Magnetic wheel assembly structure of magnetic filter

TWM686304UActive Publication Date: 2026-08-11UNI MAGNETIC INDAL
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
TW115202171
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-03-12
Publication Date
2026-08-11
Estimated Expiration
2036-03-11

Smart Images

  • Figure 00000000_0000_ABST
    Figure 00000000_0000_ABST
Patent Text Reader

Abstract

A magnetic filter assembly structure includes an inner cylinder, a plurality of magnetic blocks, and an outer cylinder. The inner cylinder is integrally formed from a non-magnetic metal material, and its outer diameter is provided with a plurality of equally spaced partitions, defining a magnetically conductive section and a non-magnetically conductive section. A plurality of magnetic blocks are arranged between the partitions of the magnetically conductive section, and magnetic plates are provided between the magnetic blocks to concentrate the magnetic force and conduct it outward. Accordingly, the inner cylinder of this invention is integrally formed with the partitions, which can effectively save processing steps and costs such as welding and assembly, improve the efficiency of structural assembly, and the inner cylinder can be made of aluminum material, which also has the benefit of lightweighting. This allows the magnetic blocks to be thickened accordingly to improve the magnetic conductivity, thereby enhancing the magnetic attraction filtration effect of the magnetic wheel body, achieving the purpose of simplifying assembly, lightweighting, and maximizing magnetic filtration efficiency.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A magnetic wheel assembly structure for a magnetic filter, comprising a magnetic wheel body, the magnetic wheel body including an inner cylinder, a plurality of magnetic blocks and an outer cylinder, the inner cylinder being made of a non-magnetic metal material, the outer diameter of the inner cylinder being formed with a plurality of equidistantly arranged partitions along the axial direction, each partition being provided with at least one magnetic block, and the upper half of each magnetic block being higher than each partition, and a magnetic plate being provided above each partition and between each magnetic block, the outer cylinder being concentrically fitted around the inner cylinder, and further confining the magnetic blocks between the inner cylinder and the outer cylinder.

2. The magnetic wheel assembly structure of the magnetic filter as described in claim 1, wherein, The inner cylinder has a central axle, and both ends of the axle have a locking section and a locking section from the inside to the outside. Two inner shaft covers are fitted and connected to the locking sections at both ends of the axle, and the two inner shaft covers are combined and fixed to both ends of the inner cylinder. Two outer shaft covers are rotatably fitted to the locking sections at both ends of the axle, and the two outer shaft covers are tightly connected to both ends of the outer cylinder.

3. The magnetic wheel assembly structure of the magnetic filter as described in claim 1, wherein, The outer diameter of the inner cylinder is defined by a C-shaped range, which includes a magnetic section and a non-magnetic section outside the C-shaped range. Each partition within the magnetic section is provided with a magnetic block.

4. The magnetic wheel assembly structure of the magnetic filter as described in claim 3, wherein, The outer diameter of the magnetic conductor section has at least one screw hole between each of the partitions. Each magnetic block has at least one through hole at both the upper and lower ends. At least one bolt is then passed through the through hole of each magnetic block and screwed into the screw hole to fix it in place. In this way, each magnetic block is screwed and fixed to the outer diameter of the magnetic conductor section.

5. The magnetic wheel assembly structure of the magnetic filter as described in claim 3, wherein, It also includes at least one row of magnetic blocks, the thickness of which is less than that of the magnetic block, and is arranged in the non-magnetic section and adjacent to the magnetically conductive section. One end of the first row of magnetic blocks abuts against the side of the magnetic block, and the other end is tilted downwards and abuts against the inner wall of the partition, so that the distance between the first row of magnetic blocks and the outer cylinder gradually increases, thereby achieving the effect of gradually reducing magnetic force.

6. The magnetic wheel assembly structure of the magnetic filter as described in claim 1, wherein, The top of the magnetic plate is at least flush with the outer edge surface of each magnetic block.