A novel design of compact elastomer shock absorption system to protect sensitive objects from underwater shock for naval application

Dattatraya R Hipparkar, Sunil Chandel, Rahul Harshe
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Abstract

This research paper proposes a unique way to safeguard delicate systems on submerged platforms from the undesirable effects of underwater explosion shock loads. The underwater detonation of an explosive charge and mines produce devastating underwater shocks against underwater platforms. Shock load developed underwater has been analyzed, and a shock response spectrum (SRS) approach to compute shock peak responses has been adopted. SRS shock absorption frequency satisfies requirements for both shock absorption and delicate systems. The shock load was reduced to 2g by altering the delicate system stiffness and damping properties. The analytical model for a single DOF system was formulated, and simulation was carried out using ANSYS solver. The stiffness has been spread across various points along the length of the delicate system, allowing it to undergo translational oscillations when subjected to shock loads. This research paper presents an innovative design approach for a shock absorption system intended for underwater sensitive objects, emphasizing simplicity, distinctiveness, compactness, reliability, and electromagnetic compatibility. Experimental testing validated the shock absorption design on the prototype. Shock testing determined the absorber’s maximum displacement and sensitive object acceleration.
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一种新颖的紧凑型弹性减震系统设计,用于保护海军应用中的敏感物体免受水下冲击
本研究论文提出了一种独特的方法来保护水下平台上的精密系统免受水下爆炸冲击载荷的不良影响。炸药和地雷在水下爆炸会对水下平台产生破坏性的水下冲击。对水下产生的冲击载荷进行了分析,并采用冲击响应谱(SRS)方法计算冲击峰值响应。SRS 减震频率可满足减震和精密系统的要求。通过改变精密系统的刚度和阻尼特性,将冲击负荷降至 2g。制定了单 DOF 系统的分析模型,并使用 ANSYS 求解器进行了模拟。刚度沿精密系统的长度分布在不同的点上,使其在受到冲击载荷时能够产生平移振荡。本研究论文介绍了针对水下敏感物体的减震系统的创新设计方法,强调了简洁、独特、紧凑、可靠和电磁兼容性。实验测试验证了原型上的减震设计。冲击测试确定了吸收器的最大位移和敏感物体的加速度。
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