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High-Resolution Thermal Imaging and Analysis of TIG Weld Pool Phase Transitions

机译:TIG焊接池阶段过渡的高分辨率热成像和分析

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摘要

Tungsten inert gas (TIG) welding is a well-established joining process and offers the user flexibility to weld a large range of materials. Ultra-thin turbine tipping is an important application for TIG welding that is exceptionally challenging due to the wide range of variables needed to accurately control the process: slope times, arc control, travel speed, etc. We offer new insight into weld pool characteristics, utilizing both on- and off-line measurements of weld tracks. High-resolution thermal imaging yields spatially and temporally resolved weld pool phase transitions coupled with post-weld photographs, which gives a novel perspective into the thermal history of a weld. Our imaging system is filtered to measure a 10 nm window at 950 nm and comprises a commercial Sigma lens to produce a near-infrared (NIR) camera. The measured near-infrared radiance is calibrated for temperature over the range of from 800 to 1350 °C.
机译:钨惰性气体(TIG)焊接是一种完善的连接过程,提供了焊接大量材料的灵活性。超薄涡轮机Tipping是TIG焊接的重要应用,其由于准确控制该过程所需的各种变量而异焊接:边坡时间,电弧控制,旅行速度等。我们提供新的洞察池特性,利用焊接轨道的接通和离线测量。高分辨率热成像在焊接后照片上耦合的空间和时间分辨的焊接池相变,这使得一种新颖的视角进入焊缝的热历史。我们的成像系统被过滤以测量950nm的10nm窗口,并包括商业Σ镜片以产生近红外(NIR)相机。测量的近红外线辐射校准温度范围为800至1350℃。

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