The mixing results of agitator depend directly on dynamic performance of the agitator paddle and the position in mixing tank. Gas-Liquid Dispersion by Hollow-blade Disk Turbines with Different Blade Shapes 搅拌器桨叶的水动力性能以及与搅拌槽的位置关系直接影响到搅拌的混合效果。不同叶片形状盘式涡轮搅拌桨的气-液分散特性
With the variety of the impeller tip angle from 17.6 to 23, the surface stress of the agitator blade is increased. 在叶端安放角βt从17.6°到23°时,随着叶端安放角的增加,桨叶表面的应力也在增加。
Building the mathematical model of agitator's blade curved surface and planimetric curve 搅拌器叶片曲面及其轮廓曲线数学模型的建立
Anticorrosion technology practice: agitator blade lined with PO material 搅拌桨衬PO材料防腐技术的应用
Velocity and concentration field in agitated tank with single layer axial agitator blade were calculated by means of CFD software FLUENT 6.0, and the influences of feeding and detecting positions on mixing times were discussing. 利用计算流体力学软件FLUENT6.0程序计算了单层CBY搅拌槽内流体混合过程的速度场和浓度场,讨论了加料点位置和监测点位置对混合时间的影响。
The agitator is able to transfer energy to the grinding balls. To effective transfer energy and reduce energy consumption due to friction, the shape of the stirring blade is designed to be orthogonal-shaped pin rod. 搅拌器作用是把能量传递给磨球,搅拌叶形状设计为正交形销棒式,能有效传递能量和减少了因摩擦生热而产生的能耗。