...
首页> 外文期刊>Intelligence: A Multidisciplinary Journal >Damage and hotspot formation simulation for impact-shear loaded PBXs using combined microcrack and microvoid model
【24h】

Damage and hotspot formation simulation for impact-shear loaded PBXs using combined microcrack and microvoid model

机译:用组合微裂纹和微侵索模型对冲击剪切加载PBX的损坏和热点形成模拟

获取原文
获取原文并翻译 | 示例

摘要

A physically-based damage-hotspot formation framework incorporating multiple stress-state motivated evolution-modes of microcracks and microvoids is developed to study the overall damage behavior of polymer-bonded explosives (PBXs). Localized heating sub-models of shear-crack friction and void collapse hotspot mechanisms are described to predict impact-shear ignition of PBXs. Several features of microdefect evolution under a combined shear and compression loading are predicted as follows. (i) Crack growth causes an elasticity deterioration and softening response; (ii) void distortion begins at the yield point and ends at the softening point; (iii) the softening stage will be interrupted if the increasing lateral pressure is sufficiently large to inhibit crack growth; and (iv) void collapse occurs if the lateral pressure continually increases to a critical high value. Simulated results of a punched PBX charge show that shear-crack friction heating plays a critical role in ignition under low-velocity impact (<400 m/s). Under high-velocity impact (>400 m/s), the heating due to void collapse dominates ignition because the timescale to void hotspot formation (similar to 1 mu s) is considerably shorter than that of crack hotspots (similar to 10 mu s).
机译:开发了一种具有多种应力状态激励演化 - 微裂纹和微毒素的物理损伤的热点形成框架,以研究聚合物键合炸药(PBXS)的整体损伤行为。描述了剪切裂纹摩擦和空隙塌陷热点机制的局部加热子模型来预测PBX的冲击剪切点火。在组合的剪切和压缩负载下的微碎屑演化的几个特征预测如下。 (i)裂纹生长导致弹性劣化和软化反应; (ii)空隙畸变在屈服点开始,在软化点处结束; (iii)如果横向压力增加足以抑制裂纹生长,软化阶段将被中断; (iv)如果横向压力不断增加至临界高价值,则会发生空隙坍塌。喷孔PBX电荷的模拟结果表明,剪切裂纹摩擦加热在低速冲击下在点火中起着关键作用(<400米/秒)。在高速冲击(> 400米/秒)下,由于空隙崩溃引起的加热占点火,因为空隙热点形成(类似于1 Mu S)的时间尺寸比裂纹热点(类似于10亩) 。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号