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首页> 外文期刊>The Annals of occupational hygiene. >Reduction of Biomechanical and Welding Fume Exposures in Stud Welding
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Reduction of Biomechanical and Welding Fume Exposures in Stud Welding

机译:减少螺柱焊中生物力学和焊接烟尘的暴露

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摘要

The welding of shear stud connectors to structural steel in construction requires a prolonged stooped posture that exposes ironworkers to biomechanical and welding fume hazards. In this study, biomechanical and welding fume exposures during stud welding using conventional methods were compared to exposures associated with use of a prototype system that allowed participants to weld from an upright position. The effect of base material (i.e. bare structural beam versus galvanized decking) on welding fume concentration (particle number and mass), particle size distribution, and particle composition was also explored. Thirty participants completed a series of stud welding simulations in a local apprenticeship training facility. Use of the upright system was associated with substantial reductions in trunk inclination and the activity levels of several muscle groups. Inhalable mass concentrations of welding fume (averaged over similar to 18min) when using conventional methods were high (18.2mg m(-3) for bare beam; 65.7mg m(-3) for through deck), with estimated mass concentrations of iron (7.8mg m(-3) for bare beam; 15.8mg m(-3) for through deck), zinc (0.2mg m(-3) for bare beam; 15.8mg m(-3) for through deck), and manganese (0.9mg m(-3) for bare beam; 1.5mg m(-3) for through deck) often exceeding the American Conference of Governmental Industrial Hygienists Threshold Limit Values (TLVs). Number and mass concentrations were substantially reduced when using the upright system, although the total inhalable mass concentration remained above the TLV when welding through decking. The average diameters of the welding fume particles for both bare beam (31 +/- 17nm) through deck conditions (34 +/- 34nm) and the chemical composition of the particles indicated the presence of metallic nanoparticles. Stud welding exposes ironworkers to potentially high levels of biomechanical loading (primarily to the low back) and welding fume. The upright system used in this study improved exposure levels during stud welding simulations, but further development is needed before field deployment is possible.
机译:在建筑结构中,将抗剪螺柱连接器焊接到结构钢上需要长时间弯曲的姿势,这会使铁工遭受生物力学和焊接烟雾的危害。在这项研究中,将使用常规方法进行螺柱焊时的生物力学和焊接烟尘暴露与使用原型系统(允许参与者从直立位置进行焊接)相关的暴露进行了比较。还研究了基础材料(即裸露的结构梁与镀锌板)对焊接烟气浓度(颗粒数量和质量),颗粒尺寸分布和颗粒成分的影响。 30名参与者在当地的学徒培训设施中完成了一系列螺柱焊接模拟。直立系统的使用与躯干倾斜度和几个肌肉群活动水平的显着降低有关。使用传统方法时,焊接烟雾的可吸入质量浓度较高(平均类似于18分钟)(裸梁为18.2mg m(-3);直通甲板为65.7mg m(-3)),且铁的质量浓度估计为(裸光束为7.8mg m(-3);直通甲板为15.8mg m(-3)),锌(裸光束为0.2mg m(-3);直通甲板为15.8mg m(-3))和锰(裸露光束为0.9mg m(-3);直通甲板为1.5mg m(-3))通常超过美国政府工业卫生学家会议阈值限制值(TLV)。使用立式系统时,数量和质量浓度显着降低,尽管通过面板焊接时总可吸入质量浓度保持在TLV之上。穿过平台条件(34 +/- 34nm)的裸光束(31 +/- 17nm)的焊接烟尘颗粒的平均直径和颗粒的化学组成均表明存在金属纳米颗粒。螺柱焊接将铁工暴露在潜在的高水平生物力学载荷下(主要是腰背)和焊接烟尘。本研究中使用的立式系统在螺柱焊接模拟过程中提高了暴露水平,但在现场部署之前还需要进一步开发。

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