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Influence of arc pressure on the forming of molten pool in tungsten inert gas arc butt welding with micro gap for tantalum sheet
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作者 周方明 钱乙余 《China Welding》 EI CAS 2006年第3期64-67,共4页
Arc pressure is the key influencing factor to forming of molten pool. Countering the characteristic of tungsten inert gas arc welding with micro gap for tantalum sheet, according to the fundament of arc physics, a dis... Arc pressure is the key influencing factor to forming of molten pool. Countering the characteristic of tungsten inert gas arc welding with micro gap for tantalum sheet, according to the fundament of arc physics, a distribution model of arc pressure and forming mechanism of molten pool with micro butt gap are proposed, and the influences of arc pressure on forming of molten pool are discussed. Experimental researches for the dynamic formation process of weld molten pool by using high-speed vidicon camera show that when butt gap is appropriate, that is from 0. 1 to 0. 15 mm, molten metals formed on two workpiece uplift and grow up first, then are fused and form uniform molten pool finally. 展开更多
关键词 arc pressure tantalum sheet micro butt gap tungsten inert gas welding mechanism of forming
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Microstructure and mechanical characteristics of AA6061-T6 joints produced by friction stir welding,friction stir vibration welding and tungsten inert gas welding:A comparative study 被引量:5
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作者 Behrouz Bagheri Mahmoud Abbasi Amin Abdollahzadeh 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2021年第3期450-461,共12页
This study compared the microstructure and mechanical characteristics of AA6061-T6 joints produced using friction stir welding(FSW),friction stir vibration welding(FSVW),and tungsten inert gas welding(TIG).FSVW is a m... This study compared the microstructure and mechanical characteristics of AA6061-T6 joints produced using friction stir welding(FSW),friction stir vibration welding(FSVW),and tungsten inert gas welding(TIG).FSVW is a modified version of FSW wherein the joining specimens are vibrated normal to the welding line during FSW.The results indicated that the weld region grains for FSVW and FSW were equiaxed and were smaller than the grains for TIG.In addition,the weld region grains for FSVW were finer compared with those for FSW.Results also showed that the strength,hardness,and toughness values of the joints produced by FSVW were higher than those of the other joints produced by FSW and TIG.The vibration during FSW enhanced dynamic recrystallization,which led to the development of finer grains.The weld efficiency of FSVW was approximately 81%,whereas those of FSW and TIG were approximately 74%and 67%,respectively. 展开更多
关键词 friction stir welding VIBRATION tungsten inert gas welding mechanical characteristics MICROSTRUCTURE
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Microstructure and mechanical properties of friction pull plug welding for2219-T87 aluminum alloy with tungsten inert gas weld 被引量:2
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作者 Zhen Shao Lei Cui +4 位作者 Lijun Yang Peng Lu Huimiao Wang Zhuanping Sun Jianling Song 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2022年第6期1216-1224,共9页
The friction pull plug welding(FPPW)of the 2219-T87 tungsten inert gas(TIG)welded joint was investigated,and the microstructures,precipitate evolution,mechanical properties,and fracture morphologies of this joint were... The friction pull plug welding(FPPW)of the 2219-T87 tungsten inert gas(TIG)welded joint was investigated,and the microstructures,precipitate evolution,mechanical properties,and fracture morphologies of this joint were analyzed and discussed.In this study,defectfree joints were obtained using a rotational speed of 7000 r/min,an axial feeding displacement of 12 mm,and an axial force of 20-22 kN.The results indicated that within these welding parameters,metallurgical bonding between the plug and plate is achieved by the formation of recrystallized grains.The microstructural features of the FPPW joint can be divided into different regions,including the heat-affected zone(HAZ),thermomechanically affected zone(TMAZ),recrystallization zone(RZ),heat-affected zone in the TIG weld(TIG-HAZ),and the thermomechanically affected zone in the TIG weld(TIG-TMAZ).In the TIG-TMAZ,the grains were highly deformed and elongated due to the shear and the extrusion that produces the plug during the FPPW process.The main reason for the softening in the TMAZ is determined to be the dissolution ofθ’and coarsening ofθprecipitate particles.In a tensile test,the FPPW joint welded with an axial force of 22 kN showed the highest ultimate tensile strength of 237 MPa.The locations of cracks and factures in the TIG-TMAZ were identified.The fracture morphology of the tensile sample showed good plasticity and toughness of the joints. 展开更多
关键词 friction pull plug welding tungsten inert gas weld microstructures constituent particles mechanical properties
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Liquation cracking in the heat-affected zone of IN939 superalloy tungsten inert gas weldments 被引量:4
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作者 Hassan Kazempour-Liasi Mohammad Tajally Hassan Abdollah-Pour 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2020年第6期764-773,共10页
The main aim of this study was to investigate liquation cracking in the heat-affected zone(HAZ)of the IN939 superalloy upon tungsten inert gas welding.A solid solution and age-hardenable filler metals were further stu... The main aim of this study was to investigate liquation cracking in the heat-affected zone(HAZ)of the IN939 superalloy upon tungsten inert gas welding.A solid solution and age-hardenable filler metals were further studied.On the pre-weld heat-treated samples,upon solving the secondaryγ′particles in the matrix,primaryγ′particles in the base metal grew to"ogdoadically diced cubes"of about 2μm in side lengths.The pre-weld heat treatment reduced the hardness of the base metal to about HV 310.Microstructural studies using optical and fieldemission scanning electron microscopy revealed that the IN939 alloy was susceptible to liquation cracking in the HAZ.The constitutional melting of the secondary,eutectic,and Zr-rich phases promoted the liquation cracking in the HAZ.The microstructure of the weld fusion zones showed the presence of fine spheroidalγ′particles with sizes of about 0.2μm after the post-weld heat treatment,which increased the hardness of the weld pools to about HV 350 and 380 for the Hastelloy X and IN718 filler metals,respectively.Application of a suitable solid solution filler metal could partially reduce the liquation cracking in the HAZ of IN939 alloy. 展开更多
关键词 SUPERALLOY tungsten inert gas WELD heat-affected zone liquation cracking
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The comparison of multi-layer narrow-gap laser and arc welding of S32101 duplex stainless steel 被引量:4
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作者 李军兆 温凯 +3 位作者 孙清洁 刘一搏 孔玢 曾宪山 《China Welding》 CAS 2022年第4期37-47,共11页
Multi-layer narrow-gap welding of thick S32101 duplex stainless steel was conducted using laser welding with beam wobble process.The phase transition,grain size,phase proportion and crystal texture of welded joint wer... Multi-layer narrow-gap welding of thick S32101 duplex stainless steel was conducted using laser welding with beam wobble process.The phase transition,grain size,phase proportion and crystal texture of welded joint were also studied and compared with gas metal arc welding process.The microhardness and tensile strength were measured and fracture surface was analyzed to evaluate the mechanical properties of welded joints.The results showed that beam wobble technology improved the misalignment of laser beam and filler wire in narrow groove and helped to avoid incomplete fusion defects.Compared to arc welding process,the groove size and heat input were reduced,while welding efficiency was increased.The faster cooling rate and lower temperature gradient of laser wobble welding favored grain refinement,while the austenite content in weld zone decreased.Both the beam wobble and swing arc were conducive to stir weld pool,optimizing the weld microstructure and joint formation.The microstructural variance in various weld passes was caused by the heat input and heat dissipation ability.The microhardness of laser welded joint was lower,while the tensile strength and elongation percentage were higher.The fracture surface of arc welded joint was featured with shallower dimples and cleavage steps. 展开更多
关键词 narrow gap welding laser welding gas metal arc welding duplex stainless steel mechanical properties
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Feasibility study on tandem narrow gap GMAW of 65 mm thick steel plate 被引量:7
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作者 徐望辉 林三宝 +1 位作者 范成磊 杨春利 《China Welding》 EI CAS 2012年第3期7-11,共5页
In this work, a tandem narrow gap gas metal arc welding( GMA W) system was developed to improve the efficiency in welding of thicker materials, which are mostly used in shipbuilding and nuclear power plant. A specia... In this work, a tandem narrow gap gas metal arc welding( GMA W) system was developed to improve the efficiency in welding of thicker materials, which are mostly used in shipbuilding and nuclear power plant. A special welding torch was desgined, where the two wires are fed through the bent contact tip to point to each side of narrow gap groove. Effect of wire distance and bent angle of contact tip on weld bead shape is studied. The experimental results show that defect free weld bead can be obtained when the wire distarwe is 5 mm and bent angle of contact tip is 10% Finally, tandem narrow gap GMAW of 65 mm thick low carbon steel was successfully carried out with one pass per layer. The obtained weld cross-section photo indicates that there is no defect of lack of side fusion or slag inclusion. 展开更多
关键词 narrow gap welding gas metal arc welding weld bead welding torch
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The effect of activating fluxes on the cathode spots in the activating TIG welding
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作者 黄勇 王伯洋 +4 位作者 郭建航 刘永刚 黄健康 樊丁 余淑荣 《China Welding》 CAS 2023年第1期7-17,共11页
The cathode spots are a common phenomenon in the TIG(tungsten inert gas)welding process.However,it is rarely observed in the activating TIG welding process.This research is mainly focused on the effect of activating f... The cathode spots are a common phenomenon in the TIG(tungsten inert gas)welding process.However,it is rarely observed in the activating TIG welding process.This research is mainly focused on the effect of activating flux on cathode spots in the activating TIG welding.The characteristics and behaviors of cathode spots were investigated in activating TIG welding by the high-speed camera and the spectrograph.Three kinds of oxide(TiO_(2),SiO_(2),MnO_(2))and two halide(MnCl_(2),CaF_(2))activating fluxes are used in the activating TIG welding process.The results show that differ from the TIG welding,the oxide activating flux increases the number of cathode spots and decreases the velocity.The effect is the opposite for the halide activating flux.Moreover,the number of spots no longer varies with the current except TiO2 activating flux.As the temperature of the weld pool surface increases the spot moves away from the center.But this rule is not valid when silica and manganese compounds activating fluxes are used.The variation of cathode spots is caused by the oxide film reformed and the distribution of weld slag.The formation mechanism of cathode spots might be the impact of ions on the cathode surface and the strong electric field formed near the cathode surface. 展开更多
关键词 cathode spots behaviors activating tungsten inert gas welding high-speed photography spectrum
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Effect of Pulsed Current TIG Welding Parameters on Pitting Corrosion Behaviour of AA6061 Aluminium Alloy 被引量:5
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作者 T.Senthil Kumar V.Balasubramanian +1 位作者 M.Y.Sanavullah S.Babu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第2期223-229,共7页
Medium strength aluminium alloy (Al-Mg-Si alloy) has gathered wide acceptance in the fabrication of light weight structures requiring a high strength-to weight ratio, such as transportable bridge girders, military v... Medium strength aluminium alloy (Al-Mg-Si alloy) has gathered wide acceptance in the fabrication of light weight structures requiring a high strength-to weight ratio, such as transportable bridge girders, military vehicles, road tankers and railway transport systems. The preferred welding process for aluminium alloy is frequently TIG (tungsten inert gas) welding due to its comparatively easier applicability and better economy.In the case of single pass TIG welding of thinner section of this alloy, the pulsed current has been found beneficial due to its advantages over the conventional continuous current process. The use of pulsed current parameters has been found to improve the mechanical properties of the welds compared to those of continuous current welds of this alloy due to grain refinement occurring in the fusion zone. A mathematical model has been developed to predict pitting corrosion potential of pulsed current TIG welded AA6061 aluminium alloy.Factorial experimental design has been used to optimize the experimental conditions. Analysis of variance technique has been used to find out the significant pulsed current parameters. Regression analysis has been used to develop the model. Using the developed model pitting corrosion potential values have been estimated for different combinations of pulsed current parameters and the results are analyzed in detail. 展开更多
关键词 Pulsed current tungsten inert gas welding Medium strength aluminium alloy Pitting corrosion Design of experiments Analysis of variance
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Influence of shielding gas and non-consumable electrode configuration on weld formation 被引量:1
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作者 Aleksandr Savinov Oleg Polesskiy +2 位作者 Vladimir Lysak Pavel Krasikov Artem Chudin 《China Welding》 CAS 2021年第4期17-24,共8页
The effect of the shielding gas composition and the cathode processing history on the weld formation quality during welding with a non-consumable electrode at high current was studied. The major reasons for pores, “w... The effect of the shielding gas composition and the cathode processing history on the weld formation quality during welding with a non-consumable electrode at high current was studied. The major reasons for pores, “waists” and undercuts formation during welding at high currents and speed are discrete melt movement to the solidification front due to the arc decline from the cathode axis and significant melt overhanging in the pool tail part caused by excessive peak pressure on the discharge axis. Cathode flow dispersion causes the lack of displacement of the molten metal which results in its laminar flow in the weld pool, uniform flow of the metal to the crystallization front and sound weld formation. The melt movement in the weld pool and eventually the welded joint quality is determined by the pressure distribution pattern on the welded metal surface and the anode spot lag from the electrode. It was demonstrated that non-consumable electrode configurations that provide arcing with a diffuse cathode spot and increased helium concentration in the inert atmosphere during welding with a conical electrode allow sound weld formation. 展开更多
关键词 tungsten inert gas welding non-consumable electrode inert gas weld seam formation
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Metal vapor behavior in double electrodes TIG welding 被引量:1
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作者 王新鑫 罗怡 樊丁 《China Welding》 EI CAS 2018年第3期27-34,共8页
In present paper, the metal vapour behavior in double electrodes TIG welding was investigated by a numerical model, including the arc plasma and weld pool. The thermodynamic parameters and transport coefficients of th... In present paper, the metal vapour behavior in double electrodes TIG welding was investigated by a numerical model, including the arc plasma and weld pool. The thermodynamic parameters and transport coefficients of the arc plasma were dependent on both the local temperature and the mass ratio of the metal vapour. A second viscosity approximation was used to formulate the diffusion coefficient of the metal vapour in the arc plasma. The temperature and flow fields together with the metal vapour concentration were simulated, and the influences of metal vapour on the arc plasma and the weld pool were analyzed. It was found that the metal vapour transport in the arc plasma was significantly influenced by the flow of the arc plasma, and the distribution of the metal vapour was more extended in the direction perpendicular to the line through the double electrodes tips. Both the arc plasma and the heat flux at the weld pool were constricted by the presence of the metal vapour, while the metal vapour had a minor effect on the total heat input to the work piece and the weld pool profile as a whole. 展开更多
关键词 metal vapour double electrodes tungsten inert gas welding heat input
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Comparison of feasibility,microstructure and performance of hybrid laser arc,activated flux tungsten inert gas and friction stir welding for thick plate of innovative ultra-pure ferritic stainless steel
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作者 Jian Han Lian-meng Liu +4 位作者 Xin-ya Chen Min-fang Chen Lei Cui Yang-chuan Cai Yin-bao Tian 《Journal of Iron and Steel Research(International)》 SCIE EI CSCD 2022年第4期665-676,共12页
An innovative grade of ferritic stainless steel,ultra-pure 18Cr–2Mo thick plate,was designed and produced for special industrial application.In order to maintain its mechanical properties after joining,three advanced... An innovative grade of ferritic stainless steel,ultra-pure 18Cr–2Mo thick plate,was designed and produced for special industrial application.In order to maintain its mechanical properties after joining,three advanced joining methods,hybrid laser arc welding,activated flux tungsten inert gas welding and friction stir welding,were selected and conducted to connect the thick plates.The feasibility of three joining methods,the microstructure and mechanical properties were compared,and the results have demonstrated that the sound joint was successfully produced using the selected parameters through friction stir welding.The obtained hardness and impact toughness of the weld zone were satisfying.In terms of activated flux tungsten inert gas welding,the crack will be created due to microstructural brittleness.And as for hybrid laser arc welding,the weld zone is narrow,and the addition of wire during welding for the top weld metal area leads to higher formation ratio of low-angle grain boundaries,which is beneficial to performance of the joint.However,there is still a weak area in the fusion line of the welded joint.The result has illustrated that the welding of innovative ultra-pure ferritic stainless steel thick plate by friction stir welding is feasible. 展开更多
关键词 ULTRA-PURE ferritic stainless steel Hybrid welding ACTIVATED FLUX tungsten inert gas Friction STIR welding Microstructural evolution Mechanical property
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Diagnosis of TIG welding based on ultraviolet radiation
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作者 李志勇 顾小燕 王宝 《China Welding》 EI CAS 2009年第2期6-11,共6页
Through collecting the radiation of tungsten inert gas (TIG) welding arc, the radiation distribution in ultraviolet zone is analyzed in order to study the variation rule of ultraviolet radiation versus welding condi... Through collecting the radiation of tungsten inert gas (TIG) welding arc, the radiation distribution in ultraviolet zone is analyzed in order to study the variation rule of ultraviolet radiation versus welding condition. The explanation for the variation is also provided based on spectral radiation theory of arc light. Furthermore, through analysis of disturbance factors, the integral intensity signal of radiation in ultraviolet zone is applied for diagnosis of welding process. The spectral signal of ultraviolet radiation can reflect the disturbance factors and welding conditions, which can be used for online diagnosis of welding process. 展开更多
关键词 arc spectrum ultraviolet zone tungsten inert gas welding disturbance factor
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Prevention of carbon migration in 9% Cr/CrMoV dissimilar welded joint by adding tungsten inert gas overlaying layer 被引量:1
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作者 Kai Ding Hui-jun Ji +4 位作者 Xia Liu Peng Wang Quan-liang Zhang Xiao-hong Li Yu-lai Gao 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2018年第8期847-853,共7页
High chromium (9-12% Cr) steels with excellent heat resistance and CrMoV steels with good toughness were potential candidates for combined rotor for steam turbine operated over 620℃. Two welding techniques were use... High chromium (9-12% Cr) steels with excellent heat resistance and CrMoV steels with good toughness were potential candidates for combined rotor for steam turbine operated over 620℃. Two welding techniques were used to fabricate 9% Cr and CrMoV dissimilar welded joint. The results show that the carbon migration only appears in the specimen using narrow gap submerged arc welding (NG-SAW) technique, yet it can be effectively prevented by adding tungsten inert gas (TlG) overlaying process before the NG-SAW. The carbon migration occurred in NG-SAW resulting from the sharp transition of the strong carbide-forming element Cr between the weld (-2.7 wt%) and the base metal (- 9 wt%). On the contrary, the application of TIG overlaying layers can promote the diffusion of Cr element, and therefore result in its much smaller concentration gradient. That is to say, a gentle transition zone of Cr element can be created among the SAW weld, TIG overlaying layers and the base metal, which effectively prevents the carbon migration and therefore produces a decreased carbon concentration adjacent to the fusion line. 展开更多
关键词 Carbon migration tungsten inert gas overlaying Gentle transition zone narrow gap submerged arc welding Dissimilar welded joint
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A Fuzzy Logic Approach to Predict Tensile Strength in TIG Mild Steel Welds
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作者 Ademola Adebiyi Oyinbade Kehinde Ademola Imoukhuede Abdulateef Olufolahan Akadiri 《World Journal of Engineering and Technology》 2023年第2期199-207,共6页
Welding defects influence the desired properties of welded joints giving fabrication experts a common problem of not being able to produce weld structures with optimal strength and quality. In this study, the fuz... Welding defects influence the desired properties of welded joints giving fabrication experts a common problem of not being able to produce weld structures with optimal strength and quality. In this study, the fuzzy logic system was employed to predict welding tensile strength. 30 sets of welding experiments were conducted and tensile strength data was collected which were converted from crisp variables into fuzzy sets. The result showed that the fuzzy logic tool is a highly effective tool for predicting tensile strength present in TIG mild steel weld having a coefficient of determination value of 99%. 展开更多
关键词 Tensile Strength PREDICT Steel Fuzzy Logic tungsten inert gas welding
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厚壁管窄间隙全位置焊接侧壁熔透技术研究 被引量:5
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作者 刘立君 逯允龙 +2 位作者 王丽凤 李冬青 韩永魁 《电焊机》 2001年第7期6-9,共4页
从焊前准备、钨极摆动轨迹分析、区段分析、送丝行为分析等几方面介绍厚壁管窄间隙全位置焊接侧壁熔透技术特点 ,其研究成果对全位置焊接机的制造和调试具有普遍指导意义。
关键词 钨极摆动 厚壁管窄间隙全位置焊接 熔透技术 送丝行为 TIG焊
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窄间隙焊接钨极动态运动轨迹多自由度控制 被引量:2
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作者 刘立君 占小红 +2 位作者 韩玉杰 李冬青 吴林 《焊接学报》 EI CAS CSCD 北大核心 2004年第5期17-21,共5页
在厚壁管、压力容器及电站锅炉的窄间隙全位置焊接中 ,钨极运动轨迹是动态的。根据窄间隙全位置焊接工艺要求 ,从钨极运动轨迹角度 ,提出了钨极运动轨迹综合控制方案 ,通过对钨极柔性接触引弧轨迹上的各参数作用机理研究 ,提出钨极柔性... 在厚壁管、压力容器及电站锅炉的窄间隙全位置焊接中 ,钨极运动轨迹是动态的。根据窄间隙全位置焊接工艺要求 ,从钨极运动轨迹角度 ,提出了钨极运动轨迹综合控制方案 ,通过对钨极柔性接触引弧轨迹上的各参数作用机理研究 ,提出钨极柔性接触引弧控制方法 ;根据钨极摆动轨迹分析 ,提出基值电压控制弧长和基、峰值电压值分别控制弧长两种方案 ;为避免在窄间隙U形坡口两侧壁出现”爬弧现象” ,设计了焊缝横向运动轨迹计算机控制自动跟踪系统 ;根据全位置焊接重力对钨极纵向运动轨迹影响特点 。 展开更多
关键词 可变增益PID控制器 引弧轨迹 摆动轨迹 多自由度控制 窄间隙全位置焊接
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大型锆-钢复合板反应器的焊接技术及质量评价 被引量:6
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作者 吴磊 汪兵 崔军 《压力容器》 2017年第4期62-67,共6页
介绍了窄间隙埋弧焊、氩弧焊、等离子弧焊等焊接方法在大型锆-钢复合板反应器制造中的应用,并指出了各种方法的适用范围及优缺点。除对焊接接头进行常规的射线、渗透及超声检测外,还对反应器进行了水压、气密性、热循环、氦检漏等试验,... 介绍了窄间隙埋弧焊、氩弧焊、等离子弧焊等焊接方法在大型锆-钢复合板反应器制造中的应用,并指出了各种方法的适用范围及优缺点。除对焊接接头进行常规的射线、渗透及超声检测外,还对反应器进行了水压、气密性、热循环、氦检漏等试验,检验复层焊缝在设计温度、设计压力下是否产生缺陷及缺陷是否发生扩展,尽可能保证设备的长周期安全运行。 展开更多
关键词 锆-钢复合板 反应器 窄间隙埋弧焊 钨极氩弧焊 等离子弧焊 热循环 氦检漏
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厚壁管窄间隙全位置焊接脉动送丝系统设计 被引量:5
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作者 刘立君 逮云龙 韩永馗 《哈尔滨理工大学学报》 CAS 2000年第5期47-49,共3页
在厚壁管窄间隙全位置TIG焊过程中,为了加强对熔池的控制,采用脉动送丝与钨极摆动同步控制技术,很好地解决了管道全位置焊接熔池稳定性的控制问题,其中所设计的脉动送丝系统具有灵敏度高、工作稳定、抗干扰能力强的优点,能够满... 在厚壁管窄间隙全位置TIG焊过程中,为了加强对熔池的控制,采用脉动送丝与钨极摆动同步控制技术,很好地解决了管道全位置焊接熔池稳定性的控制问题,其中所设计的脉动送丝系统具有灵敏度高、工作稳定、抗干扰能力强的优点,能够满足厚壁管全位置特殊焊接工艺要求. 展开更多
关键词 钨极摆动 厚壁管窄间隙全位置焊接 脉动送丝系统
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厚壁管窄间隙全位置焊小电流自动接触引弧方法的应用研究 被引量:1
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作者 刘立君 逯允龙 +2 位作者 张勇 林旭辉 李冬青 《电焊机》 2000年第4期10-13,共4页
用全位置自动焊管机弧长自动控制系统的计算机硬件和执行机构 ,仅增加部分程序 ,设计了采用小电流接触引弧法的自动引弧系统 ,钨极烧损和焊缝夹钨远小于普通的接触引弧方式 ,引弧成功率很高。
关键词 小电流 自动接触引弧 厚壁管 窄间隙 全位置焊
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厚壁管窄间隙全位置焊接摆动钨极控制系统研制
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作者 刘立君 张勇 +1 位作者 林旭辉 李冬青 《电焊机》 1999年第10期17-19,共3页
从钨极摆动控制、钨极摆动轨迹分析、焊接过程中弧长调节等几方面介绍厚壁管窄间隙全位置焊接摆动钨极控制系统特点,其在实际管道全位置焊接中工作稳定可靠。
关键词 钨极摆动 厚壁管 窄间隙 全位置 焊接 控制系统
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