the magnetic fluid sealing pressure is mainly related to the magnetic flux density of the magnetic gap, and also related to the structure.
磁流体密封压力主要由间隙的磁通密度决定,结构参数对密封压力也有影响。
magnetic fluid sealing is a new type of sealing technology. it has the advantages of zero leakage, long life and zero wear, which is incomparable for any other types of sealing.
磁性流体密封是一种新型密封技术,具有零泄漏、寿命长、无磨损等其他密封技术所无可比拟的优点。
a method for calculating sealing pressure and analyzing power loss of magnetic fluid sealing is given in order to be consulted in the design of the magnetic fluid sealing.
推导出了密封压力的计算方法,并分析了动密封的粘滞功耗。
the designed magnetic fluid sealing at low temperature and large diameter using these research results was accepted as the state patent in 2003, they are widely used in some fields.
利用这些研究结果所设计的低温大直径磁性液体密封被授予了国家发明专利,在某些领域得到了广泛应用。
the utility model relates to a hollow shaft magnetic fluid sealing device of a non-locking device used for a single crystal silicon furnace and silicon chip furnace equipment.
本实用新型涉及一种用于单晶硅炉、硅芯炉设备的无锁紧装置的空心轴磁流体密封装置。
magnetic fluid sealing technology is a brand new sealing technology for rotating shaft dynamic seal by using amorphism of magnetic fluid and its response characteristics to magnetic field.
磁流体密封技术是利用磁流体形态的无定形性和它对磁场的响应特性将其应用于旋转轴动密封的一种全新的密封技术。
the magnetic field of the typical magnetic fluid sealing structure with three pole teeth aside and big sealing gap was analyzed by element analysis software produced by ansys company.
采用ansys有限元分析软件进行了较大密封间隙的典型三极齿磁流体密封结构的磁场有限元分析, 并将密封间隙的磁通密度分布分为轴向和径向分别进行分析和讨论。