CN216298488U - Guide wheel axle sleeve pressing equipment - Google Patents
Guide wheel axle sleeve pressing equipment Download PDFInfo
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- CN216298488U CN216298488U CN202122983069.9U CN202122983069U CN216298488U CN 216298488 U CN216298488 U CN 216298488U CN 202122983069 U CN202122983069 U CN 202122983069U CN 216298488 U CN216298488 U CN 216298488U
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Abstract
The application discloses guiding wheel axle sleeve pressure equipment, the on-line screen storage device comprises a base, the base has the horizontal reference surface, the supporting seat of a pair of relative setting is arranged to the horizontal reference surface, the installation roof beam has been arranged to the one end that the base was kept away from to each supporting seat, it does not arrange the subassembly of exerting pressure that is used for to guiding wheel pressure equipment axle sleeve to equally divide on two supporting seats, it supports tight cylinder to have arranged on the installation roof beam, the output shaft that supports tight cylinder passes installation roof beam and perpendicular to horizontal reference surface, it is fixed with the arc tile on the output shaft of tight cylinder to support, the surface that the arc tile is close to the base disposes into the rim of laminating guiding wheel, the arc tile is located between two sets of subassemblies of exerting pressure, the spacing groove has been arranged on the horizontal reference surface, the spacing groove is located the vertical projection department of arc tile in horizontal reference surface, the tank bottom surface of spacing groove disposes into the rim of laminating guiding wheel. Through the arrangement, the guide wheel can be restrained, the phenomenon that the guide wheel shakes is reduced, and the guide wheel is convenient to press the shaft sleeve on the guide wheel.
Description
Technical Field
The application relates to the field of auxiliary installation apparatus for guide wheels, in particular to a guide wheel shaft sleeve pressing device.
Background
Current guide wheel pressure equipment machine includes the base, the relative curb plate that sets up has been arranged on the base, the frame has been arranged at the top of two curb plates, a pair of first pneumatic cylinder has been arranged in the frame, the directional base of output of two first pneumatic cylinders, and be fixed with the elevator respectively, the second pneumatic cylinder has not been arranged to the surface that two elevators are close to each other equally, the output shaft of two second pneumatic cylinders is relative and motion in opposite directions, the guide wheel is located between two second pneumatic cylinders, under the effect of two second pneumatic cylinders, impel two axle sleeves in the mounting hole of guide wheel.
Above-mentioned prior art is at the in-process to the mounting hole middling pressure dress axle sleeve of leading wheel, and is less to the restraint dynamics of leading wheel itself, can appear the phenomenon that the leading wheel rocked, leads to between the mounting hole of axle sleeve and leading wheel to uneven, and the axle sleeve is difficult to install into the mounting hole of leading wheel.
SUMMERY OF THE UTILITY MODEL
The application provides a leading wheel axle sleeve pressure equipment is equipped, when the leading wheel assembly axle sleeve, can retrain the leading wheel, reduces the phenomenon that the leading wheel rocked, is convenient for to leading wheel pressure equipment axle sleeve.
The application provides a guiding wheel axle sleeve pressure equipment, the on-line screen storage device comprises a base, the base has the horizontal reference surface, the supporting seat of a pair of relative setting is arranged to the horizontal reference surface, the installation roof beam has been arranged to the one end that the base was kept away from to each supporting seat, it has been used for to the subassembly of exerting pressure of guiding wheel pressure equipment axle sleeve to equally divide to arrange on two supporting seats respectively, it supports tight cylinder to have arranged on the installation roof beam, the output shaft that supports tight cylinder passes installation roof beam and perpendicular to horizontal reference surface, it is fixed with the arc tile on the output shaft to support tight cylinder, the surface configuration that the arc tile is close to the base becomes the rim of laminating guiding wheel, the arc tile is located between two sets of subassemblies of exerting pressure, the spacing groove has been arranged on the horizontal reference surface, the spacing groove is located the vertical projection department of arc tile in horizontal reference surface, the tank bottom surface configuration of spacing groove becomes the rim of laminating guiding wheel.
Through the arrangement, a working space for pressing the shaft sleeve of the guide wheel is formed between the mounting beam and the base, the abutting cylinder is arranged on the mounting beam, the arc-shaped tile is arranged on the output shaft of the abutting cylinder, a cavity for accommodating the guide wheel is formed between the arc-shaped tile and the limiting groove arranged on the horizontal reference surface of the base, the abutting cylinder drives the arc-shaped tile to move towards the direction close to the base, the guide wheel abuts between the arc-shaped tile and the base, the surface of the arc-shaped tile and the shape of the groove bottom surface of the limiting groove are limited, the contact area between the guide wheel and the arc-shaped tile and the groove bottom wall of the limiting groove is increased, the guide wheel is more favorable for clamping the guide wheel, when the shaft sleeve is pressed on the guide wheel, the guide wheel is firstly placed in the limiting groove on the horizontal reference surface of the base, then the abutting cylinder is driven to transport, and the arc-shaped tile is driven to move towards the direction close to the base under the action of the abutting cylinder, make the leading wheel support tightly between arc tile and base, the subassembly of exerting pressure of redriving is with the axle sleeve pressure equipment leading wheel to when the leading wheel assembly axle sleeve, can retrain the leading wheel, reduce the phenomenon that the leading wheel rocked, be convenient for to leading wheel pressure equipment axle sleeve.
Furthermore, a rubber pad is arranged on the surface of the arc-shaped tile close to the base, and the rubber pad is attached to the curved surface of the arc-shaped tile.
Through the arrangement, the rubber pad can avoid the arc-shaped tiles from directly contacting with the guide wheel, and can reduce the phenomenon that the arc-shaped tiles crush the guide wheel.
Further, the subassembly of exerting pressure is including exerting pressure cylinder and briquetting, the output shaft of the cylinder of exerting pressure is on a parallel with the axis of the mounting hole of guide wheel, the briquetting is fixed in the output shaft of the cylinder of exerting pressure, the spout has been arranged on the surface that each supporting seat is close to each other, the extending direction perpendicular to horizontal reference surface of spout, drive screw has been arranged in the spout, drive screw perpendicular to horizontal reference surface and rotation connection in supporting seat, threaded connection has the slide on the drive screw, the cylinder of exerting pressure is fixed in on the corresponding slide, slide sliding connection is in the spout.
Through the setting, do further injecteing to the concrete structure of the subassembly of exerting pressure, the cylinder drive briquetting of exerting pressure moves to the direction of the mounting hole that is close to the guide wheel, can press the axle sleeve into the guide wheel, drive screw is arranged to the spout internal rotation of supporting seat, drive screw and slide threaded connection, it makes the slide along the spout on the supporting seat to rotate drive screw, and the cylinder of exerting pressure connects in the slide, confirm the relative distance between the horizontal reference plane of the cylinder of exerting pressure and base through adjusting the position of slide in the spout on the supporting seat, conveniently carry out the pressure equipment bearing to the guide wheel of equidimension not.
A leading wheel axle sleeve pressure equipment is equipped based on this application, when the pressure equipment axle sleeve to the leading wheel, place the spacing inslot on the horizontal reference face of base with the leading wheel earlier, then the drive supports tight cylinder transportation, drive the arc tile to the direction motion that is close to the base under the effect of supporting tight cylinder, make the leading wheel support tightly between arc tile and base, the subassembly of exerting pressure of redriving is with axle sleeve pressure equipment income leading wheel, thereby when the leading wheel assembles the axle sleeve, can retrain the leading wheel, reduce the phenomenon that the leading wheel rocked, be convenient for to leading wheel pressure equipment axle sleeve.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative efforts.
Fig. 1 is a schematic perspective view of a guide wheel axle sleeve press-fitting apparatus in an embodiment of the present application;
fig. 2 is a schematic perspective view of a guide wheel sleeve press-fitting apparatus in an embodiment of the present application; in which the guide wheels are shown in a clamped state.
Reference numerals: 1. a base; 100. a horizontal reference plane; 111. a limiting groove; 2. a supporting seat; 21. a chute; 3. mounting a beam; 4. tightly abutting against the air cylinder; 5. arc-shaped tiles; 6. a rubber pad; 7. a pressure cylinder; 8. briquetting; 9. a drive screw; 10. a slide carriage.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
Referring to fig. 1 to 2, the present application provides a guiding axle sleeve press-mounting apparatus, which includes a base 1, the base 1 has a horizontal reference plane 100, and the horizontal reference plane 100 is disposed with a pair of supporting bases 2 disposed oppositely. Each supporting seat 2 is kept away from the one end of base 1 and has been arranged installation roof beam 3, and installation roof beam 3 is located between two supporting seats 2, and the both ends of installation roof beam 3 are equallyd divide and are do not connected with two supporting seats 2 one-to-one. And the two supporting seats 2 are respectively provided with a pressing assembly for pressing the shaft sleeve to the guide wheel.
The mounting beam 3 is provided with a vertically arranged abutting cylinder 4, and an output shaft of the abutting cylinder 4 penetrates through the mounting beam 3 and is perpendicular to a horizontal reference surface 100 of the base 1. An arc tile 5 is fixed on an output shaft of the abutting cylinder 4, the surface of the arc tile 5 close to the base 1 is configured to be a rim of the fitting guide wheel, and the arc tile 5 is located between the two groups of pressing components. A limiting groove 111 is arranged on a horizontal reference surface 100 of the base 1, the limiting groove 111 is located at the vertical projection of the arc-shaped tile 5 on the horizontal reference surface 100, and the bottom surface of the limiting groove 111 is configured to be attached to the surface of a rim of the guide wheel.
Through the setting, form the workspace of leading wheel pressure equipment axle sleeve between installation roof beam 3 and the base 1, support tight cylinder 4 and arrange in installation roof beam 3, support and arrange arc tile 5 on the tight cylinder 4 output shaft for form the cavity that holds the leading wheel between arc tile 5 and the spacing groove 111 of arranging on the horizontal reference surface 100 of base 1. The abutting cylinder 4 drives the arc-shaped tile 5 to move towards the direction close to the base 1, so that the guide wheel abuts between the arc-shaped tile 5 and the base 1. The surface of the arc-shaped tile 5 and the groove bottom surface shape of the limiting groove 111 are limited, so that the contact area between the guide wheel and the groove bottom walls of the arc-shaped tile 5 and the limiting groove 111 is increased, and the guide wheel is more beneficial to clamping. When the shaft sleeve is pressed on the guide wheel, the guide wheel is placed in the limiting groove 111 on the horizontal reference surface 100 of the base 1, then the tight cylinder 4 is driven to transport, the arc-shaped tile 5 is driven to move towards the direction close to the base 1 under the action of the tight cylinder 4, and the guide wheel is tightly connected between the arc-shaped tile 5 and the base 1. And the pressing assembly is driven to press the shaft sleeve into the guide wheel, so that the guide wheel can be restrained when the shaft sleeve is assembled on the guide wheel, the phenomenon that the guide wheel shakes is reduced, and the shaft sleeve is conveniently pressed on the guide wheel.
In order to reduce the abrasion of the guide wheel in the press-fitting process, a rubber pad 6 is arranged on the surface of the arc-shaped tile 5 close to the base 1, and the rubber pad 6 is attached to the curved surface of the arc-shaped tile 5. Through the setting, the rubber pad 6 can avoid the arc tile 5 direct and guide wheel contact, can reduce the phenomenon that the arc tile 5 crushes the guide wheel.
In order to conveniently press fit the shaft sleeve into the guide wheel, the pressing assembly comprises a pressing cylinder 7 and a pressing block 8. The output shaft of the pressure cylinder 7 is parallel to the central axis of the mounting hole of the guide wheel, optimally, the output shaft of the pressure cylinder 7 is coaxial with the mounting hole of the guide wheel, and the pressing block 8 is fixed on the output shaft of the pressure cylinder 7. The surface that each supporting seat 2 is close to each other has arranged spout 21, and the extending direction of spout 21 is perpendicular to base 1's horizontal reference plane 100, has arranged drive screw 9 in the spout 21, and drive screw 9 is perpendicular to horizontal reference plane 100 and rotates and connect in supporting seat 2, and drive screw 9 is arranged the screw thread on being located the pole body in spout 21. The driving screw 9 is connected with a slide seat 10 in a threaded manner, the pressing air cylinder 7 is fixed on the corresponding slide seat 10, and the slide seat 10 is connected with a sliding groove 21 in a sliding manner.
Through the arrangement, the specific structure of the pressing assembly is further limited, the pressing cylinder 7 drives the pressing block 8 to move towards the direction close to the mounting hole of the guide wheel, and the shaft sleeve can be pressed into the guide wheel. A driving screw 9 is rotatably arranged in a sliding groove 21 of a supporting seat 2, the driving screw 9 is in threaded connection with a sliding seat 10, the sliding seat 10 slides along the sliding groove 21 on the supporting seat 2 by rotating the driving screw 9, a pressure cylinder 7 is connected to the sliding seat 10, the relative distance between the pressure cylinder 7 and a horizontal reference surface 100 of a base 1 is determined by adjusting the position of the sliding seat 10 in the sliding groove 21 on the supporting seat 2, and the shaft sleeves can be conveniently pressed on guide wheels with different sizes.
In conclusion, when the shaft sleeve is pressed on the guide wheel, the guide wheel is placed in the limiting groove 111 on the horizontal reference surface 100 of the base 1, then the driving abutting cylinder 4 is driven to transport, the arc-shaped tile 5 is driven to move towards the direction close to the base 1 under the action of the abutting cylinder 4, the guide wheel abuts between the arc-shaped tile 5 and the base 1, the pressing assembly is driven to press the shaft sleeve into the guide wheel, and therefore when the shaft sleeve is assembled on the guide wheel, the guide wheel can be restrained, the phenomenon that the guide wheel shakes is reduced, and the shaft sleeve is conveniently pressed on the guide wheel.
The same or similar reference numerals in the drawings of the present embodiment correspond to the same or similar components; in the description of the present application, it is to be understood that if there is an orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", etc. based on the orientation or positional relationship shown in the drawings, it is only for convenience of description and simplification of description, but it is not intended to indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and therefore, the terms describing the positional relationship in the drawings are only for illustrative purposes and are not to be construed as limitations of the present patent, and specific meanings of the above terms may be understood by those skilled in the art according to specific situations.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims (3)
1. The guide wheel shaft sleeve pressing device is characterized by comprising a base (1), wherein the base (1) is provided with a horizontal reference surface (100), a pair of oppositely arranged supporting seats (2) is arranged on the horizontal reference surface (100), one end, far away from the base (1), of each supporting seat (2) is provided with an installation beam (3), two supporting seats (2) are respectively provided with a pressing component for pressing a shaft sleeve to a guide wheel, a pressing cylinder (4) is arranged on the installation beam (3), an output shaft of the pressing cylinder (4) penetrates through the installation beam (3) and is perpendicular to the horizontal reference surface (100), an arc-shaped tile (5) is fixed on the output shaft of the pressing cylinder (4), the surface, close to the base (1), of the arc-shaped tile (5) is configured into a rim attached to the guide wheel, and the arc-shaped tile (5) is positioned between the two groups of pressing components, the horizontal reference surface (100) is provided with a limiting groove (111), the limiting groove (111) is located the arc-shaped tile (5) is located at the vertical projection of the horizontal reference surface (100), and the groove bottom surface of the limiting groove (111) is configured to be a rim of the fitting guide wheel.
2. Leading axle sleeve press fitting arrangement as claimed in claim 1,
arc tile (5) are close to rubber pad (6) have been arranged on the surface of base (1), rubber pad (6) with the curved surface laminating of arc tile (5).
3. Leading axle sleeve press fitting arrangement as claimed in claim 1,
the pressing assembly comprises a pressing cylinder (7) and a pressing block (8), an output shaft of the pressing cylinder (7) is parallel to an axis of a mounting hole of the guide wheel, the pressing block (8) is fixed on the output shaft of the pressing cylinder (7), a sliding groove (21) is arranged on the surface, close to each other, of each supporting seat (2), the extending direction of the sliding groove (21) is perpendicular to the horizontal reference surface (100), a driving screw (9) is arranged in the sliding groove (21), the driving screw (9) is perpendicular to the horizontal reference surface (100) and is rotatably connected to the supporting seats (2), a sliding seat (10) is connected to the driving screw (9) through threads, the pressing cylinder (7) is fixed on the corresponding sliding seat (10), and the sliding seat (10) is slidably connected to the sliding groove (21).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122983069.9U CN216298488U (en) | 2021-11-29 | 2021-11-29 | Guide wheel axle sleeve pressing equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122983069.9U CN216298488U (en) | 2021-11-29 | 2021-11-29 | Guide wheel axle sleeve pressing equipment |
Publications (1)
Publication Number | Publication Date |
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CN216298488U true CN216298488U (en) | 2022-04-15 |
Family
ID=81083637
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202122983069.9U Active CN216298488U (en) | 2021-11-29 | 2021-11-29 | Guide wheel axle sleeve pressing equipment |
Country Status (1)
Country | Link |
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CN (1) | CN216298488U (en) |
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2021
- 2021-11-29 CN CN202122983069.9U patent/CN216298488U/en active Active
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