期刊文献+

高压气体微孔射流对堆积粉料的破散性试验研究

Experiment Study of High Pressure Air Micro-pore Jet's Broken Dispersion Effect on Bulk Powder
下载PDF
导出
摘要 针对堆积粉料的破散性问题,在设计和构建高压气体射流冲击试验装置的基础上,开展了射流形态、射流喷距和射流冲击实验,探讨了射流压强、喷距、时间、喷嘴形式及喷嘴个数对堆积粉料的破散效果。试验结果表明,当微孔喷嘴直径为0.5 mm时,相同条件下9孔喷嘴的冲击坑体积约为单孔喷嘴的5倍、穿透深度约为单孔的1.5倍。在综合考虑冲击性能、经济成本等因素时,对于孔径为0.5 mm的单孔喷嘴,其最佳工艺参数为喷距20 mm、压强0.5 MPa;最后采用Fluent模拟了单孔喷嘴的冲击过程,得到的仿真结果与实验结果两者之间非常吻合。 In order to solve the broken dispersion problem of bulk powder,a jet impacting test device with high pressure air has been designed and constructed to develop the test of jet pattern,jet distance and jet impingement.Experiments were conducted to study the broken dispersion effect of jet pressure,jet distance,time,form of nozzle and nozzle number on bulk powder.When the microstructure nozzle diameter is 0.5 mm,the experimental results show that the impact crater volume of nine-hole nozzle is about 5 times of the single-hole nozzle and its penetration depth is about 1.5 times under the same conditions.In the integrated system to consider the impact performance,economic cost and other factors,for single-hole nozzle that diameter is 0.5 mm,its optimal process parameters are that the jet distance is 20 mm,the pressure is 0.5 MPa.Finally,using Fluent software the impact process of singlehole nozzle is simulated,the simulation results were in good agreement with the experimental results.
出处 《机械科学与技术》 CSCD 北大核心 2016年第5期790-794,共5页 Mechanical Science and Technology for Aerospace Engineering
基金 国家自科基金项目(51475403)资助
关键词 微孔结构 射流冲击 堆积粉料 破散性 高压气体 bulk powder dispersion high pressure air jet impacting microstructure
  • 相关文献

参考文献13

  • 1Lyons O F P,urray D B,orrance A A,et al.Air jet cooling of brake discs[J].Proceedings of the Institution of Mechanical Engineers,Part C,Journal of Mechanical Engineering Science,2008,222(6):995-1004.
  • 2Shahani A R,Seyyedian M.Simulation of glass cutting with an impinging hot air jet[J].International Journal of Solids and Structures,2004,41(5-6):1313-1329.
  • 3Burchart-Korol D,Korol J,Francik P.Application of the new mixing and granulation technology of raw materials for iron ore sintering process[J].Metalurgija,2012,51(2):187-190.
  • 4刘文权.烧结强力混合与制粒新技术[J].山东冶金,2013,35(1):7-8. 被引量:7
  • 5Xu X Y,Jie O Y,Yang B X,et al.SPH simulations of three-dimensional non-Newtonian free surface flows[J].Computer Methods in Applied Mechanics and Engineering,2013,256:101-116.
  • 6高振江,曹崇文,王德成.气体射流冲击下颗粒物料流态化参数的试验研究[J].中国农业大学学报,2001,6(2):82-86. 被引量:5
  • 7Kaliazine A,Eslamian M,Tran H N.On the failure of a brittle material by high velocity gas jet impact[J].International Journal of Impact Engineering,2010,37(2):131-140.
  • 8Mc Guinn A,Farrelly R,Persoons T,et al.Flow regime characterisation of an impinging axisymmetric synthetic jet[J].Experimental Thermal and Fluid Science,2013,47:241-251.
  • 9华明,唐洪武,王惠民,王志良.ADV技术测量圆射流流场紊动特性实验[J].水利水运科学研究,2000(3):18-21. 被引量:14
  • 10孙清超,臧含书,孙伟,等.散料冲击试验机及其进行冲击实验的方法:中国,103364127A[P].2013-10-23.

二级参考文献6

共引文献61

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部