1) Squeeze film Performance
挤压膜特性
2) compression properties
挤压特性
1.
Compression properties indexes including elastic modulus, failure force, failure stress and failure energy were obtained by the compression test of rice grain, and the effect of loading rate on compression properties indexes of paddy rice grain was studied.
通过对稻米籽粒的挤压试验,获得稻米籽粒挤压特性的力学指标包括弹性模量、破坏力、破坏应力及破坏能等,并研究了加载速度对稻米籽粒挤压特性指标的影响。
2.
The compression properties indexes of brown rice grain are important in design of harvesting, sorting and processing system.
稻米籽粒的挤压特性指标是设计稻米收获、贮藏和加工系统的重要理论依据之一。
3) film extrusion
薄膜挤压
1.
Objective:To investigate the preparation and safety of carboplatin proliposomes Methods:Carboplatin liposomes were prepared by film extrusion.
方法:采用薄膜挤压法制备卡铂脂质体,加入冻干支持制冷冻干燥后得到卡铂前体脂质体。
4) squeeze film
挤压膜
1.
The behavior of pure squeeze film lubrication of journal bearings with micropolar fluids is studied.
对微极性流体润滑的纯挤压膜径向轴承的特性进行了研究。
5) squeeze film
挤压油膜
1.
In this paper,transient pressure distribution of a high rotor squeeze film damper was solved by multi-grid methods first time.
本文首次将多重网格法用于求解高速转子挤压油膜阻尼器(Squeeze Film Damper,简称SFD)的瞬态油膜压力分布特性。
2.
Based on Hirs′ bulk flow theory,Moody\' frication factor equation and generalized incompressible Reynolds Equation,considering the shearing effect of the outer squeeze film and the elastic deformation of the floating ring,the model and the governing equation of the floating ring bearing were set up.
随着偏心率的增大,挤压油膜系统的最大正油膜压力出现的位置向气穴油膜系统的正负压区交界处移动。
6) extrusion characteristics
挤出特性
1.
Based on velocity and pressure fields calculated,the extrusion characteristics of tri-screw extruder,such as flow rate,back flow rate,mean shear rate,power consumption and productivity ratio,were calculated and compared wi.
通过速度和压力分布,计算了三螺杆挤出机的螺杆挤出特性参数,并和双螺杆挤出机进行对比分析。
2.
The extrusion characteristics of four-screw extruder,such as pumping capability,distributive mixing,dispersive mixing and productivity ratio,were calculated and compared with twin screw extrud.
利用计算所得的速度场和压力场,计算了四螺杆挤出特性,并和双螺杆、一字型排列和三角形排列的三螺杆挤出机进行了对比分析。
补充资料:冲击挤压(见冷挤压)
冲击挤压(见冷挤压)
impact extrusion
ehongji jiya冲击挤压(impaet extrusion)见冷挤压。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条