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YJ36型滤棒装盒机下料库的研制 被引量:4
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作者 刘钰 《机械工程师》 2013年第2期139-140,共2页
YJ36型滤棒装盒机下料库是针对YJ36型滤棒装盒机而设计的一种用于提高滤棒装盒质量的新型料库,设计中采用流量匹配计算和流量仿真模拟等工具,推算出下料库的高度、滤棒入口宽度及分流块、导流缓存块的外型尺寸和安装位置。新设计分流块... YJ36型滤棒装盒机下料库是针对YJ36型滤棒装盒机而设计的一种用于提高滤棒装盒质量的新型料库,设计中采用流量匹配计算和流量仿真模拟等工具,推算出下料库的高度、滤棒入口宽度及分流块、导流缓存块的外型尺寸和安装位置。新设计分流块、导流缓存块具有良好的导流、分流及缓存功能,能够满足于YJ36型滤棒装盒机在低、中、高速稳定运行。该下料库在机器全速连续运行状态下,供料稳定,装盒滤棒质量完好,无乱棒、损坏棒现象,整理摊平过程中产生的孔洞减少到设计允许范围之内。 展开更多
关键词 分流块 导流缓存机构 整理摊平辊 流量匹配 导流壁 孔洞
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Analytical solutions for MHD flow at a rectangular duct with unsymmetrical walls of arbitrary conductivity 被引量:2
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作者 TAO Zhen NI MingJiu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第2期64-81,共18页
For MHD flows in a rectangular duct with unsymmetrical walls, two analytical solutions have been obtained by solving the gov- erning equations in the liquid and in the walls coupled with the boundary conditions at flu... For MHD flows in a rectangular duct with unsymmetrical walls, two analytical solutions have been obtained by solving the gov- erning equations in the liquid and in the walls coupled with the boundary conditions at fluid-wall interface. One solution of 'Case I' is for MHD flows in a duct with side walls insulated and unsymmetrical Hartmann walls of arbitrary conductivity, and another one of 'Case II' is for the flows with unsymmetrical side walls of arbitrary conductivity and Hartmann walls perfectly conductive. The walls are unsymmetrical with either the conductivity or the thickness different from each other. The solutions, which include three parts, well reveal the wall effects on MHD. The first part represents the contribution from insulated walls, the second part represents the contribution from the conductivity of the walls and the third part represents the contribution from the unsymmetri- cal walls. The solution is reduced to the Hunt's analytical solutions when the walls are symmetrical and thin enough. With wall thickness runs from 0 to co, there exist many solutions for a fixed conductance ratio. The unsymmetrical walls have great effects on velocity distribution. Unsymmetrical jets may form with a stronger one near the low conductive wall, which may introduce stronger MHD instability. The pressure gradient distributions as a function of Hartmann number are given, in which the wall effects on the distributions are well illustrated. 展开更多
关键词 MHD (MagnetoHydroDynamics) analytical solution wall effects
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