弹道明胶力学性能测试
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国家自然科学基金项目(11502119),国防重点实验室基金(61426060201162009)


Testing of Mechanical Properties of Ballistic Gelatin
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    摘要:

    目的 研究弹道明胶力学性能,进而建立动态本构模型,为采用数值计算方法开展创伤弹道学相关研究奠定基础。方法 首先制备出10 ℃下20%弹道明胶试件,随后采用万能材料试验机和铝制霍普金森杆测试弹道明胶的准静态和动态压缩力学性能。结果 获得10 ℃ 下20%弹道明胶准静态和动态压缩应力-应变曲线;当应变为0.45时,7组应变率(10-3、10-2、10-1、5 800、7 900、10 400、13 000 s-1)下的真实应力分别为0.041、0.083、0.194、14.515、31.496、55.597、96.678 MPa。当应变率为13 000 s-1、应变从0.4增加到0.5时,应力从53.558 MPa迅速上升到164.417 MPa,增大了3.07倍。结论 弹道明胶在低应变率和高应变率范围内都有着明显的应变率效应;基于试验数据,建立形如σ=kε·mεn的含应变率本构模型,并给出20%弹道明胶的材料常数。

    Abstract:

    Objective To study the mechanical properties of ballistic gelatin and establish a dynamic constitutive model by a numerical method to lay the foundation for the related research on wound ballistics. Methods First, 20% ballistic gelatin samples at 10°C were prepared, and then, the quasi static and dynamic compressive mechanical properties of the ballistic gelatin were tested using a universal material testing machine and an aluminum Hopkinson bar, respectively. Results The quasi-static and dynamic compressive stress-strain curves of 20% ballistic gelatin at 10 ℃ were obtained. When the strain was 0.45, the true stress was 0.041, 0.083, 0.194, 14.515, 31.496, 55.597, and 96.678 MPa at a strain rate of 10-3, 10-2, 10-1, 5 800, 7 900, 10 400, and 13 000 s-1, respectively. When the strain rate was 13 000 s-1 and the strain increased from 0.4 to 0.5, the stress increased rapidly from 53.558 MPa to 164.417 MPa, equivalent to an increase by over 3.07 times. Conclusions The ballistic gelatin had a remarkable strain rate effect in the range of both low and high strain rates. The constitutive model with strain rate was established based on the experimental results with the form of σ=kε·mεn, and the material constants of 20% ballistic gelatin were obtained.

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薛本源,温垚珂,徐诚,宋焦.弹道明胶力学性能测试[J].医用生物力学,2018,33(3):262-266

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  • 收稿日期:2017-08-30
  • 最后修改日期:2017-10-26
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  • 在线发布日期: 2018-06-21
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