Abstract
In order to study the mechanochemical response behavior of PTFE/Al/W fluoropolymer-matrix reactive materials under shock loading, the drop-weight impact test of fluoropolymer-matrix reactive materials is carried out, and a weak coupling trans-scale numerical calculation method is proposed. Based on this method, a trans-scale numerical simulation model is established for the drop-weight impact loading reaction process of macro-meso scale fluoropolymer-matrix reactive material. The mechanochemical response behaviors and impact activation mechanisms of macroscopic and mesoscopic structures of sample in the drop-weight impact test are discussed and analyzed through trans-scale numerical simulation. The results show that the content of W has a significant effect on the impact activation reaction of fluoropolymer-matrix reactive materials, and the impact activation threshold of the reactive materials system decreases with the increase of W content. The weak coupling trans-scale numerical simulation analysis model effectively simulates the mechanochemical response process of fluoropolymer-matrix reactive materials. The X-shaped shear band is the dominant mechanism for the breakage and activation of fluoropolymer-matrix reactive materials, and its formation, evolution and distribution are greatly affected by W content.
| Translated title of the contribution | 基于弱耦合跨尺度方法的氟聚物基活性材料冲击力-化学响应行为 |
|---|---|
| Original language | English |
| Article number | 240948 |
| Journal | Binggong Xuebao/Acta Armamentarii |
| Volume | 46 |
| Issue number | 8 |
| DOIs | |
| Publication status | Published - 2025 |
| Externally published | Yes |
Keywords
- drop-weight impact
- mechanochemical properties
- reactive materials
- weak coupling trans-scale
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