A production device for combining ointment core and heating pack
By designing production equipment for combining medicated plaster cores and heating packs, automated conveying of the medicated plaster cores and mechanized tearing of the silicone paper were achieved, solving the problem of low efficiency in existing technologies and improving production efficiency.
Patent Information
- Application Number
- CN202311235730.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-22
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2043-09-22
AI Technical Summary
In existing technologies, the combination process of the ointment core and the heating pack requires manual operation, resulting in low efficiency.
Design a production equipment for combining ointment cores and heating packs, including a workbench, a first conveying mechanism, a second conveying mechanism, and a paper-tearing mechanism, to achieve automated conveying of the ointment cores and tearing of the silicone paper through mechanization, avoiding manual intervention.
It improves the efficiency of combining the ointment core and the heating pack, reduces manual operation, and increases production efficiency.
Smart Images

Figure CN117017782B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of medicated patch manufacturing technology, specifically relating to a production equipment for combining a medicated plaster core and a heating pack. Background Technology
[0002] Medicated patches, also known as medicated plasters, are applied directly to the user's skin. The medication in the patch penetrates the skin to relieve pain. Current technology combines a medicated plaster core with a heating pack to promote absorption; the heat generated by the heating pack enhances the absorption of the medicated plaster core.
[0003] In the traditional process of assembling the medicated plaster core and the heating pack, the heating pack is fed in and then heat-sealed with adhesive tape. The silicone paper on the tape is then peeled off, making the upper surface of the heating pack sticky. The medicated plaster core is then manually attached to the heating pack, and the silicone paper on the core is also manually removed. Finally, a layer of non-woven fabric is heat-sealed onto the side of the heating pack containing the medicated plaster core to secure it. This setup avoids the adhesive backing of the heating pack sticking to the user's skin. However, the traditional assembly process requires manual placement of the medicated plaster core on the heating pack and manual removal of the silicone paper, resulting in low operational efficiency. Summary of the Invention
[0004] This invention provides a production device for combining medicated plaster cores and heating packs, aiming to solve the technical problem of low efficiency in the prior art through manual assembly.
[0005] To achieve the above object, the technical solution adopted by the present invention is:
[0006] A production apparatus for combining a medicated plaster core and a heating pack is provided, comprising:
[0007] The workbench has a conveyor channel at the top;
[0008] The first conveying mechanism is set on the workbench and is used to convey a material belt, wherein a number of heating packs are spaced apart on the material belt;
[0009] A second conveying mechanism is located on one side of the worktable; the second conveying mechanism has a feeding space arranged along the height direction, the feeding space being used for stacking and circumferentially limiting the ointment cores; the second conveying mechanism also has an adsorption structure for adsorbing and placing the ointment cores onto the heating pack; and
[0010] A paper-tearing mechanism is disposed on one side of the workbench and downstream of the second conveying mechanism; the paper-tearing mechanism is used to tear off the silicone paper on the ointment core.
[0011] In one possible implementation, the second conveying mechanism includes a frame, and the material discharge space is disposed on the frame; the adsorption structure includes:
[0012] Negative pressure suction cups are used to adsorb the topmost ointment core in the discharge space;
[0013] The negative pressure tube is connected at one end to the negative pressure suction cup and at the other end to the negative pressure source.
[0014] A transverse conveying component is disposed at the top of the frame; the conveying direction of the conveying end of the transverse conveying component is perpendicular to the movement direction of the material belt; and
[0015] A height conveying component is disposed at the conveying end of the horizontal conveying component; the conveying end of the height conveying component is connected to the negative pressure suction cup.
[0016] In one possible implementation, a turntable is rotatably mounted on the frame, and several feeding spaces are arranged on the turntable; the turntable has through holes communicating with the feeding spaces; each feeding space has a support portion for supporting the ointment core, and a limiting component is provided near the bottom of each feeding space to limit the support portion; the second conveying mechanism further includes:
[0017] A lifting structure is provided on the frame; the lifting structure has a lifting end for sliding into or out of the material feeding space.
[0018] In one possible implementation, the lifting structure includes:
[0019] A slide rail is installed on the frame along the height direction;
[0020] A screw is rotatably connected to the slide rail, and the axis of the screw is set along the height direction;
[0021] A drive motor, with its output shaft connected to the low end of the screw, is used to drive the screw to rotate;
[0022] A sliding part, which slides with the slide rail, and has a threaded hole that engages with the screw thread; and
[0023] The top plate is fixed at one end to the sliding part, and the other end is used to slide into the material feeding space and contact the bottom of the support part.
[0024] In one possible implementation, the paper-tearing mechanism includes:
[0025] The flanged structure has a pressing end for pressing down the ointment core, so that one side of the silicone paper of the ointment core is turned upwards; and
[0026] The tear-off structure has a clamping component that holds the flipped-up part of the silicone paper, and tears off the silicone paper on the ointment core during the movement of the material belt.
[0027] In one possible implementation, the flange structure includes:
[0028] A push-pull cylinder is connected to the worktable via a connecting component, and the piston rod of the push-pull cylinder is arranged along the height direction; and
[0029] A pressure plate is connected to the piston rod of the push cylinder; the pressure plate is located near the ointment core; when the pressure plate presses the ointment core, the silicone paper on the ointment core forms a first area with a larger area and a second area with a smaller area, and an indentation is formed at the connection between the first area and the second area; when the pressure plate separates from the ointment core, the second area of the silicone paper curls upward.
[0030] In one possible implementation, a connecting plate is connected to the piston rod of the push cylinder; there are several pressure plates, all of which are connected to the connecting plate; each pressure plate corresponds to a medicated core.
[0031] In one possible implementation, the tear-off structure includes:
[0032] The storage bin has several suction ports on its side or bottom; the storage bin is slidably fitted with the worktable, and the sliding direction of the storage bin is perpendicular to the direction of material belt movement; the top of the storage bin has an air pipe connected to a negative pressure source, and the air pipe is connected to the inside of the storage bin.
[0033] A plurality of guide shells, each corresponding to a suction port; one end of each guide shell communicates with a suction port, and the other end of each guide shell has a space for accommodating a second region of silicone paper; the side of each guide shell facing the silicone paper has a through hole, allowing the guide shell to slide to a position surrounding the second region of the silicone paper; and
[0034] A clamping component is disposed on the guide shell for clamping the silicone paper inside the guide shell; wherein, when the silicone paper separates from the ointment core, the storage box slides back to its original position; the storage box is connected to a negative pressure source, and the clamping component separates from the silicone paper, so that the silicone paper is sucked into the storage box.
[0035] In one possible implementation, a fixing part is connected to the worktable, and a horizontal push cylinder is connected to the fixing part. The piston rod of the horizontal push cylinder is connected to the side wall of the storage box.
[0036] In one possible implementation, a guide rod is connected to the side wall of the storage box, and the fixing part has a sliding hole that slides with the guide rod.
[0037] This invention provides a production device for assembling a medicated plaster core and a heating pack. Compared with the prior art, when assembling the heating pack and the medicated plaster core, a first conveying mechanism transports the heating pack, and a second conveying mechanism transports the medicated plaster core, placing the medicated plaster core onto the heating pack. After placing the medicated plaster core onto the heating pack, a paper-tearing mechanism removes the silicone paper from the medicated plaster core, facilitating the subsequent heat-sealing of non-woven fabric onto the heating pack. With the above-described configuration, the medicated plaster core can be placed without manual placement, and the silicone paper can be removed manually, thus improving production efficiency. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of a production equipment for combining a medicated plaster core and a heating pack, provided by an embodiment of the present invention.
[0039] Figure 2 for Figure 1 Enlarged diagram of section A in the middle;
[0040] Figure 3 for Figure 1 Enlarged diagram of section B;
[0041] Figure 4 A schematic diagram of a reinforcing plate portion of a production equipment for combining a medicated plaster core and a heating pack, provided in an embodiment of the present invention;
[0042] Figure 5 for Figure 4 Enlarged diagram of section C;
[0043] Figure 6 This is a schematic diagram of the flanged structure of a production equipment for combining a medicated plaster core and a heating pack, provided in an embodiment of the present invention.
[0044] Figure 7 This is a schematic diagram of the tear-off structure of a production equipment for combining a medicated plaster core and a heating pack, provided in an embodiment of the present invention.
[0045] Figure 8 This is a schematic diagram of a storage tank portion of a production equipment for combining a medicated plaster core and a heating pack, provided in an embodiment of the present invention.
[0046] Figure 9 for Figure 8 Enlarged schematic diagram of section D in the middle.
[0047] Explanation of reference numerals in the attached drawings: 1. Workbench; 11. Conveying channel; 12. Fixing part; 13. Guide rod; 2. Second conveying mechanism; 21. Unloading space; 211. Right-angle plate; 212. Reinforcing plate; 22. Frame; 221. Slide rail; 23. Negative pressure suction cup; 231. Drive plate; 24. Negative pressure pipe; 25. Slider; 26. Cylinder; 27. Turntable; 28. Support part; 281. Limiting component; 29. Lifting structure; 291. Slide rail; 292. Sliding part ; 293, Top plate; 3, Paper tearing mechanism; 31, Flanging structure; 311, Pushing cylinder; 312, Pressure plate; 313, Connecting plate; 32, Tear-off structure; 321, Storage box; 322, Guide shell; 323, Clamping component; 324, Suction port; 325, Air pipe; 326, Filter screen; 327, Cover plate; 4, Material belt; 41, Heating pack; 5, Ointment core; 51, Silicone paper; 511, First area; 512, Second area; 513, Indentation. Detailed Implementation
[0048] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0049] Please refer to the following: Figures 1 to 9 The present invention provides a production equipment for combining medicated plaster cores and heating packs. The production equipment includes a workbench 1, a first conveying mechanism (not shown in the figure), a second conveying mechanism 2, and a paper-tearing mechanism 3. The top of the workbench 1 has a conveying channel 11. The first conveying mechanism is disposed on the workbench 1 and is used to convey a material belt 4, wherein a plurality of heating packs 41 are spaced apart on the material belt 4. The second conveying mechanism 2 is located on one side of the workbench 1. The second conveying mechanism 2 has a material feeding space 21 arranged along the height direction, which is used for stacking and circumferentially limiting the medicated plaster cores 5. The second conveying mechanism 2 also has an adsorption structure for adsorbing and placing the medicated plaster cores 5 onto the heating packs 41. The paper-tearing mechanism 3 is disposed on one side of the workbench 1 and downstream of the second conveying mechanism 2. The paper-tearing mechanism 3 is used to tear off the silicone paper 51 from the medicated plaster cores 5.
[0050] This invention provides a production device for assembling a medicated plaster core 5 and a heating pack 41. Compared with the prior art, when assembling the heating pack 41 and the medicated plaster core 5, the first conveying mechanism transports the heating pack 41, and the second conveying mechanism 2 transports the medicated plaster core 5, placing the medicated plaster core 5 on the heating pack 41 and adhering it to the adhesive backing of the heating pack 41. After placing the medicated plaster core 5 on the heating pack 41, the silicone paper 51 on the medicated plaster core 5 is removed by the paper-tearing mechanism 3, facilitating the subsequent heat-sealing of non-woven fabric onto the heating pack 41 and preventing the adhesive backing of the heating pack 41 from sticking to the human body. With the above-described configuration, the medicated plaster core 5 can be placed without manual placement and the silicone paper 51 can be removed manually, thus improving production efficiency.
[0051] It should be noted that the production process of the heating pack involves placing the raw material on the bottom non-woven fabric, then covering the bottom non-woven fabric with the top non-woven fabric, and heat-sealing the two layers of non-woven fabric using a heat-sealing device to confine the raw material between the two layers, forming individual heating packs. Subsequently, adhesive tape is heat-sealed onto the top non-woven fabric, and the silicone paper on top of the adhesive tape is peeled off, making the surface of the heating pack sticky. After the ointment core 5 is placed on the heating pack using the adsorption structure described in this application, the ointment core 5 adheres to the heating pack. Then, the silicone paper 51 on the ointment core 5 can be peeled off using the paper-tearing mechanism 3. The first conveying mechanism can drive the heat-sealed top and bottom non-woven fabrics to move. Specifically, the first conveying mechanism can be a set of conveyor wheels that clamp the top and bottom non-woven fabrics, one of which is a driving wheel and the other is a driven wheel. The driving wheel is driven by a motor, and during the rotation of the conveyor wheel, the friction between the driving wheel and the driven wheel drives the movement of the top and bottom non-woven fabrics. Both the upper and lower nonwoven fabric layers are equipped with drive motors. During the process of the drive wheel and driven wheel conveying the upper and lower nonwoven fabric layers, the upper and lower nonwoven fabric layers are also unwound by the drive motors. This facilitates the transport of the heat-sealed upper and lower nonwoven fabric layers by the drive wheel and driven wheel. The heat-sealed upper and lower nonwoven fabric layers form a material belt 4.
[0052] In addition, the production of the heating pack, the heat sealing process of the adhesive paper on the heating pack, and the process of tearing off the silicone paper are all existing technologies; this application improves the process of placing the ointment core 5, which can improve the placement efficiency compared with the manual placement process of the ointment core 5.
[0053] In some embodiments, as Figures 1 to 9As shown, the second conveying mechanism 2 includes a frame 22, and a material discharge space 21 is set on the frame 22; the adsorption structure includes a negative pressure suction cup 23, a negative pressure pipe 24, a transverse conveying component, and a height conveying component; the negative pressure suction cup 23 is used to adsorb the uppermost ointment core 5 in the material discharge space 21; one end of the negative pressure pipe 24 is connected to the negative pressure suction cup 23, and the other end is connected to the negative pressure source; the negative pressure pipe 24 is a rigid pipe, and the top of the negative pressure pipe 24 is connected to the negative pressure source through a flexible hose; the transverse conveying component is set on the top of the frame 22; the conveying direction of the conveying end of the transverse conveying component is perpendicular to the movement direction of the material belt 4; the height conveying component is set on the conveying end of the transverse conveying component; the conveying end of the height conveying component is connected to the negative pressure suction cup 23.
[0054] It should be noted that the top of the frame 22 has a slide 221 perpendicular to the direction of movement of the heating pack. The transverse conveying component includes a slider 25, a drive motor, and a screw. The screw is rotatably disposed within the slide 221, and the slider 25 slides within the slide 221. The slider 25 has a threaded hole that engages with the screw thread. One end of the screw extends out of the frame 22, and the frame 22 has a drive motor at the end where the screw protrudes. The output shaft of the drive motor is connected to the end of the screw to drive the screw to rotate. The height conveying component includes a cylinder 26, the cylinder body of which is fixed to the slider 25. When the slider 25 slides laterally, it can drive the cylinder 26 to slide laterally. A drive plate 231 is fixedly disposed on the piston rod of the cylinder 26, and a negative pressure suction cup 23 is disposed on the drive plate 231. There can be multiple negative pressure suction cups 23, and the number of material feeding spaces 21 corresponds one-to-one with the number of negative pressure suction cups 23. In this embodiment, three are used as an example for explanation. When the negative pressure suction cup 23 slides above the discharge space 21, the cylinder 26 drives the negative pressure suction cup 23 downward, bringing it into contact with the uppermost ointment core 5. At this point, the negative pressure suction force causes the suction cup 23 to adhere to the ointment core 5. Driven by the cylinder 26, the ointment core 5 and the suction cup 23 move upward, detaching from the discharge space 21. Driven by the slider 25, the ointment core 5 moves to directly above the heating pack 41. Then, through the extension of the piston rod of the cylinder 26, the ointment core 5 is pushed to the top of the heating pack 41, adhering to it. Once the ointment core 5 is adhered to the heating pack 41, the negative pressure suction cup 23 stops adsorbing the ointment core 5 and, driven by the piston rod of the cylinder 26, returns to its original position. Repeating this process continuously adheres the ointment core 5 to the heating pack 41.
[0055] In some embodiments, as Figures 1 to 9As shown, a turntable 27 is rotatably mounted on the frame 22, and several material feeding spaces 21 are arranged on the turntable 27. The turntable 27 has through holes communicating with the material feeding spaces 21. The material feeding space 21 has a support part 28 for supporting the ointment core 5, and a limiting component 281 for limiting the support part 28 is provided near the bottom of the material feeding space 21. The second conveying mechanism 2 also includes a lifting structure 29, which is mounted on the frame 22. The lifting structure 29 has a lifting end for sliding into or out of the material feeding space 21.
[0056] It should be noted that this embodiment uses two feeding spaces 21 as an example for explanation. Three feeding spaces 21 form a group. After the ointment core 5 in one group of feeding spaces 21 is fed, the rotation of the turntable 27 allows the other group of ointment cores 5 to rotate to the working position. Each feeding space 21 is formed by four right-angled plates 211. The lower ends of the four right-angled plates 211 are fixed to the turntable 27. A reinforcing plate 212 is provided near the top of each of the four right-angled plates 211, connecting the right-angled plates 211 of the three feeding spaces 21 in the same group. The bottom of the turntable 27 has through holes corresponding to the feeding spaces 21, and the bottom of the turntable 27 has an opening corresponding to the lifting structure 29, allowing the lifting structure 29 to slide into or out of the feeding spaces 21. With the above settings, when the negative pressure suction cup 23 sucks away one ointment core 5, the lifting structure 29 can lift the material in the discharge space 21 upward by the height of one ointment core 5, so that the negative pressure suction cup 23 can pick up the next ointment core 5.
[0057] In addition, the limiting component 281 includes a limiting block, which is fixed on the right-angle plate 211; the support part 28 is initially in contact with the limiting block, which can prevent the support part 28 from falling out of the feeding space 21; since the support part 28 is provided in the feeding space 21, the support part 28 can support the ointment core 5 in the feeding space 21.
[0058] In some embodiments, such as Figures 1 to 9 As shown, the lifting structure 29 includes a slide rail 291, a screw, a drive motor, a sliding part 292, and a top plate 293. The slide rail 291 is mounted on the frame 22 along the height direction. The screw is rotatably connected to the slide rail 291, and the axis of the screw is set along the height direction. The output shaft of the drive motor is connected to the lower end of the screw and is used to drive the screw to rotate. The sliding part 292 is slidably engaged with the slide rail 291 and has a threaded hole that is threaded to engage with the screw. One end of the top plate 293 is fixed to the sliding part 292, and the other end is used to slide into the material feeding space 21 and contact the bottom of the support part 28.
[0059] It should be noted that the drive motor drives the screw to rotate in both directions, enabling the sliding part 292 to slide upwards or downwards; this, in turn, drives the top plate 293 to move up and down. Since the top plate 293 can contact the bottom of the support part 28, the upward movement of the top plate 293 can drive the support part 28 and the ointment core 5 to move upwards. After the ointment core 5 of this set is loaded, the top plate 293 slides downwards out of the discharge space 21. At this time, the turntable 27 rotates 180 degrees, causing another set to rotate to the working position. The top plate 293 moves upwards and re-enters the discharge space 21. Since the discharge space 21 of the other set does not contain the ointment core 5, the ointment core 5 can be manually added into the discharge space 21.
[0060] In some embodiments, such as Figures 1 to 9 As shown, the paper-tearing mechanism 3 includes a flange structure 31 and a tearing structure 32; the flange structure 31 has a pressing end that presses down the ointment core 5 so that one side of the silicone paper 51 of the ointment core 5 is turned up; the tearing structure 32 has a clamping component that holds the turned-up part of the silicone paper 51, and tears off the silicone paper 51 on the ointment core 5 during the movement of the material belt 4.
[0061] It should be noted that when tearing off the silicone paper 51 on the ointment core 5, a portion of the silicone paper 51 needs to be flipped up by the flipping structure 31 first, and then the silicone paper 51 of the ointment core 5 is clamped by the tearing structure 32. During the movement of the material belt 4, the silicone paper 51 is separated from the ointment core 5, thus achieving the purpose of tearing off the silicone paper 51.
[0062] In some embodiments, such as Figures 1 to 9 As shown, the flange structure 31 includes a push cylinder 311 and a pressure plate 312. The push cylinder 311 is connected to the worktable 1 via a connecting component, and the piston rod of the push cylinder 311 is arranged along the height direction. The pressure plate 312 is connected to the piston rod of the push cylinder 311. The pressure plate 312 is located near the ointment core 5. When the pressure plate 312 presses the ointment core 5, the silicone paper 51 on the ointment core 5 forms a larger first area 511 and a smaller second area 512, and an indentation 513 is formed at the connection between the first area 511 and the second area 512. When the pressure plate 312 separates from the ointment core 5, the second area 512 of the silicone paper 51 curls upward. A connecting plate 313 is connected to the piston rod of the push cylinder 311. There are several pressure plates 312, and all of the pressure plates 312 are connected to the connecting plate 313. Each pressure plate 312 corresponds to one ointment core 5.
[0063] It should be noted that when the pressure plate 312 presses down on the ointment core 5, both the ointment core 5 and the heating pack 41 will deform, and an indentation 513 will be formed at the contact point between the pressure plate 312 and the silicone paper 51. When the pressure plate 312 separates from the ointment core 5, the ointment core 5 will elastically return to its original position. At this time, because there is an indentation 513 on the silicone paper 51, the smaller second area 512 of the silicone paper 51 will flip upward with the indentation 513 as the axis, so that the second area 512 of the silicone paper 51 separates from the ointment core 5. Through the above arrangement, a part of the structure of the silicone paper 51 can be flipped upward, which facilitates the subsequent tearing structure 32 to tear off the silicone paper 51.
[0064] In some embodiments, as Figures 1 to 9 As shown, the tearing structure 32 includes a storage box 321, several guide shells 322, and a clamping component 323. The clamping component 323 includes a top plate and a cylinder. The top plate is located inside the guide shell 322, and the cylinder is fixed outside the guide shell 322. The piston rod of the cylinder passes through the guide shell 322 and is connected to the top plate. When it is necessary to clamp the silicone paper, the piston rod of the cylinder extends, thereby making the top plate cooperate with the inner wall of the guide shell 322 to clamp the silicone paper. The storage bin 321 has several suction ports 324 on its side or bottom; the storage bin 321 is slidably fitted with the workbench 1, and the sliding direction of the storage bin 321 is perpendicular to the movement direction of the material belt 4; the top of the storage bin 321 has an air pipe 325 connected to a negative pressure source, and the air pipe 325 is connected to the inside of the storage bin 321, and the air pipe 325 is a flexible hose; several guide shells 322 correspond one-to-one with the suction ports 324; one end of the guide shell 322 is connected to the suction port 324, and the other end of the guide shell 322 has a feature for accommodating the silicone paper 51. The space of the second region 512; the guide shell 322 has a through hole on the side facing the silicone paper 51, so that the guide shell 322 can slide to a position surrounding the second region 512 of the silicone paper 51; the clamping member 323 is provided on the guide shell 322 for clamping the silicone paper 51 inside the guide shell 322; wherein, when the silicone paper 51 is separated from the ointment core 5, the storage box 321 slides back to its original position; the storage box 321 is connected to the negative pressure source, and the clamping member 323 is separated from the silicone paper 51 so that the silicone paper 51 is sucked into the storage box 321.
[0065] It should be noted that after a portion of the silicone paper 51 is flipped upwards, the guide shell 322 slides towards the silicone paper 51, allowing the flipped portion of the silicone paper 51 to be located within the guide shell 322. At this time, the clamping component 323 clamps the silicone paper 51 within the guide shell 322, thus fixing a portion of the silicone paper 51 within the guide shell 322. During the movement of the material belt 4 along the diameter of one ointment core 5, the silicone paper 51 can separate from the ointment core 5. At this point, the guide shell 322 resets, moving away from the ointment core 5 to avoid interference with the next ointment core 5. After the guide shell 322 resets, the negative pressure source is connected to the storage tank 321, and then the clamping component 323 releases the silicone paper 51, allowing it to be sucked into the storage tank 321. The negative pressure source is existing technology and will not be described in detail here; for example, the negative pressure source can be a vacuum pump.
[0066] In addition, the storage bin 321 has a filter screen 326 that divides the storage bin 321 into upper and lower parts. The upper part is connected to the negative pressure source, and the lower part is connected to the guide shell 322. This arrangement reduces the likelihood of the silicone paper 51 being sucked out of the storage bin 321. The top plate 293 of the storage bin 321 has an opening and is closed by a cover plate 327. The cover plate 327 is bolted to the storage bin 321, and the filter screen 326 is also bolted to the storage bin 321. With this arrangement, after removing the cover plate 327 and the filter screen 326 from the storage bin 321, the silicone paper 51 inside the storage bin 321 can be cleaned.
[0067] In some embodiments, as Figures 1 to 9 As shown, a fixing part 12 is connected to the worktable 1, and a horizontal push cylinder 26 is connected to the fixing part 12. The piston rod of the horizontal push cylinder 26 is connected to the side wall of the storage box 321. A guide rod 13 is connected to the side wall of the storage box 321, and the fixing part 12 has a sliding hole that slides with the guide rod 13.
[0068] It should be noted that the piston rod of the horizontal thrust cylinder 26 is connected to the storage box 321, which can drive the storage box 321 to move laterally, thereby facilitating the removal of the silicone paper 51 on the ointment core 5. The sliding cooperation between the guide rod 13 and the fixing part 12 can improve the sliding stability of the storage box 321.
[0069] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A production device for combining a medicated plaster core and a heating pack, characterized in that, include: The workbench has a conveyor channel at the top; The first conveying mechanism is set on the workbench and is used to convey a material belt, wherein a number of heating packs are spaced apart on the material belt; A second conveying mechanism is located on one side of the worktable; the second conveying mechanism has a feeding space arranged along the height direction, the feeding space being used for stacking and circumferentially limiting the ointment cores; the second conveying mechanism also has an adsorption structure for adsorbing and placing the ointment cores onto the heating pack; and A paper-tearing mechanism is disposed on one side of the workbench and downstream of the second conveying mechanism; the paper-tearing mechanism is used to tear off the silicone paper on the ointment core; the paper-tearing mechanism includes: The flanged structure has a pressing end for pressing down the ointment core, so that one side of the silicone paper of the ointment core is turned upwards; and The tear-off structure has a clamping component that holds the flipped-up part of the silicone paper, and tears off the silicone paper on the ointment core during the movement of the material belt.
2. The production equipment for combining a medicated plaster core and a heating pack as described in claim 1, characterized in that, The second conveying mechanism includes a frame, and the material discharge space is disposed on the frame; the adsorption structure includes: Negative pressure suction cups are used to adsorb the topmost ointment core in the discharge space; The negative pressure tube is connected at one end to the negative pressure suction cup and at the other end to the negative pressure source. A transverse conveying component is disposed at the top of the frame; the conveying direction of the conveying end of the transverse conveying component is perpendicular to the movement direction of the material belt; and A height conveying component is disposed at the conveying end of the horizontal conveying component; the conveying end of the height conveying component is connected to the negative pressure suction cup.
3. The production equipment for combining a medicated plaster core and a heating pack as described in claim 2, characterized in that, A turntable is rotatably mounted on the frame, and several material feeding spaces are arranged on the turntable; the turntable has through holes communicating with the material feeding spaces; each material feeding space has a support portion for supporting the ointment core, and a limiting component is provided near the bottom of each material feeding space to limit the support portion; the second conveying mechanism further includes: A lifting structure is provided on the frame; the lifting structure has a lifting end for sliding into or out of the material feeding space.
4. The production equipment for combining a medicated plaster core and a heating pack as described in claim 3, characterized in that, The lifting structure includes: A slide rail is installed on the frame along the height direction; A screw is rotatably connected to the slide rail, and the axis of the screw is set along the height direction; A drive motor, with its output shaft connected to the low end of the screw, is used to drive the screw to rotate; A sliding part, which slides with the slide rail, and has a threaded hole that engages with the screw thread; and The top plate is fixed at one end to the sliding part, and the other end is used to slide into the material feeding space and contact the bottom of the support part.
5. The production equipment for combining a medicated plaster core and a heating pack as described in claim 1, characterized in that, The flange structure includes: A push-pull cylinder is connected to the worktable via a connecting component, and the piston rod of the push-pull cylinder is arranged along the height direction; and A pressure plate is connected to the piston rod of the push cylinder; the pressure plate is located near the ointment core; when the pressure plate presses the ointment core, the silicone paper on the ointment core forms a first area with a larger area and a second area with a smaller area, and an indentation is formed at the connection between the first area and the second area; when the pressure plate separates from the ointment core, the second area of the silicone paper curls upward.
6. The production equipment for combining a medicated plaster core and a heating pack as described in claim 5, characterized in that, A connecting plate is connected to the piston rod of the push cylinder; there are several pressure plates, and all of them are connected to the connecting plate; each pressure plate corresponds to a medicated paste core.
7. The production equipment for combining a medicated plaster core and a heating pack as described in claim 1, characterized in that, The tear-off structure includes: The storage bin has several suction ports on its side or bottom; the storage bin is slidably fitted with the worktable, and the sliding direction of the storage bin is perpendicular to the direction of material belt movement; the top of the storage bin has an air pipe connected to a negative pressure source, and the air pipe is connected to the inside of the storage bin. A plurality of guide shells, each corresponding to a suction port; one end of each guide shell communicates with a suction port, and the other end of each guide shell has a space for accommodating a second region of silicone paper; the side of each guide shell facing the silicone paper has a through hole, allowing the guide shell to slide to a position surrounding the second region of the silicone paper; and A clamping component is disposed on the guide shell for clamping the silicone paper inside the guide shell; wherein, when the silicone paper separates from the ointment core, the storage box slides back to its original position; the storage box is connected to a negative pressure source, and the clamping component separates from the silicone paper, so that the silicone paper is sucked into the storage box.
8. The production equipment for combining a medicated plaster core and a heating pack as described in claim 7, characterized in that, A fixing part is connected to the workbench, and a horizontal push cylinder is connected to the fixing part. The piston rod of the horizontal push cylinder is connected to the side wall of the storage box.
9. The production equipment for combining a medicated plaster core and a heating pack as described in claim 8, characterized in that, A guide rod is connected to the side wall of the storage box, and the fixing part has a sliding hole that slides with the guide rod.
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