Hot compress patch processing, producing and conveying equipment

By designing hot compress patch processing, production and transportation equipment, and using the combination technology of the material guide component and the transport mechanism, the material choke problem during the packaging of multiple pieces of hot compress patches is solved, and the automatic packaging of hot compress patches and the improvement of heating efficiency is achieved.

CN120096879AActive Publication Date: 2025-06-06TAIZHOU MEILAN DAILY NECESSITIES CO LTD
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Patent Information

Application Number
CN202510592479.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-06-06
Estimated Expiration
2045-05-09

AI Technical Summary

Technical Problem

Existing hot compress patch packaging equipment is prone to caking problems when loading multiple hot compress patches, resulting in misalignment of the hot compress patch and damage to the packaging bag.

Method used

A hot compress patch processing, production and transportation equipment is designed, using the material guide component to automatically dissipate the heat compress patch, and the automatic alignment and fixation of the hot compress patch is achieved through the feeding dish and compression components of the transfer mechanism, ensuring that the hot compress patches are neatly stacked and entered the packaging bag.

Benefits of technology

It realizes automatic feeding, alignment, compression and blanking of hot compress patches, solves the problem of material staples when packaging multiple hot compress patches, improves the sealing quality and extends the heating time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of hot compress patch conveying, and particularly relates to hot compress patch processing, producing and conveying equipment which comprises a horizontal conveying mechanism used for conveying cut hot compress patches and a transfer mechanism arranged at the tail end of the horizontal conveying mechanism and used for conveying the hot compress patches into packaging bags. The horizontal conveying mechanism comprises a conveying platform, and the conveying platform is provided with a material guiding assembly used for dispersing the multiple hot compress patches concentrated together in the same area. The transferring mechanism comprises a mounting frame fixedly arranged on the ground, a rotating shaft is rotationally arranged on the mounting frame, a driving assembly for driving the rotating shaft to rotate is arranged on the mounting frame, and a plurality of material receiving vessels evenly distributed in the length direction of the rotating shaft are arranged on the rotating shaft. According to the hot compress patch packaging device, hot compress patches can be automatically received, aligned, pressed and discharged, manual intervention is not needed, heating layers of the hot compress patches can be further pressed in the conveying process, the heating time is prolonged, and meanwhile the problem that materials are stuck when multiple hot compress patches are packaged is solved.
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Description

Technical Field

[0001] The invention belongs to the field of hot compress patch transportation, and in particular relates to a hot compress patch processing, production and transportation device. Background Art

[0002] A hot compress patch is an external patch that uses the principle of heating to relieve pain or discomfort. It is usually composed of a heating layer, an adhesive layer, and a backing layer. In the production and processing of hot compress patches, material transportation is one of the key links, involving multiple steps of automated or semi-automated flow, mainly including the transportation of raw materials, coating and compounding process transportation, slitting transportation, and packaging transportation.

[0003] During the production process of hot compress patches, the cut hot compress patches need to be transported to the packaging station through a conveying device and loaded into a packaging bag. At present, the common conveying method is a horizontal conveyor belt plus inertial dropping: the hot compress patch is transported by the conveyor belt to its end, and slides into a horizontally placed packaging bag by relying on the inertia of movement and gravity. This method has a simple structure and low cost, and is suitable for the packaging requirements of a single hot compress patch. When the same packaging bag needs to be loaded with multiple hot compress patches (such as 3 or more), the existing conveying method has certain defects: when the first hot compress patch falls into the packaging bag, it occupies part of the space in the bag, and subsequent hot compress patches may not be able to enter smoothly due to obstruction of the bag opening, resulting in material jamming. Multiple hot compress patches are prone to misalignment when stacked, affecting the sealing quality and even causing damage to the packaging bag. Summary of the invention

[0004] In order to solve the above problems, the present invention provides a hot compress patch processing, production and conveying equipment, which is used to solve the problems mentioned in the above background technology.

[0005] In order to achieve the above-mentioned purpose, the embodiment of the present application provides the following technical solutions: The present invention provides a hot compress patch processing and production conveying equipment, including a horizontal conveying mechanism for conveying the cut hot compress patch and a transfer mechanism arranged at the end of the horizontal conveying mechanism for delivering the hot compress patch into a packaging bag. The horizontal conveying mechanism includes a conveying platform, and a material guide assembly for dispersing a plurality of hot compress patches gathered in the same area is arranged on the conveying platform. The transfer mechanism includes a mounting frame fixedly arranged on the ground, a rotating shaft is rotatably arranged on the mounting frame, a driving assembly for driving the rotating shaft to rotate is arranged on the mounting frame, a plurality of receiving dishes evenly distributed along its length direction are arranged on the rotating shaft, and a pressing assembly for locking a plurality of stacked hot compress patches is arranged on the receiving dish, and a transmission assembly for driving the pressing assembly to approach and move away from the hot compress patch is jointly arranged between each receiving dish and the corresponding pressing assembly and the mounting frame, and the rotating shaft drives the receiving dish to rotate intermittently, and the pressing assembly follows the intermittent rotation of the rotating shaft while cooperating with the transmission assembly to cyclically lock and unlock the hot compress patch in the receiving dish.

[0006] According to a favorable embodiment, the conveying platform is composed of a horizontal section and an inclined section, and both the horizontal section and the inclined section of the conveying platform are rotatably provided with a plurality of conveying rollers, a conveyor belt is sleeved between the plurality of conveying rollers, a motor is fixedly provided on the conveying platform, and one end of the conveying roller located at the frontmost side of the conveying platform is connected to the output shaft of the motor through a sprocket set.

[0007] According to a preferred embodiment, the material guide assembly includes two guide rails fixedly arranged on the upper side of the conveying platform and distributed front and back, a cross plate is commonly arranged between the sides of the two guide rails close to each other, a sliding hole 1 is opened on the guide rail, a guide column with left-right symmetry and T-shaped cross section is rotatably arranged in the sliding hole 1, the lower ends of the two guide columns corresponding to the front and back are commonly fixed and rotatably connected with a pushing plate, and the pushing plate is opened with a sliding hole 2, two sliding blocks symmetrical front and back are slidably arranged in the sliding hole, an X-shaped driving frame composed of two connecting plates rotatably connected is arranged between the two guide rails, a connecting shaft is rotatably connected between the lower side of the cross plate and the driving frame, and the four corners of the driving frame are rotatably connected to the corresponding sliding blocks respectively, and two fixed plates evenly distributed along the inclination direction of the conveying platform are fixedly arranged on the inclined section of the conveying platform, a plurality of limit plates are arranged between the two fixed plates, and the plurality of limit plates are distributed in groups of two on the inclined section of the conveying platform.

[0008] According to a favorable embodiment, a cylinder is fixedly provided on the upper side of the conveying platform, and the output shaft of the cylinder is rotatably connected to the upper ends of the two guide columns on the right side through a triangular plate.

[0009] According to an advantageous embodiment, the mounting frame comprises a U-shaped base fixedly disposed on the ground, two fixed support arms distributed left and right are fixedly disposed on the upper side of the base, and the rotating shaft is rotatably disposed between the two fixed support arms.

[0010] According to a favorable embodiment, the driving assembly includes a second motor fixedly arranged on any one of the fixed support arms, and the output shaft of the second motor is connected to one end of the rotating shaft through a second sprocket set.

[0011] According to a favorable embodiment, the clamping assembly includes a clamping plate movably arranged on the surface of the material receiving dish port, four guide rods 1 distributed in a rectangular shape are fixedly arranged on the clamping plate, a connecting frame is slidably connected between the four guide rods 1, a clamping spring is sleeved on the guide rod 1, and the two ends of the clamping spring are respectively fixedly connected to the clamping plate and the connecting frame, the left and right sides of the material receiving dish are slidably connected to the guide rod 2 through the ear seat, and the same end of the four guide rods 2 is fixedly connected to the connecting frame.

[0012] According to a favorable embodiment, the transmission assembly includes two transmission rods, and the two transmission rods are rotatably arranged on the left and right sides of the material receiving dish through ear plates respectively. Two driving disks symmetrically distributed along the length direction are fixedly arranged on the transmission rod, and a driving plate is hinged on the driving disk. The side of the driving plate away from the driving disk is hinged to the corresponding connecting frame, and a U-shaped fixing frame is fixedly arranged on the left and right sides of the material receiving dish, and a worm is rotatably arranged between the fixing frame and the material receiving dish, and one end of the transmission rod close to the fixing frame is fixedly connected to a worm wheel meshing with the corresponding worm, and a gear is fixedly arranged on one end of the worm.

[0013] According to a favorable embodiment, the transmission assembly also includes a plurality of support plates fixedly arranged on the base and evenly distributed along its length direction and in a U-shape, the support plates are arranged in groups of two and symmetrically distributed left and right with the receiving dish as the center, the two pins of the support plates are arranged to be higher in the front and lower in the back, and an outer arc-shaped rack and an inner arc-shaped rack are fixedly arranged on the upper sides of the left and right pins of the support plates, respectively, and the outer arc-shaped rack and the inner arc-shaped rack are both engaged with corresponding gears.

[0014] According to a favorable embodiment, an extension material guide plate is fixedly connected to the end of the inclined section of the conveying platform, and a side of the material receiving dish away from the rotating shaft is arranged as a frameless structure.

[0015] Compared with the prior art, the hot compress patch processing and production conveying equipment provided by the embodiment of the present invention has the following beneficial effects: in the present invention, the hot compress patches densely arranged on the conveyor belt are automatically dispersed to the designated position through the design of the push plate of the material guide component, and cooperate with the transfer mechanism to facilitate the packaging of the hot compress patches; the receiving dish of the transfer mechanism rotates and acts on gravity to make the hot compress patches automatically aligned after being misplaced and stacked, ensuring that multiple hot compress patches are neatly stacked, and then the stacked hot compress patches are further fixed by the pressing plate, which is convenient for the rotating shaft to drive the whole to rotate to the designated position for bagging, and the pressing plate pressing the hot compress patch can further press the heating layer in the hot compress patch, thereby improving the heating efficiency of the hot compress patch and extending the heating time. The automatic receiving, alignment, pressing and dropping of the hot compress patch are realized without manual intervention, solving the problem of material jamming when packaging multiple hot compress patches. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a three-dimensional structural diagram of the first position of the present invention.

[0017] Figure 2 It is a top plan structural diagram of the present invention.

[0018] Figure 3 It is a three-dimensional structural diagram of part of the material guiding mechanism in the present invention.

[0019] Figure 4 It is an external three-dimensional structural diagram of the transfer mechanism in the present invention.

[0020] Figure 5 It is a schematic diagram of the relative positions of the rotating shaft, the material receiving dish, the inner arc-shaped rack and the outer arc-shaped rack in the present invention.

[0021] Figure 6 for Figure 5 A magnified structural diagram of part A.

[0022] Figure 7 It is the external three-dimensional structure diagram of the material receiving dish in the present invention.

[0023] Figure 8 for Figure 7 Enlarged structural diagram of part B.

[0024] Fig. 9 It is a schematic diagram of the state when the material receiving dish follows the rotating shaft and rotates to the bottom of the epitaxial material guide plate in the present invention.

[0025] Fig.10 It is a schematic diagram of the connection between the gear and the outer arc-shaped rack when the pressing plate compresses the hot compress patch in the present invention.

[0026] Fig.11 It is a schematic diagram of the connection between the gear and the inner arc-shaped rack when the pressing plate in the present invention releases the lock of the hot compress patch.

[0027] Reference numerals in the figure: 1, horizontal conveying mechanism; 11, conveying platform; 12, material guide assembly; 121, guide rail; 122, horizontal plate; 123, guide column; 124, material push plate; 125, slider; 126, driving frame; 127, fixed plate; 128, limit plate; 2, transfer mechanism; 21, mounting frame; 211, base; 212, fixed support arm; 22, driving assembly; 23, receiving dish; 24, pressing assembly; 2 41. Clamping plate; 242. Guide rod 1; 243. Connecting frame; 244. Clamping spring; 245. Guide rod 2; 25. Transmission assembly; 251. Transmission rod; 252. Drive disk; 253. Drive plate; 254. Fixed frame; 255. Worm; 256. Worm wheel; 257. Gear; 258. Support plate; 259. Outer arc rack; 2510. Inner arc rack; 2511. Rotating shaft; 3. Extension guide plate. DETAILED DESCRIPTION

[0028] The following is combined with Figure 1 -Attached Fig.11 This application is further described in detail.

[0029] Please refer to Figure 1 and Figure 2 A hot compress patch processing and production conveying equipment includes a horizontal conveying mechanism 1 for conveying the cut hot compress patch and a transfer mechanism 2 arranged at the end of the horizontal conveying mechanism 1 for conveying the hot compress patch into a packaging bag.

[0030] See also Figure 1 and Figure 2 The horizontal conveying mechanism 1 includes a conveying platform 11, on which a material guide assembly 12 is provided for dispersing a plurality of hot compress patches gathered in the same area. The conveying platform 11 is composed of a horizontal section and an inclined section. Both the horizontal section and the inclined section of the conveying platform 11 are rotatably provided with a plurality of conveying rollers (not shown in the figure), and a conveyor belt is sleeved between the plurality of conveying rollers. A motor 1 (not shown in the figure) is fixedly provided on the conveying platform 11, and one end of the conveying roller located at the front side of the conveying platform 11 is connected to the output shaft of the motor 1 through a sprocket set 1 (not shown in the figure). The conveying roller is driven to rotate by the motor 1 in cooperation with the sprocket set 1, so that the conveyor belt can drive the hot compress patch on the upper side of the conveyor belt to move.

[0031] See also Figure 1 , Figure 2 and Figure 3The material guide assembly 12 includes two guide rails 121 fixedly arranged on the upper side of the conveying platform 11 and distributed front and back, a cross plate 122 is commonly arranged between the two guide rails 121 on the side close to each other, a sliding hole 1 is opened on the guide rail 121, a guide column 123 with a left-right symmetric cross section and a T-shaped cross section is rotatably arranged in the sliding hole 1, and the lower ends of the two guide columns 123 corresponding to the front and back are rotatably connected to a push plate 124, and a sliding hole 2 is opened on the push plate 124, and two sliding blocks 125 with a front-back symmetric cross section are slidably arranged in the sliding hole 2. A driving frame 126 formed by two connecting plates rotatably connected to form an X shape is arranged between the guide rails 121, a connecting shaft is rotatably connected between the lower side of the horizontal plate 122 and the driving frame 126, and the four corners of the driving frame 126 are rotatably connected to the corresponding sliders 125, and two fixed plates 127 evenly distributed along the tilting direction of the conveying platform 11 are fixedly arranged on the inclined section of the conveying platform 11, and a plurality of limit plates 128 are arranged between the two fixed plates 127, and the plurality of limit plates 128 are distributed in pairs on the inclined section of the conveying platform 11. A cylinder is fixedly arranged on the upper side of the conveying platform 11, and the output shaft of the cylinder is rotatably connected to the upper ends of the two guide columns 123 on the right through a triangular plate. The left and right push plates 124 on the conveyor belt are originally located near the center of the conveyor belt. When the hot compress patch moves to the outer position of the corresponding push plate 124, the cylinder shrinks and can drive the two guide posts 123 on the right side to move toward the right edge of the conveyor belt through the triangle plate, so that the two guide posts 123 on the right side jointly push the push plate 124 on the right side to move, and the push plate 124 can push the corresponding hot compress patch to move a certain distance toward the edge of the conveyor belt. Similarly, when the right push plate 124 moves to the right, the left push plate 124, under the action of the drive frame 126, synchronously drives the corresponding hot compress patch to move toward the left edge of the conveyor belt, so that the left and right hot compress patches of the three hot compress patches at the same position are away from each other, so that the three hot compress patches can be moved to the designated position for unloading. It is particularly noted that the connection between the guide post 123 and the guide rail 121 and the connection between the slider 125 and the slider 125 can be replaced by rotating by setting balls to reduce friction.

[0032] During specific operation, the cut hot compress patches are transported together through the conveyor belt and move toward the material guide assembly 12. When the left and right hot compress patches on the conveyor belt are respectively on the outside of the left and right pushing plates 124, the cylinder contracts and drives the corresponding hot compress strips through the pushing plates 124. While moving through the conveyor belt, the two pushing plates 124 will push the left and right hot compress patches to the designated positions.

[0033] See also Figure 1 , Figure 4 and Figure 5The transfer mechanism 2 includes a mounting frame 21 fixedly arranged on the ground, a rotating shaft 2511 is rotatably arranged on the mounting frame 21, a driving component 22 for driving the rotating shaft 2511 to rotate is arranged on the mounting frame 21, a plurality of material receiving dishes 23 evenly distributed along its length direction are arranged on the rotating shaft 2511, a side of the material receiving dish 23 away from the rotating shaft 2511 is arranged as a frameless structure, and the end of the inclined section of the conveying platform 11 is fixedly connected with the epitaxial material guide plate 3, and the two cooperate so that the edge of the port of the material receiving dish 23 can be as close to the end of the epitaxial material guide plate 3 as possible after rotation, so as to facilitate the hot compress patch to enter the material receiving dish 23, a clamping component 24 for locking a plurality of stacked hot compress patches is arranged on the material receiving dish 23, and a transmission component 25 for driving the clamping component 24 to approach and move away from the hot compress patch is commonly arranged between each material receiving dish 23 and the corresponding clamping component 24 and the mounting frame 21.

[0034] See also Figure 4 The mounting frame 21 includes a U-shaped base 211 fixedly disposed on the ground, two fixed support arms 212 distributed on the left and right are fixedly disposed on the upper side of the base 211, and the rotating shaft 2511 is rotatably disposed between the two fixed support arms 212.

[0035] See also Figure 4 The driving assembly 22 includes a second motor fixedly mounted on any one of the fixed support arms 212, and the output shaft of the second motor is connected to one end of the rotating shaft 2511 through a second sprocket set (not shown in the figure). The second motor cooperates with the second sprocket set to drive the rotating shaft 2511 to rotate.

[0036] See also Figure 1 The clamping assembly 24 includes a clamping plate 241 movably arranged on the surface of the port of the receiving dish 23, four rectangularly distributed guide rods 242 are fixedly arranged on the clamping plate 241, a connecting frame 243 is slidably connected between the four guide rods 242, a clamping spring 244 is sleeved on the guide rods 242, and the two ends of the clamping spring 244 are respectively fixedly connected to the clamping plate 241 and the connecting frame 243, and the left and right sides of the receiving dish 23 are slidably connected to guide rods 245 through ear seats, and the same ends of the four guide rods 245 are fixedly connected to the connecting frame 243. The guide rods 245 guide the connecting frame 243.

[0037] See also Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8The transmission assembly 25 includes two transmission rods 251, which are rotatably arranged on the left and right sides of the material receiving dish 23 through ear plates respectively. Two driving disks 252 symmetrically distributed along the length direction of the transmission rod 251 are fixedly arranged, and a driving plate 253 is hinged on the driving disk 252. The side of the driving plate 253 away from the driving disk 252 is hinged to the corresponding connecting frame 243. A U-shaped fixing frame 254 is fixedly arranged on the left and right sides of the material receiving dish 23, and a worm 255 is rotatably arranged between the fixing frame 254 and the material receiving dish 23. One end of the transmission rod 251 close to the fixing frame 254 is fixedly connected to a worm wheel 256 meshing with the corresponding worm 255, and one end of the worm 255 is fixedly arranged with a gear 257.

[0038] See also Figure 4 and Figure 5 The transmission assembly 25 also includes a plurality of support plates 258 fixedly disposed on the base 211 and uniformly distributed along its length direction and in a U-shape. The support plates 258 are arranged in groups of two and symmetrically distributed left and right with the receiving dish 23 as the center. The two pins of the support plates 258 are arranged to be higher in the front and lower in the back, and an outer arc-shaped rack 259 and an inner arc-shaped rack 2510 are fixedly disposed on the upper sides of the left and right pins of the support plates 258, respectively, and both the outer arc-shaped rack 259 and the inner arc-shaped rack 2510 are meshed with the corresponding gear 257.

[0039] In specific operation, the hot compress patch is loaded: the motor 2 drives the rotating shaft 2511 to rotate, so that the receiving dish 23 circulates around the rotating shaft 2511. When the receiving dish 23 rotates a certain angle, the receiving dish 23 is tilted at a certain angle and its port faces upward and is located below the end of the epitaxial guide plate 3. Fig. 9 At this time, the pressing plate 241 and the port of the receiving dish 23 have a certain accommodation space, and the hot compress patch moves to the front end of the port of the receiving dish 23 under the cooperation of the conveyor belt and the material guide assembly 12, and the hot compress patch continues to move into the receiving dish 23 and finally completely enters the receiving dish 23, and then the front end of the next hot compress patch first enters the receiving dish 23 and overlaps the upper side of the previous hot compress patch, and the cycle is repeated so that a receiving dish 23 can carry multiple hot compress patches, and at this time, multiple hot compress patches are stacked and placed in the receiving dish 23 in an offset manner.

[0040] Aligning the hot compress patch: Then the rotating shaft 2511 continues to rotate at a certain angle, and the rotating shaft 2511 drives the receiving dish 23 to rotate, and the inclination angle of the receiving dish 23 increases, and the hot compress patches staggered and stacked therein will be neatly stacked together under the action of gravity.

[0041] Fixing the hot compress patch: The receiving dish 23 continues to rotate. When the receiving dish 23 rotates a certain angle again, the gears 257 on the left and right side walls of the receiving dish 23 will mesh with the corresponding outer arc-shaped racks 259. Fig.10As shown. The gear 257 rotates in the reverse direction along the outer arc-shaped rack 259 (in the same direction as the rotation of the shaft 2511) while rotating through the shaft 2511, thereby driving the corresponding worm 255 to drive the worm wheel 256 to rotate, so that the corresponding transmission rod 251 can drive the driving disk 252 to rotate in the positive direction, and the driving disk 252 can drive the driving plate 253 to rotate while pulling the connecting frame 243 to move relative to the receiving dish 23, so that the pressing plate 241 can move toward the surface of the stacked hot compress patches in the receiving dish 23, so that the pressing plate 241 is finally pressed against the surface of the hot compress patch, and the pressing spring 244 is in a compressed state. When the pressing plate 241 presses the stacked hot compress patches, the pressing plate 241 can generate a certain amount of pressure on the hot compress patches. During the production process of the hot compress patches, it can compress the heating layer in the hot compress patches, making the materials in the heating layer tighter, eliminating internal gaps, and allowing the iron powder to be in close contact with the activated carbon particles, which can stabilize the heating efficiency and extend the heating time.

[0042] Hot compress patch bagging: After the hot compress patch is fixed by the clamping plate 241, the receiving dish 23 continues to rotate with the rotating shaft 2511. Due to the self-locking of the worm gear 256 and the worm 255, the clamping plate 241 will not loosen during the rotation. When the receiving dish 23 rotates to the bottom of the rotating shaft 2511 and is close to the vertical state, the gears 257 on the left and right sides of the receiving dish 23 will mesh with the corresponding inner arc-shaped racks 2510, as shown in FIG. Fig.11 As shown. The gear 257 rotates along the inner arc-shaped rack 2510 while rotating through the rotating shaft 2511. Under the action of the worm 255, the worm wheel 256 and the transmission rod 251, the drive plate 252 rotates in the opposite direction, so that the connecting frame 243 moves away from the corresponding receiving dish 23. At this time, the pressing spring 244 gradually returns to its original position, and the pressure of the pressing plate 241 on the hot compress gradually decreases and finally separates the pressing plate 241 from the hot compress. At this time, the hot compress is in a vertical state, and under the action of gravity, the receiving dish 23 is moved away from the receiving dish 23. All the hot compress patches in the material dish 23 fall downwards, and during the falling process, the material receiving dish 23 and the pressing plate 241 form a material guiding channel, so that when the hot compress patches fall after the pressure is released, the hot compress patches at the edges will not spread out, and the hot compress patches can still move downwards in a basically closed state, so that the lower ends of all the hot compress patches in the same group can smoothly fall into the open packaging bag below (the packaging bag is directly below the rotating shaft 2511), and then the entire hot compress patch can smoothly enter the packaging bag, completing the packaging of multiple hot compress patches.

[0043] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A hot compress patch processing, production and conveying equipment, characterized in that: It includes a horizontal conveying mechanism for conveying the cut hot compress patch and a transfer mechanism arranged at the end of the horizontal conveying mechanism for conveying the hot compress patch into a packaging bag; The horizontal conveying mechanism comprises a conveying platform, on which a material guide component for dispersing a plurality of thermal compress patches gathered in the same area is arranged; The transfer mechanism includes a mounting frame fixedly set on the ground, a rotating shaft is rotatably set on the mounting frame, a driving component for driving the rotating shaft to rotate is set on the mounting frame, a plurality of material receiving dishes evenly distributed along its length direction are set on the rotating shaft, a clamping component for locking a plurality of stacked hot compress patches is set on the material receiving dish, and a transmission component for driving the clamping component to approach and move away from the hot compress patch is commonly set between each material receiving dish and the corresponding clamping component and the mounting frame.

2. The hot compress patch processing, production and conveying equipment according to claim 1, characterized in that: The conveying platform consists of a horizontal section and an inclined section, both of which are rotatably provided with a plurality of conveying rollers, a conveyor belt is sleeved between the plurality of conveying rollers, a motor is fixedly provided on the conveying platform, and one end of the conveying roller located at the frontmost side of the conveying platform is connected to an output shaft of the motor through a sprocket set.

3. The hot compress patch processing, production and conveying equipment according to claim 2, characterized in that: The guide assembly includes two guide rails fixedly arranged on the upper side of the conveying platform and distributed front and back, a cross plate is jointly arranged between the sides of the two guide rails close to each other, a sliding hole is opened on the guide rail, a guide column with left and right symmetry and T-shaped cross section is rotatably arranged in the sliding hole, the lower ends of the two guide columns corresponding to the front and rear are jointly fixed and rotatably connected with a pushing plate, and the pushing plate is opened with a sliding hole 2, and two sliding blocks with front and rear symmetry are slidably arranged in the sliding hole, and an X-shaped driving frame composed of two connecting plates rotatably connected is arranged between the two guide rails, and a connecting shaft is rotatably connected between the lower side of the cross plate and the driving frame, and the four corners of the driving frame are rotatably connected to the corresponding sliding blocks respectively, and two fixed plates evenly distributed along the inclination direction of the conveying platform are fixedly arranged on the inclined section of the conveying platform, and a plurality of limit plates are arranged between the two fixed plates, and the plurality of limit plates are distributed in groups of two on the inclined section of the conveying platform.

4. The hot compress patch processing, production and conveying equipment according to claim 3, characterized in that: A cylinder is fixedly arranged on the upper side of the conveying platform, and the output shaft of the cylinder is rotatably connected to the upper ends of the two guide columns on the right side through a triangular plate.

5. The hot compress patch processing, production and conveying equipment according to claim 1, characterized in that: The mounting frame comprises a U-shaped base fixedly arranged on the ground, two fixed support arms distributed on the left and right are fixedly arranged on the upper side of the base, and the rotating shaft is rotatably arranged between the two fixed support arms.

6. The hot compress patch processing, production and conveying equipment according to claim 5, characterized in that: The driving assembly includes a second motor fixedly arranged on any one of the fixed support arms, and the output shaft of the second motor is connected to one end of the rotating shaft through a second sprocket set.

7. The hot compress patch processing, production and conveying equipment according to claim 5, characterized in that: The clamping assembly includes a clamping frame movably arranged on the surface of the material receiving dish port, four guide rods 1 distributed in a rectangular shape are fixedly arranged on the clamping frame, a connecting frame is slidably connected between the four guide rods 1, a clamping spring is sleeved on the guide rod 1, two ends of the clamping spring are respectively fixedly connected to the clamping frame and the connecting frame, the left and right sides of the material receiving dish are slidably connected to guide rods 2 through ear seats, and the same ends of the four guide rods 2 are fixedly connected to the connecting frame.

8. The hot compress patch processing, production and conveying equipment according to claim 7, characterized in that: The transmission assembly includes two transmission rods, and the two transmission rods are rotatably arranged on the left and right sides of the material receiving dish through ear plates respectively. Two driving disks symmetrically distributed along the length direction of the transmission rod are fixedly arranged, and a driving plate is hinged on the driving disk. The driving plate is hinged to the corresponding connecting frame on the side away from the driving disk. A U-shaped fixing frame is fixedly arranged on the left and right sides of the material receiving dish, and a worm is rotatably arranged between the fixing frame and the material receiving dish. One end of the transmission rod close to the fixing frame is fixedly connected to a worm wheel meshing with the corresponding worm, and one end of the worm is fixedly provided with a gear.

9. The hot compress patch processing, production and conveying equipment according to claim 8, characterized in that: The transmission assembly also includes a plurality of support plates fixedly arranged on the base and evenly distributed along its length direction and in a U-shape. The support plates are arranged in groups of two and symmetrically distributed left and right with the receiving dish as the center. The two pins of the support plates are arranged to be higher in the front and lower in the back, and an outer arc-shaped rack and an inner arc-shaped rack are fixedly arranged on the upper sides of the left and right pins of the support plates, respectively, and the outer arc-shaped rack and the inner arc-shaped rack are both engaged with corresponding gears.

10. The hot compress patch processing, production and conveying equipment according to claim 1, characterized in that: An extension material guide plate is fixedly connected to the end of the inclined section of the conveying platform, and a side of the material receiving dish away from the rotating shaft is configured as a frameless structure.

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