1)A-TIG weldingA-TIG焊
1.Weldability of activating flux in A-TIG welding for mild steel;低碳钢A-TIG焊活性剂的焊接性
2.Development of activating flux of A-TIG welding for stainless steel;不锈钢A-TIG焊的活性剂研制
3.Test of fluid flow forming in A-TIG welding pool;A-TIG焊熔池流体流动形态的测试
英文短句/例句
1.Application of all-position activate welding in pipelineA-TIG焊在核电管道全位置焊接中的应用
2.Study on the Performance of TIG Welding Joint for 3.5Ni Steel3.5Ni钢TIG焊焊接性能研究
3.Study on the Properties of Super304H Steel Welded Joints by TIG Welding Process;Super304H钢TIG焊接头性能研究
4.Microstructure and properties of Mg alloy joint by A-TIG and TIG镁合金活性TIG焊与TIG焊的接头组织与性能分析
5.Research on A-TIG Welding and Diffusion Bonding of Magnesium Alloys;镁合金活性TIG焊和真空扩散焊的研究
6.Use Magnetic-field to Improvethe Appearance of Weld of TIGWelding at a High Speed;利用磁场改善TIG高速焊的焊缝成形
7.Effect of Multi-component Active Fluxes on Penetration in TIG Welding多组元活性剂对TIG焊焊缝熔深的影响
8.Swing Welding Technology of TIG Root Welding on Heavy Thickness Pipe厚壁管TIG根焊摇摆手法焊接技术
9.Microstructure and Property of TIG Welding Cast Iron铸铁同质焊材TIG焊接头组织与性能
10.Research on the technology and properties for TIG welding of AZ31 magnesium alloys tubeAZ31镁合金管TIG焊焊接工艺及性能研究
11.TIG welding rapid prototyping surfacing quality vision detecting systemTIG焊快速制造堆焊质量视觉检测系统
12.Study on Fatigue Behavior of Transverse Joints of AZ31B Magnesium Alloys with TIG-Welding;AZ31B镁合金TIG焊横向接头疲劳性能研究
13.Study of Technique and Mechanism on Hybrid CO_2 Laser-TIG Welding;CO_2激光-TIG复合焊接工艺与机理研究
14.The Research of Welding Arc Physical Characteristic in Hyperbaric TIG Welding;干式高压TIG焊接电弧物理特性的研究
15.Vision-Based Measurement of Weld Pool Surface Depression in TIG Welding;TIG焊接熔池表面变形的视觉检测
16.Study on Simulation Analysis of N_2-Ar Protecting TIG Welding Arc;氩氮保护TIG焊电弧特性的模拟研究
17.The Research of High Voltage Ignite Digital Welding Machine for TIG;数字化高压引弧式TIG焊机的研制
18.The TIG Welding of Magnesium Alloy under Double Inversion Impulse Magnetic Field;双逆变脉冲磁场作用下镁合金TIG焊
相关短句/例句
TIG weldingTIG焊
1.Research on TIG welding of He-Ar mixed gas for SiCp/6061 Al composite;SiC颗粒增强铝基复合材料氦-氩混合气体TIG焊研究
2.Study on the parameter of TIG welding for die repairing;TIG焊修理钢模的工艺参数的研究
3.Usage and maintenance of welding and cutting machines50——Usage and maintenance of TIG welding machine;焊接与切割设备的使用和维修(五十)——TIG焊机的使用与维修
3)TIG[英][t?ɡ][美][t?g]TIG焊
1.Research on Narrow-gap TIG Welding Technology of Titanium Alloys;钛合金窄间隙TIG焊技术研究
2.The Composition and Microstructure Character of Bond Area of Super eutectic ZA Alloy in TIG Welding;过共晶ZA合金TIG焊接熔合区成分及微观组织特征
3.DESIGN OF SPECIAL TIG WELDING MACHINE USED FOR SIX PTP ASSEMBLY WELDING TO THE HYDRAULIC TORQUE CONVERTER;液力变矩器总成六点TIG焊专机控制系统设计
4)TIG weldingTIG焊接
1.The mechanical properties of Al-alloy 5A02 and its welded joint of CO2 laser welding and TIG welding were studied.对铝合金5A02薄板本身的力学性能、CO2激光焊接与TIG焊接两种焊接方法的铝合金薄板焊接接头的力学性能进行了测定,并对轧制方向与垂直轧制方向的力学性能进行了测定。
2.Based on the theory of magneto-hydro dynamics and real welding conditions,a three-dimension united mathematical model of TIG welding arc and weld pool was established.根据磁流体动力学理论以及焊接的实际情况,建立了三维TIG焊接电弧与熔池的统一数学模型,避免了对电弧以及熔池界面条件的假定,使得对焊接电弧与熔池行为的分析与实际情况更近了一步。
3.Four process parameters including welding current, welding speed, weld gap and eccentric value due to welding gun deviating the weld center were mainly studied during TIG welding process.着重针对焊接电流、焊接速度、焊缝间隙以及焊枪偏离焊缝中心的偏心值4个焊接工艺参数进行了TIG焊接试验研究。
5)alternating current activating-tungsten inert-gas welding交流A-TIG焊
6)TIG fluxTIG焊剂
1.Study on the effect of the ZA alloy TIG flux on the weld formation and welding arc;ChinZA合金TIG焊剂对焊接电弧及焊缝成型的影响
延伸阅读
激光焊与氩弧焊的修模具的区别激光焊与握弧焊是常用的模具修复的两种方法。氩弧焊氩弧焊是电弧焊的一种,利用连续送进的焊丝与工件之间燃烧的电弧作热源,由焊炬喷嘴喷出的气体保护电弧来进行焊接的。目前氩弧焊是常用的方法,可适用于大部分主要金属,包括碳钢、合金钢。熔化极惰性气体保护焊适用于不锈钢、铝、镁、铜、钛、锆及镍合金,由于价格低,被广泛用于模具修复焊,但焊接热影响面积大、焊点大等缺点,目前在精密模具修补方面已逐步补激光焊所代替。激光焊激光焊是高能束焊的一种,激光焊是利用大功率相干单色光子流聚焦而成的激光束为热源进行的焊接。这种焊接方法通常有连续功率激光焊和脉冲功率激光焊。激光焊优点是不需要在真空中进行,缺点则是穿透力不如电子束焊强。激光焊时能进行精确的能量控制,因而可以实现精密器件的焊接。它能应用于很多金属,特别是能解决一些难焊金属及异种金属的焊接。目前已广范用于模具的修复。修复模具时的主要区别使用非消耗电极与保护气体,常用来焊接薄工件,但焊接速度较慢,且热输入比激光焊大很多,易产生变形,激光焊焊缝的特点是热影响区范围小,焊缝较窄,焊缝冷却速快、,焊缝金属性能变化小,焊缝较硬。精密模具的焊接不同于其他零件焊接,其对质量控制的要求非常严格,而且工件的修复周期必须越短越好。传统的氩焊发热影响区大,对焊接周边造成下塌,变形等几率非常高,对于精度要求高,焊接面积大的模具,必须经过加温预热,在特定温度下进行焊接,还要自然降温进行退火处理,如此折腾下来费用和时间都不能为用户所接受;而冷焊又存在焊接不牢固和脱落等缺陷。而激光焊没有氩焊和冷焊这些不足,因此逐渐被广泛应用。
