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Penetration through Staple Punctures on Five N95 Disposable Respirators.

机译:通过钉扎穿刺穿透五个N95一次性呼吸器。

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摘要

Certain N95 FFR models that staple the head straps directly onto filtering material are commercially available. This method of assembly can tear or reduce fiber density in the immediate area surrounding the staple punctures. Five N95 FFR models were evaluated to determine if staple punctures on the filter medium reduce the protection offered by the respirators.;Total penetrations were measured with the staple punctures intact and when stretching the head straps a distance equivalent to a 95% male head circumference. Filter penetration were measured by sealing the staple punctures. Aerosols of 200, 500, and 1000 nm were used to challenge respirators at 28 and 85 Liter/min flow rates. Staple punctures were visually inspected by macrophotography with a light source on the opposing side of the punctures.;Three FFR models had greater mean leakages than the remaining two. However, only two FFR models had statistically significant greater total penetrations than filter penetrations. Pulling the head straps increased total penetration, but was not statistically significant. Filter penetrations were greatest at 85 Liter/min and 200 nm, while leakages were greatest at 28 Liter/min flow rate and 1000 nm. Leakage through the staple punctures had greater contributions to total penetration than filter penetration allowing a greater percentage of 1000 nm particles into the breathing zone.;Leakage was dependent on the tearing of the filter material or the reduction of fiber density near the puncture, regardless of filter efficiency. Total penetration to filter penetration ratios showed that leakage was greater than filter penetration 15 fold for 1,000 nm. This value is similar to what has been reported for face seal leaks on human subjects. Protection factors were reduced from ~930 to ~60 when the staple punctures created a tear. N95 FFR with stapled head straps that puncture the filter medium should be avoided because they can reduce protection to the user.
机译:某些将头带直接钉在过滤材料上的N95 FFR型号可商购。这种组装方法会在钉孔周围的附近区域撕裂或降低纤维密度。对五个N95 FFR模型进行了评估,以确定在过滤介质上的短钉刺穿是否会降低呼吸器提供的保护;在钉刺完好无损且伸展头带的距离等于男性头围的95%时测量总穿透力。通过密封缝钉刺孔来测量过滤器的穿透力。使用200、500和1000 nm的气溶胶以28和85升/分钟的流速挑战呼吸器。用宏观摄影术在钉子的相对侧用光源对钉书钉的穿孔进行目视检查;三个FFR模型的平均泄漏量大于其余两个。但是,只有两个FFR模型在统计上具有比过滤器穿透更大的总穿透率。拉动头带可增加总穿透力,但无统计学意义。过滤器的渗透率最大为85升/分钟和200 nm,而泄漏最大为28升/分钟,流速和1000 nm。与过滤器的穿透相比,通过短钉刺孔的泄漏对总渗透的贡献更大,从而允许更大比例的1000 nm颗粒进入呼吸区域。泄漏取决于过滤器材料的撕裂或刺孔附近纤维密度的降低,无论过滤效率。总渗透率与过滤器渗透率的比值表明,对于1000 nm,泄漏量大于过滤器渗透率的15倍。该值类似于已报道的人类受试者面部密封泄漏的值。缝钉刺破后,保护因子从约930降低至约60。应避免使用N95 FFR钉扎头带刺穿过滤介质,因为它们会降低对用户的保护。

著录项

  • 作者

    Medina, Daniel E.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Occupational safety.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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