首页> 外文会议>Pacific Rim International Congress on Advanced Materials and Processing >DERIVATION OF FORCES ACTING ON THE LIQUID WELD METAL BASED ON ARC PRESSURE MEASUREMENTS PRODUCED USING ALTERNATING SHIELDING GASES IN THE GTAW PROCESS
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DERIVATION OF FORCES ACTING ON THE LIQUID WELD METAL BASED ON ARC PRESSURE MEASUREMENTS PRODUCED USING ALTERNATING SHIELDING GASES IN THE GTAW PROCESS

机译:基于在GTAW工艺中使用交替屏蔽气体产生的电弧压力测量作用在液态焊接金属上的力的推导

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As part of an ongoing process to fully evaluate the effects of an alternating shielding gas supply on the gas tungsten arc and gas metal arc welding processes, a comparison between arc pressures produced using argon, helium, alternating gases and GTAW-P has been conducted. The alternating shielding gas process is reported to create a dynamic stirring action within the liquid weld metal as a result of three independent phenomena: a) variation in weld pool fluidity, b) arc pressure variation, and c) arc pressure peaking. These effects have been the basis of previous advantages associated with the process, however these phenomena have not previously been verified and are based solely on theoretical assumptions. Arc pressure measurements are presented which allowed for the numerical derivation of various forces acting on the liquid weld metal in order to estimate the flow vectors present when each shielding gas is present.
机译:作为完全评估交替屏蔽气体供应对气体钨弧和气体电弧焊接工艺的效果的持续过程的一部分,已经进行了使用氩,氦,交替气体和GTAW-P产生的电弧压力之间的比较。据报道,焊接池流动性的三个独立现象的液体焊接金属内的动态搅拌作用以在液态焊接金属内产生动态搅拌作用:a)弧形压力变化和c)电弧压力峰值。这些效果是与该过程相关的先前优点的基础,但是先前没有验证这些现象,并仅基于理论假设。提出了电弧压力测量,其允许作用在液体焊缝金属上的各种力的数值推导,以便在存在每个屏蔽气体时估计存在的流动矢量。

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