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1)  flux for narrow-gap submerged arc welding
窄间隙埋弧焊焊剂
2)  narrow gap submerged arc welding
窄间隙埋弧焊
1.
Technical process and test of narrow gap submerged arc welding was introduced in detail.
详细介绍了低合金高强钢BHW - 35壳体的窄间隙埋弧焊工艺及试验 ,根据试验结果制订施焊工艺 ,并成功用于大直径气化炉壳体的焊接。
3)  narrow gap SAW machine
窄间隙埋弧焊机
1.
The control system by microcomputer for tandem wire narrow gap SAW machine is solved adopting 80C196 monolithic computer.
采用80C196单片机为控制核心,解决了窄间隙埋弧焊机的微机控制问题。
4)  submerged arc welding fluxes
埋弧焊焊剂
1.
This paper summarizes the variety and output of submerged arc welding fluxes, and its application status quo to many fields in china is analyzed.
 概述了我国埋弧焊焊剂的品种、产量发展及在国内各行业应用的情况,介绍了国外埋弧焊焊剂的生产应用情况,并对我国焊剂的发展提出了一些建议。
5)  narrow gap welding
窄间隙焊
1.
Based on the experiment of twin-wire narrow gap welding in single pool mode by employing alternative pulsed arcs, the influences of welding parameters on the appearance of weld and welding process stability were investigated.
采用交替脉冲,对双丝共熔池窄间隙焊进行工艺试验,研究了焊接参数对焊缝成形和电弧稳定性的影响。
2.
Lateral oscillation arc welding, high-speed-rotating arc welding, twin-wire welding, and ultra NGW(narrow gap welding) can all assure the fusion of side wall and improve the oppearance of weld in relatively small welding variables.
横向摆动电弧、高速旋转电弧、双丝焊和超窄间隙焊4类方式都可以在较小的焊接规范下,保证侧壁熔合,改善焊缝成形,防止焊接裂纹。
3.
The hollow-axis motor drives the offset nozzle and rotates the arc on the tip of wire at high speed,so as to ensure enough penetration into the sidewalls in narrow gap welding.
在该系统中,焊丝穿过电机的空心轴后从导电嘴的偏心孔送出,电机带动导电杆和偏心导电嘴旋转,从而使焊丝端部的电弧以一定直径高速旋转,以保证窄间隙焊接接头具有足够的侧壁熔深。
6)  narrow-gap welding
窄间隙焊
1.
There are many errors such as the adjusting error and the error due to the actual place behind the place measured by sensor and the error due to arc interaction and the error of optical parameter and the initial error and the error due to demarcating parameter in the narrow-gap welding Automatic following system with CCD figure treatment.
带CCD图像处理的窄间隙焊缝跟踪系统中 ,存在执行调节误差、传感导前误差、弧光干扰误差、光学参数误差、初始给定误差、标定参数误差等。
补充资料:焊接:埋弧焊
        利用在焊剂层下燃烧的电弧进行焊接的方法(见图 埋弧焊示意图 )。在焊接过程中﹐焊剂熔化產生的液态熔渣覆盖电弧和熔化金属﹐起保护﹑净化熔池﹑稳定电弧和渗入合金元素的作用。埋弧焊分为自动埋弧焊和半自动埋弧焊两种。前者应用较广泛﹐焊接电流可达600~2000安﹐焊接效率很高。埋弧焊是一种适於大量生產的焊接方法﹐广泛用於焊接各种碳钢﹑低合金钢和合金钢﹐也用於不锈钢和镍合金的焊接和表面堆焊。为了提高焊接效率和扩大使用范围﹐埋弧焊的电极可採用双丝﹑三丝﹑带极(用於堆焊)﹐还可在焊剂中添加金属粉等。焊剂层下的电弧与焊件接口的对正和调整﹐可用工业电视观察或用激光跟踪等方法探测。埋弧焊的焊接效率高﹐焊缝光洁﹐无飞溅﹐少烟尘﹐无电弧闪光﹐劳动卫生条件好﹐设备成本较低。缺点是限於平焊和长焊缝。与气体保护电弧焊相比﹐埋弧焊电弧不可见﹐接头装配要求较高﹐应用灵活性也较差。
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