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Evaluation of a local exhaust system used in the manufacture of small parts made of reinforced plastic.

机译:对用于制造由增强塑料制成的小零件的局部排气系统的评估。

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Fiber-reinforced plastics are used to manufacture a large variety of products, particularly for the transportation sector. Hand lay-up molding and projection molding are the main methods of manufacture. The users of these processes are exposed to appreciable emissions of styrene; in Quebec, more than 3000 workers work in this industry. A statistical analysis of styrene concentrations measured over a five-year period by the Institut de recherche en sante et en securite du travail (IRSST, Occupational Health and Safety Research Institute) reveals that for all of the main manufacturing sectors involved, between 40 percent and 78 percent of the results exceed the exposure standard of 50 ppm. This study evaluated the effectiveness of a ventilated table in controlling worker exposure to styrene and acetone in a shop that manufactures fiber-reinforced plastics parts. The evaluated local extraction system consists of a ventilated table with a surface area of 1.2 m x 1.2 m. During molding, the styrene emissions are exhausted through the ventilated table as well as through the slots in a lateral hood. Replacement air, introduced vertically through a supply air shower located above the worker, limits the diffusion of contaminants toward the worker's breathing zone. The reduction in worker exposure to styrene and acetone during hand lay-up molding was measured in the breathing zone for two sizes of molds. The results show that exhaust ventilation reduced the styrene concentrations by 91 percent and that the introduction of replacement air increased the efficiency of the ventilated table to 96 percent. The evaluation performed indicates that the ventilated table adequately controls worker exposure to styrene and acetone during the molding of small components.
机译:纤维增强塑料用于制造多种产品,尤其是用于运输领域。手工叠层成型和凸出成型是主要的制造方法。这些工艺的使用者会暴露出大量的苯乙烯。在魁北克,该行业有3000多名工人。斯特拉瓦河安全研究所(IRSST,职业健康与安全研究所)对五年内测得的苯乙烯浓度进行了统计分析,结果表明,所涉及的所有主要制造业部门的苯乙烯含量在40%至90%之间。 78%的结果超过了50 ppm的暴露标准。这项研究评估了通风桌对控制工人在生产纤维增强塑料零件的车间中接触苯乙烯和丙酮的有效性。评估后的局部抽气系统由表面积为1.2 m x 1.2 m的通风台组成。在模制过程中,苯乙烯的排放物通过通风台以及侧罩的缝隙排出。替代空气通过位于工人上方的供气喷头垂直引入,从而限制了污染物向工人呼吸区域的扩散。在两种尺寸的模具的呼吸区域中,测量了手叠成型过程中工人接触苯乙烯和丙酮的程度的降低。结果表明,排气通风可使苯乙烯浓度降低91%,而引入替代空气可使通风台的效率提高至96%。进行的评估表明,通风桌可以控制小型零件成型过程中工人接触苯乙烯和丙酮的情况。

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