焊接电弧的英文
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"焊接电弧"怎么读用"焊接电弧"造句
英文翻译手机版
- welding arc
- "焊接"英文翻译 weld; welding; soldering; se ...
- "电弧"英文翻译 arc; electric arc; voltaic a ...
- "焊接电弧分析仪" 英文翻译 : welding arc analyzer
- "差接电弧灯" 英文翻译 : differential arc lamp
- "间接电弧" 英文翻译 : indirect arc
- "间接电弧焊" 英文翻译 : indirect arc welding
- "间接电弧炉" 英文翻译 : indirect arc furnace; indirect-arc furnace
- "宜接电弧炉" 英文翻译 : direct arc furnace
- "直接电弧" 英文翻译 : direct arc; direct electric arc; direct-arc
- "直接电弧的" 英文翻译 : direct arc
- "直接电弧焊" 英文翻译 : direct are welding
- "直接电弧炉" 英文翻译 : direct arc furnace; direct electric arc furnace; direct-arc electric furnace; direct-arc furnace; furnace, direct arc
- "焊接电极" 英文翻译 : welding electrodes
- "焊接电缆" 英文翻译 : cabtyre cable; welder cable; welding cable
- "焊接电流" 英文翻译 : welding amperage; welding current; weldingcurrent
- "焊接电路" 英文翻译 : welding circuit
- "焊接电压" 英文翻译 : welding voltage; weldingvoltage
- "焊接电源" 英文翻译 : source of welding current; welding current supply; welding power source; welding source; weldingsource
- "焊接电阻器" 英文翻译 : welding resister; welding resistor
- "焊条;焊接电极" 英文翻译 : welding electrode
- "捍接电弧电压" 英文翻译 : welding arc voltage
- "间接电弧加热" 英文翻译 : indirect arc heating
- "直接电弧加热" 英文翻译 : direct arc heating; direct-arc heating
- "直接电弧熔炼" 英文翻译 : direct arc-melting; direct-arc melting
- "直接电弧熔铸" 英文翻译 : direct arc-cast; direct-arc
例句与用法
- Voltage feedback control can automatically compensate to the distribution voltage wav and let the welding electric arc stability
电压反馈控制,对电网电压波动能自动补偿,使焊接电弧稳定。 - Characteristics of high - pressure welding arcs and the differences between welding arcs under high pressure and normal pressure are analyzed in this paper
摘要对高压下焊接电弧特性(电弧辐射、传导、对流)的改变以及焊接电弧的形态变化进行了分析。 - In aspect of theoretical stud y , the model of high - pressure welding arcs is established , and the governing equation of high - pressure welding arcs and computing equation of voltage drop of arcs are given
在焊接电弧理论研究方面,建立了高压焊接电弧模型并提出了高压下焊接电弧的控制方程以及电弧电压的计算方程。 - Based on lots of tig experiments , it can be concluded that welding arc can be well controlled , the characteristic of movement behavior of welding arc are gotten , which lay reliable guarantee on application of mig / mag welding technology
通过大量tig焊接试验证明该套装置能够实现对焊接电弧的控制,并且得出了外加旋转磁场作用下电弧运动行为的变化规律,为该装置进一步应用于mig / mag工艺提供了可靠的保障。 - Abstract : this article analyzes the reason and influence of magnetic blow on welding arc during the welding process . through the adjusting and improving of the magnetic field distribution , adopting the anti - magnetic erasing method to eliminate the influence of magnetic blow for welding arc
文摘:分析了磁偏吹在焊接过程中对焊接电弧的影响以及产生原因,通过调整和改善焊接电弧周围磁场分布,并采用反消磁法,克服和消除了磁偏吹对焊接电弧的影响。 - Abstract : the image of arc zone of flux - cored underwater wet welding was developed with underwater ccd camera system and composed filter technology . the discussion is mainly focused on the theory of edge detection . an image edge detection method based on median filter and grads algorithm was developed to detect the arc burning zone and arc bubble zone efficiently , which laid the foundation for further analysis of underwater wet welding arc mechanism and process control
文摘:通过复合滤光技术和水下ccd摄像系统,采集出了药芯焊丝水下湿法焊接电弧区域图像,重点论述了边缘检测理论,确定了基于中值滤波和梯度算子的电弧区域图像边缘检测方法,有效地区分了电弧燃烧区域和电弧气泡区域,从而为水下湿法焊接电弧的机理分析及水下焊接过程控制奠定了基础。 - By the test of three - dimensional distribution , form character , rotating frequency and magnetic field intensity of rotating magnetic field , it showed that the magnetic field produced is a highly rotating magnetic field and mainly distribute on welding arc region , rotating frequency and magnetic intensity can be regulated through excitation power source
通过对产生磁场的空间分布,形态特征,以及旋转频率和场强大小的测试证明该磁场是一个高速旋转的磁场空间,而且磁场主要集中分布在焊接电弧区域内,磁场的旋转频率和场强大小都可以通过励磁电源进行良好调节。 - Magnetic head is designed by six magnetic poles in symmetrical distribution , the design of excitation loop and excitation angle makes magnetic field act on welding arc region which could control welding arc effectively . the insulation , cooling and hermetization of magnetic head avoid the influence on magnetic field of outside ; miniaturization design of magnetic head could achieve different welding process
磁头装置采用六磁极对称励磁方式设计,励磁线圈和励磁角度的设计使产生的磁场恰好作用于焊接电弧区域以实现对电弧的有效控制;磁头的绝缘,冷却,密封设计避免了焊接过程中外界因素对磁场的干扰;磁头整体的小型化使该装置可以实现多种形式的焊接工艺。
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