A device for cutting and conveying the laminations of a plaster

CN224690567UActive Publication Date: 2026-08-28GUIZHOU KANGQI PHARM EQUIP CO LTD
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Patent Information

Application Number
CN202522263705.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-08-28
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0003]本实用新型的目的是提供一种膏药分切后传动叠片装置以解决背景技术中所提及的问题

Benefits of technology

[0010] The beneficial effects of this utility model are as follows: the diced plaster is conveyed to the second transmission mechanism via a conveyor belt on the first transmission mechanism. The conveyor belt of the second transmission mechanism is located below the conveyor belt of the first transmission mechanism, and its conveying speed is slower than that of the first transmission mechanism. When the plaster falls onto the second transmission mechanism, it can be automatically stacked. Moreover, during the conveying process, the plaster passes between the conveyor belt and the rubber-coated roller, and the compression spring is in a compressed state, thereby driving the rubber-coated roller to continuously press against the plaster, preventing the plaster from shifting during the conveying process and improving the conveying accuracy and stability. The pressing component can move left and right via a sliding block and can also rotate around the mounting shaft. After the position is adjusted, it is locked by the first adjustable handle. By rotating the adjustment knob, the relative position of the connecting rod and the spring fixing plate can be adjusted, thereby adjusting the compression amount of the compression spring in the initial state, and thus controlling the pressure applied to the plaster by the rubber-coated roller during the conveying of the plaster. The advantages of this design are: it can automatically stack plaster, has high conveying accuracy and stability, and the pressing component can be used for plasters of different thicknesses and widths, making it highly versatile.

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Abstract

The utility model provides a kind of plaster divides and transmits laminated device after cutting, including first transmission mechanism and second transmission mechanism, first transmission mechanism includes mounting bracket, rotary drive component, conveying belt, adjusting seat, installation shaft pole and compression assembly, rotary drive component is installed on mounting bracket, conveying belt is installed on mounting bracket and is connected with the power output end of rotary drive component, rotary drive component drives conveying belt annular rotation, adjusting seat is fixed on mounting bracket and corresponds to the left and right sides of conveying belt, the left and right ends of installation shaft pole are respectively fixed on the left and right sides of adjusting seat, compression assembly includes sliding block, first adjustable position handle, spring fixed plate, adjusting knob, connecting rod, compression spring, gyro wheel fixed plate, rubber-coated gyro wheel and rotating shaft pole, the advantage of the design is that: it can automatically carry out plaster lamination, the precision and stability of conveying are high, and, compression assembly can adapt to different thickness, width plaster and use, and its versatility is high.
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Description

Technical Field

[0001] This utility model relates to the field of plaster making equipment, and in particular to a plaster cutting and stacking device. Background Technology

[0002] In the production of plasters, the slit plaster sheets need to be systematically conveyed and stacked to facilitate subsequent packaging and storage. In existing technologies, plaster sheet conveying relies heavily on conveyor belts operating at a single speed, making automatic stacking impossible. The stacking process often requires manual adjustment, which is not only inefficient but also prone to uneven stacking due to human error, affecting subsequent processes. Furthermore, in existing transmission devices, plaster sheets are easily displaced on the conveyor belt due to vibration, affecting the stability of the conveying process. Therefore, it is necessary to develop a plaster slitting and stacking device to address these issues. Utility Model Content

[0003] The purpose of this invention is to provide a device for transmitting and stacking plaster pieces after slicing to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A device for stacking and transmitting slices of slit plaster includes a first transmission mechanism and a second transmission mechanism. The first transmission mechanism includes a mounting frame, a rotary drive assembly, a conveyor belt, an adjusting seat, a mounting shaft, and a pressing assembly. The rotary drive assembly is mounted on the mounting frame, and the conveyor belt is mounted on the mounting frame and connected to the power output end of the rotary drive assembly. The rotary drive assembly drives the conveyor belt to rotate in a ring. The adjusting seat is fixed on the mounting frame and corresponds to the left and right sides of the conveyor belt. The left and right ends of the mounting shaft are respectively fixed to the left and right sides of the adjusting seat. The pressing assembly includes a sliding block, a first adjustable handle, a spring fixing plate, an adjusting knob, a connecting rod, a compression spring, a roller fixing plate, a rubber-coated roller, and a rotating shaft. The sliding block is slidably connected to the mounting shaft. The first adjustable handle... The handle is fixed to the sliding block and used to fix the sliding block to the mounting shaft. The front end of the spring fixing plate is fixed to the sliding block. The upper end of the connecting rod passes through the rear end of the spring fixing plate and is threaded to the upper end of the connecting rod for adjustment and rotation. The lower end of the connecting rod is provided with a rotating part. The compression spring is sleeved on the connecting rod and its upper and lower ends contact the lower end face of the spring fixing plate and the rotating part, respectively. The front end of the roller fixing plate is rotatably mounted on the mounting shaft. The rubber-coated roller is rotatably mounted on the rear end of the roller fixing plate. The rotating shaft is fixed in the middle of the roller fixing plate, and the rotating part is rotatably mounted on the rotating shaft. The structure of the second transmission mechanism is the same as that of the first transmission mechanism. The rear end of the conveyor belt of the second transmission mechanism is located below the front end of the conveyor belt of the first transmission mechanism.

[0006] Further description of this utility model: Multiple sets of clamping components are evenly arranged on the mounting shaft.

[0007] Further description of the present invention: The rotary drive assembly includes a rotary motor, a drive roller, a driven roller, and a speed controller. The rotary motor and the speed controller are both fixed on the mounting frame. The speed controller is connected to the rotary motor via a signal. The drive roller and the driven roller are rotatably mounted at the front and rear ends of the mounting frame, respectively. The drive roller is connected to the power output end of the rotary motor. The conveyor belt is wrapped around the outer periphery of the drive roller and the driven roller.

[0008] Further description of this utility model: The adjusting seat includes a first adjusting component, a second adjusting component, an adjusting rod, and an adjusting handwheel. The first adjusting component includes a slide, a rack, an adjusting frame, a gear, and a second adjustable handle. The slide is fixed on the adjusting frame, the rack is fixed above the slide, the lower end of the adjusting frame is slidably connected to the slide, the rack passes through the adjusting frame, the gear is rotatably installed in the adjusting frame and its lower end meshes with the rack, and the second adjustable handle is installed on the adjusting frame. The second adjusting component and the first adjusting component have the same structure and correspond to the left and right sides of the conveyor belt, respectively. The left and right sides of the adjusting rod are fixedly connected to two sets of gears, respectively. The second adjustable handle is used to fix the adjusting frame to the adjusting rod, and the adjusting handwheel is fixed to one end of the adjusting rod.

[0009] Further description of the present invention: It also includes a receiving plate and a baffle plate. The receiving plate is fixed on the second transmission mechanism and corresponds to the front side of the conveyor belt. The lower end of the baffle plate is fixed to the front end of the receiving plate.

[0010] The beneficial effects of this utility model are as follows: the diced plaster is conveyed to the second transmission mechanism via a conveyor belt on the first transmission mechanism. The conveyor belt of the second transmission mechanism is located below the conveyor belt of the first transmission mechanism, and its conveying speed is slower than that of the first transmission mechanism. When the plaster falls onto the second transmission mechanism, it can be automatically stacked. Moreover, during the conveying process, the plaster passes between the conveyor belt and the rubber-coated roller, and the compression spring is in a compressed state, thereby driving the rubber-coated roller to continuously press against the plaster, preventing the plaster from shifting during the conveying process and improving the conveying accuracy and stability. The pressing component can move left and right via a sliding block and can also rotate around the mounting shaft. After the position is adjusted, it is locked by the first adjustable handle. By rotating the adjustment knob, the relative position of the connecting rod and the spring fixing plate can be adjusted, thereby adjusting the compression amount of the compression spring in the initial state, and thus controlling the pressure applied to the plaster by the rubber-coated roller during the conveying of the plaster. The advantages of this design are: it can automatically stack plaster, has high conveying accuracy and stability, and the pressing component can be used for plasters of different thicknesses and widths, making it highly versatile. Attached Figure Description

[0011] Figure 1This is an overall structural diagram of the present invention;

[0012] Figure 2 This is an overall structural diagram of the present invention (rear view).

[0013] Figure 3 This is a structural diagram of the adjusting seat, mounting shaft, and clamping assembly in this utility model;

[0014] Figure 4 This is a structural diagram of the clamping assembly in this utility model;

[0015] Explanation of reference numerals in the attached figures:

[0016] 1. First transmission mechanism; 11. Mounting frame; 12. Rotary drive assembly; 121. Rotary motor; 122. Drive roller; 123. Driven roller; 124. Speed ​​controller; 13. Conveyor belt; 14. Adjusting seat; 141. First adjusting assembly; 1411. Slide table; 1412. Spur rack; 1413. Adjusting frame; 1414. Gear; 1415. Second adjustable handle; 142. Second adjusting assembly; 143. Adjusting rod; 144. Adjusting handwheel; 15. Mounting shaft; 16. Pressing assembly; 161. Sliding block; 162. First adjustable handle; 163. Spring fixing plate; 164. Adjusting knob; 165. Connecting rod; 166. Compression spring; 167. Roller fixing plate; 168. Rubber-coated roller; 169. Rotating shaft; 2. Second transmission mechanism; 3. Receiving plate; 4. Baffle plate. Detailed Implementation

[0017] The present invention will be further described below with reference to the accompanying drawings:

[0018] like Figures 1 to 4As shown, a plaster-slicing and stacking device includes a first transmission mechanism 1 and a second transmission mechanism 2. The first transmission mechanism 1 includes a mounting frame 11, a rotary drive assembly 12, a conveyor belt 13, an adjusting seat 14, a mounting shaft 15, and a pressing assembly 16. The rotary drive assembly 12 is mounted on the mounting frame 11, and the conveyor belt 13 is mounted on the mounting frame 11 and connected to the power output end of the rotary drive assembly 12. The rotary drive assembly 12 drives the conveyor belt 13 to rotate in a ring. The adjusting seat 14 is fixed on the mounting frame 11 and corresponds to the left and right sides of the conveyor belt 13. The left and right ends of the mounting shaft 15 are respectively fixed to the left and right sides of the adjusting seat 14. The pressing assembly 16 includes a sliding block 161, a first adjustable handle 162, a spring fixing plate 163, an adjusting knob 164, a connecting rod 165, a compression spring 166, a roller fixing plate 167, a rubber-coated roller 168, and a rotating shaft 169. The sliding block 161 is slidably connected to the mounting shaft 15. An adjustable handle 162 is fixed on a sliding block 161 and is used to fix the sliding block 161 on a mounting shaft 15. The front end of a spring fixing plate 163 is fixed on the sliding block 161. The upper end of a connecting rod 165 passes through the rear end of the spring fixing plate 163 and is threaded to the upper end of the connecting rod 165 for adjustment and rotation. The lower end of the connecting rod 165 is provided with a rotating part. A compression spring 166 is sleeved on the connecting rod 165 and its upper and lower ends are in contact with the lower end face of the spring fixing plate 163 and the rotating part, respectively. The front end of a roller fixing plate 167 is rotatably mounted on the mounting shaft 15. A rubber-coated roller 168 is rotatably mounted on the rear end of the roller fixing plate 167. A rotating shaft 169 is fixed in the middle of the roller fixing plate 167 and the rotating part is rotatably mounted on the rotating shaft 169. The structure of the second transmission mechanism 2 is the same as that of the first transmission mechanism 1. The rear end of the conveyor belt 13 of the second transmission mechanism 2 is located below the front end of the conveyor belt 13 of the first transmission mechanism 1.

[0019] The diced plaster is conveyed from the first transmission mechanism 1 to the second transmission mechanism 2 via the conveyor belt 13. The conveyor belt 13 of the second transmission mechanism 2 is located below the conveyor belt 13 of the first transmission mechanism 1, and its conveying speed is slower than that of the first transmission mechanism 1. When the plaster falls onto the second transmission mechanism 2, it can be automatically stacked. Moreover, during the conveying process, the plaster passes between the conveyor belt 13 and the rubber-coated roller 168, and the compression spring 166 is in a compressed state, thereby driving the rubber-coated roller 168 to continuously press against the plaster, preventing the plaster from shifting during the conveying process and improving the accuracy and stability of the conveying. The pressing component 16 can move left and right via the sliding block 161 and can also rotate around the mounting shaft 15. After the position is adjusted, it is locked by the first adjustable handle 162. By rotating the adjusting knob 164, the relative position of the connecting rod 165 and the spring fixing plate 163 can be adjusted, thereby adjusting the compression amount of the compression spring 166 in the initial state, and thus controlling the pressure applied to the plaster by the rubber-coated roller 168 during the conveying of the plaster. The advantages of this design are: it can automatically stack plasters, has high conveying accuracy and stability, and the pressing component 16 can be used for plasters of different thicknesses and widths, making it highly versatile.

[0020] Multiple sets of the clamping components 16 are evenly arranged on the mounting shaft 15, so that they can be flexibly adapted to the use of plasters of various specifications.

[0021] The rotary drive assembly 12 includes a rotary motor 121, a drive roller 122, a driven roller 123, and a speed controller 124. The rotary motor 121 and the speed controller 124 are both fixed on the mounting frame 11. The speed controller 124 is connected to the rotary motor 121 via a signal. The drive roller 122 and the driven roller 123 are rotatably mounted at the front and rear ends of the mounting frame 11, respectively. The drive roller 122 is connected to the power output end of the rotary motor 121. The conveyor belt 13 is wrapped around the outer periphery of the drive roller 122 and the driven roller 123.

[0022] The rotary motor 121 drives the conveyor belt 13 to rotate via the drive roller 122. The speed controller 124 is used to adjust the rotation speed of the rotary motor 121, thereby controlling the conveying speed of the conveyor belt 13.

[0023] The adjusting seat 14 includes a first adjusting assembly 141, a second adjusting assembly 142, an adjusting lever 143, and an adjusting handwheel 144. The first adjusting assembly 141 includes a slide 1411, a rack 1412, an adjusting frame 1413, a gear 1414, and a second adjustable handle 1415. The slide 1411 is fixed on the adjusting frame 1413, the rack 1412 is fixed above the slide 1411, the lower end of the adjusting frame 1413 is slidably connected to the slide 1411, and the rack 1412 passes through the adjusting frame 1413. Wheel 1414 is rotatably mounted inside adjusting frame 1413 and its lower end meshes with rack 1412. Second adjustable handle 1415 is mounted on adjusting frame 1413. Second adjusting component 142 and first adjusting component 141 have the same structure and correspond to the left and right sides of conveyor belt 13 respectively. The left and right sides of adjusting rod 143 are fixedly connected to two sets of gears 1414 respectively. Second adjustable handle 1415 is used to fix adjusting frame 1413 to adjusting rod 143. Adjusting handwheel 144 is fixed to one end of adjusting rod 143.

[0024] The adjusting seat 14 can adjust the front and rear positions of the clamping assembly 16. By rotating the adjusting handwheel 144, the adjusting lever 143 drives the two sets of gears 1414 to rotate. The gears 1414 and the rack 1412 cooperate, so that the two sets of adjusting frames 1413 slide synchronously on the slide table 1411. After reaching the expected position, the adjusting frame 1413 is locked by the second adjustable handle 1415.

[0025] This design also includes a receiving plate 3 and a baffle plate 4. The receiving plate 3 is fixed on the second transmission mechanism 2 and corresponds to the front side of the conveyor belt 13. The lower end of the baffle plate 4 is fixed to the front end of the receiving plate 3.

[0026] The receiving plate 3 is used to receive the stacked plasters. Subsequent equipment removes the plasters from the receiving plate 3. The baffle plate 4 is used to block the plasters and prevent them from falling to the ground.

[0027] The above does not limit the technical scope of this utility model. Any modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of this utility model shall still fall within the scope of the technical solution of this utility model.