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DYNAMIC AXIAL CRUSH TESTS OF ROLL WRAPPED COMPOSITE TUBES: PLUG VS. NON-PLUG CRUSH INITIATORS

机译:卷制复合管的动态轴向破碎测试:塞子VS。无塞式起爆器

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This paper discusses the effects of the method of crush initiation on the dynamic axial crush response of roll wrapped composite tubes. This constitutes a portion of a successful fundamental study conducted at GM R & D of the dynamic axial crush of automotive rail-sized composite tubes reinforced variously with carbon fiber, Kevlar~® and hybrid combinations of the two, and manufactured using roll wrapping techniques suitable for the low cost high volume needs of the automotive industry. All tubes were manufactured using roll wrapping from multiple layers of uni-directional thermoset prepreg with the uni-directional fabric plies being oriented at ± 15° with respect to the longitudinal axis of the tube. A total of 21 dynamic axial crush tests were conducted using a free flight drop tower facility. Tests spanned a range of tube geometries -circular and square with different wall and cross section dimensions with cored and uncored walls and differing numbers of plies - and a range of drop heights/impact velocities and drop masses. A general finding was that stable and progressive crush occurred at acceptable load levels in all of the roll-wrapped tubes that were tested for all methods of crush initiation that were considered - a 45° lead end bevel either alone, with a zero radius plug-type crush initiator, or with a 12.7 mm radius plug. The method of crush initiation was, however, found to be capable of producing major differences in the crush initiation force Fp, the displacement average crush force Fav(D), the specific energy absorption SEA, and the crush morphology. As examples, both the displacement average value of dynamic axial crush force and the value of SEA were changed by as much as a factor of eight by the method of crush initiation.
机译:本文讨论了挤压起始方法对缠绕复合管动态轴向挤压响应的影响。这构成了在通用汽车公司研发部成功进行的基础研究的一部分,该基础研究是对采用碳纤维,Kevlar〜®以及两者的混合组合增强的汽车轨道尺寸复合管的动态轴向挤压进行的,并采用适合的卷缠技术制造满足汽车行业的低成本高产量需求。所有的管子都是用卷包裹法从多层单向热固性预浸料制成的,其中单向织物层的取向相对于管子的纵轴为±15°。使用自由落体塔设备进行了21项动态轴向挤压试验。测试涵盖了一系列的管几何形状-具有不同壁和横截面尺寸的圆形和正方形,有芯和无芯壁以及不同的层数-以及一系列的跌落高度/冲击速度和跌落质量。一个普遍的发现是,在所有考虑了所有压溃方法的轧制卷管中,在可接受的载荷水平下都发生了稳定的渐进式压溃-单独的45°前端斜角,零半径塞子-类型的挤压起爆器,或带有12.7毫米半径的塞子。但是,发现挤压开始的方法能够在挤压开始力Fp,位移平均挤压力Fav(D),比能量吸收SEA和挤压形态上产生重大差异。例如,通过挤压开始方法,动态轴向挤压力的位移平均值和SEA值均改变了八倍。

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