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鋁—鋁爆炸焊接界面形貌特征研究
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國家自然科學(xué)基金(11202093)


Morphology Characteristics of Al-Al Explosive Welding Interface
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    摘要:

    基于爆炸焊接波狀界面形成的失穩(wěn)機(jī)理與流體—彈塑性模型,在飛板反向射流與空氣之間存在著Rayleigh-Taylor、Kelvin-Helmholtz不穩(wěn)定性條件,因而提出失穩(wěn)是發(fā)生在金屬流體薄膜與空氣之間。由界面波幅與波長之比判定線性理論成立,從而建立雙層流體失穩(wěn)線性控制方程,獲得失穩(wěn)發(fā)展特征指數(shù)表達(dá)式。結(jié)果表明在金屬流體彈—粘性與失穩(wěn)機(jī)制競爭作用下,特定波長范圍的擾動能夠被優(yōu)先發(fā)展,其他波長的擾動被抑制或未能發(fā)展,從而使得波狀界面在沿爆轟方向較為一致,實(shí)驗(yàn)結(jié)果也驗(yàn)證了這一結(jié)論的正確性

    Abstract:

    Based on the instability mechanism of wave formation at the interface in explosive welding and fluid-elastic-plastic model, the conditions for Rayleigh-Taylor and Kelvin-Helmholtz instability were found between fly plate back and air. Therefore, the instability between metal fluid foil and air was proposed. It can be deduced from the ratio of amplitude and wavelength that linear relationship is proper. Then we established double layer fluid flow instability linear control equations, and gained expression of instability development exponent. Results show that at the competition between metal fluid elastic-viscosity and Helmholtz-Taylor synthesized instability, disturbances of special wavelength are prior developed, while others are attenuation or have no time to develop. Consequently, the wavelength and amplitude of welding interface along detonation direction is uniform. In addition, experiments also validate this conclusion

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孫宇新,付艷恕.鋁—鋁爆炸焊接界面形貌特征研究[J].稀有金屬材料與工程,2015,44(10):2486~2490.[Sun Yuxin, Fu Yanshu. Morphology Characteristics of Al-Al Explosive Welding Interface[J]. Rare Metal Materials and Engineering,2015,44(10):2486~2490.]
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  • 收稿日期:2014-09-30
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  • 在線發(fā)布日期: 2016-07-13
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