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Finite element analysis of keyhole plasma arc welding based on an adaptive heat source mode 被引量:5
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作者 胡庆贤 武传松 张裕明 《China Welding》 EI CAS 2007年第2期55-58,共4页
An adaptive heat source mode is proposed to account for the keyhole effect and the characteristics of volumetric distribution along the direction of the workpiece thickness. Finite element analysis of the temperature ... An adaptive heat source mode is proposed to account for the keyhole effect and the characteristics of volumetric distribution along the direction of the workpiece thickness. Finite element analysis of the temperature field in keyhole plasma arc welding is conducted and the weld geometry is obtained. The predicted results are in agreement with the measured ones. 展开更多
关键词 keyhole plasma arc welding adaptive heat source mode finite element analysis
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Modeling the keyhole shape and dimension in plasma arc welding 被引量:3
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作者 霍玉双 武传松 《China Welding》 EI CAS 2009年第2期17-20,共4页
It is of great significance to model the keyhole shape and dimensions to optimize the plasma arc welding process parameters. In this study, through employing a combined volumetric heat source mode, the weld pool in ke... It is of great significance to model the keyhole shape and dimensions to optimize the plasma arc welding process parameters. In this study, through employing a combined volumetric heat source mode, the weld pool in keyhole plasma arc welding is determined firstly, and then the dynamic force-balance condition on the interface between the plasma jet and the molten metal is dealt with in describing the keyhole formation inside the weld pool. The effects of welding current on the shape and size of keyhole are numerically analyzed. The sharp transformation from a partial keyhole to a full-penetration keyhole is quantitatively demonstrated. 展开更多
关键词 keyhole shape plasma arc welding MODELING
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Experimental determination of the weld penetration evolution in keyhole plasma arc welding 被引量:2
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作者 胡庆贤 武传松 张裕明 《China Welding》 EI CAS 2007年第1期6-8,共3页
Keyhole plasma arc welding experiments are conducted to measure the weld geometry and penetration at different moments during the initial phase from igniting arc to quasi-steady state. Indirect information on keyhole ... Keyhole plasma arc welding experiments are conducted to measure the weld geometry and penetration at different moments during the initial phase from igniting arc to quasi-steady state. Indirect information on keyhole formation and evolution in plasma arc welding can be extracted based on the weld macrophotograph at cross section. It has laid foundation to verify the mathematical models of keyhole plasma arc welding. 展开更多
关键词 weld penetration keyhole plasma arc welding
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A computer-based control system for keyhole plasma arc welding 被引量:2
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作者 贾传宝 武传松 张裕明 《China Welding》 EI CAS 2007年第4期7-10,共4页
A new kind of control system for keyhole plasma arc welding (K-PAW) was developed based on the computer and the Graphics Language--LabVIEW. It can set and output the required current waveforms with desired decreasin... A new kind of control system for keyhole plasma arc welding (K-PAW) was developed based on the computer and the Graphics Language--LabVIEW. It can set and output the required current waveforms with desired decreasing slopes so that the corresponding "opening and closing" of keyhole can occur periodically. With this control strategy of welding current waveforms, the workpiece is fully penetrated while no burn-through Occurs. Keyhole plasma arc welding experiments were conducted to verify the stability and reliability of the developed system. 展开更多
关键词 control system keyhole plasma arc welding
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Analysis of keyhole geometry in plasma arc welding 被引量:2
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作者 胡庆贤 武传松 《China Welding》 EI CAS 2006年第4期43-45,共3页
The key problem for numerical simulation of plasma arc welding (PAW) process is to develop a suitable and adaptive volumetric heat source mode which reflects the physical characteristics of keyhole PAW. To this end,... The key problem for numerical simulation of plasma arc welding (PAW) process is to develop a suitable and adaptive volumetric heat source mode which reflects the physical characteristics of keyhole PAW. To this end, the keyhole geometry under different PAW process conditions must be predicted. In this paper, a mathematical model for determining the keyhole shape is developed with considering the mass and momentum conservation of the in-keyhole plasma jet as well as the pressure equilibrium at the plasma jet/liquid metal boundary. A suitable heat source model related to the keyhole shape is applied to the calculation of PAW weld dimensions. The predicted results are in good agreement with the experimental ones. 展开更多
关键词 keyhole geometry plasma arc welding numerical analysis
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Analysis of the 3-D fluid velocity and temperature profile in keyhole plasma arc welding 被引量:1
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作者 张涛 武传松 《China Welding》 EI CAS 2011年第3期12-16,共5页
Modeling and simulation of fluid flow and heat transfer in keyhole plasma arc welding is of great significance for optimizing the process parameters. In this study, a three-dimensional transient model is established t... Modeling and simulation of fluid flow and heat transfer in keyhole plasma arc welding is of great significance for optimizing the process parameters. In this study, a three-dimensional transient model is established to analyze numerically the heat transfer and fluid flow phenomena in keyhole plasma arc welding. VOF (volume of fluid) method is used to track the boundary of the keyhole. The dynamic developments of keyhole geometry, the fluid velocity field and temperature profiles are numerically simulated. And the changing Of the fluid velocity and pressure distribution on the keyhole wall in the forming process of the keyhole are analyzed. 展开更多
关键词 fluid flow heat transfer numerical analysis keyhole plasma arc welding
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System Identification of Controlled Pulse Keyhole Plasma Arc Welding Process
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作者 JIA Chuanbao DU Yongpeng +2 位作者 GUO Ning WANG Fang HAN Yanfei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第6期1274-1280,共7页
The development of closed-loop control systems is one of the most effective ways to improve the stability of the keyhole status during keyhole plasma arc welding (K-PAW). Due to the disadvantages of the "one-pulse-... The development of closed-loop control systems is one of the most effective ways to improve the stability of the keyhole status during keyhole plasma arc welding (K-PAW). Due to the disadvantages of the "one-pulse-one-keyhole" technology based on the conventional square current waveform, the controlled pulse welding current waveform is newly applied to control the keyhole open and close periodically. In order to realize the real-time control on the keyhole behavior with this advanced current waveform, welding experiments and system identification are conducted based on the classical control theory. One complete welding cycle can be divided into 3 periods. The keyhole establishing time is the most important time variable, which determines the keyhole behavior and welding process stability. At the same time, the averaged effiux plasma arc voltage during one pulse cycle can reflect the real keyhole dimension and status in a real-time manner. Therefore, two single-input-single-output (SISO) systems are proposed, in which keyhole establishing time and keyhole average dimension are taken as the system controlled variables respectively. Welding experiments are designed with the peak current varying randomly. Experiments show that the keyhole establishing time changes in an opposite direction to the varied peak current, and the averaged efflux plasma arc voltage varies with the same trend as the peak current. Based on the least squares technique and F test of classical system identification, second order difference equation for keyhole establishing time/peak current system and first order difference equation for keyhole average dimension/peak current system are obtained. It is proved that the calculated data by the two mathematical expressions are well matched with the measured data. The proposed research provides mathematical expressions and theoretical analysis to develop closed-loop systems for the controlled pulse K-PAW. 展开更多
关键词 controlled pulse plasma arc welding keyhole system identification CONTROL
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NTWV-based sensing keyhole dimension in plasma arc welding
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作者 贾传宝 武传松 张裕明 《China Welding》 EI CAS 2008年第3期1-5,共5页
During stable keyhole plasma arc welding, the pilot arc and the transferred arc exist at the meantime, and the arcs can be considered as a composition of two parts inside and outside the nozzle, respectively. Under th... During stable keyhole plasma arc welding, the pilot arc and the transferred arc exist at the meantime, and the arcs can be considered as a composition of two parts inside and outside the nozzle, respectively. Under the mechanical constriction and thermal contraction effects, the inside arc has certain arc length, electron density and arc profile etc. inducing constant tungsten-to-nozzle voltage. However, the arc outside the nozzle diverges at about 5 degrees and has certain characteristics similar to the free arcs. The nozzle-to-workpiece voltage (NTWV) depends mainly on the length of the arc, which gets bigger as increasing of the weld penetration and keyhole size. The NTWV sensor is developed for monitoring NTWV in real time. The welding experiments are designed to get different penetrations and keyhole sizes. It is found that as the weld penetration and the keyhole size increase, NTWV also increases linearly. The NTWV signals can be used as the feedback variable in automatic control of keyhole plasma arc welding. 展开更多
关键词 keyhole plasma arc welding nozzle-to-workpiece voltage PENETRATION keyhole sensor
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Numerical analysis of transient keyhole shape in pulsed current plasma arc welding
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作者 孙俊华 武传松 《China Welding》 EI CAS 2014年第4期69-75,共7页
Based on the characteristics of "one keyhole in a pulse" in pulsed current plasma arc welding (PAW) , the transient variation process of weld pool in a pulse cycle is simulated through the establishment of corresp... Based on the characteristics of "one keyhole in a pulse" in pulsed current plasma arc welding (PAW) , the transient variation process of weld pool in a pulse cycle is simulated through the establishment of corresponding heat source model. And considering the effects of gravitational force, plasma arc pressure and surface tension on the weld pool surface, the dynamic change features of the keyhole shape in a pulse cycle are calculated by using surface deformation equation. Experiments are conducted and validate that the calctdated weld fusion line is in good agreement with the experimental results. 展开更多
关键词 pulsed current plasma arc welding weld pool keyhole numerical analysis
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Simultaneous observation of keyhole and weld pool in plasma arc welding with a single cost-effective sensor
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作者 张国凯 武传松 +1 位作者 刘新锋 张晨 《China Welding》 EI CAS 2014年第4期8-12,共5页
The dynamic behaviors of the keyhole and weld pool are coupled together in plasma arc welding, and the geometric variations of both the keyhole and the weld pool determine the weld quality. It is of great significance... The dynamic behaviors of the keyhole and weld pool are coupled together in plasma arc welding, and the geometric variations of both the keyhole and the weld pool determine the weld quality. It is of great significance to simultaneously sense and monitor the keyhole and the weld pool behaviors by using a single low-cost vision sensor in plasma arc welding process. In this study, the keyhole and weld pool were observed and measured under different levels of welding current by using the near infrared sensing technology and the charge coupled device (CCD) sensing system. The shapes and relative position of weld pool and keyhole under different conditions were compared and analyzed. The observation results lay solid foundation for controlling weld quality and understanding the underlying process mechanisms. 展开更多
关键词 keyhole weld pool plasma arc welding single vision sensor infrared sensing
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Numerical analysis of keyhole establishment time in keyhole plasma arc welding
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作者 孙俊华 胡庆贤 《China Welding》 EI CAS 2015年第1期68-73,共6页
Numerical analysis of keyhole shape and keyhole establishment time is of great significance for selection and optimization of the process parameters in keyhole plasma arc welding. In this paper, a three-dimensional tr... Numerical analysis of keyhole shape and keyhole establishment time is of great significance for selection and optimization of the process parameters in keyhole plasma arc welding. In this paper, a three-dimensional transient model is developed to analyze the evolutions of keyhole shape and keyhole establishment time in continuous current plasma arc welding process. Firstly, a combined volumetric heat source model is used to simulate the transient variation of temperature field. And then the surface deformation equation is adopted to calculate dynamic features of the keyhole shape and keyhole establishment time inside weld pool, in which the force action on weld pool surface is considered. Experiment is cond^ted to validate the numerical simulation results. The predicted keyhole size and keyhole establishment time are in agreement with the experimental measurement. And the calculated fusion zone geometry is consistent with the measured one. 展开更多
关键词 numerical analysis plasma arc welding keyhole establishment time transient variation
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Sensing controlled pulse key-holing condition in plasma arc welding 被引量:4
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作者 贾传宝 武传松 张裕明 《中国有色金属学会会刊:英文版》 EI CSCD 2009年第2期341-346,共6页
According to the strategy of controlled pulse key-holing,a new sensing and control system was developed for monitoring and controlling the keyhole condition during plasma arc welding(PAW). Through sensing and processi... According to the strategy of controlled pulse key-holing,a new sensing and control system was developed for monitoring and controlling the keyhole condition during plasma arc welding(PAW). Through sensing and processing the efflux plasma voltage signals,the quantitative relationship among the welding current,efflux plasma voltage and backside weld width of the weld was established. PAW experiments show that the efflux plasma voltage can reflect the state of keyhole and backside weld width accurately. The closed-loop control tests validate the stability and reliability of the developed keyhole PAW system. 展开更多
关键词 等离子弧焊接 控制脉冲 传感 尾焰电压 控制系统 背面熔宽 肺动脉 焊接电流
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大熔深K-PAW熔池及电弧视觉行为特征分析研究
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作者 贾传宝 李佳鹏 +2 位作者 陈崇龙 张珂谨 周卫鲁 《电焊机》 2024年第2期1-7,共7页
穿孔等离子弧焊接(K-PAW)以其独特的优势,在中厚板的焊接制造中应用广泛,并逐渐向更大厚度的方向发展。然而,随工件厚度增加熔池穿孔出现不稳定等问题,制约了其在实际生产中的应用。分析了14 mm厚304不锈钢在“受控恒定穿孔”控制策略... 穿孔等离子弧焊接(K-PAW)以其独特的优势,在中厚板的焊接制造中应用广泛,并逐渐向更大厚度的方向发展。然而,随工件厚度增加熔池穿孔出现不稳定等问题,制约了其在实际生产中的应用。分析了14 mm厚304不锈钢在“受控恒定穿孔”控制策略下的大熔深K-PAW熔池特征尺寸变化规律和焊接过程中的熔池行为。通过视觉检测与电信号同步采集系统,对大熔深K-PAW过程中熔池的形貌特征进行定量分析,探究在受控脉冲条件下的熔池特征参数变化情况,以及熔池特征与电信号的同步动态行为规律。以初始电流270 A进行焊接,在起弧的前14 s的盲孔阶段,随着电弧热量积累,熔池不稳定,尺寸出现震荡,最大震荡幅度超过10 mm,同时熔池长宽比也在1.0~1.6范围内变化;随着穿孔于第15 s发生,熔池达到平衡,且长宽比在19 s时达到峰值;维孔阶段,熔池保持稳定,形状未发生大变化。综上,可以通过熔池形状变化趋势来区分焊接阶段。比较了不同焊接电流(280 A、275 A、270 A)的盲孔阶段,发现采用较大的初始电流有利于缩短盲孔时间,由270 A时的22.9 s减小到了280 A时的19.8 s,并降低焊接气孔出现的可能性。最后,发现电弧中心与熔池前边缘的距离可以反映穿孔状态。结果验证了“受控恒定穿孔”控制策略的可行性,并验证了通过视觉特征判断焊接阶段及是否穿孔的可行性。 展开更多
关键词 穿孔等离子弧焊接 深熔焊 熔池视觉特征参数 视电信号同步
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基于SYSWELD的穿孔等离子弧焊接温度场有限元分析 被引量:2
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作者 胡庆贤 王艳辉 +1 位作者 姚庆军 王顺尧 《焊接学报》 EI CAS CSCD 北大核心 2011年第12期66-69,116,共4页
K-PAW焊接时形成具有"倒喇叭"状的焊缝.根据K-PAW的焊缝形状特点,通过比较多种热源作用模式,得到了适合于K-PAW焊接的组合式体积热源作用模式,即,沿板厚方向,工件的上部采用双椭球体热源,下部为中心轴热流峰值线性递增的圆柱... K-PAW焊接时形成具有"倒喇叭"状的焊缝.根据K-PAW的焊缝形状特点,通过比较多种热源作用模式,得到了适合于K-PAW焊接的组合式体积热源作用模式,即,沿板厚方向,工件的上部采用双椭球体热源,下部为中心轴热流峰值线性递增的圆柱体热源.将"双椭球体+峰值递增圆柱体"组合式热源应用于SYSWELD软件与K-PAW焊接热过程的有限元分析模型,计算了6 mm厚不锈钢板K-PAW焊接温度场以及焊缝形状尺寸,计算与试验结果吻合良好,结果表明了所用热源模式的适用性. 展开更多
关键词 穿孔型等离子弧焊接 温度场 组合式热源 有限元分析
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TA2中厚板低功率激光诱导双电弧高效焊接及机理
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作者 刘黎明 杨环宇 徐信坤 《焊接学报》 EI CAS CSCD 北大核心 2023年第1期1-7,I0003,共8页
采用低功率脉冲激光诱导双TIG复合焊接热源(LITTW)实现了6 mm厚TA2纯钛中厚板的高效焊接,基于Ti粒子的动力学行为,研究了激光脉冲对电弧等离子体的影响.结果表明,LITTW比激光诱导单TIG焊接(LISTW)的电弧能量更加集中,焊接能耗仅为LISTW... 采用低功率脉冲激光诱导双TIG复合焊接热源(LITTW)实现了6 mm厚TA2纯钛中厚板的高效焊接,基于Ti粒子的动力学行为,研究了激光脉冲对电弧等离子体的影响.结果表明,LITTW比激光诱导单TIG焊接(LISTW)的电弧能量更加集中,焊接能耗仅为LISTW的50.9%,速度却达到LISTW的2.3倍.激光脉冲作用后,电弧等离子体由能量集中状态恢复到原始电弧形态存在一个恢复时间,在本试验条件下,LITTW的恢复时间为6.5 ms,比LISTW延长了3 ms.LITTW中稳定的匙孔形态为Ti粒子持续向电弧等离子体转移提供了条件,延长了电弧等离子体的恢复时间。 展开更多
关键词 激光诱导双电弧焊接 纯钛中厚板 焊接能耗 电弧等离子体 匙孔
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等离子弧焊接熔池和小孔形成过程数值分析 被引量:2
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作者 邱涛 李天庆 +2 位作者 陈长新 王昊 陈璐 《精密成形工程》 北大核心 2023年第8期178-190,共13页
目的研究等离子弧焊接穿孔过程中熔池内部的金属流动情况和小孔动态变化过程。方法通过“传热-熔池流动-小孔”之间的相互耦合关系,建立了等离子弧焊接穿孔过程的数值分析模型,通过VOF方法追踪了小孔界面,采用FLOW-3D软件模拟了等离子... 目的研究等离子弧焊接穿孔过程中熔池内部的金属流动情况和小孔动态变化过程。方法通过“传热-熔池流动-小孔”之间的相互耦合关系,建立了等离子弧焊接穿孔过程的数值分析模型,通过VOF方法追踪了小孔界面,采用FLOW-3D软件模拟了等离子弧焊接熔池和小孔的形成过程,定量计算了等离子弧焊接温度场、熔池流场及小孔形状;分析了等离子弧焊接熔池和小孔行为;并通过等离子弧焊接实验数据验证了模拟结果。结果当焊接时间为0~1.0 s时,小孔深度曲线与熔深曲线几乎相同,小孔底部紧贴熔池底部;在2.8s以后,小孔深度曲线与熔深曲线有一定距离,小孔深度曲线在一定范围内波动,等离子弧焊接电弧挖掘作用到达极限,电弧压力与其他力达到平衡状态。模拟的焊缝熔深为8.04mm、熔宽为13.20mm,实验测得的焊缝熔深为8.00 mm、熔宽为13.42 mm。结论构建的随小孔动态变化的曲面热源模型和电弧压力模型可以描述等离子弧焊接过程中的电弧热-力分布;模拟出了等离子弧焊接熔池和小孔动态演变过程;模拟得到的等离子弧焊接焊缝形貌与实验测得的焊缝形貌基本吻合。 展开更多
关键词 等离子弧焊接 熔池 小孔 热源模型 数值分析
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等离子弧焊接穿孔行为的声信号传感 被引量:20
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作者 王耀文 陈强 +2 位作者 孙振国 孙久文 王海燕 《机械工程学报》 EI CAS CSCD 北大核心 2001年第1期53-56,共4页
使用高精度传声器采集穿孔型等离子弧焊接过程中的声音信号 ,围绕焊接过程中出现的“小孔效应” ,开展了等离子弧焊接熔透的声音信号传感方法的研究。结果表明 ,焊接过程中的声音信号在熔池的过渡阶段产生了剧烈的低频振动 ,与熔池的振... 使用高精度传声器采集穿孔型等离子弧焊接过程中的声音信号 ,围绕焊接过程中出现的“小孔效应” ,开展了等离子弧焊接熔透的声音信号传感方法的研究。结果表明 ,焊接过程中的声音信号在熔池的过渡阶段产生了剧烈的低频振动 ,与熔池的振动有关 ,说明声音信号的低频段分量中包含有熔池穿孔状态的信息。频域分析表明 ,声音信号的低频段分量 (0~ 10 0Hz) ,在熔池处于不同阶段时有明显的变化 ,熔池处于过渡阶段时其值大 ,穿孔后小 ,未穿孔时居中。据此 ,设计出了声音信号的A算法 ,用于识别焊接过程中熔池的穿孔状态 ,该算法可靠性较高 。 展开更多
关键词 等离子弧焊 声音信号 传感 小孔效应
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铝合金变极性等离子弧穿孔横焊焊缝成形规律分析 被引量:18
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作者 陈树君 蒋凡 +2 位作者 张俊林 黄宁 张裕明 《焊接学报》 EI CAS CSCD 北大核心 2013年第4期1-6,113,共6页
以穿孔等离子弧焊接过程中形成的穿孔熔池为研究对象,根据熔池热源形态的特点,采用数值模拟与试验相结合的手段研究横焊位置下的铝合金变极性等离子弧焊缝成形.由于焊接速度波动和工件厚度的影响,体热源作用下的穿孔熔池背面存在最高温... 以穿孔等离子弧焊接过程中形成的穿孔熔池为研究对象,根据熔池热源形态的特点,采用数值模拟与试验相结合的手段研究横焊位置下的铝合金变极性等离子弧焊缝成形.由于焊接速度波动和工件厚度的影响,体热源作用下的穿孔熔池背面存在最高温度点和最大熔宽截面相背离的现象;因此通过对穿孔熔池背面进行分区和定义,提出温宽偏离度概念,即熔池背面最高温度点和最大熔宽截面的偏离程度,用以描述穿孔熔池状态及焊缝成形;通过调节焊枪角度来改变焊接过程中的温宽偏离度,在其它参数不变的情况下减轻重力在焊接过程中对焊缝成形的影响,实现变极性等离子弧穿孔焊接在横焊位置上的良好成形. 展开更多
关键词 温宽偏离 变极性等离子弧焊 小孔熔池 横焊 焊缝成形
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不锈钢等离子弧焊熔池小孔行为的弧光传感研究 被引量:4
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作者 董春林 吴林 +2 位作者 朱轶峰 张慧 邵亦陈 《机械工程学报》 EI CAS CSCD 北大核心 1999年第6期48-51,共4页
针对不锈钢穿孔等离子弧焊过程,熔池小孔的特征行为与弧光光谱辐射强度之间的关系进行了光谱试验研究。随着小孔的形成与闭合,弧光光谱辐射强度产生了形似于负脉冲信号的显著跃变,该跃变信号对于预测小孔的形成和闭合是极为有利的,... 针对不锈钢穿孔等离子弧焊过程,熔池小孔的特征行为与弧光光谱辐射强度之间的关系进行了光谱试验研究。随着小孔的形成与闭合,弧光光谱辐射强度产生了形似于负脉冲信号的显著跃变,该跃变信号对于预测小孔的形成和闭合是极为有利的,而且通过检测敏感谱线的辐射强度可以优化传感信号品质。 展开更多
关键词 等离子弧焊 小孔 弧光传感 不锈钢 焊接
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铝合金等离子弧焊穿孔熔池正面图象检测与处理 被引量:15
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作者 王慧钧 王其隆 刘中华 《材料科学与工艺》 EI CAS CSCD 1998年第3期92-96,共5页
研制了一套窄带复合滤光图象传感系统,从铝合金等离子弧焊焊接工件正面检测到部分小孔溶池的清晰图象。采用Gaus滤波,Prewit边缘检测和图象错位边缘检测等方法准确提取出可视小孔熔池的小孔宽度和面积等几何信息。
关键词 等离子弧焊 穿孔熔池 图象处理 铝合金
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