1.Applied to lifting and transporting magnet -conductive materials such as steels and irons in metallurgy industry,mine industry,machinery industry,and elc.
2.Used as electromagnetic manipulator to hold magnet –conductive materials as steels and irons.
1.Rugged-all-welded construction with good moisture-proofing.
2.Mjorized design by computer with reasonable stucture,light dead weight,strong attraction force and low energy consumption.
3.The energizing coils are processed by special technology to improve the electrical property and mechanical property of the energizing coils.Heat-resistant grade of insulating material reaches Grade C with long service life.
4.Various structures and technical data are available based on the attached items under different conditions to satisfy the wide demands from the clients.
5.Ultra-high temperature type electromagnet adopts unique method of heat-protection,the temperature of the attached materials is increased from 600℃ in the past to 700℃,which expands application range of the electromagnet.
6.Simple and convenient installation,operation and maintenance.
1.If temperature of the attached material is below 100℃,please choose nomal temperature type.lf it is above 100℃,please choose high temperature type.lf it is above 600℃,please choose ultra-high temperature type.
2.When power-on sustaining rate is above 60%,please choose high freguency type.
3.When lifting and transporting materials are in water,please choose diving tope fdepth of diving s 100m).The technical data of diving type electromagnet is the same as that of normal temperature type,so it is not listed in cutalogue.lf customers ned diving type, please state clearly when ordering.
4.Environment temperature:normal temperature type-5℃~40℃,high temperature type-55℃~80℃.Height above sealevel is no more than 2,000m.
5.Corolary equipment:when using single unit,choose commutation control equipment and its neccessory equipment according to consumed power(current);when using combination of several units,choose it according to the sum of the consumed power (current)of the combined units.