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Type Ⅰ Failure Temperature-dependent Properties of HTPB Propellant/Liner Interface
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School of Mechanical Engineering, Nanjing University and Technology, Nanjing 210094, China

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    Abstract:

    To study the mechanical properties of Hydroxyl-Terminated Polybutadience (HTPB) propellant/liner bonding interface for solid rocket motor at different temperatures accurately, the model-Ⅰ fracture properties of the interface were studied with experimental method and simulation. Firstly, the load-displacement curves of the test samples at different temperatures were obtained through uniaxial tensile tests and the failure process of the samples were also recorded with the high-speed cameras. It was found that the failure form of HTPB propellant/liner interface was cohesive failure of HTPB propellant, which indicated that the strength of bonding interface was higher than that of the propellant. From -40 ℃ to 60 ℃, the critical displacement first increased and then decreased, indicating that the effect of temperature on this parameter is obvious. And then a cohesion model with polynomial damage variable was developed, based on the bilinear cohesion law. According to the simulation data, the effects of the interface parameters on the predicted results of the interface properties at different temperatures were analyzed. Moreover, the load-displacement curves of the bonding interface at different temperatures were predicted with the critical displacement as a known parameter. It found that the predicted results by simulation were in agreement with the experimental results, which indicates that the developed interface model can more accurately reflect the temperature-dependent behavior of model-Ⅰfracture of the debonding interface for solid rocket motor than the bilinear cohesion model.

    表 2 衬层、绝热层和钢件的材料参数[26]Table 2 Mechanical parameters of lining, insulation and steel parts
    图3 载荷-位移曲线Fig.3 Load-displacement curve
    图5 不同温度下载荷-位移曲线Fig.5 Force-displacement curves at various temperatures
    图8 线性-多项式内聚力模型Fig.8 Linear-polynomial cohesive law model
    表 1 各温度下试件黏接界面参数Table 1 Bonding interface parameters of specimens at different temperatures
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丁伍,许进升,周长省,等. HTPB推进剂/衬层界面Ⅰ型破坏温度相关特性[J].含能材料,2022,30(2):146-154.
DING Wu, Xu Jin-sheng, ZHOU Chang-sheng, et al. Type Ⅰ Failure Temperature-dependent Properties of HTPB Propellant/Liner Interface[J]. Chinese Journal of Energetic Materials,2022,30(2):146-154.

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History
  • Received:May 28,2020
  • Revised:July 14,2020
  • Adopted:July 22,2021
  • Online: March 17,2022
  • Published: February 25,2022