CHINESE JOURNAL OF ENERGETIC MATERIALS
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含缺口PBX药柱热冲击响应的数值模拟及试验
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1.中国工程物理研究院研究生院, 北京 100081;2.中国工程物理研究院化工材料研究所, 四川 绵阳 621999

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国家自然科学基金资助(21805257;11902304)


Simulation and Experimental Study on the Thermal Shock Behavior of Notched PBX Cylinders
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Affiliation:

1.Graduate School of CAEP,Beijing 100081, China;2.Institute of Chemical Materials, CAEP, Mianyang 621900, China

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    摘要:

    针对脆性高聚物黏结炸药(polymer bonded explosive, PBX)的热应力破坏问题,开展了缺口药柱热冲击响应的数值模拟和实验研究。采用温度相关的热弹塑性模型对PBX药柱在50 ℃平衡温度、10 ℃·min-1条件下的热传导和热应力进行了二维轴对称仿真分析,并利用温度-应变-声发射监测技术,在温度箱风冷试验中进行了验证。数值模拟结果表明,降温温度冲击过程中,受热近表面存在一种温度边界层,使内外表面产生较大温差,并在药柱柱面中心产生超过PBX拉伸强度的轴向拉应力;位于柱面中部的缺口使热应力放大,并加剧试样破坏的进程,其中R2的缺口圆柱的应力梯度变化最明显,应力集中系数超过1.6。实验结果表明,PBX药柱热冲击破坏方式为表面拉伸热应力超过材料拉伸强度导致的脆性断裂破坏,热冲击破坏时的信号特征表现为应变发生突变并产生高幅值声发射信号。数值模拟得到的缺口药柱、无缺口药柱的临界断裂温差分别为8.3 ℃和12.6 ℃,试验数值分别为9.2 ℃和12.5 ℃,二者吻合良好。

    Abstract:

    The thermal stress fracture of polymer bonded explosive (PBX) was studied by a combined simulated and experimental method using notched PBX cylinders. A 2D axisymmetric finite element model, which contained temperature related material properties, was employed to calculate the thermal elastic-plastic response of PBX cylinders under the condition of the initial cooling temperature of 50 ℃ and cooling rate of 10 ℃·min-1. Temperature, strain and acoustic emission (AE) measurements were used in an air-cooling test for verification. Simulation results show that there is a temperature boundary layer near the surface and a temperature difference in the cylinder, resulting in tension stress greater than the strength of the PBX. A circular notch in the cylindrical surface distinctly amplifies the thermal stress and the stress gradient. The factor of stress concentration reaches a maximum of 1.6 when the notch radius is 2 mm. The PBX endures brittle broken during thermal shock when thermal stress exceeded its tension strength, accompanied with strong AE signals and a sharply decline on strain-time response. The critical fracture temperature of cylinders with and without a notch determined by simulation are respectively 8.3 ℃ and 12.6 ℃, while the value determined by experiment are respectively 9.2 ℃ and 12.5 ℃.

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引用本文

唐明峰,甘海啸,温茂萍,等.含缺口PBX药柱热冲击响应的数值模拟及试验[J].含能材料, 2021, 29(1):41-47. DOI:10.11943/CJEM2019237.
TANG Ming-feng, GAN Hai-xiao, WEN Mao-ping, et al. Simulation and Experimental Study on the Thermal Shock Behavior of Notched PBX Cylinders[J]. Chinese Journal of Energetic Materials, 2021, 29(1):41-47. DOI:10.11943/CJEM2019237.

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历史
  • 收稿日期: 2019-09-10
  • 最后修改日期: 2020-11-10
  • 录用日期: 2020-11-05
  • 在线发布日期: 2020-11-06
  • 出版日期: 2021-01-25