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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >MATHEMATICAL MODELING OF OPTICAL RADIATION EMISSION AS A FUNCTION OF WELDING POWER DURING GAS SHIELDED METAL ARC WELDING
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MATHEMATICAL MODELING OF OPTICAL RADIATION EMISSION AS A FUNCTION OF WELDING POWER DURING GAS SHIELDED METAL ARC WELDING

机译:光学辐射的数学模型排放作为焊接电源的函数气体保护金属极电弧焊

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摘要

Arc welding is accompanied by intense optical radiation emission that can be detrimental not only for the welder himself but also for people working nearby or for passersby. Technological progress advances continuously in the field of joining, so an up-to-date radiation database is necessary. Additionally, many literature irradiance data have been measured for a few welding currents or for parts of the optical spectral region only. Within this paper, a comprehensive study of contemporary metal active gas, metal inert gas, and cold metal transfer welding is presented covering optical radiation emission from 200 up to 2,700 nm by means of (spectro-) radiometric measurements. The investigated welding currents range from 70 to 350 A, reflecting values usually applied in industry. Based upon these new irradiance data, three mathematical models were derived in order to describe optical radiation emission as a function of welding power. The linear, exponential, and sigmoidal emission models depend on the process variant (standard or pulsed) as well as on the welding material (mild and stainless steel, aluminum). In conjunction with the corresponding exposure limit values for incoherent optical radiation maximum permissible exposure durations were calculated as a function of welding power. Typical times are shorter than 1 s for the ultraviolet spectral region and range from 1 to 10 s for visible radiation. For the infrared regime, exposure durations are of the order of minutes to hours. Finally, a validation of the metal active gas emission models was carried out with manual arc welding.
机译:电弧焊是伴随着强烈的光辐射发射,可以是有害的只有对焊工本人也为人民附近工作或路人。进步领域的不断进步加入,所以数据库是一个最新的辐射必要的。辐照度数据测量几个焊接电流或部分光学光谱范围。全面研究当代金属活跃天然气、金属惰性气体,和冷金属过渡焊接提出了覆盖光学辐射排放从200到2700海里的(斯派克)辐射测量的方法。研究了焊接电流范围从70到350年,通常应用于反射值行业。三个数学模型导出描述光学辐射发射的焊接功率的函数。指数和s形排放模型在过程变量(标准或脉冲)焊接材料(温和不锈钢、铝)。相应的暴露极限的值非相干光学辐射最大容许曝光时间计算函数焊接电源。1 s紫外光谱区和范围从1到10年代可见辐射。红外政权,曝光时间的几分钟至几小时。金属活性气体排放模型与手工电弧焊进行。

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