孔聚集型韧性断裂特征;热影响区部分相变区显微硬度最小,为191 HV,在细晶区和粗晶区硬度大幅上升,在熔合线处达到最大,为314 HV;热影响区粗晶区的微型杯突强度最大,塑性最差,部分相变区的强度最低,塑性最好;相比粗晶区,部分相变区的颈缩程度更高,韧窝更大更深。 展开更多
关键词 P91钢 焊接接头 热影响区 热处理模拟 加速时效 显微硬度 微型杯突力学性能
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