Lei Zhipeng, Yang James, Zhuang Ziqing
a Human-Centric Design Research Lab, Department of Mechanical Engineering , Texas Tech University , Lubbock , Texas.
J Occup Environ Hyg. 2014;11(4):227-37. doi: 10.1080/15459624.2013.858818.
The contact area, as well as the contact pressure, is created when a respiratory protection device (a respirator or surgical mask) contacts a human face. A computer-based algorithm for determining the contact area between a headform and N95 filtering facepiece respirator (FFR) was proposed. Six N95 FFRs were applied to five sizes of standard headforms (large, medium, small, long/narrow, and short/wide) to simulate respirator donning. After the contact simulation between a headform and an N95 FFR was conducted, a contact area was determined by extracting the intersection surfaces of the headform and the N95 FFR. Using computer-aided design tools, a superimposed contact area and an average contact area, which are non-uniform rational basis spline (NURBS) surfaces, were developed for each headform. Experiments that directly measured dimensions of the contact areas between headform prototypes and N95 FFRs were used to validate the simulation results. Headform sizes influenced all contact area dimensions (P < 0.0001), and N95 FFR sizing systems influenced all contact area dimensions (P < 0.05) except the left and right chin regions. The medium headform produced the largest contact area, while the large and small headforms produced the smallest.
当呼吸防护装置(呼吸器或外科口罩)与人脸接触时,会形成接触面积以及接触压力。提出了一种基于计算机的算法,用于确定头模与N95过滤式面罩呼吸器(FFR)之间的接触面积。将六个N95 FFR应用于五种尺寸的标准头模(大、中、小、长/窄和短/宽),以模拟佩戴呼吸器的过程。在对头模与N95 FFR进行接触模拟后,通过提取头模与N95 FFR的相交表面来确定接触面积。使用计算机辅助设计工具,为每个头模生成了叠加接触面积和平均接触面积,它们均为非均匀有理B样条(NURBS)曲面。通过直接测量头模原型与N95 FFR之间接触面积尺寸的实验来验证模拟结果。头模尺寸影响所有接触面积尺寸(P < 0.0001),N95 FFR尺寸系统影响除左右下巴区域外的所有接触面积尺寸(P < 0.05)。中等尺寸的头模产生的接触面积最大,而大尺寸和小尺寸的头模产生的接触面积最小。