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Minimizing Read-Through When Creating a Mechanical Score in a Polymer Skin

机译:在聚合物皮肤中创造机械分数时最小化读取

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When weakening a skin/foam bilaminate by mechanically scoring the polymer skin on its back surface, where it is bonded to the foam, the weakness of the bilaminate is determined by the depth of the score groove. The deeper the groove, the weaker the bilaminate. But also, the deeper the groove, the greater the tendency for read-through. Read-through is seeing on the front surface the location of this groove that was created on the back surface. Scored skins, after mounting flat on a glass plate, were viewed with an optical interferometer. It was found that the topographical feature that constituted read-through was a valley. A Silly Putty model was used to better understand the strains induced by mechanical scoring and this understanding was used to identify factors affecting read-through. Blade thickness and the ultimate elongation of the skin material were identified as factors. This work is applicable to certain types of passenger-side seamless airbag systems, for example.
机译:当通过机械地缩小皮肤/泡沫比吡喃酸盐在其后表面上施加聚合物皮肤时,在其粘合到泡沫上,双吡喃酸盐的弱度由分数槽的深度决定。凹槽更深,较弱的双吡喃。而且,凹槽更深,倾向越大。 Read-over在前表面上看到了在后表面上产生的该凹槽的位置。在玻璃板上安装平板后,刻痕的皮肤被用光学干涉仪观察。有发现构成了读数的地形特征是山谷。愚蠢的腻子模型用于更好地理解机械评分诱导的菌株,并且这种理解用于识别影响接纳的因素。叶片厚度和皮肤材料的最终伸长率被鉴定为因素。例如,这项工作适用于某些类型的乘客侧无缝安全气囊系统。

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