首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Large Mass Protection with Close-celled Metallic Foams Under Low Velocity Impact: Spring-damper-foam Collision Model
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Large Mass Protection with Close-celled Metallic Foams Under Low Velocity Impact: Spring-damper-foam Collision Model

机译:低速冲击下具有闭孔金属泡沫的大质量保护:弹簧-阻尼器-泡沫碰撞模型

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摘要

The vibration isolation and energy absorption capability of high porosity metallic foams with closed cells for large mass protection under low velocity impact is theoretically studied. To explore the underlying physical mechanisms of shock attenuation, a double degree of freedom (DDF) spring-damper-foam collision model is developed. The effects of key system parameters (such as spring stiffness, damping ratio, mass ratio, initial velocity and foam thickness) on optimal foam mass and minimum acceleration peak are discussed.
机译:从理论上研究了低孔冲击下高孔隙率闭孔高密度金属泡沫材料的隔振和能量吸收能力。为了探索减震的潜在物理机制,开发了双自由度(DDF)弹簧-阻尼器-泡沫碰撞模型。讨论了关键系统参数(例如弹簧刚度,阻尼比,质量比,初始速度和泡沫厚度)对最佳泡沫质量和最小加速度峰值的影响。

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