CN216152086U - Rotating device - Google Patents

Rotating device Download PDF

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Publication number
CN216152086U
CN216152086U CN202122165105.0U CN202122165105U CN216152086U CN 216152086 U CN216152086 U CN 216152086U CN 202122165105 U CN202122165105 U CN 202122165105U CN 216152086 U CN216152086 U CN 216152086U
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China
Prior art keywords
plate
product
board
module
rotary
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Application number
CN202122165105.0U
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Chinese (zh)
Inventor
黄裕文
全承来
谷圆辉
黄政
刘翠娥
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Futaihua Industry Shenzhen Co Ltd
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Futaihua Industry Shenzhen Co Ltd
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Priority to CN202122165105.0U priority Critical patent/CN216152086U/en
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Abstract

The utility model provides a rotary device, a be used for driving the product and rotate, which comprises a fixed base, rotatory module and removal module, rotatory module includes connecting piece and first board, the connecting piece is connected in the first board, a product is used for installing, it includes the second board to remove the module, it is equipped with first locating hole to remove the module, it removes towards the first board to remove module drive second board, make first board and second board centre gripping product, and make the connecting piece locate first locating hole, rotatory module drive first board rotates, and pass through the connecting piece, drive second board rotates with first board is synchronous, in order to drive the product and rotate. Protect the product through first board and second board to locate first locating hole through the connecting piece, make first board and second board rotate in step, be convenient for fix a position the product between first board and second board, prevent that the product both ends from collapsing the limit, promote the product yield.

Description

Rotating device
Technical Field
The application relates to the field of product positioning and processing, in particular to a rotating device.
Background
In the production process, the product has knife lines after being processed, the knife lines on the periphery of the product need to be polished, the surfaces on the periphery of the product need to be polished only by rotating the product, the position of the product is usually positioned by connecting one end face of the product and the product is driven to rotate, but the edges at two ends of the product are easy to collapse during polishing, and the product yield is low.
SUMMERY OF THE UTILITY MODEL
In view of the above, it is desirable to provide a rotating device capable of driving a product to rotate, preventing the two ends of the product from collapsing during polishing, and improving the yield of the product.
The embodiment of the application provides a rotary device for drive the product and rotate, including fixing base, rotatory module and removal module, rotatory module includes connecting piece and first board, the connecting piece connect in the first board is used for the installation the product, it includes the second board to remove the module, it is equipped with first locating hole to remove the module drive the second board orientation the first board removes, makes first board and second board centre gripping the product, and make the connecting piece is located first locating hole, rotatory module drive the first board rotates, and passes through the connecting piece, drive the second board with the first board rotates in step, in order to drive the product rotates.
The embodiment of the application comprises the following technical effects: protect the product through first board and second board to locate first locating hole through the connecting piece, make first board and second board rotate in step, be convenient for fix a position the product between first board and second board, prevent that the product both ends from collapsing the limit, promote the product yield.
Further, in some embodiments of this application, rotatory module still includes rotary driving piece, first bearing frame and first connecting axle, first bearing frame is connected the fixing base, first connecting axle rotates and connects first bearing frame, rotary driving piece is connected to the one end of first connecting axle, and the other end is connected the first board, the first connecting axle of rotary driving piece drive passes through first bearing frame drives the first board rotates.
Further, in some embodiments of the present application, the rotating module further includes a power member connected to the rotating driving member for driving the rotating driving member to connect or disconnect with the first connecting shaft.
Further, in some embodiments of this application, the removal module includes removal driving piece, connecting plate, second bearing frame and second connecting axle, the removal driving piece is connected to the connecting plate, the second bearing frame is connected the second board, first locating hole is seted up in the second bearing frame, the second connecting axle is fixed in the connecting plate, just the second bearing frame is located in the rotation of second connecting axle, the second board passes through the second bearing frame is relative the second connecting axle rotates.
Further, in some embodiments of the present application, the connector includes a locating block including a first portion having a rectangular configuration and a second portion having a spherical configuration.
The embodiment of the application comprises the following technical effects: advance the location through first portion, accurate positioning is carried out to rethread second portion, promotes the precision that connecting piece and removal module 20 are connected.
Further, in some embodiments of the present application, a second positioning hole is disposed on a side of the second plate away from the first plate, the rotating device further includes a correction assembly, the correction assembly includes a correction driving member and a correction rod, the correction driving member is connected to the connecting plate, the correction rod is connected to the correction driving member, and the correction driving member drives the correction rod to extend into the second positioning hole to correct the position of the second plate.
Further, in some embodiments of this application, the fixing base is equipped with the slide rail, the connecting plate is connected with the installation piece, the installation piece is equipped with the slider, slider sliding connection in the slide rail.
Further, in some embodiments of the present application, the first plate includes a first component and a plurality of second components removably coupled to the first component.
The embodiment of the application comprises the following technical effects: the second part corresponding to the product of different sizes is convenient to replace, and the applicability of the first plate is improved.
Further, in some embodiments of the present application, the supporting module further includes a supporting module, the supporting module includes a supporting driving member and a supporting plate, the supporting driving member is connected to the fixing seat, the supporting plate is connected to the supporting driving member, and the supporting driving member drives the supporting plate to move toward and abut against the product, so as to support the product.
The embodiment of the application comprises the following technical effects: the product is supported when the product is polished, and the position of the product is prevented from moving when the product is subjected to polishing acting force.
Further, in some embodiments of the present application, the rotary drive includes one of a cylinder and a motor.
Drawings
Fig. 1 is a schematic structural diagram of a rotating device in one embodiment.
Fig. 2 is a schematic structural diagram of a rotation module according to an embodiment.
Fig. 3 is a schematic structural diagram of a rotary die set and a product in one embodiment.
FIG. 4 is a schematic diagram of a positioning block according to an embodiment.
Fig. 5 illustrates a schematic structural view of the first plate in an embodiment.
Fig. 6 is a schematic structural diagram of a mobile module according to an embodiment.
Fig. 7 is an exploded view of the moving module according to an embodiment.
Description of the main element symbols:
rotating device 100
Fixing seat 10
Base 11
First support frame 12
Second support frame 13
Rotary module 20
First bearing seat 21
First connecting shaft 22
Rotary drive 23
Connecting piece 24
Positioning post 241
Positioning block 242
First part 2421
Second part 2422
Support plate 243
First convex part 2431
First plate 25
First member 251
Second part 252
Power element 26
Mobile module 30
Movable driving piece 31
Connecting plate 32
Second bearing housing 33
First positioning hole 331
Position limiting member 332
Second connecting shaft 34
First concave portion 341
Second plate 35
Third part 351
Second positioning hole 3511
Fourth component 352
Calibration assembly 36
Calibration drive 361
Correction lever 362
Supporting module 40
Supporting driver 41
Support plate 42
First direction X
Second direction Y
Product 200
Side 201
Through-hole 202
The following specific examples will further illustrate the application in conjunction with the above figures.
Detailed Description
The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments.
It will be understood that when an element is referred to as being "mounted on" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "or/and" includes any and all combinations of one or more of the associated listed items.
The embodiment of the application provides a rotary device, be used for driving the product and rotate, which comprises a fixed base, rotatory module and removal module, rotatory module includes connecting piece and first board, the connecting piece is connected in the first board, be used for installing the product, it includes the second board to remove the module, it is equipped with first locating hole to remove the module, it removes towards the first board to remove module drive second board, make first board and second board centre gripping product, and make the connecting piece locate first locating hole, rotatory module drive first board rotates, and pass through the connecting piece, drive second board and first board rotate in step, rotate in order to drive the product.
The embodiment of the application comprises the following technical effects: protect the product through first board and second board to locate first locating hole through the connecting piece, make first board and second board rotate in step, be convenient for fix a position the product between first board and second board, prevent that the product both ends from collapsing the limit, promote the product yield.
Some embodiments of the present application will be described in detail below with reference to the accompanying drawings.
Referring to fig. 1, the rotating device 100 shown in fig. 1 is used to fix the position of the product 200 and drive the product 200 to rotate together, so as to facilitate an external polishing device to polish the side 201 of the product 200. The rotating device 100 includes a fixing base 10, a rotating module 20 and a moving module 30, wherein the rotating module 20 and the moving module 30 are disposed on the fixing base 10 at an interval along a first direction X. The rotating module 20 is used for installing the product 200 and driving the product 200 to rotate, the moving module 30 is used for moving towards the rotating module 20, so that the moving module 30 is connected with the rotating module 20, the product 200 is located between the rotating module 20 and the moving module 30, and the rotating module 20 drives the moving module 30 to synchronously rotate so as to drive the product 200 to rotate together. The product 200 has both ends arranged in the first direction X, and the rotating module 20 and the moving module 30 are in contact connection with both ends of the product 200.
In one embodiment, the fixing base 10 includes a base 11, a first supporting frame 12 and a second supporting frame 13. The first support frame 12 and the second support frame 13 are disposed on the base 11 at an interval along the first direction X. The first support frame 12 is used for mounting the rotating module 20, and the second support frame 13 is used for mounting the moving module 30.
Referring to fig. 2 and 3, in one embodiment, the rotating module 20 includes a first bearing seat 21, a first connecting shaft 22, a rotating driving member 23, a connecting member 24 and a first plate 25. The first bearing seat 21 is fixed on the base 11 and connected to the first support frame 12. The first connecting shaft 22 is connected to the first bearing housing 21 and rotates relative to the first bearing housing 21. The rotary driving member 23 is connected to the first connecting shaft 22, the first plate 25 is connected to an end of the first connecting shaft 22 away from the rotary driving member 23, and the connecting member 24 is connected to a side of the first plate 25 away from the first connecting shaft 22. The rotary driving member 23 drives the first connecting shaft 22 to rotate relative to the first bearing seat 21, and further drives the first plate 25 and the connecting member 24 to rotate.
In one embodiment, the rotary drive member 23 comprises one of a cylinder and a motor.
In one embodiment, connector 24 includes positioning post 241 and positioning block 242. An abutting plate 243 is disposed at an end of the positioning pillar 241 away from the first plate 25, and the abutting plate 243 has a first protrusion 2431. When the product 200 is mounted on the connecting member 24, the positioning column 241 is located in the product 200, one end of the product 200 is in contact with the first plate 25, the abutting plate 243 abuts against the inner wall of the other end of the product, the first protrusion 2431 is located in the through hole 202 at the other end of the product 200, the positioning block 242 passes through the through hole 202 and protrudes out of the surface of the product 200, and the product 200 is mounted on the connecting member 24.
In one embodiment, the positioning block 242 has a rectangular structure.
Referring to fig. 4, in another embodiment, the positioning block 242 includes a first portion 2421 and a second portion 2422, the first portion 2421 is rectangular, the second portion 2422 is spherical, the first portion 2421 is pre-positioned, and the second portion 2422 is precisely positioned, so as to improve the connection accuracy between the connecting element 24 and the moving module 30.
In an embodiment, the rotating module 20 further includes a power member 26, the power member 26 is disposed on the first support frame 12, and the power member 26 is connected to the rotating driving member 23 for driving the rotating driving member 23 to move to connect or disconnect with the first connecting shaft 22.
Referring to fig. 5, in an embodiment, the first plate 25 includes a first member 251 and a second member 252, and the second member 252 is detachably connected to the outer periphery of the first member 251, so that the second member 252 can be replaced according to products 200 with different sizes, thereby improving the applicability of the first plate 25. The second member 252 is provided in plurality, and the plurality of second members 252 are provided on the outer circumference of the first member 251 so that the shape of the first plate 25 matches the end surface shape of the product 200. In one embodiment, the second member 252 is a wear resistant ceramic.
Referring to fig. 6 and 7, in an embodiment, the moving module 30 includes a moving driving member 31, a connecting plate 32, a second bearing seat 33, a second connecting shaft 34 and a second plate 35. The movable driving member 31 is mounted on the second supporting frame 13, the connecting plate 32 is connected with the movable driving member 31, one end of the second connecting shaft 34 is fixed on the connecting plate 32 and is rotatably connected with the second bearing seat 33, and the second bearing seat 33 is further connected with the second plate 35. The movable driving member 31 drives the connecting plate 32 to move in a direction opposite to the first direction X to move the second plate 35 toward the first plate 25.
Referring to fig. 1, in an embodiment, the base 11 further has a slide rail (not shown), the connecting plate 32 has a mounting block (not shown), the mounting block has a slide block, and the slide block is slidably connected to the slide rail to improve the stability of the reciprocating movement of the moving module 30 along the first direction X.
In one embodiment, the second bearing seat 33 is provided with a first positioning hole 331, and the structure of the first positioning hole 331 matches with the structure of the positioning block 242. When the movable driving element 31 drives the second plate 35 to move toward the first plate 25, the positioning block 242 is disposed in the first positioning hole 331, so that the positioning block 242 is connected to the second bearing seat 33, and the positioning block 242 drives the second plate 35 to rotate relative to the second connecting shaft 34 through the second bearing seat 33.
In an embodiment, the second connecting shaft 34 is provided with a first concave portion 341 along a circumferential direction thereof, the second bearing seat 33 is further provided with a limiting member 332, the second bearing seat 33 is sleeved on the second connecting shaft 34, one end of the limiting member 332 is connected to the second bearing seat 33, and the other end of the limiting member 332 extends into the first concave portion 341 for limiting positions of the second bearing seat 33 and the second connecting shaft 34, so as to prevent the second bearing seat 33 from falling off from the second connecting shaft 34 when rotating relative to the second connecting shaft 34.
In one embodiment, the second plate 35 is substantially identical in construction to the first plate 25, and is of a removable construction. The second plate 35 includes a third member 351 and a fourth member 352, the third member 351 being connected to the second bearing housing 33, and the fourth member 352 being detachably connected to the third member 351. The third member 351 is provided with a second positioning hole 3511. In one embodiment, each side of the third member 351 is provided with a second positioning hole 3511.
In one embodiment, the moving module 30 further includes a calibration assembly 36, and the calibration assembly 36 includes a calibration driving member 361 and a calibration rod 362. The calibration driving member 361 is connected to the connecting plate 32, the calibration rod 362 is connected to the calibration driving member 361, and the calibration driving member 361 drives the calibration rod 362 to reciprocate along the first direction X, so that the calibration rod 362 extends into the second positioning hole 3511 to calibrate the position of the second plate 35, and the calibration rod 362 retracts from the second positioning hole 3511 to facilitate the rotation of the second plate 35. Specifically, when the rotary module 20 stops driving the product 200 to rotate, the calibration driving member 361 drives the calibration rod 362 to extend into the second positioning hole 3511, and positions the second plate 35 such that the positions of the first plate 25 and the second plate 35 correspond to each other, and when the product 200 is installed and the rotary module 20 is connected to the second bearing seat 33, the calibration driving member 361 drives the calibration rod 362 to retract from the second positioning hole 3511.
Referring to fig. 1, in an embodiment, the rotating device 100 further includes a supporting module 40, the supporting module 40 includes a supporting driving member 41 and a supporting plate 42, the supporting driving member 41 is fixed on the base 11, and the supporting plate 42 is connected to the supporting driving member 41. The supporting driving member drives the supporting plate 42 to move along the second direction Y, so that the supporting plate 42 is in contact connection with the surface of the product 200, so as to support the product 200 when the product 200 is polished, and prevent the product 200 from moving when the product 200 is subjected to the polishing acting force. Wherein the second direction Y is perpendicular to the first direction X.
When the rotating device 100 is used, firstly, the product 200 is installed on the connecting member 24, then the moving driving member 31 drives the second plate 35 to move in the direction opposite to the first direction X, the positioning block 242 is arranged in the first positioning hole 331, and further the positioning block 242 is connected with the second bearing seat 33, and the first plate 25 and the second plate 35 are in contact connection with two ends of the product 200, and then the rotating driving member 23 drives the first connecting shaft 22 to rotate relative to the first bearing seat 21, and further drives the first plate 25 and the connecting member 24 to rotate, and further drives the second bearing seat 33 and the second plate 35 to synchronously rotate along with the first plate 25, and drives the product 200 to rotate together, and then the side surface 201 of the product 200 is polished by matching with external polishing equipment. The end parts of the product 200 are protected by the first plate 25 and the second plate 35, and the product 200 is positioned between the first plate 25 and the second plate 35 conveniently by enabling the first plate 25 and the second plate 35 to rotate synchronously, so that the two ends of the product are prevented from sagging, and the product yield is improved.
It should be understood by those skilled in the art that the above embodiments are only for illustrating the present application and are not to be taken as limiting the present application, and that suitable changes and modifications to the above embodiments are within the scope of the present disclosure as long as they are within the spirit and scope of the present application.

Claims (10)

1. A rotary device for rotating a product, comprising:
a fixed seat;
characterized in that the rotating device further comprises:
the rotating module comprises a connecting piece and a first plate, wherein the connecting piece is connected to the first plate and used for installing the product; and
the mobile module comprises a second plate, the mobile module is provided with a first positioning hole, the mobile module drives the second plate to move towards the first plate, so that the first plate and the second plate are clamped with the product, the connecting piece is arranged in the first positioning hole, the rotary module drives the first plate to rotate, and the second plate and the first plate synchronously rotate to drive the product to rotate through the connecting piece.
2. The rotating device of claim 1, wherein the rotation module further comprises:
a rotary drive member;
the first bearing seat is connected with the fixed seat;
the first connecting shaft is rotatably connected with the first bearing seat, one end of the first connecting shaft is connected with the rotary driving piece, and the other end of the first connecting shaft is connected with the first plate;
the rotary driving part drives the first connecting shaft to drive the first plate to rotate through the first bearing seat.
3. The rotating device of claim 2, wherein the rotation module further comprises:
and the power part is connected with the rotary driving part and is used for driving the rotary driving part to be connected with or separated from the first connecting shaft.
4. The rotating apparatus according to claim 1, wherein the moving module comprises:
the driving member is moved so as to move the driving member,
the connecting plate is connected with the movable driving piece;
the second bearing seat is connected with the second plate, and the first positioning hole is formed in the second bearing seat;
and the second connecting shaft is fixed on the connecting plate, the second connecting shaft is rotatably arranged on the second bearing seat, and the second plate rotates relative to the second connecting shaft through the second bearing seat.
5. The rotary device as claimed in claim 1, wherein the connector comprises a locating block comprising a first portion having a rectangular configuration and a second portion having a spherical configuration.
6. The rotating apparatus according to claim 4, wherein a side of the second plate facing away from the first plate is provided with a second positioning hole, the rotating apparatus further comprising a correction assembly, the correction assembly comprising:
the correction driving piece is connected with the connecting plate;
the correcting rod is connected with the correcting driving piece;
the correcting driving piece drives the correcting rod to extend into the second positioning hole so as to correct the position of the second plate.
7. The rotating device according to claim 4, wherein the fixing base is provided with a sliding rail, the connecting plate is connected with a mounting block, the mounting block is provided with a sliding block, and the sliding block is slidably connected with the sliding rail.
8. The rotary device of claim 1, wherein the first plate comprises a first member and a plurality of second members, the plurality of second members being removably attached to the first member.
9. The rotating device of claim 1, further comprising a support module, the support module comprising:
the supporting driving piece is connected with the fixed seat;
the supporting plate is connected with the supporting driving piece;
the supporting driving piece drives the supporting plate to move towards the product and abut against the product so as to support the product.
10. The rotary device of claim 2, wherein the rotary drive member comprises one of a cylinder and a motor.
CN202122165105.0U 2021-09-08 2021-09-08 Rotating device Active CN216152086U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122165105.0U CN216152086U (en) 2021-09-08 2021-09-08 Rotating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122165105.0U CN216152086U (en) 2021-09-08 2021-09-08 Rotating device

Publications (1)

Publication Number Publication Date
CN216152086U true CN216152086U (en) 2022-04-01

Family

ID=80843761

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122165105.0U Active CN216152086U (en) 2021-09-08 2021-09-08 Rotating device

Country Status (1)

Country Link
CN (1) CN216152086U (en)

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