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    • 1. 发明申请
    • Impact absorption structure
    • 冲击吸收结构
    • US20070267261A1
    • 2007-11-22
    • US11582670
    • 2006-10-18
    • Eugenio ToccalinoMyron MaurerGavin VogelLaxman KatakkarPrashant ShembekarSrinivasan Velusamy
    • Eugenio ToccalinoMyron MaurerGavin VogelLaxman KatakkarPrashant ShembekarSrinivasan Velusamy
    • F16F7/12
    • F16F7/08F16F7/12F16F2222/04F16F2226/00F16F2230/02Y10T428/24
    • The present invention includes an article of manufacture with a layer with a plurality of corrugations to form an energy absorbing structure, where each corrugation has a floor and two walls connecting the floor to the base layer and the length of each corrugation is longer than the widest width of the corrugation. The present invention also includes an energy absorbing structure with a multi-layer energy absorber having a layer with a plurality of surface features and a second layer with a second plurality of surface features wherein the surface features of one layer are nested within the surface features of the other layer such that the base layers are adjacent to each other. The present invention also includes a single step method of manufacturing the energy absorbers including forming a two layer material in a single step. Further, the present invention includes a method of absorbing impact energy that involves generating heat through friction between surface features on a pair of base layers.
    • 本发明包括具有多层波纹以形成能量吸收结构的层的制品,其中每个波纹具有地板和将地板连接到基底层的两个壁,并且每个波纹的长度比最宽的长 波纹宽度。 本发明还包括具有多层能量吸收器的能量吸收结构,该多层能量吸收体具有多个表面特征的层和具有第二多个表面特征的第二层,其中一层的表面特征嵌套在 另一层使得基底层彼此相邻。 本发明还包括制造能量吸收器的单步方法,包括在一个步骤中形成两层材料。 此外,本发明包括吸收冲击能的方法,其涉及通过一对基底层上的表面特征之间的摩擦产生热量。
    • 3. 发明申请
    • Impact-absorbing members for dynamic impact applications
    • 用于动态冲击应用的冲击吸收件
    • US20060148919A1
    • 2006-07-06
    • US11272217
    • 2005-11-10
    • Myron MaurerSteven SwartzmillerGavin VogelAndrew PaquetChau VoCharles Berglund
    • Myron MaurerSteven SwartzmillerGavin VogelAndrew PaquetChau VoCharles Berglund
    • C08L75/00
    • C08G18/092B60R21/04C08G2101/0008C08G2101/005C08G2101/0083C08G2350/00F16F1/37F16F2226/00
    • Cushions for dynamic impact applications include anisotropic cellular polymers made in an extrusion, expanded bead or reactive foaming process. The anisotropic behavior represented by CE/CT, CV/CT and CH/CT, wherein CE, CV and CH represent the compressive strength of the cellular polymer in each of three orthogonal directions E, V and H, respectively, as measured by compressing a 25-50 mm thick sample of the cellular polymer at a strain rate of 0.08 s−1 to 25% strain, CT represents the sum of CE, CV and CH, and at least one of CE/CT, CV/CT and CH/CT has a value of at least 0.40, up to about 0.80. The cellular polymer also preferably has density of 1.75 to 2.35 pounds/cubic foot and a compressive stress in the direction of maximum compressive strength of 290-600 kPa at 25% strain when used for headliner countermeasure applications. The cushions are useful in automotive applications such as automotive headliners, door panels, knee bolsters, pillars, headrests, seat backs, load floors or instrument panels.
    • 用于动态冲击应用的靠垫包括在挤出,膨胀珠或反应性发泡过程中制成的各向异性多孔聚合物。 由C / C,C,C,C,C和C H表示的各向异性行为 其中C C,C V和C H H表示抗压强度 分别在三个正交方向E,V和H中的每一个中的多孔聚合物,其通过将应变速率为0.08s -1至25的25-50mm厚的多孔聚合物样品压缩至25 %应变,C 表示C H,C H和C H H的总和,以及至少一个 C / C,C,C,C,C,C,C, / C 具有至少0.40,至多约0.80的值。 细胞聚合物还优选具有1.75至2.35磅/立方英尺的密度,并且当用于顶篷对策应用时,在25%应变下的最大抗压强度方向上的压缩应力为290-600kPa。 垫子在诸如汽车头饰,门板,膝垫,支柱,头枕,座椅靠背,装载地板或仪表板等汽车应用中是有用的。