Magnetic pump
10890190 ยท 2021-01-12
Assignee
Inventors
Cpc classification
F04D13/064
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/0606
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/669
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/51
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/4273
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/445
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A magnetic pump includes a front casing including: a shaft supporting body that supports a leading end of a supporting shaft; and a plurality of supporting legs that extends toward an inner wall of a suction port from the shaft supporting body, and that supports the shaft supporting body in the suction port. In the magnetic pump, a leading end of the shaft supporting body is positioned further toward the inlet side of the suction port than a connecting section between the inner wall of the suction port and the supporting leg.
Claims
1. A magnetic pump comprising: a front casing that includes a pump chamber formed inside and a cylindrical suction port through which a transfer fluid is sucked into the pump chamber; a rear casing that forms a space continuous with the pump chamber; a supporting shaft that is disposed in the space and a leading end portion of which extends to the suction port via the pump chamber; a magnet can that is disposed in the space, is rotatably supported by the supporting shaft, and is provided with a magnet along a peripheral direction of the supporting shaft; an impeller fixed to the magnet can and accommodated in the pump chamber so as to rotate integrally with the magnet can; and a rotary driving means that is magnetically coupled to the magnet via the rear casing and gives rotary driving force to the magnet, the front casing including: a shaft supporting body that supports a leading end of the supporting shaft; and a plurality of supporting legs that extend from an inner wall of the suction port to the shaft supporting body and support the shaft supporting body in the suction port, wherein: a leading end of the shaft supporting body is positioned further toward an inlet side of the suction port than a connecting section between the inner wall of the suction port and the plurality of supporting legs; the plurality of supporting legs extend from the connecting section on the inner wall to the leading end of the shaft supporting body that is further toward the inlet side than the connecting section such that the plurality of supporting legs extend toward the inlet side from the inner wall; the leading end of the supporting shaft is located at a position where the impeller is located in a direction in which the supporting shaft extends; the shaft supporting body extends from the leading end of the supporting shaft to the inlet side of the suction port; and the plurality of supporting legs extend from the connecting section on the inner wall to the leading end of the supporting shaft that is further toward an opposite side to the inlet side than the connecting section, with the proviso that each of the plurality of supporting legs is a continuous element that extends from the inner wall both toward the leading end of the supporting shaft and to the leading end of the shaft supporting body.
2. The magnetic pump according to claim 1, wherein: a plurality of curved portions that interconnect the plurality of supporting legs and the shaft supporting body are provided at connecting portions between the plurality of supporting legs and the shaft supporting body; and in each of the plurality of supporting legs, a first curvature of a first curved portion positioned at one side of a peripheral direction of the shaft supporting body differs from a second curvature of a second curved portion positioned at another side, the first and second curved portions being among the plurality of curved portions.
3. The magnetic pump according to claim 2, wherein the first curved portion positioned at the one side in the peripheral direction of the shaft supporting body is formed so that the first curvature of the first curved portion changes from a central portion of the suction port toward a peripheral portion of the suction port.
4. The magnetic pump according to claim 1, wherein each of the plurality of supporting legs is inclined by a predetermined angle with respect to a plane passing through a center axis of the shaft supporting body and an inlet side end of the supporting leg.
5. The magnetic pump according to claim 2, wherein each of the plurality of supporting legs is inclined by a predetermined angle with respect to a plane passing through a center axis of the shaft supporting body and an inlet side end of the supporting leg.
6. The magnetic pump according to claim 3, wherein each of the plurality of supporting legs is inclined by a predetermined angle with respect to a plane passing through a center axis of the shaft supporting body and an inlet side end of the supporting leg.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF EMBODIMENTS
(7) Hereinafter, a magnetic pump according to embodiments of the present invention will be described with reference to the drawings.
First Embodiment
(8)
(9) A pump chamber 3 is formed inside the front casing 1, and a suction port 4 and a discharge port 5 are provided on a front surface and a side surface of the front casing 1, respectively. The suction port 4 has a cylindrical shape, and a shaft supporting body 6 and supporting legs 7 are formed inside the suction port 4. A cylindrical space 8 continuous with the pump chamber 3 is formed inside the rear casing 2, and a supporting shaft 9 is disposed at the central portion of the cylindrical space 8. One end of the supporting shaft 9 is fixed to an inner wall on the rear surface side of the rear casing 2, and the other end extends to the suction port 4 via the pump chamber 3. A leading end portion 10 of the other end side of the supporting shaft 9 is covered with the shaft supporting body 6.
(10) A rotating body 11 is rotatably supported on the supporting shaft 9. The rotating body 11 includes a magnet can 12, and an impeller 13 fixed to the magnet can 12. The magnet can 12 includes a cylindrical rotating bearing 14 slidably attached to the outside of the supporting shaft 9, and a ring-shaped driven magnet 15 disposed on the outer periphery of the rotating bearing 14. The magnet can 12 is formed into a cylindrical shape so as to be adapted to the cylindrical space 8.
(11) At a position opposite to the driven magnet 15 of the magnet can 12, on the outside of the rear casing 2, a ring-shaped driving magnet 17 of a driving rotating body 16 is disposed so as to be magnetically coupled to the driven magnet 15. The driving rotating body 16 is accommodated in a space between the rear casing 2 and a driving body casing 18, and is driven by a motor (not illustrated) via a rotating shaft 19.
(12) In the magnetic pump according to the present embodiment, the driving rotating body 16 is rotated by the motor via the rotating shaft 19, and thereby the driving magnet 17 rotates around the rear casing 2. Thus, the driven magnet 15 magnetically coupled to the driving magnet 17 rotates inside the rear casing, and the magnet can 12 including the rotating bearing 14 rotates around the supporting shaft 9. As a result, the impeller 13 fixed to the magnet can 12 rotates and a transfer fluid is introduced inside the pump chamber 3 through the suction port 4. The introduced transfer fluid is discharged outside via the discharge port 5.
(13)
(14) As illustrated in
(15) In contrast, as illustrated in
Second Embodiment
(16) A second embodiment is an example in which a configuration is added for imparting a whirl in advance to a transfer fluid before the transfer fluid flows into an impeller 13.
(17)
(18) Furthermore, in the second embodiment, the curved portion 40 on the one side is formed so that the curvature of the curved portion 40 becomes gradually greater as it proceeds from the shaft supporting body 6 to the inner wall of the suction port 4. In other words, the curved portion 40 on the one side is formed so that the curvature of the curved portion 40 on the one side changes from the central portion of the suction port 4 toward the peripheral portion of the suction port 4.
(19) The shapes of the curved portions 40 and 41 described above are intended to impart a predetermined whirl in advance to the transfer fluid introduced through the suction port 4 to the impeller 13. Due to the shapes of the curved portions 40 and 41, the transfer fluid is introduced more smoothly through the suction port 4 to the impeller 13 than in the first embodiment.
(20)
(21) As illustrated in
(22)
(23) As illustrated in
(24) In the first and second embodiments, the magnetic pump that includes the suction port 4 provided with the three supporting legs 7 has been described as an example; however, the number of supporting legs 7 is not limited to this and may be any number as long as the number is plural. In addition, in the first and second embodiments, the magnetic pump has been described as an example; however, it is possible to adopt an improvement of the suction port 4 according to the above embodiments for a pump of another type.
Third Embodiment
(25)
(26) As described, in the magnetic pump according to the third embodiment, it is possible to suppress generation of turbulence and to efficiently straighten the flow of the transfer fluid.
Other Embodiments
(27) Some embodiments of the present invention have been described above; however, these embodiments are presented by way of examples, and are not intended to limit the scope of the invention. These novel embodiments may be implemented in various other forms, and various omissions, replacements, and changes may be made without departing from the gist of the invention. These embodiments and modifications thereof are included in the scope and gist of the invention, and are included in the scope of the invention described in the claims and equivalents thereof.
Reference Signs List
(28) 1 front casing 2 rear casing 3 pump chamber 4 suction port 5 discharge port 6 shaft supporting body 7 supporting leg 8 cylindrical space 9 supporting shaft 10 leading end portion 11 rotating body 12 magnet can 13 impeller 14 rotating bearing 15 driven magnet 16 driving rotating body 17 driving magnet 18 driving body casing 19 rotating shaft 30 leading end portion of shaft supporting body 31 connecting portion between supporting leg and suction port inner wall 32 center axis of shaft supporting body 40, 41 curved portion