• The design of the elastic suspension or centering system and its protective stop systems are intimately related.

    弹性悬挂定中心系统保护作用限制系统设计密切相关的。

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  • It was suggested to decrease such an instantaneous stiff impact load by supplementing elastic suspension between the wheelset and side frame.

    通过增加轮对弹性悬挂可以有效减弱这种瞬时刚性冲击

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  • The article presents mechanical characteristics and its test method of elastic components widely used in car suspension.

    介绍轿车悬架广泛采用弹性元件力学特性及其测试方法

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  • Rubber sandwich spring is widely used in the world as an elastic element of secondary suspension on locomotives.

    橡胶堆旁承作为机车系悬挂弹性元件,已国内外铁路上得到了广泛的应用。

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  • He was using a transfemoral prosthesis with silicone liner and partial suction with a total elastic support belt for additional suspension.

    配带硅胶假肢局部吸附支持增加悬吊

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  • The elastic element of air suspension system is air spring. Air spring utilize the compressibility of air to realize its elasticity.

    空气悬架系统以空气弹簧弹性元件利用气体压缩性实现弹性作用。

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  • The elastic property curves of air spring is the most important dynamic feature of air suspension, it is the crux for simulation study and features research on air suspension.

    空气弹簧重要动力学特征——弹性特性曲线进行空气悬架仿真特性研究关键

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  • The optimized suspension design can make the rolling stock achieve high critical stability speed after the elastic location being adopted for the bogie.

    转向架采用弹性定位之后优化悬挂设计可以使机车车辆达到很高稳定性临界速度

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  • Air suspension system is a generic term for the suspensions which make air spring as its elastic element.

    空气系统是以空气弹簧作为弹性元件架总称。

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  • A new kind of elastic-plastic energy dissipating bearing is applied to the seismic isolation design of the Nanjing Jia River Bridge, a typical self-anchored suspension bridge with single tower.

    南京夹江自锚式悬索桥采用塑性阻尼支座进行减隔设计,并采用非线性动力时程分析方法,对阻尼支座屈服荷载进行了参数敏感性分析。

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  • Elastic theory is applicable to the design and calculation of medium span self anchored suspension Bridges.

    弹性理论适合中小跨度锚式悬索桥设计计算

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  • Based on the elastic concept this paper proposes the chart analysis method for estimation of seismic response of the selfanchored suspension cable bridge with steel box stiffening girder.

    弹性力学理论导得了体外预应力钢箱梁变形分析方法 ,建立了简支索梁的基本概念及假设和基本平衡方程 ,采用伽辽金能量原理得到了平衡方程的解答。

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  • Finally, the mid-span deflection of a long span suspension bridge under vertical live load is analyzed when the elastic module of cable and hangers are assumed to be random correlated variables.

    最后针对座大悬索桥,计算了竖向载作用下材料、几何尺寸随机性对主梁跨中位移的影响。

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  • Finally, the mid-span deflection of a long span suspension bridge under vertical live load is analyzed when the elastic module of cable and hangers are assumed to be random correlated variables.

    最后针对座大悬索桥,计算了竖向载作用下材料、几何尺寸随机性对主梁跨中位移的影响。

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