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首页> 外文期刊>スマートプロセス学会誌 >Optical Measurement of Surface Temperature Distribution of Weld Pool in AC Tungsten Inert Gas Welding of Aluminum A1050
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Optical Measurement of Surface Temperature Distribution of Weld Pool in AC Tungsten Inert Gas Welding of Aluminum A1050

机译:AC钨罐焊接池表面温度分布的光学测量A1050

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摘要

When alternating current(AC)is used in tungsten inert gas(TIG)welding, the shape of weld penetration is known to be largely changed depending on electrode positive(EP)polarity ratio which is defined as a ratio of EP period occupied in one cycle of current waveform.This fact implies that heat transport processes between electrode negative(EN)and EP polarity are significantly different to lead to different temperature distribution of weld pool.However, these processes have not been understood clearly, because they are thought to be directly linked to the complex cathode spot behavior.This study aims to discuss difference in heat transport processes between EN and EP polarity in AC TIG welding of aluminum A1050 by comparing temperature distributions in both polarities measured with two colour pyrometry taking into account the cathode spot behavior.As a result, it was found that the temperatures at the center in EN were greater than that in EP and decreased gradually toward the edge of the weld pool.Moreover, the temperature in 30%EP polarity ratio was higher than that in 10%EP polarity ratio.Consequently, the heat flux produced by cathode spots is suggested to significantly affect the surface temperature distribution of weld pool as well as the weld shape.The heat flux distribution in EP polarity is considered to become not Gaussian but ring-shaped.Furthermore, the reason to achieve higher average temperature in 30%EP polarity ratio is explained by longer heating through cathode spots.
机译:当交流(AC)用于钨惰性气体(TIG)焊接时,已知焊接穿透的形状根据电极正(EP)极性比而大大改变,这被定义为一个循环中占用的EP周期的比率当前波形。本文意味着电极阴性(EN)和EP极性之间的热传输过程显着不同,以导致焊接池的不同温度分布。然而,这些过程尚未清楚地理解,因为它们被认为是直接的与复杂的阴极点行为相关联。这项研究旨在通过比较两种颜色高温测量的两种极性的温度分布来讨论铝A1050的AC TIG焊接中的EN和EP极性之间的热传输过程差异。考虑到阴极点行为。结果,发现EN中心的温度大于EP中的温度,并朝着朝向边缘下降焊接游泳池。30%EP极性比中的温度高于10%的EP极性比的温度。应该提出由阴极斑点产生的热通量,以显着影响焊接池的表面温度分布以及焊接。 EP极性中的热量通量分布被认为是不是高斯但环形的。通过阴极斑点加热来解释实现30%EP极性比以较高的平均气温的原因。

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