Cornell Injection Molding Program Progress Report No. 17: Covering the Period from December 1991 Through February 1993College of Engineering, Cornell University, 1993 - 418 頁 |
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第 1 到 3 筆結果,共 14 筆
第 227 頁
... porosity of the fiber mats after preforming and the permeability of the preform be known . Additional parameters ... Porosity Porosity is defined as the ratio of the void volume to the cavity volume . The void volume is equal to the ...
... porosity of the fiber mats after preforming and the permeability of the preform be known . Additional parameters ... Porosity Porosity is defined as the ratio of the void volume to the cavity volume . The void volume is equal to the ...
第 369 頁
... porosity in the parts . In order to reduce the gas porosity , a vacuum and proper venting can be effective . An over - flow is also usually incorporated in the design to collect the porous material near the melt front . However , most ...
... porosity in the parts . In order to reduce the gas porosity , a vacuum and proper venting can be effective . An over - flow is also usually incorporated in the design to collect the porous material near the melt front . However , most ...
第 407 頁
... porosity , etc. ) of SSM die- cast parts will be evaluated and compared with those of traditional die - cast parts ... porosity of the part can be minimized , and it will be presumably lower than that from the other processes . The ...
... porosity , etc. ) of SSM die- cast parts will be evaluated and compared with those of traditional die - cast parts ... porosity of the part can be minimized , and it will be presumably lower than that from the other processes . The ...
常見字詞
ABAQUS aligned Alloys analysis behavior boundary conditions calculated CIMP cm³/gm Composites constant cooling corresponding crystallization curve cylinder Darcy's Law data points density developed diffusivity direction disk effect equation et.al experimental results fiber mat fiber orientation Figure finite-element fluid formulation function gapwise gradient heat hydrodynamic i-PP injection molding injection-molded interactions interface isothermal kerosine layer linear liquid material matrix measurements melt mesh metal method microstructure mid-plane Newtonian Newtonian fluid nodes Non-Newtonian Fluid nondimensional numerical obtained orientation tensor PANLITE parameters particles permeability planar plotted Polym post-filling power-law predictions pressure region resin Reynolds number Rheocasting rheological rotation semi-dilute semi-solid shear flow shear rate shear stress SHELL10 shown in Fig shrinkage simple shear simulation slurry solid fraction solidification stress structure surface surface tension suspension temperature thermal thickness thin cavity Thixotropic tracer transverse values vector velocity disturbance viscoelastic viscosity wire deformation