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    • 1. 发明授权
    • Railroad tank car
    • 铁路罐车
    • US08833268B2
    • 2014-09-16
    • US12966335
    • 2010-12-13
    • James ShirvinskiJeremy DeLacerda
    • James ShirvinskiJeremy DeLacerda
    • B61D5/00B61D15/06
    • B61D5/06B61D5/00B61D15/06
    • Railroad tank cars are provided that include an inner tank, an outer tank, and tank to tank clearance between the inner tank and the outer tank. Insulation and spacers can be located within the tank to tank clearance. The inner tank can shift within the outer tank, and spacers can crush, under significant force loading, such as impact forces generated during a collision or derailment. The inner tank, insulation, spacers, and outer tank thus form an energy absorbing system that reduces the likelihood that the inner tank will be breached, and that a hazardous material contained therein will be released, under such conditions.
    • 提供的铁路车厢包括内箱,外箱和内箱与外箱之间的坦克间隙。 绝缘和隔离物可以位于罐内至罐间隙。 内罐可以在外罐内移动,并且在显着的载荷下,间隔件可以挤压,例如在碰撞或脱轨期间产生的冲击力。 因此,内罐,绝缘件,间隔件和外罐形成能量吸收系统,其在这种条件下降低内罐将被破坏的可能性,并且其中容纳的危险材料将被释放。
    • 2. 发明申请
    • RAILROAD TANK CAR
    • 铁路坦克车
    • US20110139032A1
    • 2011-06-16
    • US12966335
    • 2010-12-13
    • JAMES SHIRVINSKIJeremy DeLacerda
    • JAMES SHIRVINSKIJeremy DeLacerda
    • B61D5/02B61D15/06
    • B61D5/06B61D5/00B61D15/06
    • Railroad tank cars are provided that include an inner tank, an outer tank, and tank to tank clearance between the inner tank and the outer tank. Insulation and spacers can be located within the tank to tank clearance. The inner tank can shift within the outer tank, and spacers can crush, under significant force loading, such as impact forces generated during a collision or derailment. The inner tank, insulation, spacers, and outer tank thus form an energy absorbing system that reduces the likelihood that the inner tank will be breached, and that a hazardous material contained therein will be released, under such conditions.
    • 提供的铁路车厢包括内箱,外箱和内箱与外箱之间的坦克间隙。 绝缘和隔离物可以位于罐内至罐间隙。 内罐可以在外罐内移动,并且在显着的载荷下,间隔件可以挤压,例如在碰撞或脱轨期间产生的冲击力。 因此,内罐,绝缘件,间隔件和外罐形成能量吸收系统,其在这种条件下降低内罐将被破坏的可能性,并且其中容纳的危险材料将被释放。