HTPB推进剂跌落安全性数值模拟研究

Numerical Simulation Study on the Drop Safety of HTPB Propellant

  • 摘要: 丁羟(HTPB)固体推进剂因优异的力学性能被广泛应用于固体火箭发动机,但其装配过程中的意外跌落可能引发装药结构完整性失效,存在重大安全隐患. 基于黏弹性统计裂纹(Visco-SCRAM)本构模型,构建了推进剂在跌落冲击载荷作用下的动态响应仿真模型,系统地揭示了不同跌落工况对装药安全性的影响规律. 数值模拟结果表明:跌落高度和着地角度是影响丁羟推进剂装药结构安全性的关键因素,其中90°垂直跌落、45°斜向跌落与0°水平跌落时的临界安全高度分别为42.05 m、28.8 m以及9.8 m. 研究结果证实,Visco-SCRAM模型可从定性与定量层面准确描述HTPB推进剂的跌落冲击响应,能够为固体火箭发动机装配过程中的安全防护设计(如跌落高度限值制定、缓冲结构优化)提供科学依据,也为含能材料动态安全性评估模型的发展提供参考.

     

    Abstract: Hydroxyl-terminated polybutadiene (HTPB) solid propellants are widely used in solid rocket motors due to their excellent mechanical properties. However, accidental drops during the assembly process may cause failure of the propellant charge structure integrity, posing significant safety risks. This study established a dynamic response simulation model of the propellant under drop impact loads based on the viscoelastic statistical crack (Visco-SCRAM) constitutive model, and systematically analyzed the influence mechanism of different drop conditions on the safety of the propellant charge structure. The numerical simulation results show that the drop height and landing angle are the key factors affecting the safety of the HTPB propellant charge structure. The critical safety heights for 90° vertical drop, 45° oblique drop, and 0° horizontal drop are 42.05 m, 28.8 m, and 9.8 m, respectively. The research results confirm that the Visco-SCRAM model can accurately describe the drop impact response of HTPB propellants from both qualitative and quantitative perspectives, providing a scientific basis for the safety protection design during the assembly process of solid rocket motors (such as setting drop height limits and optimizing buffer structures), and also offering a reference for the development of dynamic safety assessment models for energetic materials.

     

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