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爆轟驅(qū)動(dòng)單、雙管粉體壓實(shí)對(duì)比
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“863”基金(2006AAJ229);博士點(diǎn)基金(20070288070)資助


Comparison of Compressed Powders in Single and Double Tubes Designs Driven by Convergent Detonation
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    摘要:

    由材料可壓縮性及爆轟驅(qū)動(dòng)的相關(guān)假設(shè),根據(jù)質(zhì)量、動(dòng)量守恒導(dǎo)出可壓介質(zhì)運(yùn)動(dòng)微分方程,并將聚心爆轟的平面泰勒波近似與粉體受壓狀態(tài)方程相結(jié)合,得到爆轟產(chǎn)物流場(chǎng)與粉體收縮運(yùn)動(dòng)的耦合關(guān)系式,使運(yùn)動(dòng)微分方程明確且可解。應(yīng)用該方程式計(jì)算聚心爆轟驅(qū)動(dòng)下多孔銅粉的單、雙管壓實(shí)過(guò)程,所得速度、平均密度時(shí)程曲線分別與文獻(xiàn)報(bào)道的結(jié)果吻合良好,且由于位移時(shí)程曲線由速度導(dǎo)出,有理由認(rèn)為其是符合物理實(shí)際的。通過(guò)對(duì)比計(jì)算結(jié)果可知,雙管壓實(shí)裝置中外管具有明顯的聚能效應(yīng),在相同裝藥比下能實(shí)現(xiàn)更高壓力,使燒結(jié)體具有更高的壓實(shí)密度;另外,實(shí)驗(yàn)結(jié)果還顯示雙管結(jié)構(gòu)配合中心桿能有效避免馬赫孔及擴(kuò)大可燒結(jié)尺寸,因而雙管燒結(jié)設(shè)計(jì)更優(yōu)

    Abstract:

    According to the material compressed conditions and the hypothesis of detonation drive, and based on the conservation of mass and momentum, the motion differential equation of compressible powder was obtained. Combined with the planar Taylor wave and the equation of state of powder, the coupling relationship between the convergent flow filed and the shrinking of powders can be gained, and then the copper powder explosive consolidation was calculated. The results indicate that the velocity and average density history curves agree with the reported reference values. It was convincing that the displacement history curve is satisfied with physical fact because the displacement history curve is derived from the velocity. By comparison, it can be known that in double-tubes, the pressure is higher at the same ratio of explosive mass because the external tube is performed as shape charge, so the density is higher. Besides, the experiment results show that the equipment of double-tubes fits with central pole can avoid the Mach pores and enlarge the size of the sintered body. As a conclusion, the double-tubes design is better

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付艷恕,孫宇新.爆轟驅(qū)動(dòng)單、雙管粉體壓實(shí)對(duì)比[J].稀有金屬材料與工程,2010,39(2):357~361.[Fu Yanshu, Sun Yuxin. Comparison of Compressed Powders in Single and Double Tubes Designs Driven by Convergent Detonation[J]. Rare Metal Materials and Engineering,2010,39(2):357~361.]
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  • 收稿日期:2009-03-11
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