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基于SPH-FEM算法的爆炸焊接界面參數(shù)及波形生長機理研究
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陸軍工程大學,江蘇 南京 210007

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基金項目:

the National Natural Science Foundation of China [grant numbers 51541112].


Study on Parameters and Wave Growth Mechanism of Explosive Welding Based on SPH-FEM
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Army Engineering University of PLA, Nanjing 210007, China

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National Natural Science Foundation of China (51541112)

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    摘要:

    使用SPH-FEM耦合算法對鈦-鋼、鋼-不銹鋼、銅-鋼、鈦-鋁4種常見爆炸復合組合進行了數(shù)值模擬,理論分析了材料JC強度方程和SG強度方程的適用應變率范圍。探討了爆炸焊接靜態(tài)參數(shù)基復板厚度和動態(tài)參數(shù)碰撞速度、動態(tài)彎折角對界面溫度和壓力的影響,借助數(shù)值模擬手段研究了界面波形形貌,漩渦和少量飛濺熔化塊的生長機理。結果表明,隨著復板厚度和碰撞速度的增加,界面溫度、壓力和波形尺寸明顯增加,動態(tài)彎折角和基板厚度的改變并不能影響界面溫度,界面波形生長遵循著“主逆次順”運動規(guī)律。

    Abstract:

    The SPH-FEM coupling algorithm was applied to simulate four typical explosive composite combinations including titanium-steel, stainless steel-steel, copper-steel and titanium-aluminum. The ranges of strain rate applicable to the Johnson-Cook strength equation and the Steinberg-Guinan strength equation were analyzed theoretically. Besides, the effects of the thickness of the flyer plate and base plate, impact velocity and impact angle on the temperature, pressure and microstructure of the interface during explosive welding were investigated. The growth mechanism of the interface wave, vortex and a small amount of splashing molten blocks were explored through numerical simulation. Results show that the interface temperature, pressure and waveform size increase with the rise in flyer plate thickness and impact velocity, while the peak of interface pressure decreases with the increase in impact angle. The change in the thickness of the base plate cannot directly affect the temperature and pressure of the interface, where the material behaves as an incompressible liquid and reciprocates, producing sinusoidal waveforms, vortex, and splash molten blocks.

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吳曉明,史長根,高立,李文軒,馮柯.基于SPH-FEM算法的爆炸焊接界面參數(shù)及波形生長機理研究[J].稀有金屬材料與工程,2023,52(4):1272~1282.[Wu Xiaoming, Shi Changgen, Gao Li, Li Wenxuan, Feng Ke. Study on Parameters and Wave Growth Mechanism of Explosive Welding Based on SPH-FEM[J]. Rare Metal Materials and Engineering,2023,52(4):1272~1282.]
DOI:10.12442/j. issn.1002-185X.20210689

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歷史
  • 收稿日期:2021-08-02
  • 最后修改日期:2023-02-14
  • 錄用日期:2021-11-10
  • 在線發(fā)布日期: 2023-04-28
  • 出版日期: 2023-04-25