CN212305083U - Stator filling and sealing tool for magnetic suspension molecular pump - Google Patents

Stator filling and sealing tool for magnetic suspension molecular pump Download PDF

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Publication number
CN212305083U
CN212305083U CN202021676662.8U CN202021676662U CN212305083U CN 212305083 U CN212305083 U CN 212305083U CN 202021676662 U CN202021676662 U CN 202021676662U CN 212305083 U CN212305083 U CN 212305083U
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China
Prior art keywords
stator
molecular pump
mandrel
magnetic levitation
sliding block
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CN202021676662.8U
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Chinese (zh)
Inventor
陈林
刘强
张亮
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Beijing Zhongke Jiuwei Technology Co ltd
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Beijing Zhongke Jiuwei Technology Co ltd
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Abstract

The utility model provides a pair of a stator embedment frock for magnetic suspension molecular pump belongs to motor stator embedment technical field, include: the two ends of the mandrel are respectively connected with a pushing block, at least one pushing block can move along the axial direction of the mandrel, and the opposite ends of the two pushing blocks are provided with conical surfaces converging towards each other; the expansion assembly comprises a sliding block and a chuck, wherein the chuck is provided with a limiting structure which is suitable for enabling the sliding block to slide outwards along the radial direction; the non-metal sleeve is suitable for being sleeved on the outer surface of the expansion assembly in an elastic manner; the utility model discloses a stator embedment frock for magnetic suspension molecular pump, the device make the condition that direct tight fit can not appear between dabber and the stator module take place, so at the dismouting in-process that relapses of dabber, the condition that can not cause wearing and tearing and scratch to the dabber takes place yet, has prolonged the life of dabber.

Description

Stator filling and sealing tool for magnetic suspension molecular pump
Technical Field
The utility model relates to a motor stator embedment technical field, concretely relates to stator embedment frock for magnetic suspension molecular pump.
Background
The magnetic suspension molecular pump realizes the rotation speed control of a molecular pump rotor component by using a magnetic suspension motor, a stator of the magnetic suspension motor comprises an upper radial magnetic bearing stator, a motor stator and a lower radial magnetic bearing stator, and each stator and an internal sensor are encapsulated into an integral structure by using epoxy glue.
Before the motor stator is encapsulated, the mandrel needs to be inserted in the middle of the stator to position the stator in the radial direction. Specifically, when the mandrel is inserted into the stator, a release agent is coated on the mandrel, then the stator is sleeved on the mandrel, and the stator and the mandrel are ensured to be coaxial; then, epoxy glue is poured between the stators for encapsulation, after encapsulation is finished, the core shaft and the stators are required to be demoulded, and the core shaft is taken out of the stators so as to be conveniently used for encapsulation of the next stator.
However, since the outer diameter of the mandrel needs to limit the inner diameter of the stator, the mandrel and the stator are tightly fitted or have a small gap, and the mandrel is easily worn and scratched during repeated assembly and disassembly of the mandrel.
SUMMERY OF THE UTILITY MODEL
Therefore, the to-be-solved technical problem of the utility model lies in overcoming the embedment frock among the prior art and carrying out the dabber dismouting in-process that relapse, causes the defect of wearing and tearing and scratch easily to a stator embedment frock for magnetic suspension molecular pump is provided.
The utility model provides a pair of a stator embedment frock for magnetic suspension molecular pump, include:
the two ends of the mandrel are respectively connected with a pushing block, at least one pushing block can move along the axial direction of the mandrel, and the opposite ends of the two pushing blocks are provided with conical surfaces converging towards each other;
an inflation assembly comprising: a plurality of sliding blocks are arranged around the mandrel at intervals, and the outer surfaces of the sliding blocks are arc-shaped; further comprising: the clamping disc is clamped at the upper end and the lower end of the sliding block, and the clamping disc is provided with a limiting structure which is suitable for enabling the sliding block to slide outwards along the radial direction;
and the non-metal sleeve is suitable for being sleeved on the outer surface of the expansion assembly in an elastic manner.
Preferably, the plurality of sliding blocks are formed by equally dividing a hollow cylinder.
Preferably, the corners of the two ends of the sliding blocks facing the mandrel are chamfered.
Preferably, the taper of the chamfer of the sliding blocks is equal to the taper of the conical surface of the pushing block.
As a preferred scheme, two ends of the sliding block are respectively provided with a threaded hole;
the chuck is provided with a long hole opposite to the threaded hole, and the extending direction of the long hole corresponds to the radial sliding direction of the sliding block.
Preferably, the chuck is provided with baffle plates extending towards the direction of the slide block, the baffle plates are provided with a plurality of blocks uniformly arranged along the circumferential direction of the chuck, and the slide block is arranged between two adjacent baffle plates in a sliding manner.
Preferably, at least one pushing block is in threaded connection with the mandrel.
Preferably, the mandrel is provided with an extending end extending out of the expansion assembly, and the extending end is provided with a clamping structure suitable for being clamped with a wrench.
Preferably, the snap-in structure is an external hexagonal cap.
The utility model discloses technical scheme has following advantage:
1. the utility model provides a pair of a stator embedment frock for magnetic suspension molecular pump, include: a mandrel, an expansion assembly and a non-metallic sleeve; a plurality of sliding blocks are arranged in the non-metal sleeve, a mandrel penetrates through the plurality of sliding blocks, pushing blocks are arranged at two ends of the mandrel, and pushing blocks with conical surfaces are arranged on the pushing blocks; the stator assembly to be filled is installed on the outer surface of the non-metal sleeve, and the conical surface on the pushing block can push the sliding blocks to be away from each other by rotating the pushing block to push the non-metal sleeve, so that the non-metal sleeve is attached to the stator assembly; when the encapsulating tool needs to be disassembled and assembled, the pushing block is rotated, the sliding blocks are close to each other, so that the stator assembly and the non-metal sleeve are separated, and the encapsulating tool is disassembled; the device prevents the mandrel and the stator assembly from being directly tightly matched, so that the mandrel is not abraded or scratched in the repeated dismounting process of the mandrel, and the service life of the mandrel is prolonged;
2. the utility model provides a stator embedment frock for magnetic suspension molecular pump, many said sliders divide equally for a hollow cylinder and cut apart and form; the sliding blocks are uniformly distributed around the mandrel, and the non-metal sleeve is extruded more uniformly.
3. The utility model provides a stator embedment frock for magnetic suspension molecular pump, the both ends of many sliders are the chamfer towards the corner of dabber, and the tapering of chamfer equals with the tapering of the circular cone surface of promotion piece; so that the slide block is relatively smooth in the outward movement process.
4. The utility model provides a stator embedment frock for magnetic suspension molecular pump, the rectangular hole sets up the moving direction of restricting the slider, makes the slider slide along predetermined radial direction, makes the movement that can not be close to each other between two sliders; the arrangement of the baffle plate ensures the consistency of the initial position of the slide block.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is the utility model discloses an inner structure schematic diagram of stator embedment frock.
Fig. 2 is the utility model discloses a stator module and embedment frock's top view.
Fig. 3 is a cross-sectional view a-a shown in fig. 2.
Fig. 4 is a schematic perspective view of a plurality of sliders shown in fig. 2.
Fig. 5 is a perspective view of the chuck shown in fig. 2.
Description of reference numerals:
1. a stator assembly; 2. a mandrel; 3. a non-metallic sheath; 4. a slider; 5. a first pushing block; 6. a second pushing block; 7. a chuck; 8. a hexagonal cap; 9. chamfering; 10. a threaded hole; 11. a baffle plate; 12. and (4) a long hole.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
The stator potting tool for the magnetic levitation molecular pump provided by the embodiment, as shown in fig. 1, includes: the two ends of the mandrel 2 are respectively connected with a pushing block, the expansion assembly and the non-metal sleeve 3 which is elastically sleeved on the outer surface of the expansion assembly, the stator assembly 1 to be filled is installed on the outer surface of the non-metal sleeve 3, and by rotating the pushing block, the conical surface on the pushing block can push the sliding blocks 4 to be away from each other and push the non-metal sleeve 3, so that the non-metal sleeve 3 is attached to the stator assembly 1; when the encapsulating tool needs to be disassembled and assembled, the pushing block is rotated, the sliding blocks 4 are close to each other, so that the stator assembly 1 and the non-metal sleeve 3 are separated, and the encapsulating tool is disassembled; the device makes the condition emergence that direct tight fit can not appear between dabber 2 and stator module 1, so at dabber 2's the dismouting in-process that relapses, also can not cause the condition emergence of wearing and tearing and scratch to dabber 2, has prolonged dabber 2's life.
As shown in fig. 2 and 3, the upper end of the mandrel 2 is connected with a first pushing block 5 through a screw thread, the first pushing block 5 can move along the axial direction of the mandrel 2 through the screw thread connection, the lower end of the mandrel 2 is provided with a second pushing block 6, and the opposite ends of the first pushing block 5 and the second pushing block 6 are provided with conical surfaces converging towards each other; and the taper of the first pushing block 5 and the second pushing block 6 is equal.
As shown in fig. 4, the mandrel 2 is provided with 8 sliding blocks 4, the 8 sliding blocks 4 are formed by equally dividing a hollow cylinder, the inner diameter of the hollow cylinder is equal to the outer diameter of the mandrel 2, and it can be ensured that the sliding blocks 4 have an expansion reference in the expansion process. Meanwhile, the corners of the two ends of the sliding blocks 4 facing the mandrel 2 are chamfers 9; the conicity of the chamfer 9 of the sliding block 4 is equal to that of the first pushing block 5 and the second pushing block 6; chucks 7 are arranged at two ends of the sliding block 4 to limit the movement of the sliding block 4.
As an alternative embodiment, the number of the sliders 4 may be 3, 6, 12, etc.
As shown in fig. 5, threaded holes 10 are respectively provided at both ends of the slider 4, the chuck 7 has a long hole 12 corresponding to the threaded hole 10, and the extending direction of the long hole 12 coincides with the radial moving direction of the slider 4; a plurality of baffle plates 11 are arranged on the opposite surfaces of the two chucks 7, the baffle plates 11 extend towards the direction of the sliding block 4, the baffle plates 11 are uniformly arranged along the circumferential direction of the chucks 7, and the sliding block 4 is arranged between the two adjacent baffle plates 11; this ensures the consistency of the initial position of the slider 4.
The middle part of chuck 7 is provided with the through-hole, and dabber 2 passes the through-hole of chuck 7 and stretches out from the middle part of slider 4, stretches out to serve and is provided with hexagon cap 8, and hexagon cap 8 sets up and makes things convenient for the spanner to its joint.
As shown in fig. 3, a non-metal sleeve 3 is sleeved on the outer surface of the sliding block 4, the non-metal sleeve 3 has certain elasticity, and the non-metal sleeve 3 can be a silicone tube; after the non-metal sleeve 3 is sleeved on the sliding block 4, the later-stage demoulding is facilitated.
Method of use and principles
Assembling an encapsulating tool: a plurality of sliding blocks 4 are uniformly placed around the mandrel 2, the lower end of each sliding block 4 is placed between two adjacent baffle plates 11 of the chuck 7, a bolt penetrates through a long hole of the chuck 7 and is screwed with a threaded hole 10 on the sliding block 4, the chuck 7 and the sliding block 4 are fixed, the non-metal sleeve 3 is sleeved in from the upper end of the sliding block 4, and after the non-metal sleeve is sleeved in, the flatness of the whole non-metal sleeve 3 is ensured; fixing the chuck 7 at the upper end with the slide block 4;
placing the encapsulating tool into the placed stator assembly 1;
the hexagonal cap 8 is clamped through a wrench, the first pushing block 5 is rotated, the sliding blocks 4 slide outwards under the extrusion of the first pushing block 5 and can also gradually move downwards, the sliding blocks are simultaneously extruded by the second pushing block 6 in the downward moving process, and the sliding blocks are not pushed outwards along the radial direction under the simultaneous extrusion of the first pushing block 5 and the second pushing block 6; meanwhile, the upper end and the lower end of the sliding block are simultaneously subjected to outward sliding force, and the sliding block is made of hard materials, so that the sliding block integrally moves along the radial direction in the vertical direction at the same time, and the movement of each position of the sliding block in the vertical direction is consistent. Meanwhile, under the action of the non-metal sleeve 3 and the upper and lower nuts, the sliding block 4 moves orderly and cannot move along the circumferential direction of the chuck; the sliding blocks 4 move outwards to extrude the non-metal sleeve 3, and the non-metal sleeve 3 is tightly attached to the stator assembly 1 due to the flexibility of the sliding sleeve;
pouring resin between the stator assembly 1 and the non-metal sleeve 3;
dismantle the embedment frock, reverse revolve twist first promotion piece 5 for slider 4 removes towards the central direction, takes out the embedment frock.
It should be understood that the above examples are only for clarity of illustration and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications can be made without departing from the scope of the invention.

Claims (9)

1. The utility model provides a stator embedment frock for magnetic levitation molecular pump which characterized in that includes:
the two ends of the mandrel (2) are respectively connected with pushing blocks, at least one pushing block can move along the axial direction of the mandrel (2), and the opposite ends of the two pushing blocks are provided with conical surfaces converging towards each other;
an inflation assembly comprising: a plurality of sliding blocks (4) are arranged around the mandrel (2) at intervals, and the outer surfaces of the sliding blocks (4) are arc-shaped; further comprising: the clamping disc (7) is clamped at the upper end and the lower end of the sliding block (4), and the clamping disc (7) is provided with a limiting structure which is suitable for enabling the sliding block (4) to slide outwards along the radial direction;
and the non-metal sleeve (3) is suitable for being sleeved on the outer surface of the expansion component in an elastic manner.
2. The stator potting tool for a magnetic levitation molecular pump as claimed in claim 1, wherein the plurality of sliders (4) are formed by equally dividing a hollow cylinder.
3. The stator potting tool for a magnetic levitation molecular pump as claimed in claim 1, wherein corners of two ends of the plurality of sliding blocks (4) facing the mandrel (2) are chamfered (9).
4. The stator potting tool for a magnetic levitation molecular pump as claimed in claim 3, wherein the taper of the chamfer (9) of the plurality of sliding blocks (4) is equal to the taper of the conical surface of the pushing block.
5. The stator potting tool for a magnetic levitation molecular pump as claimed in any one of claims 1 to 4, wherein both ends of the slider (4) are respectively provided with a threaded hole (10);
the chuck (7) is provided with a long hole opposite to the threaded hole (10), and the extending direction of the long hole corresponds to the radial sliding direction of the sliding block (4).
6. The stator potting tool for the magnetic levitation molecular pump as claimed in claim 5, wherein the chuck (7) is provided with a baffle (11) extending towards the direction of the sliding block (4), the baffle (11) is provided with a plurality of blocks uniformly arranged along the circumferential direction of the chuck (7), and the sliding block (4) is slidably arranged between two adjacent baffles (11).
7. Stator potting tool for a magnetic levitation molecular pump according to any of claims 1 to 4, characterized in that a threaded connection is used between at least one of the push blocks and the mandrel (2).
8. The stator potting tool for a magnetic levitation molecular pump as claimed in claim 7, wherein the mandrel (2) has an extended end extending out of the expansion assembly, and the extended end is provided with a snap-in structure adapted to be snapped in with a wrench.
9. Stator potting tool for a magnetic levitation molecular pump according to claim 8, characterized in that the snap-in structure is an outer hexagon cap (8).
CN202021676662.8U 2020-08-12 2020-08-12 Stator filling and sealing tool for magnetic suspension molecular pump Active CN212305083U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021676662.8U CN212305083U (en) 2020-08-12 2020-08-12 Stator filling and sealing tool for magnetic suspension molecular pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021676662.8U CN212305083U (en) 2020-08-12 2020-08-12 Stator filling and sealing tool for magnetic suspension molecular pump

Publications (1)

Publication Number Publication Date
CN212305083U true CN212305083U (en) 2021-01-05

Family

ID=73937454

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021676662.8U Active CN212305083U (en) 2020-08-12 2020-08-12 Stator filling and sealing tool for magnetic suspension molecular pump

Country Status (1)

Country Link
CN (1) CN212305083U (en)

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