The Magnetic Plate Lifter significantly enhances the gripping effectiveness of magnetically conductive steel materials. Its core is constructed from high-performance rare earth material known as neodymium iron boron. Operating the chuck handle manually alters the magnetic system within the neodymium iron boron, allowing for the secure holding or release of the processed workpiece.
The Magnetic Plate Lifter functions based on the principles of magnetic flux continuity and magnetic field superposition. Its magnetic circuit is structured into multiple magnetic systems. These systems can create variations in magnetic field strength on the working magnetic pole surface through their relative movements—either enhancing or canceling the magnetic force—to achieve the goal of gripping and releasing objects. In industries like machining and mold manufacturing in my country, the advent of high-performance NdFeB rare earth materials has sparked a trend. There's a growing inclination towards utilizing NdFeB permanent magnet materials to develop magnetic fixtures, resulting in the emergence and widespread use of Magnetic Plate Lifters.
Model No. |
Rated Lifting Capacity |
Cylindrical Lifting Capacity |
Flat Surface Lifting Capacity |
Max Operating Temp |
Demensions(mm) |
Self Weight |
Minimum Plate Thinkness Requires |
|||
|
(kg) |
(kg) |
(kg) |
(℃) |
L |
B |
H |
R |
(kg) |
(mm) |
ZY-1 |
100 |
30 |
300 |
80 |
95 |
65 |
75 |
145 |
3 |
>4 |
ZY-2 |
200 |
75 |
200 |
80 |
163 |
91 |
90 |
160 |
9 |
>6 |
ZY-3 |
300 |
100 |
900 |
80 |
162 |
92 |
91 |
180 |
9 |
>8 |
ZY-5 |
500 |
150 |
1500 |
80 |
233 |
122 |
118 |
220 |
23 |
>12 |
ZY-6 |
600 |
200 |
1800 |
80 |
233 |
120 |
120 |
220 |
23 |
>15 |
ZY-10 |
1000 |
300 |
3000 |
80 |
260 |
175 |
165 |
285 |
50 |
>25 |
ZY-20 |
2000 |
600 |
6000 |
80 |
386 |
233 |
202 |
465 |
125 |
>40 |
ZY-30 |
3000 |
1000 |
9000 |
80 |
443 |
226 |
217 |
565 |
225 |
>60 |
ZY-50 |
5000 |
1500 |
10500 |
80 |
443 |
226 |
217 |
635 |
250 |
>60 |
The Magnetic Plate Lifter excels in lifting and conveying flat machine parts and steel products, making it a valuable asset in industries like mold and machine processing. Its applications span across various settings such as machining centers, shipbuilding plants, and machine manufacturing factories.
Its design is rooted in the principles of maintaining continuous magnetic flux and effectively superimposing magnetic fields. This design ensures its adeptness at securely handling and maneuvering objects, aligning with the needs of industries involved in machining and mold manufacturing.
The anti-corrosion galvanized hoist ring of the magnetic hoist has strong bearing capacity and can ensure safety
The alloy steel rod of the magnetic suspension is not easy to bend, and the non-slip handle can ensure the comfort during use
The safety bolt of the magnetic hoist acts as a fixed handle and improves work efficiency and safety
The utility model rotating shaft of the magnetic crane is labor-saving and flexible in rotation.