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Development of a Permeation Panel to Test Dermal Protective Clothing Against Sprayed Coatings

机译:开发渗透板以测试皮肤防护服的喷涂层

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Objectives: Design, construct, and characterize an apparatus to evaluate dermal protective clothing for resistance to polymerizing materials. Specifically, we evaluated the permeation of the most common glove material used in automotive collision repair (0.10–0.13 mm or 4–5 mil latex) with representative isocyanate-containing clear coats. Our ultimate goal is to make informed recommendations on dermal protective materials to prevent isocyanate exposures and reduce the likelihood of occupational illness in automotive collision repair and other industries. nMethods: A novel permeation panel was developed to assess dermal protective clothing. With this apparatus, up to eight test materials may be evaluated under typical-spray application conditions. Solid collection media comprised of 1-(2-pyridyl)-piperazine (2-PP)-coated fiberglass filters or colorimetric SWYPE™ pads were placed behind test materials to capture permeants. The 2-PP-coated filters were subsequently analyzed using a modified OSHA42/PV2034 method. Color change in the SWYPEs provided an immediate field estimate of breakthrough time. In addition, Teflon filters were mounted proximal to the permeation cells to measure the mass of clear coat applied to the panel and to evaluate loading homogeneity. This study evaluated the permeation of isocyanates through 0.10–0.13 mm latex glove material at a fixed time (30 min post-spraying) and over a time course (6–91 min post-spraying). nResults: Monomers 1,6-hexamethylene diisocyanate (HDI) and isophorone diisocyanate (IPDI) permeated through (0.10–0.13 mm) latex glove material under typical glove use conditions (30 min). The latex glove material exhibited immediate breakthrough, with a permeation rate of 2.9 ng min−1 cm−2. The oligomeric forms of HDI and IPDI did not permeate the latex glove material. The spray application at 71 ± 5°F was fairly homogeneous (33.7 ± 8 mg weight of dry clear coat per 5 cm2). nConclusions: The permeation panel is a viable method to assess dermal protective clothing performance against polymerizing materials. Thin (0.10–0.13 mm) latex gloves were determined to be ineffective barriers to the isocyanates commonly found in clear coats. Because this type of glove is used frequently in auto body shops, the potential for isocyanate exposure is of concern. Permeation tests with other dermal protective clothing materials and other clear coat formulations are needed to make recommendations about alternative materials.
机译:目标:设计,构造和表征评估皮肤防护服对聚合材料的抵抗力的设备。具体而言,我们评估了具有代表性的含异氰酸酯的透明涂层在汽车碰撞修复中最常用的手套材料(0.10-0.13 mm或4-5 mil乳胶)的渗透性。我们的最终目标是针对皮肤保护材料提出明智的建议,以防止异氰酸酯暴露并减少汽车碰撞修复和其他行业中职业病的可能性。方法:开发了一种新型的渗透板来评估皮肤防护服。使用该设备,在典型的喷涂条件下最多可以评估八种测试材料。将由1-(2-吡啶基)-哌嗪(2-PP)涂层的玻璃纤维过滤器或比色SWYPE™垫组成的固体收集介质置于测试材料后面,以捕获渗透物。随后使用改良的OSHA42 / PV2034方法分析了涂有2-PP的过滤器。 SWYPE中的颜色变化立即提供了突破时间的现场估算。另外,将Teflon过滤器安装在渗透池的近端,以测量施加到面板上的透明涂层的质量并评估加载均匀性。这项研究评估了固定时间(喷涂后30分钟)和一段时间(喷涂后6-91分钟)内异氰酸酯在0.10-0.13 mm乳胶手套材料中的渗透情况。结果:在典型的手套使用条件(30分钟)下,单体1,6-己二异氰酸酯(HDI)和异佛尔酮二异氰酸酯(IPDI)渗透了(0.10-0.13 mm)乳胶手套材料。乳胶手套材料表现出即时的突破,渗透率为2.9 ng min-1 cm-2。 HDI和IPDI的低聚形式并未渗透到乳胶手套材料中。在71±5°F下的喷涂相当均匀(每5 cm2 33.7±8 mg的干燥透明涂层重量)。结论:渗透板是评估皮肤防护服抗聚合材料性能的可行方法。薄(0.10-0.13 mm)的乳胶手套被认为是对透明涂层中常见的异氰酸酯的有效屏障。由于这类手套经常在汽车修理厂中使用,因此可能会暴露出异氰酸酯。需要对其他皮肤防护服材料和其他透明外套配方进行渗透测试,以提出有关替代材料的建议。

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