CN220392281U - Vertical conveying device - Google Patents
Vertical conveying device Download PDFInfo
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- CN220392281U CN220392281U CN202321783923.XU CN202321783923U CN220392281U CN 220392281 U CN220392281 U CN 220392281U CN 202321783923 U CN202321783923 U CN 202321783923U CN 220392281 U CN220392281 U CN 220392281U
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- 238000000576 coating method Methods 0.000 claims description 2
- 238000000034 method Methods 0.000 abstract description 4
- 238000004804 winding Methods 0.000 description 3
- 230000002745 absorbent Effects 0.000 description 1
- 239000002250 absorbent Substances 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 210000000481 breast Anatomy 0.000 description 1
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Abstract
The embodiment of the utility model provides a vertical conveying device, which comprises a frame, a pair of conveying components, a transmission component and a motor, wherein the conveying components are arranged on the frame and comprise support plates, upper support wheels, lower support wheels and a first belt, and a plurality of support plates extending outwards from the first belt are arranged on the first belt; the transmission assembly comprises a driving wheel connected with the motor, a driven wheel connected with the lower riding wheel and a transmission belt sleeved on the driving wheel and the driven wheel; the supporting plates on the conveying components are correspondingly arranged to form a supporting surface for supporting the sheet-shaped products, the driven wheels of the conveying components synchronously rotate and have opposite rotating directions, the occupied area is small due to the fact that the sheet-shaped products are directly and vertically conveyed, meanwhile, the structure enables the sheet-shaped products to be conveyed in a straight state all the time, the state in the conveying process is stable, the sheet-shaped products can be easily entered or transferred at different positions, and good flexibility is achieved.
Description
Technical Field
The present utility model relates to a vertical transport device.
Background
In the production of disposable absorbent articles, such as sanitary napkins, diapers, nursing pads, breast pads and the like, on the one hand, single sheets need to be conveyed, on the other hand, stacks formed by the single sheets need to be conveyed, and in the whole processing or packaging process, height differences can exist between different working sections, and at present, an inclined conveying belt is generally adopted for conveying, and on the one hand, the conveying form needs to be long to form a gentle slope so as to prevent sliding or unexpected falling of the products, and on the other hand, the conveying mode still has difficulty in maintaining the product form in the conveying process, and the stacking disorder of the products is easy to occur.
Disclosure of Invention
Therefore, the utility model provides a vertical conveying device to solve the technical problems.
A vertical conveying device comprises a frame, a pair of conveying components, a transmission component and a motor which are arranged at intervals,
the conveying assembly is arranged on the frame and comprises a support plate which is vertically arranged, an upper support wheel, a lower support wheel and a first belt which is sleeved on the upper support wheel and the lower support wheel and is arranged on two sides of the support plate, and a plurality of support plates which extend outwards from the first belt are arranged on the first belt;
the transmission assembly comprises a driving wheel connected with the motor, a driven wheel connected with the lower riding wheel and a transmission belt sleeved on the driving wheel and the driven wheel;
the supporting plates on the conveying components are correspondingly arranged, a supporting surface for supporting sheet products is formed, and the driven wheels of the conveying components synchronously rotate and the rotation directions are opposite.
Wherein, the interval between a pair of conveying components is adjustable.
The vertical conveying device comprises a frame, a pair of conveying components, a left conveying component, a right conveying component, an adjusting component and a driving device, wherein the conveying components comprise a left conveying component and a right conveying component, the adjusting component is used for adjusting the distance between the left conveying component and the right conveying component, the adjusting component comprises a guide rail arranged on the frame, a sliding block arranged on a support plate and matched with the guide rail, and the driving device is used for driving the left conveying component and/or the right conveying component to move.
The driving wheel comprises a first driven wheel connected with the left conveying assembly and a second driven wheel connected with the right conveying assembly, the driving wheel is arranged between the first driven wheel and the second driven wheel, and the driving belt comprises a first driving belt wound on the driving wheel and the first driven wheel and a second driving belt wound on the driving wheel and the second driven wheel.
The first driven wheel and the second driven wheel are also provided with a guide wheel group formed by a plurality of guide wheels, the guide wheel group comprises at least three guide wheels which are arranged around the first driven wheel or the second driven wheel, a first transmission belt is wound around two guide wheels and the first driven wheel to form a first C-shaped section, and a second transmission belt is wound around the other two guide wheels and the second driven wheel to form a second C-shaped section.
The guide wheel set surrounding the periphery of the first driven wheel comprises a first guide wheel, a second guide wheel and a third guide wheel, wherein the first guide wheel is arranged on the upper right side of the first driven wheel, the second guide wheel is arranged on the upper left side of the first driven wheel, the third guide wheel is arranged on the lower left side of the first driven wheel, a first C-shaped section is formed by winding a first transmission belt arranged among the second guide wheel, the first driven wheel and the third guide wheel, and the coating angle of the first C-shaped section to the first driven wheel is larger than or equal to 120 degrees.
The heights of the first guide wheel and the second guide wheel in the vertical direction are equal.
The heights of the axes of the first driven wheel, the driving wheel and the second driven wheel in the vertical direction are equal.
The machine frame also comprises a front side plate and a rear side plate, wherein the guide rails are provided with a pair of guide rails which are respectively arranged on the front side plate and the rear side plate, and the front side plate also comprises a middle conveying opening for allowing sheet products to enter the supporting surface from the middle conveying opening or to be transferred out of the supporting surface from the middle conveying opening.
The left conveying assembly and the right conveying assembly also comprise a sorting plate parallel to the vertical direction.
The beneficial effects are that: the embodiment of the utility model provides a vertical conveying device, which comprises a frame, a pair of conveying components, a transmission component and a motor, wherein the conveying components are arranged at intervals, the conveying components are arranged on the frame and comprise support plates which are vertically arranged, an upper support wheel, a lower support wheel and a first belt which is sleeved on the upper support wheel and the lower support wheel are arranged on two sides of the support plates, and a plurality of support plates which extend outwards from the first belt are arranged on the first belt; the transmission assembly comprises a driving wheel connected with the motor, a driven wheel connected with the lower riding wheel and a transmission belt sleeved on the driving wheel and the driven wheel; the supporting plates on the conveying components are correspondingly arranged to form a supporting surface for supporting the sheet-shaped products, the driven wheels of the conveying components synchronously rotate and rotate in opposite directions, the occupied area is small due to the fact that the sheet-shaped products are directly and vertically conveyed, meanwhile, the structure enables the sheet-shaped products to be conveyed in a straight state all the time, therefore, the state in the conveying process is stable, the sheet-shaped products can be easily entered or transferred at different positions, and good flexibility is achieved.
Drawings
FIG. 1 is a schematic view of a vertical transport apparatus according to an embodiment of the present utility model;
FIG. 2 is a front view of FIG. 1;
FIG. 3 is a rear view of FIG. 1;
FIG. 4 is a schematic view of the upper left view of FIG. 1;
fig. 5 is a schematic diagram of a right side transport assembly.
Illustration of the elements:
a frame 10; a front side plate 11; a middle conveying port 111; a rear side plate 12; a finishing plate 13; a left side transport assembly 20; a support plate 21; a lower riding wheel 22; an upper riding wheel 23; a first belt 24; a pallet 25; a right side transport assembly 30; a transmission assembly 40; a driving wheel 41; a first driven wheel 421; a second driven wheel 422; a guide roller group 43; a first guide wheel 431; a second idler 432; a third guide wheel 433; a first drive belt 44; a second drive belt 45; a first C-section 441; a second C-section 442; a motor 50; an adjustment assembly 60; a guide rail 61; a slider 62; a screw 63; sheet product 70.
Detailed Description
Referring to fig. 1-2, an embodiment of the present utility model provides a vertical conveying device for conveying a sheet product 70 in a vertical direction, where the vertical conveying device includes a frame 10, a pair of conveying assemblies, a transmission assembly 40 and a motor 50 that are disposed at intervals.
Referring to fig. 3 and 4, the conveying components are oppositely disposed on the frame 10, and include a left conveying component 20 and a right conveying component 30, the left conveying component 20 and the right conveying component 30 have the same structure, and only the left conveying component 20 will be described in detail, and the right conveying component 30 will not be described again.
Specifically, the left conveying assembly 20 comprises a vertically arranged support plate 21, an upper supporting roller 23, a lower supporting roller 22 and a first belt 24 sleeved on the upper supporting roller 23 and the lower supporting roller 22, wherein the upper supporting roller 23 and the lower supporting roller 22 are arranged on two sides of the support plate 21, and a plurality of supporting plates 25 extending outwards from the first belt 24 are arranged on the first belt 24.
It will be appreciated that the plurality of pallets 25 are equally spaced along the extension of the first belt 24 such that when the first belt 24 moves at a uniform velocity, the pallets 25 move at a uniform velocity in the vertical direction in synchronization.
It will be appreciated that the pallet 25 includes a supporting surface, and the first belt 24 includes a vertical connection area in a vertical direction, and the supporting surface is in a horizontal state in the vertical connection area, so that the pallet 25 can support the sheet-like product 70 in a horizontal state.
In this embodiment, a pair of pallets 25 on the conveying assemblies are correspondingly disposed and form a supporting surface for supporting the sheet-like product 70, specifically, the left conveying assembly 20 and the right conveying assembly 30 are disposed at opposite intervals, and the left conveying assembly 20 and the pallets 25 on the right conveying assembly 30 are located at the same position and form a one-to-one correspondence, when the pallets 25 on the left conveying assembly 20 located at a certain height move in the vertical direction, the pallets 25 on the right conveying assembly 30 located at the same height synchronously move in the vertical direction, and the movement in the vertical direction may be vertical upward movement or vertical downward movement, and the correspondingly disposed pallets 25 simultaneously move upward or downward.
The transmission assembly 40 is configured to move the pallets 25 on the left and right conveying assemblies 20 and 30, and specifically, the transmission assembly 40 includes a driving wheel 41 connected to the motor 50, a driven wheel 42 connected to the lower riding wheel 22, and a transmission belt 44 sleeved on the driving wheel 41 and the driven wheel.
It will be appreciated that there are a pair of driven wheels, respectively, a driven wheel connected to the lower roller 22 on the left conveying assembly 20 and a driven wheel connected to the lower roller 22 on the right conveying assembly 30, for convenience of description, the driven wheel 42 connected to the lower roller 22 on the left conveying assembly 20 is referred to as a first driven wheel 421, the driven wheel 42 connected to the lower roller 22 on the right conveying assembly 30 is referred to as a second driven wheel 422, and it will be appreciated that the first driven wheel 421 and the second driven wheel 422 have equal movement speeds and opposite rotation directions, so that the correspondingly disposed pallets 25 can move synchronously.
In this embodiment, the driving wheel 41, the first driven wheel 421, the second driven wheel 422, the first transmission belt 44 disposed between the driving wheel 41 and the first driven wheel 421, and the second transmission belt 45 disposed between the driving wheel 41 and the second driven wheel 422 are disposed in such a manner that the movement directions of the first driven wheel 421 and the second driven wheel 422 are opposite.
In order to make the first driven wheel 421 and the second driven wheel 422 have sufficient wrapping angles, the periphery of the first driven wheel 421 is further provided with a guide wheel group 43 formed by a plurality of guide wheels and the periphery of the second driven wheel 422 is also provided with a guide wheel group formed by a plurality of guide wheels, in this embodiment, the guide wheel group 43 includes three guide wheels surrounding the periphery of the first driven wheel 421, for convenience of description, the three guide wheels are respectively referred to as a first guide wheel 431, a second guide wheel 432 and a third guide wheel 433, wherein the first guide wheel 431 is disposed at the upper right side of the first driven wheel 421, the second guide wheel 432 is disposed at the upper left side of the first driven wheel 421, the third guide wheel 433 is disposed at the lower left side of the first driven wheel 421, the first driving belt 44 is wound from the upper side of the first guide wheel 431 to the upper side of the second guide wheel 432, and then wound from the right side of the first driven wheel 421 to the upper side of the third guide wheel 433, the first driving belt 44 between the second driven wheel 432, the first driven wheel 421 and the third guide wheel 433 forms a first C-shaped section 441, and the first C-shaped section 421 is preferably equal to or more than or equal to or greater than 150 degrees, and preferably equal to or greater than or equal to or greater than 150 degrees.
The guide wheel set is disposed around the second driven wheel 422 and winds the second driving belt 45, it can be understood that the winding direction of the second belt 45 around the second driven wheel 422 is opposite to the winding direction of the first driven wheel 421, the moving direction of the second driving belt 45 is opposite to the moving direction of the first driving belt, the second driving belt 45 winds the second driven wheel 422 through the guide wheel to form a second C-shaped section 442, and the wrapping angle of the second C-shaped section 442 on the second driven wheel 422 is equal to or greater than 120 ° or further equal to or greater than 150 ° or further greater than 180 °.
Further, the first guide wheel 431 and the second guide wheel 432 have the same height in the vertical direction.
Further, the axes of the driving wheel 41, the first driven wheel 421, and the second driven wheel 422 are equal in height in the vertical direction.
Further, the first guide wheel 431, the second guide wheel 432 and the third guide wheel 433 are all adjustably disposed to accommodate different spacing between the left side conveying assembly 20 and the right side conveying assembly 30.
It will be appreciated that the motor 50 is connected to the drive wheel 41 via a first drive belt 44 and is adapted to drive the movement of the drive wheel 41.
Further, the distance between the left side conveying assembly 20 and the right side conveying assembly 30 is adjustable, and in particular, the vertical conveying device further includes an adjusting assembly 60 for adjusting the distance between the left side conveying assembly 20 and the right side conveying assembly 30.
In this embodiment, the adjusting assembly 60 includes a guide rail 61 disposed on the frame 10, a slider 62 disposed on the support plate 21 and matched with the guide rail 61, and a driving device for driving the left conveying assembly 20 and/or the right conveying assembly 30 to move, specifically, the driving device is a screw 63 nut device, where a nut is disposed on the support of the left conveying assembly 20, a screw 63 is inserted into the nut, and when the screw 63 rotates to drive the support plate 21 to move along the slider 62 along the direction defined by the guide rail 61, thereby adjusting the space between the left conveying assembly 20 and the right conveying assembly 30, and thus adjusting the space between the support plates 25, so as to adapt to different sheet products 70.
Further, the frame 10 further includes a front side plate 11 and a rear side plate 12, wherein the pair of guide rails 61 are respectively disposed on the front side plate 11 and the rear side plate 12.
Further, the front side plate 11 further includes a middle conveying opening 111, the middle conveying opening 111 is rectangular, and the sheet product 70 can enter the supporting surface from the middle conveying opening 111 or be transferred from the supporting surface to the vertical conveying device from the middle conveying opening 111.
Further, the left conveying assembly 20 and the right conveying assembly 30 further include a sorting plate 13 parallel to the vertical direction, when the sheet products 70 are stacked, one end surface of the stack of the sheet products 70 may be attached to the sorting plate 13 during the vertical movement, so as to sort and planarize the end surface of the stack of the sheet products 70, and it is understood that the sorting plate 13 includes an abutting surface, the abutting surface includes a length direction, and the length direction of the abutting surface is parallel to the movement direction of the sheet products 70.
It will be appreciated that in the vertical conveyor of the embodiment shown, the sheet products 70 may also enter from the upper side of the stack of conveyor assemblies, where the sheet products 70 are held in place by the stack of trays 25 and, when moving to the central conveyor opening 111, the sheet products 70 may be transferred out of the vertical conveyor by a pusher mechanism or other conveyor, although it is also possible that the sheet products 70 move along with the trays 25 to the lower end of the conveyor assemblies, as the first belt 24 rotates the trays 25, the pair of trays 25 move in opposite directions at the lower end and open so that the sheet products 70 held between the pair of trays 25 lose the holding surfaces and drop to a predetermined position.
It will be appreciated that the vertical conveyor may also convey the sheet product 70 from below to above to the central conveying opening 111 or top.
In addition, the vertical conveying device may be configured to convey the sheet-like product 70 to the lower end or the upper end by entering the sheet-like product 70 through the intermediate conveying port 111.
The foregoing description is only of embodiments of the present utility model, and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes using the descriptions and the drawings of the present utility model or directly or indirectly applied to other related technical fields are included in the scope of the present utility model.
Claims (10)
1. A vertical conveying device comprises a frame, a pair of conveying components, a transmission component and a motor which are arranged at intervals, and is characterized in that,
the conveying assembly is arranged on the frame and comprises a support plate which is vertically arranged, an upper support wheel, a lower support wheel and a first belt which is sleeved on the upper support wheel and the lower support wheel and is arranged on two sides of the support plate, and a plurality of support plates which extend outwards from the first belt are arranged on the first belt;
the transmission assembly comprises a driving wheel connected with the motor, a driven wheel connected with the lower riding wheel and a transmission belt sleeved on the driving wheel and the driven wheel;
the supporting plates on the conveying components are correspondingly arranged, a supporting surface for supporting sheet products is formed, and the driven wheels of the conveying components synchronously rotate and the rotation directions are opposite.
2. The vertical transport apparatus of claim 1, wherein a spacing between a pair of said transport assemblies is adjustable.
3. The vertical conveying device according to claim 2, wherein the pair of conveying components comprises a left conveying component and a right conveying component, the vertical conveying device further comprises an adjusting component for adjusting the distance between the left conveying component and the right conveying component, and the adjusting component comprises a guide rail arranged on the frame, a sliding block arranged on the support plate and matched with the guide rail, and a driving device for driving the left conveying component and/or the right conveying component to move.
4. The vertical conveying device according to claim 3, wherein the driven wheel comprises a first driven wheel connected with the left conveying component and a second driven wheel connected with the right conveying component, the driving wheel is arranged between the first driven wheel and the second driven wheel, and the driving belt comprises a first driving belt wound on the driving wheel and the first driven wheel and a second driving belt wound on the driving wheel and the second driven wheel.
5. The vertical conveying device according to claim 4, wherein the peripheries of the first driven wheel and the second driven wheel are further provided with a guide wheel set formed by a plurality of guide wheels, the guide wheel set comprises at least three guide wheels surrounding the periphery of the first driven wheel or the second driven wheel, the first transmission belt is wound around two guide wheels and the first driven wheel to form a first C-shaped section, and the second transmission belt is wound around the other two guide wheels and the second driven wheel to form a second C-shaped section.
6. The vertical conveying device according to claim 5, wherein the guide wheel set surrounding the periphery of the first driven wheel comprises a first guide wheel, a second guide wheel and a third guide wheel, wherein the first guide wheel is arranged at the upper right side of the first driven wheel, the second guide wheel is arranged at the upper left side of the first driven wheel, the third guide wheel is arranged at the lower left side of the first driven wheel, a first transmission belt wound among the second guide wheel, the first driven wheel and the third guide wheel forms a first C-shaped section, and a coating angle of the first C-shaped section to the first driven wheel is more than or equal to 120 degrees.
7. The vertical transport apparatus of claim 6, wherein the first guide wheel and the second guide wheel are vertically equal in height.
8. The vertical transport apparatus according to claim 6, wherein the axes of the first driven wheel, the driving wheel, and the second driven wheel are equal in height in the vertical direction.
9. The vertical transport apparatus of claim 6, wherein the frame further comprises a front side plate and a rear side plate, wherein the pair of guide rails are disposed on the front side plate and the rear side plate, respectively, and the front side plate further comprises a middle transport opening for allowing the sheet-like product to enter the supporting surface from the middle transport opening or to be transferred from the middle transport opening to the supporting surface.
10. The vertical transport apparatus of claim 6, wherein the left side transport assembly and the right side transport assembly further comprise a collating plate disposed therebetween and parallel to the vertical direction.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321783923.XU CN220392281U (en) | 2023-07-09 | 2023-07-09 | Vertical conveying device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321783923.XU CN220392281U (en) | 2023-07-09 | 2023-07-09 | Vertical conveying device |
Publications (1)
Publication Number | Publication Date |
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CN220392281U true CN220392281U (en) | 2024-01-26 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202321783923.XU Active CN220392281U (en) | 2023-07-09 | 2023-07-09 | Vertical conveying device |
Country Status (1)
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CN (1) | CN220392281U (en) |
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2023
- 2023-07-09 CN CN202321783923.XU patent/CN220392281U/en active Active
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