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Nonlacerating Glass Windshields - A New Improved Approach

机译:非竞办玻璃挡风玻璃 - 一种新的改进方法

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This study was part of a research program which aimed to develop a laminated glass windshield with a very weak-or al most nonexistent-laceration potential. Two types of new safety windshields were tested. They differed only in the strengthening level of the V.H.R. glass used. In both cases, the very thin 0.050 in (1.2 mm) thick inner sheet and the 0.110 in (2.8 mm) thick outer sheet were made of V.H.R. glass. Nevertheless, the glass of the outer ply had a deliberately limited tensile strength. The polyvinyl butyral plastic interlayer was 0.030 in (0.76 mm) thick. The evaluation of the biomechanical behavior of these wind shields was made in a laboratory study described in this paper, and in impact tests with a headform free falling on positioned samples. During the impact, the following were recorded or filmed at high speed: the deceleration peak along two orthogonal axes, the resultant severity index relating to the initial impact and to the plow-in, the tearing length of the plastic interlayer, and finally the laceration potential. The latter was evaluated on basis of the laceration rating scale used by Patrick at Wayne State University. A laceration index was given following the number and size of the cuts measured on the two superposed chamois leathers covering the head-form. The experimental parameters whose influence was particularly studied were temperature, impact velocity, impact location, and increase of the mechanical strength of the sheets. The research was systematically carried out in order to compare the new windshield safety performances with that of the conventional laminated ones. All the results of the measurements were statistically analyzed: parameters of distribution, lines of regression, analysis of correlations, signification tests, etc. The new safety reinforced laminated windshield might be used as a true passive restraint system if the tensile strengths of the reinforced glass are adjusted. This double performance will have to be developed in a later series of simulated crash tests with anesthetized primates, anthropomorphic dummies and, if possible, human cadavers.
机译:本研究是研究计划的一部分,旨在开发一个具有非常弱或最不存在的损伤潜力的层压玻璃挡风玻璃。测试了两种类型的新安全挡风玻璃。它们仅在v.h.r的加强水平中不同。使用的玻璃。在这两种情况下,由V.H.R制成0.050英寸(1.2mm)厚的内片材和0.110(2.8mm)厚的外纸。玻璃。尽管如此,外层的玻璃透镜的拉伸强度有意。聚乙烯基缩水塑料中间层厚度为0.030℃,厚度为0.030℃。在本文中描述的实验室研究中,对这些风屏蔽的生物力学行为的评估,并在撞击试验中,具有落在定位的样品上的头部。在撞击期间,在高速记录或拍摄以下内容:沿两个正交轴的减速峰值,所得的严重性指数与初始撞击有关,塑料中间夹层的撕裂长度,最后撕裂潜在的。后者是根据Patrick在韦恩州立大学使用的撕裂评级规模的评估。在覆盖头形式的两个叠加的麂皮皮革上测量的切割的数量和尺寸,给出了损伤指数。特别研究其影响的实验参数是温度,冲击速度,冲击位置和片材机械强度的增加。系统地进行了该研究,以便将新的挡风玻璃安全性能与传统夹层的挡板安全性能进行比较。统计分析了测量结果:分布参数,回归线,相关性,相关性型挡风玻璃,如果增强玻璃的拉伸强度,则可以用作真正的被动束缚系统调整。必须在稍后的一系列模拟碰撞测试中开发这种双重性能,其中有麻醉的灵长类动物,拟人的假人,人类尸体,人类尸体。

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