Automatic water-absorbing pad conveying device
Through the cooperation of the conveying component, the guiding component, the pushing component, the toggling component and the vibration component, the problem of uneven conveying of the absorbent pad during the conversion process is solved, and the flatness of the absorbent pad and the conveying effect are improved.
Patent Information
- Application Number
- CN202511093795.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-06
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-08-06
AI Technical Summary
During the process of converting the absorbent pad from a horizontal state to a vertical state, the friction between the absorbent pads causes uneven transportation, affecting the subsequent packaging effect.
The conveying component, guiding component, pushing component, toggling component and vibration component are coordinated to ensure that the absorbent pad remains aligned and flat during the conversion process through limiting, guiding, pushing and vibrating.
The flatness and conveying effect of the absorbent pad are improved, the upper and lower misalignment is reduced, and the smooth progress of subsequent packaging is ensured.
Smart Images

Figure CN120589257B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of water-absorbent pad production, in particular to an automatic conveying device for water-absorbent pads. Background Art
[0002] Absorbent mats are a material with strong water absorption capacity and are widely used in medical, daily life and food packaging. In hospitals or home care environments, absorbent mats can be used to protect mattresses and furniture from damage by urine, sweat or other liquids; in household cleaning, absorbent mats can be used as wiping cloths; in food packaging, absorbent mats are used for meat, fruit and vegetable packaging to absorb blood and juice.
[0003] Generally, a composite processing method is used to produce long strips of absorbent mats. These strips are then cut into pieces, and then conveyed to the packaging station by a conveyor. During the conveying process, the newly cut absorbent mats are transported horizontally and evenly spaced. A maple wheel is required to convert the horizontal absorbent mats to a vertical state and transport them in rows by a subsequent conveyor belt to facilitate subsequent packaging. However, during the conversion process, the absorbent mats being converted will come into contact with the already converted absorbent mats. Due to the friction between the absorbent mats, some of the absorbent mats being converted will be pushed backward by the subsequent absorbent mats before they have completely fallen onto the subsequent conveyor belt. This causes the absorbent mats to be unevenly transported throughout the row, affecting subsequent packaging. The conveying effect is less than ideal and needs further improvement. Summary of the Invention
[0004] In order to solve the above problems, the present invention provides an automatic conveying device for absorbent pads, including a base, on which conveying unit 1, conveying unit 2 and conveying unit 3 are installed from left to right, and drive motor 2 is also installed on the base.
[0005] The second conveying unit includes a conveying component installed on the base for implementing upper and lower limit conveying of the absorbent pad and a guiding component for guiding and aligning the front and rear sides of the absorbent pad. A maple wheel that is symmetrical front and back and used to convert the absorbent pad from a horizontal state to a vertical state is rotatably installed on the base. A downward pushing component for assisting the absorbent pad to move downward is installed at the right end of the conveying component.
[0006] The conveying unit three includes a shell fixedly mounted on the base and located on the right side of the central axis of the maple impeller, the right end of the maple impeller is located in the shell, a conveyor belt two is installed on the shell, a guide plate two is fixedly mounted on the top of the shell and is symmetrically distributed about the conveyor belt two in front and back, a plurality of groups of toggling components distributed left and right and used to toggle the absorbent pad left and right are installed on the shell, and a vibration component that causes the conveyor belt two to vibrate locally up and down as the toggling component is toggled left and right and a driving component that drives the toggling component to slide left and right are installed inside the shell.
[0007] In one possible implementation, the conveying unit includes a conveyor belt installed on the top of the base, and a fixed plate 1 is fixedly installed on the top of the conveyor belt frame, which is symmetrically distributed in front and behind the conveyor belt 1. The opposite sides of the front and rear fixed plates 1 are fixedly installed with guide plates 1 located above the conveyor belt 1 and used to guide and align the front and rear sides of the absorbent pad. The left ends of the front and rear guide plates 1 form a trumpet-shaped structure with the large end facing left.
[0008] In one possible implementation, the conveying assembly includes a lower conveyor belt installed on the top of the base and located on the right side of conveyor belt one. The top of the base is also fixedly mounted with a support frame one located on the lower conveyor belt. The support frame one is mounted with an upper conveyor belt located directly above the lower conveyor belt. The gap between the lower conveyor belt and the upper conveyor belt is equal to the thickness of the absorbent pad. The lower conveyor belt and support frame one are connected by a flat gear set. The conveying shaft of the drive motor two is connected to the lower conveyor belt. The right end of the upper conveyor belt extends to the upper right of the maple wheel.
[0009] In one possible implementation, the guide assembly includes a second support frame fixedly mounted on the top of the base and symmetrically distributed front to back about the lower conveyor belt. A vertical conveyor belt is mounted on the top of the second support frame. The guide assembly is connected to the lower conveyor belt through a bevel gear set. The vertical conveyor belt and the lower conveyor belt are perpendicular to each other and the middle of the vertical conveyor belt is at the same height as the gap between the lower conveyor belt and the upper conveyor belt.
[0010] In one possible implementation, the push-down assembly includes a support frame three fixedly connected to the top right side of the guide plate two, and two push wheels located on the outside of the maple leaf wheel are rotatably connected between the front and rear support frames three. The push wheels are located below the upper conveyor belt, and the distances between the two push wheels and the center axis of the maple leaf wheel are equal. The two push wheels are connected by a belt transmission, and one of the push wheels is connected to the upper conveyor belt by a belt transmission.
[0011] In one possible implementation, the left end of the second conveyor belt is located between the front and rear maple impellers, and the top of the second conveyor belt is at the same height as the central axis of the maple impeller. The central axis of the maple impeller is located directly below the right end of the lower conveyor belt, and the top of the maple impeller is at the same height as the bottom of the upper conveyor belt. The front and rear maple impellers are coaxially fixedly connected, and the maple impeller is connected to the output shaft of the second drive motor via a belt.
[0012] In one possible implementation, the toggle assembly includes a window opened on the guide plate 2, and the two windows in the same group are staggered left and right. A movable plate is installed inside the window for sliding left and right. The side of the movable plate close to the conveyor belt 2 is fixedly connected to a plurality of rubber toggle plates equidistantly distributed left and right. The side of the movable plate away from the conveyor belt 2 is fixedly connected to a linkage plate. The linkage plate is connected to the shell for sliding left and right. The inside of the shell is rotatably connected to a gear 1 located below the conveyor belt 2. The front and rear sides of the gear 1 are meshed with a rack 1. The bottom end of the linkage plate passes through the interior of the shell and is fixedly connected to the top of the rack 1. The rack 1 is installed inside the shell for sliding left and right.
[0013] In one possible implementation, the vibration assembly includes a fixed beam fixedly connected to the inner wall of the shell and passing through the front and rear sides of the second conveyor belt, the middle part of the fixed beam slides up and down and passes through a T-shaped knocking rod located below the top of the second conveyor belt, the bottom of the T-shaped knocking rod is fixedly connected to a concave frame, a reset spring mounted on the outside of the T-shaped knocking rod is fixedly connected between the bottom of the fixed beam and the top of the concave frame, the top of the rack one is fixedly connected to a corrugated plate, and the vertical section of the concave frame cooperates with the top of the corresponding corrugated plate.
[0014] In one possible implementation, the drive assembly includes a drive motor 1 fixedly mounted inside the shell, the top of the output shaft of the drive motor 1 is coaxially fixedly connected to a turntable, the top of the gear 1 is coaxially fixedly connected to a gear 2, the front sides of several gears 1 are commonly engaged with a rack 2, the rack 2 is mounted inside the shell for left and right sliding, and a linkage rod is hinged between the edge of the top of the turntable and the left end of the rack 2.
[0015] The beneficial effects of the present invention are as follows: 1. The present invention aligns the absorbent mat front to back and top to bottom through the mutual cooperation of the conveying assembly, the guiding assembly, and the pushing assembly. When the conveying assembly conveys the absorbent mat to the right, the guiding assembly is used to guide and limit the front and back sides of the absorbent mat to avoid the absorbent mat from being uneven front to back. When the maple wheel converts the absorbent mat from a horizontal to a vertical state, the pushing assembly is used to help push the absorbent mat downward, which preliminarily reduces the absorbent mat from being uneven up and down due to the influence of the friction force of the absorbent mat on the right side, thereby improving the flatness of the absorbent mat during transportation.
[0016] 2. The present invention levels the absorbent mat up and down through the cooperation of the second guide plate, the shifting assembly and the vibration assembly. When the second conveyor belt conveys the absorbent mat in a vertical state to the right, the second guide plate limits the front and rear sides of the absorbent mat, and the shifting assembly is used to shift the front and rear sides of the absorbent mat alternately left and right. The vibration assembly is then used to vibrate the second conveyor belt locally. The coordination of lateral shifting and vibration prompts the absorbent mat to adjust its position, thereby improving the flatness of the absorbent mat during transportation.
[0017] 3. In addition to previously using a push wheel to help the absorbent mat move downward so that the absorbent mat effectively falls onto the second conveyor belt, the present invention can use a moderate lateral force to prompt the absorbent mat to rearrange itself in the left and right directions, so that the absorbent mat adjusts itself to a more orderly state, thereby improving the upper and lower flatness of the absorbent mat.
[0018] 4. The present invention vibrates two parts of the conveyor belt while shifting the absorbent pad laterally. The vibration can generate the necessary relative movement between the absorbent pads, and the lateral shifting can provide a directional guide for the absorbent pads, making it easier for the absorbent pads to be arranged in a desired manner. By utilizing gravity and the slight movement between the absorbent pads, the absorbent pads can adjust themselves to a more orderly state, reducing the upper and lower misalignment, and further improving the leveling effect of the absorbent pads. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0020] Figure 2 It is a partial cross-sectional view of the present invention.
[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the guide assembly of the present invention.
[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the push-down assembly of the present invention.
[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the conveying unit three of the present invention.
[0024] Figure 6 It is a left side sectional view of the vibration assembly of the present invention.
[0025] Figure 7 It is a schematic diagram of the three-dimensional structure of the drive assembly of the present invention.
[0026] In the figure: 1, base; 2, conveying unit 1; 21, conveyor belt 1; 22, fixed plate 1; 23, guide plate 1; 3, conveying unit 2; 31, conveying assembly; 311, lower conveyor belt; 312, support frame 1; 313, upper conveyor belt; 32, guide assembly; 321, support frame 2; 322, vertical conveyor belt; 33, maple wheel; 34, push assembly; 341, support frame 3; 342, push wheel; 4, conveying unit 3; 41, housing; 42, conveyor belt 2; 43, guide Guide plate 2; 44. Toggle assembly; 441. Window; 442. Movable plate; 443. Rubber toggle piece; 444. Linkage plate; 445. Gear 1; 446. Rack 1; 45. Vibration assembly; 451. Fixed beam; 452. T-shaped knocking rod; 453. Concave frame; 454. Return spring; 455. Corrugated plate; 46. Drive assembly; 461. Drive motor 1; 462. Turntable; 463. Gear 2; 464. Rack 2; 465. Linkage rod; 5. Drive motor 2. DETAILED DESCRIPTION
[0027] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described below, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0028] See also Figure 1 and Figure 2 An automatic conveying device for absorbent pads includes a base 1, on which a conveying unit 1 2, a conveying unit 2 3 and a conveying unit 3 4 are installed from left to right, and a driving motor 2 5 is also installed.
[0029] See also Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The conveying unit 2 3 includes a conveying assembly 31 installed on the base 1 for implementing upper and lower limit conveying of the absorbent mat and a guide assembly 32 for guiding and aligning the front and rear sides of the absorbent mat. A maple wheel 33 that is symmetrical front and back and used to convert the absorbent mat from a horizontal state to a vertical state is rotatably installed on the base 1. A downward pushing assembly 34 for assisting the absorbent mat to move downward is installed at the right end of the conveying assembly 31.
[0030] See also Figure 1 、 Figure 2 、 Figure 5 and Figure 6The conveying unit three 4 includes a shell 41 fixedly mounted on the base 1 and located on the right side of the central axis of the maple impeller 33. The right end of the maple impeller 33 is located in the shell 41. A conveyor belt two 42 is installed on the shell 41. A guide plate two 43 symmetrically distributed about the conveyor belt two 42 is fixedly mounted on the top of the shell 41. Several groups of toggling components 44 distributed left and right and used to toggle the absorbent pad left and right are installed on the shell 41. A vibration component 45 is installed inside the shell 41. As the toggling component 44 is toggled left and right, the conveyor belt two 42 is locally vibrated up and down, and a driving component 46 is installed to drive the toggling component 44 to slide left and right.
[0031] See also Figure 1 and Figure 2 The conveying unit 2 includes a conveyor belt 21 installed on the top of the base 1. A fixed plate 22 is fixedly installed on the top of the conveyor belt 21 frame and is symmetrically distributed in front and behind the conveyor belt 21. Guide plates 23 are fixedly installed on opposite sides of the front and rear fixed plates 22. The guide plates are located above the conveyor belt 21 and are used to guide and align the front and rear sides of the absorbent pad. The left ends of the front and rear guide plates 23 form a trumpet-shaped structure with the large end facing left.
[0032] The slit absorbent pad is conveyed to the right by a conveyor belt 21. During the conveying process, a guide plate 23 is used to guide and limit the front and rear sides of the absorbent pad to prevent the absorbent pad from being offset front and back during the conveying process, so that the front and rear sides of the absorbent pad are kept aligned.
[0033] See also Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The conveying assembly 31 includes a lower conveyor belt 311 installed on the top of the base 1 and located on the right side of the conveyor belt 21. A support frame 312 located on the lower conveyor belt 311 is also fixedly installed on the top of the base 1. An upper conveyor belt 313 located directly above the lower conveyor belt 311 is installed on the support frame 312. The gap between the lower conveyor belt 311 and the upper conveyor belt 313 is equal to the thickness of the absorbent pad. The lower conveyor belt 311 and the support frame 312 are connected by a flat gear set. The conveying shaft of the drive motor 2 5 is connected to the lower conveyor belt 311. The right end of the upper conveyor belt 313 extends to the upper right of the maple wheel 33. The width of the lower conveyor belt 311 and the upper conveyor belt 313 is the same and smaller than the width of the absorbent pad.
[0034] The lower conveyor belt 311 is driven to rotate by the driving motor 2 5, and the lower conveyor belt 311 drives the upper conveyor belt 313 to rotate through the flat gear set, so that the lower conveyor belt 311 and the upper conveyor belt 313 rotate towards each other, and the conveyor belt 1 21 conveys the absorbent mat to between the lower conveyor belt 311 and the upper conveyor belt 313, and the front and rear ends of the absorbent mat are exposed to the outside of the lower conveyor belt 311. The lower conveyor belt 311 and the upper conveyor belt 313 are used together to stably convey the absorbent mat to the right to prevent the absorbent mat from falling from the lower conveyor belt 311.
[0035] See also Figure 1 、 Figure 2 and Figure 3 The guide assembly 32 includes a second support frame 321 fixedly mounted on the top of the base 1 and symmetrically distributed front to back about the lower conveyor belt 311. A vertical conveyor belt 322 is installed on the top of the second support frame 321. The guide assembly 32 is connected to the lower conveyor belt 311 through a bevel gear set. The vertical conveyor belt 322 and the lower conveyor belt 311 are perpendicular to each other, and the middle of the vertical conveyor belt 322 is at the same height as the gap between the lower conveyor belt 311 and the upper conveyor belt 313.
[0036] When the lower conveyor belt 311 and the upper conveyor belt 313 convey the absorbent mat to the right, the lower conveyor belt 311 drives the vertical conveyor belt 322 to rotate synchronously through the bevel gear set. The vertical conveyor belt 322 is used to guide and limit the front and rear sides of the absorbent mat to prevent the absorbent mat from being offset forward and backward, so that the front and rear sides of the absorbent mat are kept aligned, and at the same time, it also assists in conveying the absorbent mat to the right.
[0037] See also Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The push-down assembly 34 includes a support frame 341 fixedly connected to the top right side of the guide plate 2 43, and two pushing wheels 342 located on the outside of the maple leaf wheel 33 are rotatably connected between the front and rear support frames 341. The pushing wheels 342 are located below the upper conveyor belt 313, and the distances between the two pushing wheels 342 and the central axis of the maple leaf wheel 33 are equal. The two pushing wheels 342 are connected by a belt transmission, and one of the pushing wheels 342 is connected to the upper conveyor belt 313 by a belt transmission.
[0038] See also Figure 2 and Figure 4 The left end of conveyor belt 2 42 is located between the front and rear maple impellers 33, and the top of conveyor belt 2 42 is at the same height as the central axis of the maple impeller 33. The central axis of the maple impeller 33 is located directly below the right end of the lower conveyor belt 311, and the top of the maple impeller 33 is at the same height as the bottom of the upper conveyor belt 313. The front and rear maple impellers 33 are coaxially fixedly connected, and the maple impeller 33 is connected to the output shaft of the drive motor 2 5 through a belt.
[0039] Please refer to Figure 1 , Figure 2 and Figure 4 , the lower conveying belt 311 conveys the water absorption pad to the right between the adjacent blades of the maple leaf wheel 33, at this time the maple leaf wheel 33 rotates clockwise and drives the water absorption pad to rotate from the horizontal state to the vertical state, after the water absorption pad is rotated to the vertical state, the conveying belt two 42 is supported at the bottom of the water absorption pad, so that the maple leaf wheel 33 places the water absorption pad vertically on the conveying belt two 42, in the process of rotation, the outer side of the water absorption pad will be in contact with the lower side of the push wheel 342, the upper conveying belt 313 drives the push wheel 342 to rotate counterclockwise, so that the push wheel 342 gives the water absorption pad a downward thrust, helping the water absorption pad to move downward, reducing the situation that the water absorption pad fails to fall completely onto the conveying belt two 42 due to the friction resistance of the right water absorption pad during the conversion process, avoiding the large upward protrusion of the paper.
[0040] Please refer to Figure 5 , Figure 6 and Figure 7 , the dialing assembly 44 includes a window 441 opened on the guide plate two 43, the two windows 441 of the same group are staggered left and right, the inside of the window 441 is slidably installed with a movable plate 442, the side close to the conveying belt two 42 of the movable plate 442 is fixedly connected with a plurality of rubber dialing pieces 443 distributed equidistantly left and right, the side away from the conveying belt two 42 of the movable plate 442 is fixedly connected with a linkage plate 444, the linkage plate 444 is slidably connected with the shell 41, the inside of the shell 41 is rotatably connected with a gear one 445 below the conveying belt two 42, the front and rear sides of the gear one 445 are engaged with a rack one 446, the bottom end of the linkage plate 444 penetrates to the inside of the shell 41 and is fixedly connected with the top of the rack one 446, the rack one 446 is slidably installed in the inside of the shell 41, and the conveying belt two 42 is detachably installed with a baffle for blocking and supporting the rightmost water absorption pad, so that the rightmost water absorption pad remains in a vertical state. It should be noted that the number of dialing assemblies 44 can be set according to the length of the conveying belt two 42 and production needs, and the number of dialing assemblies 44 is at least two, and the distance between adjacent dialing assemblies 44 is adjusted according to needs.
[0041] The absorbent pad is slowly conveyed to the right by the conveyor belt 2 42. When the absorbent pad is conveyed to the window 441, the drive assembly 46 drives the gear 1 445 to rotate back and forth, and then the gear 1 445 drives the rack 1 446 to slide back and forth left and right. The rack 1 446 drives the movable plate 442 and the rubber paddle 443 to move back and forth left and right through the linkage plate 444, and the rubber paddle 443 is used to paddle the pile of absorbent pads on the conveyor belt 2 42 sideways. On the basis that the absorbent pad has been pushed downward by the push wheel 342 so that the absorbent pad can effectively fall onto the conveyor belt 2 42, there may still be some absorbent pads with a small upward protrusion. At this time, the absorbent pad can be rearranged along the side direction (i.e., the left and right direction) through moderate lateral force, so that the absorbent pad adjusts itself to a more neat state, thereby improving the upper and lower flatness of the absorbent pad. The rubber moving pieces 443 on the movable plates 442 staggered on the left and right sides can alternately move the front and back sides of the absorbent pad, which is beneficial for leveling the absorbent pad multiple times.
[0042] See also Figure 2 、 Figure 5 、 Figure 6 and Figure 7 The vibration assembly 45 includes a fixed beam 451 fixedly connected to the inner wall of the shell 41 and passing through the front and rear sides of the conveyor belt 2 42. The middle part of the fixed beam 451 slides up and down and passes through a T-shaped knocking rod 452 located below the top of the conveyor belt 2 42. The bottom of the T-shaped knocking rod 452 is fixedly connected with a concave frame 453. A return spring 454 is fixedly connected between the bottom of the fixed beam 451 and the top of the concave frame 453 and is sleeved on the outside of the T-shaped knocking rod 452. The top of the rack 1 446 is fixedly connected with a corrugated plate 455. The vertical section of the concave frame 453 cooperates with the top of the corresponding corrugated plate 455.
[0043] The cam 453 is then pushed back to the vertical position by the spring 454, and the cam 453 is pushed back to the vertical position by the spring 454, so that the cam 453 is pushed back to the vertical position by the spring 454.
[0044] See also Figure 6 and Figure 7 The driving assembly 46 includes a driving motor 1 461 fixedly installed inside the shell 41, and a turntable 462 is coaxially fixedly connected to the top of the output shaft of the driving motor 1 461. A gear 2 463 is coaxially fixedly connected to the top of the gear 1 445. The front sides of several gears 1 445 are commonly engaged with a rack 2 464. The rack 2 464 is installed inside the shell 41 for left and right sliding. A linkage rod 465 is hinged between the edge of the top of the turntable 462 and the left end of the rack 2 464.
[0045] The turntable 462 is driven to rotate by driving motor 1 461, and then the turntable 462 drives rack 2 464 to move back and forth left and right through the linkage rod 465, and the rack 2 464 drives the two gears 2 463 to rotate back and forth, and the gear 2 463 drives the corresponding gear 1 445 to rotate back and forth, thereby realizing the left and right reciprocating drive of rack 1 446.
[0046] In the description of the present invention, it should also be noted that, unless otherwise expressly specified or limited, the terms "disposed," "connected," "installed," and "connected" should be understood in a broad sense. For example, they may refer to fixed or detachable connections, integral or sliding connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0047] The embodiments of this specific implementation method are all preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the scope of protection of the present invention.
Claims
1. An automatic conveying device for absorbent pads, comprising a base, characterized in that: The base is provided with a second conveying unit and a third conveying unit from left to right. The second conveying unit includes a conveying assembly mounted on a base for conveying the absorbent mat up and down and a guiding assembly for guiding and aligning the front and rear sides of the absorbent mat. A maple wheel symmetrically mounted on the base for converting the absorbent mat from a horizontal state to a vertical state is rotatably mounted. A downward pushing assembly for assisting the downward movement of the absorbent mat is mounted on the right end of the conveying assembly. The push-down assembly includes two push wheels that are rotatably arranged and located outside the maple impeller. The two push wheels are equidistant from the central axis of the maple impeller, and the push wheels rotate in opposite directions to the maple impeller. The conveying unit 3 includes a conveyor belt 2 located on the right side of the central axis of the maple impeller, a shifting assembly for shifting the absorbent pad left and right, and a vibration assembly for causing the conveyor belt 2 to partially vibrate up and down as the shifting assembly shifts left and right; The toggle assembly includes movable plates that are slidably arranged on both sides of the conveyor belt, and the two movable plates are staggered left and right. At the same time, several rubber toggle pieces that are equidistantly distributed left and right are fixedly connected to the opposite sides of the two movable plates.
2. The automatic conveying device for absorbent pads according to claim 1, characterized in that: The base is also provided with a conveying unit 1, which includes a conveyor belt 1 installed on the top of the base, and a fixed plate 1 is fixedly installed on the top of the conveyor belt frame, which is symmetrically distributed in front and behind the conveyor belt 1, and a guide plate 1 is fixedly installed on the opposite sides of the front and rear fixed plates 1, which is located above the conveyor belt 1 and is used to guide and align the front and rear sides of the absorbent pad. The left ends of the front and rear guide plates 1 form a trumpet-shaped structure with the large end facing left.
3. The automatic conveying device for absorbent pads according to claim 2, characterized in that: The conveying assembly includes a lower conveyor belt installed on the top of the base and located on the right side of conveyor belt one. A support frame one located on the lower conveyor belt is also fixedly installed on the top of the base. An upper conveyor belt located directly above the lower conveyor belt is installed on the support frame one. The lower conveyor belt and the support frame one are connected by a flat gear set. The lower conveyor belt is connected to the conveying shaft of the drive motor two installed on the base. The right end of the upper conveyor belt extends to the upper right side of the maple wheel.
4. The automatic conveying device for absorbent pads according to claim 3, characterized in that: The guide assembly includes a second support frame fixedly mounted on the top of the base and symmetrically distributed front to back about the lower conveyor belt. A vertical conveyor belt is mounted on the top of the second support frame. The guide assembly is transmission-connected to the lower conveyor belt through a bevel gear set. The vertical conveyor belt and the lower conveyor belt are perpendicular to each other, and the middle of the vertical conveyor belt is at the same height as the gap between the lower conveyor belt and the upper conveyor belt.
5. The automatic conveying device for absorbent pads according to claim 3, characterized in that: The conveying unit three also includes a shell fixedly mounted on the base and located on the right side of the central axis of the maple impeller. The right end of the maple impeller is located in the shell. The conveyor belt two is mounted on the shell. The top of the shell is fixedly mounted with a guide plate two that is symmetrically distributed front and back with respect to the conveyor belt two.
6. The automatic conveying device for water-absorbent pads according to claim 5, characterized in that: The push-down assembly also includes a support frame three fixedly connected to the top right side of the guide plate two, and a pushing wheel is rotatably connected between the front and rear support frames three. The pushing wheel is located below the upper conveyor belt, and the two pushing wheels are connected by a belt transmission, and one of the pushing wheels is connected to the upper conveyor belt by a belt transmission.
7. The automatic conveying device for water-absorbent pads according to claim 3, characterized in that: The top of the second conveyor belt is at the same height as the central axis of the maple impeller, the central axis of the maple impeller is located directly below the right end of the lower conveyor belt, and the top of the maple impeller is at the same height as the bottom of the upper conveyor belt. The front and rear maple impellers are coaxially fixedly connected, and the maple impeller is connected to the output shaft of the second drive motor through a belt.
8. The automatic conveying device for absorbent pads according to claim 5, characterized in that: The toggle assembly is provided with several groups and distributed left and right; the toggle assembly also includes a window opened on the guide plate 2, and the movable plate is installed inside the corresponding window for sliding left and right. The movable plate is fixedly connected to a linkage plate on the side away from the conveyor belt 2, and the linkage plate is connected to the shell for sliding left and right. The interior of the shell is rotatably connected to a gear 1 located below the conveyor belt 2, and the front and rear sides of the gear 1 are meshed with a rack 1. The bottom end of the linkage plate passes through the interior of the shell and is fixedly connected to the top of the rack 1. The rack 1 is installed inside the shell for sliding left and right.
9. The automatic conveying device for water-absorbent pads according to claim 8, characterized in that: The vibration assembly includes a fixed beam fixedly connected to the inner wall of the shell and passing through the front and rear sides of the second conveyor belt. The middle part of the fixed beam slides up and down and passes through a T-shaped knocking rod located below the top of the second conveyor belt. The bottom of the T-shaped knocking rod is fixedly connected to a concave frame. A reset spring mounted on the outside of the T-shaped knocking rod is fixedly connected between the bottom of the fixed beam and the top of the concave frame. The top of the rack one is fixedly connected to a corrugated plate, and the vertical section of the concave frame cooperates with the top of the corresponding corrugated plate.
10. The automatic conveying device for absorbent pads according to claim 8, characterized in that: A driving assembly for driving the toggle assembly to slide left and right is installed inside the shell, and the driving assembly includes a driving motor 1 fixedly installed inside the shell, the top of the output shaft of the driving motor 1 is coaxially fixedly connected to a turntable, the top of the gear 1 is coaxially fixedly connected to a gear 2, and the front sides of several gears 1 are commonly engaged with a rack 2, and the rack 2 is installed inside the shell to slide left and right, and a linkage rod is hinged between the edge of the top of the turntable and the left end of the rack 2.
Citation Information
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