Hot compress patch processing, pressing and bag sealing equipment

By designing a hot compressed and sealing equipment including a support mechanism and an anti-pleasure mechanism, the problems of foreign matter scattering and electrostatic adhesion in the hot compressed and compressed patch processing are solved, and more efficient sealing and quality are achieved.

CN120117246AActive Publication Date: 2025-06-10TAIZHOU MEILAN DAILY NECESSITIES CO LTD

Patent Information

Application Number
CN202510615901.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-06-10
Estimated Expiration
2045-05-14

AI Technical Summary

Technical Problem

In the existing hot compress processing technology, foreign matters are easily scattered and electrostatically adhered when the dressing filler is affixed on the packaging material, resulting in incomplete sealing and affecting sealing.

Method used

A hot compressed and pressed bag sealing device including a support mechanism and an anti-pleasure mechanism is designed. The device cleans the packaging material through a lower chip removal mechanism and an upper chip removal mechanism, preheats the material to reduce bubbles and wrinkles, and smooths the material vertically and horizontally through an anti-wrinkle mechanism.

Benefits of technology

It effectively removes foreign matter and electrostatic impurities from the packaging material, improves the sealing and quality of the seal, reduces the occurrence of bubbles and wrinkles, and ensures good sealing of the hot compress patch.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses hot compress patch processing, pressing and bag sealing equipment, and relates to the technical field of hot compress patch processing, the hot compress patch processing, pressing and bag sealing equipment comprises a supporting mechanism and an anti-wrinkle mechanism, the supporting mechanism comprises a base, and two front supporting plates are jointly provided with a lower scrap removing mechanism and an upper scrap removing mechanism; and the two middle supporting plates are jointly and rotationally connected with two smoothing rollers which are distributed up and down, the two rear supporting plates are jointly provided with a preheating mechanism and an anti-wrinkle mechanism, and a press sealing machine is installed on the right portion of the top wall of the base. Through cooperation of the lower scrap removing mechanism and the upper scrap removing mechanism, the upper packaging material and the lower packaging material are cleaned, and the situation that dust and impurities adhere to the packaging materials, and follow-up press-fit packaging is affected is prevented; the upper scrap removing mechanism and the preheating mechanism are matched to preheat the packaging material, so that the possibility of generating bubbles and wrinkles at a sealing part is reduced; the preheating mechanism is matched with the anti-wrinkle mechanism, the packaging material is leveled, and wrinkles and bubbles are prevented from affecting the sealing quality and further affecting the sealing performance of the hot compress patch.
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Description

Technical Field

[0001] The present invention relates to the technical field of hot compress patch processing, and particularly relates to a hot compress patch processing pressing and sealing bagging device. Background Art

[0002] The hot compress patch provides warmth through heating, helps to relax muscles, relieve pain and stiffness, and is applicable to various conditions such as arthritis, muscle strain, dysmenorrhea, etc. The dressing filler of the hot compress patch usually includes components such as iron powder, activated carbon, salt and water. When these components come into contact with air, an oxidation reaction will occur, thereby releasing heat. The processing steps of the hot compress patch include: ingredient mixing, dressing pressing and sealing bagging, outer packaging encapsulation, etc.

[0003] The packaging material consists of two parts, the upper and the lower. When pressing and sealing the dressing bag, first, the pre-treated dressing filler is divided and loaded onto the lower packaging material through a feeding device, and then the upper packaging material is covered on the lower packaging material loaded with the dressing filler to prepare for the subsequent pressing and sealing of the edges, and the pressing and sealing is carried out through mechanical pressing; however, when the dressing filler is divided and loaded onto the lower packaging material, it is inevitable that dressing filler dust and small particle foreign matters will fall into the pressing gaps on the lower packaging material, and due to electrostatic reasons, the upper packaging material will adhere to dust and impurities, resulting in incomplete sealing; when directly pressing and sealing the upper and lower packaging materials and the dressing filler, due to reasons such as the temperature of the pressing gaps of the packaging material rising rapidly and the packaging material not being fully stretched, air bubbles and wrinkles will be generated at the sealing part, affecting the quality of the sealing and further affecting the sealing performance of the hot compress patch.

[0004] Therefore, in order to remove the impurities on the surface of the packaging material and improve the sealing performance of the sealing part of the hot compress patch, the present invention provides a hot compress patch processing pressing and sealing bagging device. Summary of the Invention

[0005] The purpose of the present invention is to solve the problems existing in the prior art, and to propose a hot compress patch processing pressing and sealing bagging device.

[0006] To achieve the above purpose, the present invention adopts the following technical solution: A hot compress patch processing pressing and sealing bagging device includes a support mechanism and an anti-wrinkle mechanism. The support mechanism includes a base, and a feeding table is fixedly connected to the middle of the top wall of the base. The front support plate, the middle support plate and the rear support plate which are symmetrically distributed front and back are fixedly arranged on the top wall of the base from left to right in sequence. An under foreign matter removing mechanism and an over foreign matter removing mechanism are jointly arranged on the two front support plates. Two smoothing rollers which are distributed up and down are jointly rotatably connected on the two middle support plates. A preheating mechanism and an anti-wrinkle mechanism are jointly arranged on the two rear support plates. And a pressing and sealing machine is installed on the right part of the top wall of the base.

[0007] The anti-wrinkle mechanism includes a guiding component arranged on the rear support plate for guiding the upper packaging material, a longitudinal flattening component jointly arranged on the rear support plate and the guiding component for longitudinally flattening the upper and lower packaging materials, and a transverse flattening member for transversely flattening the upper and lower packaging materials; the longitudinal flattening component includes a longitudinal flattening member, and a longitudinal flattening member is slidably connected up and down on the outer walls of the two mutually adjacent rear support plates, and the transverse flattening member is composed of a connecting rod fixedly connected to the outer walls of the two mutually adjacent rear support plates and a plurality of short pressing rods uniformly fixed to the bottom wall of the connecting rod from front to back.

[0008] In the above-mentioned hot compress patch processing, pressing and sealing bag equipment, the foreign object removing mechanism below includes a centralized chip removing component arranged on the front support plate for cleaning debris and foreign objects on the lower packaging material. The centralized chip removing component includes a sliding bracket slidably connected up and down to the two front support plates through an electric slider, and a chip collecting frame in an E shape with an opening to the left is fixedly connected to the bottom wall of the sliding bracket. The foreign object removing mechanism below also includes a plurality of lower dust suction heads installed through a fixed pipeline, a blocking plate is fixedly connected to the side walls of the plurality of lower dust suction heads, and a square groove adapted to the blocking plate is opened at the top of the front and rear facing sections of the chip collecting frame.

[0009] In the above-mentioned hot compress patch processing, pressing and sealing bag equipment, a pushing member and a scraping member are arranged inside each of the plurality of left and right facing sections of the chip collecting frame, and the pushing member is slidably connected up and down to the side wall of the chip collecting frame through a first spring. The pushing member is composed of a vertical plate slidably connected to the chip collecting frame and a first wedge block fixed to the right side wall of the vertical plate, and the top wall of the first wedge block is inclined. The scraping member is slidably connected left and right to the side wall of the chip collecting frame through a second spring, and the scraping member is composed of an L-shaped plate slidably connected to the chip collecting frame and a second wedge block fixed to the left side wall of the L-shaped plate. The bottom wall of the second wedge block is inclined and adapted to the first wedge block, and the L-shaped plate of the scraping member is an elastic telescopic structure in the up and down direction.

[0010] In the above-mentioned hot compress patch processing, pressing and sealing bag equipment, the foreign object removing mechanism above includes an upper dust suction head, and an upper dust suction head communicated with the lower dust suction head is arranged to the left of the lower flattening roller. The right side walls of the L-shaped members one symmetrically fixed to the front and rear sides of the front support plate are rotatably connected through a first torsion spring rod to a first air guide cover arranged outside the upper dust suction head. An air plasma outlet head is arranged above the upper dust suction head, and the height of the air plasma outlet head is lower than that of the upper flattening roller. The right side walls of the L-shaped members two symmetrically fixed to the front and rear sides of the front support plate are rotatably connected through a second torsion spring rod to a second air guide cover arranged outside the air plasma outlet head.

[0011] In the above-mentioned hot compress patch processing, pressing and bagging equipment, the foreign object removal mechanism further includes a driving component, and the driving component is jointly arranged on the two front support plates. The driving component includes a motor. Motors are respectively installed on the top of the two front support plates through plate members, and the bottom wall of the output end of the motor is fixedly connected with a first cam, a first bevel gear, and a second cam from top to bottom through a first shaft rod. The first cam and the second cam are respectively distributed corresponding to the second air guide cover and the first air guide cover on the right side.

[0012] In the above-mentioned hot compress patch processing, pressing and bagging equipment, the preheating mechanism includes a third air guide cover. The lower side walls of the L-shaped members three symmetrically fixed on the side walls of the rear support plate in the front and rear are rotatably connected with the third air guide cover through a third torsion spring rod, and there are two third air guide covers arranged corresponding to each other on the left and right. A plurality of hot air outlet heads are uniformly installed on the third air guide cover from front to back. The top wall of the first bevel gear is meshed and connected with a second bevel gear, and the right side wall of the second bevel gear is connected with a third cam corresponding to the third air guide cover through a second shaft rod.

[0013] In the above-mentioned hot compress patch processing, pressing and bagging equipment, the guiding component includes two guiding plates fixedly connected to the rear support plate and distributed corresponding to each other up and down. A plurality of guiding holes are vertically penetrated through the upper guiding plate in a matrix shape, and a plurality of chutes staggered with the guiding holes are vertically penetrated through the left part of the upper guiding plate, and a plurality of installation grooves staggered with the guiding holes are vertically penetrated through the right part of the upper guiding plate.

[0014] In the above-mentioned hot compress patch processing, pressing and bagging equipment, the longitudinal flattening component further includes hydraulic rods installed on the side walls of the two rear support plates close to each other through plate members, and the bottom walls of the output ends of the two hydraulic rods are fixedly connected with the longitudinal flattening member. The longitudinal flattening member is composed of two T-shaped members symmetrically distributed in the front and rear and slidably connected to the rear support plate and a set of pressing rods fixedly connected between the two T-shaped members and distributed up and down. The set of pressing rods is composed of a plurality of rods distributed from left to right.

[0015] In the above-mentioned hot compress patch processing, pressing and bagging equipment, a U-shaped guiding channel is jointly opened in the inner part of the rod at the lower layer of the longitudinal flattening member and the inner part of the T-shaped member of the longitudinal flattening member, and air collecting hoppers are fixed at both top ends of the guiding channel. A heat conducting plate is installed in the inner part of the rod at the lower layer of the longitudinal flattening member and arranged below the guiding channel, and air outlet openings are penetrated through the top end of the guiding channel and the top wall of the rod at the lower layer of the corresponding longitudinal flattening member.

[0016] In the above-mentioned hot compress patch processing, pressing and bagging equipment, there are two upper and lower corresponding transverse flattening members. The upper set of pressing rods is adapted to the chutes, and the lower set of pressing rods is arranged below the lower guiding plate. The upper short pressing rod is adapted to the installation grooves, and the lower short pressing rod is arranged below the lower guiding plate.

[0017] Compared with the existing technologies, the advantages of the present invention are as follows: 1. By the cooperation of the lower chip removal mechanism and the upper chip removal mechanism, the upper and lower packaging materials are cleaned to prevent dust and impurities from adhering to the packaging materials, which may affect the subsequent pressing and encapsulation and cause incomplete sealing; the lower suction head sucks the scattered dressing debris powder and small particle foreign matters away from the pressing gap on the lower packaging material, and the upper suction head synchronously performs the dust suction treatment on the upper packaging material; the plasma air outlet head performs the static elimination treatment on the upper packaging material to prevent the static electricity from causing material adhesion or adsorbing dust and other impurities during the feeding process; the second air guide cover and the first air guide cover change the dust suction range of the upper suction head and the static elimination range of the plasma air outlet head, so as to improve the effects of the dust suction operation and the static elimination operation on the upper packaging material.

[0018] 2. By the cooperation of the upper chip removal mechanism and the preheating mechanism, the packaging material is preheated to make the material more flexible and help to expel the internal air, which can help reduce the possibility of bubbles and wrinkles generated at the sealing position; the hot air outlet head blows hot air to the upper packaging material, the first bevel gear drives the second bevel gear to rotate, and the third air guide cover swings to change the range of the hot air blown by the hot air outlet head, so that the surface of the upper packaging material is heated more evenly.

[0019] 3. By the cooperation of the preheating mechanism and the anti-wrinkle mechanism, before the sealing operation, the packaging material is fully flattened to prevent wrinkles and bubbles from affecting the sealing quality, and further affect the sealing performance of the hot compress patch; the upper and lower rods of the flattening member intermittently press the corresponding upper and lower packaging materials longitudinally, and the short pressing rods of the transverse flattening members on the upper and lower sides continuously press the corresponding upper and lower packaging materials transversely; the heat conducting plate conducts the heat of the hot air to the bottom wall of the lower rod of the longitudinal flattening member to accelerate the flattening treatment of the packaging material. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The following further details the specific embodiments of the present invention with reference to the drawings, wherein: Figure 1 is a schematic structural diagram of the whole.

[0021] Figure 2 is Figure 1 a schematic structural diagram of another perspective.

[0022] Figure 3 is a schematic structural diagram of a part of the support mechanism, the guiding plate and the sealing machine.

[0023] Figure 4 is a three-dimensional structural diagram before and after the plugging plate is engaged with the chip collection frame.

[0024] Figure 5 is a partial sectional structural diagram before and after the plugging plate is engaged with the chip collection frame.

[0025] Figure 6 is a schematic structural diagram of the upper chip removal mechanism and the flattening roller.

[0026] Figure 7 It is a schematic structural diagram of a preheating mechanism.

[0027] Figure 8 It is a partial schematic structural diagram of an anti-wrinkle mechanism.

[0028] Figure 9 It is a partial schematic structural diagram of a longitudinal flattening component.

[0029] In the figure: 1. Support mechanism; 11. Base; 12. Feeding table; 13. Front support plate; 14. Middle support plate; 15. Rear support plate; 2. Lower chip removal mechanism; 21. Lower suction head; 22. Plugging plate; 23. Centralized chip removal component; 231. Sliding bracket; 232. Chip collection box; 233. Pushing member; 234. Scraping member; 3. Upper chip removal mechanism; 31. Upper suction head; 32. Air guide hood I; 33. Plasma air outlet head; 34. Air guide hood II; 35. Driving component; 351. Motor; 352. Cam I; 353. Bevel gear I; 354. Cam II; 4. Flattening roller; 5. Preheating mechanism; 51. Hot air outlet head; 52. Air guide hood III; 53. Cam III; 54. Bevel gear II; 6. Anti-wrinkle mechanism; 61. Guiding component; 611. Guiding plate; 612. Chute; 613. Guiding hole; 614. Installation groove; 62. Longitudinal flattening component; 621. Hydraulic rod; 622. Longitudinal flattening member; 623. Air collecting hopper; 624. Guiding channel; 625. Heat conducting plate; 626. Air outlet; 627. Pressing rod group; 63. Transverse flattening member; 631. Short pressing rod; 7. Pressing and sealing machine. Specific embodiments

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] Refer to Figures 1 to 3 , a hot compress patch processing and pressing and sealing bag device, including a support mechanism 1 and an anti-wrinkle mechanism 6. The support mechanism 1 includes a base 11. The middle part of the top wall of the base 11 is fixedly connected with a feeding table 12. The top wall of the base 11 is fixedly provided with a front support plate 13, a middle support plate 14, and a rear support plate 15 that are symmetrically distributed front and back from left to right. A lower chip removal mechanism 2 and an upper chip removal mechanism 3 are jointly arranged on the two front support plates 13. Two flattening rollers 4 that are distributed up and down are jointly rotatably connected on the two middle support plates 14. A preheating mechanism 5 and an anti-wrinkle mechanism 6 are jointly arranged on the two rear support plates 15. A pressing and sealing machine 7 is installed on the right part of the top wall of the base 11 of the support mechanism 1.

[0032] On the left side of the support mechanism 1, there are existing feeding devices for dressing fillers and feeding devices for lower packaging materials. Above the support mechanism 1, there is an existing feeding device for upper packaging materials. The feeding table 12 supports the lower packaging materials and the dressing fillers on the lower packaging materials that are conveyed from left to right. The dressing filler feeding device feeds the powdery dressing in a grid pattern onto the lower packaging materials. The smoothing roller 4 is used to feed the upper packaging materials. The upper packaging materials wind from the right side wall of the upper smoothing roller 4 to the left side wall of the lower smoothing roller 4, and then are guided to the anti-wrinkle mechanism 6 at the lower right side of the lower smoothing roller 4.

[0033] The lower debris removal mechanism 2 removes foreign objects from the grid-shaped pressing gaps between the dressing fillers on the lower packaging materials. The upper debris removal mechanism 3 removes static electricity and foreign objects from the upper packaging materials. The preheating mechanism 5 preheats the packaging materials at the anti-wrinkle mechanism 6 to make the packaging materials more ductile. The anti-wrinkle mechanism 6 smooths and prevents wrinkles of the upper and lower packaging materials. The pressing and sealing machine 7 performs pressing and encapsulation processing. On the right side of the support mechanism 1, there is an existing discharging and conveying device to convey the pressed and encapsulated dressings to the next production process.

[0034] Refer to Figure 1 、 Figure 4 and Figure 5 As shown in FIGS.

[0035] Refer to Figure 1 、 Figure 4 and Figure 5 The lower debris removal mechanism 2 includes a centralized debris removal component 23 provided on the front support plate 13 for cleaning debris and foreign objects on the lower packaging materials. The centralized debris removal component 23 includes a sliding bracket 231 that is slidably connected to the two front support plates 13 through an electric slider. The bottom wall of the sliding bracket 231 is fixedly connected with an E-shaped debris collection frame 232 with an opening to the left. The lower debris removal mechanism 2 further includes a plurality of lower dust suction heads 21 installed through an external fixed pipe. A blocking plate 22 is fixedly connected to the side walls of the plurality of lower dust suction heads 21. Square grooves adapted to the blocking plate 22 are opened at the top of the front and rear facing sections of the debris collection frame 232.

[0036] The lower dust suction head 21 is connected to an external suction pump through a pipeline. The lower dust suction head 21 performs intermittent dust suction treatment. The electric slider drives the centralized chip removal assembly 23 to move downward intermittently according to the pressing gap. When the chip collection frame 232 moves downward to engage with the plugging plate 22, the top of the chip collection frame 232 changes from an open state to a relatively closed state. Initially, the lower end of the vertical plate of the pushing member 233 is located below the chip collection frame 232. When the chip collection frame 232 moves downward and gradually approaches the pressing gap, the pushing member 233 moves upward, the first spring is compressed, the first wedge block pushes the second wedge block to generate displacement, and the scraping member 234 slides to the right, and the second spring is stretched. The L-shaped plate of the scraping member 234 is an up-and-down elastic telescopic structure. The L-shaped plate of the scraping member 234 scrapes the dressing debris powder scattered on the pressing gap of the lower packaging material, and scrapes it to the front and back parts close to the pushing member 233. The top wall of the horizontal section of the L-shaped plate is inclined downward to the right, so as to facilitate the L-shaped plate to push the dressing debris to move closer to the lower dust suction head 21. The lower dust suction head 21 sucks the dressing debris powder and small particle foreign matters scattered in the area of the chip collection frame 232 adapted to the pressing gap away from the pressing gap on the lower packaging material, preventing the dressing debris powder at the pressing part from affecting the subsequent pressing and encapsulation, resulting in incomplete sealing. The relatively closed chip collection frame 232 is conducive to standardizing the dust suction range of the lower dust suction head 21 and avoiding mis-sucking the dressing filler at non-pressing gap positions.

[0037] Refer to Figure 1 、 Figure 4 and Figure 6 As shown in FIGS.

[0038] Refer to Figure 1 、 Figure 4 and Figure 6 The upper chip removal mechanism 3 includes an upper dust suction head 31. An upper dust suction head 31 communicating with the lower dust suction head 21 is arranged on the left side of the lower smoothing roller 4. The right side wall of the first L-shaped member symmetrically fixed on the front and rear sides of the front support plate 13 is rotatably connected to a first air guide cover 32 arranged outside the upper dust suction head 31 through a first torsion spring rod. A plasma air outlet head 33 is arranged above the upper dust suction head 31. The height of the plasma air outlet head 33 is lower than that of the upper smoothing roller 4. The right side wall of the second L-shaped member symmetrically fixed on the front and rear sides of the front support plate 13 is rotatably connected to a second air guide cover 34 arranged outside the plasma air outlet head 33 through a second torsion spring rod.

[0039] The plasma outlet 33 is connected to an external static eliminator. The plasma outlet 33 blows out static-eliminating plasma wind to perform static elimination treatment on the upper packaging material at the position between the two flattening rollers 4, which can effectively reduce the surface resistance and reduce static accumulation, avoiding material adhesion or dust and other impurities adsorbed due to static electricity during the feeding process.

[0040] The upper dust suction head 31 is connected to the lower dust suction head 21 through a pipeline and jointly connected to an external suction pump. The initial states of the air guide cover one 32 and the air guide cover two 34 open to the right. When the lower dust suction head 21 performs dust suction treatment on the lower packaging material, the upper dust suction head 31 synchronously performs dust suction treatment on the upper packaging material to prevent dust and impurities from adhering to the upper packaging material and affecting subsequent pressing and encapsulation.

[0041] When the air guide cover one 32 and the air guide cover two 34 are operating, the output end of the motor 351 rotates to drive the first shaft, the first cam 352, the first bevel gear 353 and the second cam 354 to rotate. A plate fixed to the side wall of the front support plate 13 is rotatably connected to the first shaft connecting the first cam 352, the first bevel gear 353 and the second cam 354 to maintain the stability of the first shaft. When the first cam 352 and the second cam 354 rotate, they intermittently push the corresponding air guide cover two 34 and air guide cover one 32 to deflect. The first torsion spring rod and the second torsion spring rod connecting the air guide cover two 34 and the drive assembly 35 adapt to the deflection and help reset. When the air guide cover two 34 and the air guide cover one 32 swing, the dust suction range of the upper dust suction head 31 and the static elimination range of the plasma outlet 33 can be changed, so as to improve the effects of dust suction operation and static elimination operation.

[0042] Refer to Figure 2 and Figure 7 As shown in [relevant figure numbers] and [relevant figure numbers], the preheating mechanism 5 includes an air guide cover three 52. The lower side walls of the L-shaped parts three symmetrically fixed to the side walls of the rear support plate 15 front and back are rotatably connected to the air guide cover three 52 through a third torsion spring rod. There are two air guide covers three 52 arranged corresponding to the left and right. A plurality of hot air outlet heads 51 are uniformly installed on the air guide cover three 52 from front to back. The top wall of the first bevel gear 353 is meshed and connected with a second bevel gear 54. The right side wall of the second bevel gear 54 is connected with a third cam 53 corresponding to the air guide cover three 52 through a second shaft.

[0043] The hot air outlet head 51 is connected to an external hot air supply device. The initial state of the air guide cover three 52 opens downward. When the packaging material and the dressing filler are conveyed to the anti-wrinkle mechanism 6, the hot air outlet head 51 blows hot air upward to the upper packaging material to preheat the upper packaging material.

[0044] A plate member fixed to the side wall of the rear support plate 15 is rotatably connected to the second shaft rod connecting the bevel gear II 54 and the two cams III 53 to maintain the stability of the second shaft rod. When the bevel gear I 353 rotates, it drives the bevel gear II 54 to rotate. The rotation of the bevel gear II 54 drives the cam III 53 to rotate. The cam III 53 intermittently pushes the corresponding air guide cover III 52 to deflect. The torsion spring rod III connecting the air guide cover III 52 adapts to the deflection and helps to reset. When the air guide cover III 52 swings, it can change the range of the hot air blown out by the hot air outlet head 51. The hot air heating transfers heat through air as a medium. The swinging air guide cover III 52 makes the surface of the upper packaging material receive heat more evenly; a slight preheating is carried out before sealing to make the material more flexible and help to expel the internal air, which can help reduce the possibility of bubbles and wrinkles generated at the sealing position.

[0045] Referring to Figure 2 and Figure 8 , the anti-wrinkle mechanism 6 includes a guiding component 61 arranged on the rear support plate 15 for guiding the upper packaging material, a longitudinal smoothing component 62 jointly arranged on the rear support plate 15 and the guiding component 61 for longitudinally smoothing the upper and lower packaging materials, and a transverse flattening member 63 for transversely flattening the upper and lower packaging materials.

[0046] Referring to Figures 3 to 8 , the guiding component 61 includes two guiding plates 611 fixedly connected to the rear support plate 15 and distributed in an up-and-down corresponding manner. A plurality of guiding holes 613 are vertically penetrated through the upper guiding plate 611 in a matrix shape. A plurality of sliding grooves 612 that are left-right staggered with the guiding holes 613 are vertically penetrated through the left part of the upper guiding plate 611. A plurality of mounting grooves 614 that are front-back staggered with the guiding holes 613 are vertically penetrated through the right part of the upper guiding plate 611.

[0047] Referring to Figures 8 to 9, the longitudinal flattening assembly 62 includes a longitudinal flattening member 622. On the outer walls of the two rear support plates 15 close to each other, the longitudinal flattening member 622 is slidably connected up and down in common. The longitudinal flattening assembly 62 further includes hydraulic rods 621 installed on the side walls of the two rear support plates 15 close to each other through plate members. The bottom walls of the output ends of the two hydraulic rods 621 are fixedly connected to the longitudinal flattening member 622. The longitudinal flattening member 622 is composed of two T-shaped members symmetrically distributed front and rear and slidably connected to the rear support plate 15, and a pressing rod group 627 fixedly arranged between the two T-shaped members and distributed up and down. The pressing rod group 627 is composed of a plurality of rods distributed from left to right. In the inner part of the rod at the lower layer of the longitudinal flattening member 622 and the inner part of the T-shaped member of the longitudinal flattening member 622, a U-shaped guiding channel 624 is commonly opened. Air collecting hoppers 623 are fixed at both top ends of the guiding channel 624. A heat conducting plate 625 is installed in the inner part of the rod at the lower layer of the longitudinal flattening member 622 and is arranged below the guiding channel 624. Air outlet holes 626 are penetratedly opened at the top end of the guiding channel 624 and the top wall of the rod at the lower layer of the corresponding longitudinal flattening member 622.

[0048] Referring to Figures 8 to 9 , two horizontally corresponding flattening members 63 are provided. The horizontally flattening member 63 is composed of a connecting rod fixedly connected to the outer walls of the two rear support plates 15 close to each other and a plurality of short pressing rods 631 fixedly arranged on the bottom wall of the connecting rod from front to back evenly. The upper pressing rod group 627 is adapted to the sliding groove 612. The lower pressing rod group 627 is arranged below the lower guiding plate 611. The upper short pressing rod 631 is adapted to the installation groove 614. The lower short pressing rod 631 is arranged below the lower guiding plate 611.

[0049] When the packaging material and the dressing filler are conveyed to the anti-wrinkle mechanism 6, the upper packaging material passes between the two guiding plates 611. The lower packaging material and the dressing pass between the lower guiding plate 611 and the feeding table 12. The guiding holes 613 increase the heat receiving surface area of the guiding plate 611, and the cooperation of the two guiding plates 611 enhances the preheating treatment effect on the upper packaging material.

[0050] The output end of the hydraulic rod 621 extends downward to push the longitudinal flattening member 622 to slide downward as a whole. The upper pressing rod group 627 moves downward to intermittently press the lamination gap of the upper packaging material longitudinally. The upper pressing rod group 627 cooperates with the lower guiding plate 611 preheated by the hot air blown out by the hot air outlet head 51 to flatten the upper packaging material; the lower pressing rod group 627 moves downward to intermittently press the lamination gap of the lower packaging material longitudinally. At the same time, the hot air blown out by the hot air outlet head 51 is collected by the air collecting hopper 623, flows out from the air outlet 626 after passing through the guiding channel 624, and the heat conducting plate 625 conducts the heat of the hot air to the bottom wall of the lower pressing rod group 627 to accelerate the flattening process of the lower packaging material, ensuring that the packaging material is fully flattened before the sealing operation to prevent wrinkles and bubbles from affecting the quality of the seal and further affecting the sealing performance of the hot compress patch; when passing through the transverse flattening member 63, the upper short pressing rod 631 continuously presses the upper packaging material horizontally, and the lower short pressing rod 631 continuously presses the lower packaging material horizontally. The transverse flattening member 63 cooperates with the longitudinal flattening member 622 to fully flatten the grid-shaped lamination gaps of the upper and lower packaging materials.

[0051] The specific operation steps of this hot compress patch processing, laminating and sealing bag equipment are as follows: The dressing filling feeding equipment feeds the powdery dressing in a grid pattern onto the lower packaging material and conveys it on the feeding table 12. The L-shaped plate of the scraping member 234 scrapes the dressing debris scattered on the lamination gap of the lower packaging material. The lower suction head 21 sucks the scattered dressing debris and small particle foreign matters away from the lamination gap on the lower packaging material. At the same time, the smoothing roller 4 is used to feed the upper packaging material, and the plasma outlet head 33 blows out the plasma wind for static elimination to perform static elimination treatment on the upper packaging material at the position between the two smoothing rollers 4. The upper suction head 31 synchronously performs dust suction treatment on the upper packaging material.

[0052] The hot air outlet head 51 blows hot air onto the upper packaging material to preheat the upper packaging material; the upper pressing rod group 627 moves downward to intermittently press the lamination gap of the upper packaging material longitudinally, the lower pressing rod group 627 moves downward to intermittently press the lamination gap of the lower packaging material longitudinally, the upper short pressing rod 631 continuously presses the upper packaging material horizontally, and the lower short pressing rod 631 continuously presses the lower packaging material horizontally.

[0053] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A hot compress patch processing, pressing and sealing bag device, comprising a supporting mechanism and an anti-wrinkle mechanism, characterized in that: The support mechanism includes a base, and a feeding platform is fixedly connected to the middle of the top wall of the base, and a front support plate, a middle support plate and a rear support plate are fixed to the top wall of the base in sequence from left to right and are symmetrically distributed front and back, and a lower foreign matter removal mechanism and an upper foreign matter removal mechanism are commonly provided on the two front support plates, two smoothing rollers distributed up and down are rotatably connected to the two middle support plates, a preheating mechanism and an anti-wrinkle mechanism are commonly provided on the two rear support plates, and a pressure sealing machine is installed on the right part of the top wall of the base; The anti-wrinkle mechanism includes a guide assembly arranged on the rear support plate for guiding the upper packaging material, a longitudinal smoothing assembly arranged on the rear support plate and the guide assembly for longitudinally smoothing the upper and lower packaging materials, and a transverse flattening member for transversely smoothing the upper and lower packaging materials; The longitudinal smoothing assembly includes a longitudinal flattening piece, and the outer walls of one side of the two rear support plates close to each other are connected to the longitudinal flattening piece for sliding up and down. The transverse flattening piece is composed of a connecting rod fixed to the outer walls of one side of the two rear support plates close to each other and the bottom wall of the connecting rod is composed of multiple short pressure rods evenly fixed from front to back.

2. The hot compress patch processing, pressing and sealing bag device according to claim 1, characterized in that: The lower foreign matter removal mechanism includes a centralized chip removal assembly arranged on the front support plate for cleaning debris and foreign matter on the lower packaging material, the centralized chip removal assembly includes a sliding bracket connected to the two front support plates by an electric slider for sliding up and down, and the bottom wall of the sliding bracket is fixedly connected to an E-shaped chip collecting frame with an opening facing left, the lower chip removal mechanism also includes a plurality of lower dust suction heads connected to the fixed pipe, the side walls of the plurality of lower dust suction heads are commonly fixedly connected to a sealing plate, and a square groove matching the sealing plate is provided on the top of the front and rear facing sections of the chip collecting frame.

3. The hot compress patch processing, pressing and sealing bag device according to claim 2, characterized in that: The multiple left and right facing sections of the chip collecting frame are each provided with a pushing piece and a scraping piece, and the pushing piece is connected to the side wall of the chip collecting frame for vertical sliding movement by a spring 1, the pushing piece is composed of a vertical plate connected to the chip collecting frame for vertical movement and a wedge block 1 fixed to the right side wall of the vertical plate, and the top wall of the wedge block 1 is inclined, the scraping piece is connected to the side wall of the chip collecting frame for horizontal sliding movement by a spring 2, and the scraping piece is composed of an L-shaped plate connected to the chip collecting frame for horizontal sliding movement and a wedge block 2 fixed to the left side wall of the L-shaped plate, the bottom wall of the wedge block 2 is inclined to match the wedge block 1, and the L-shaped plate of the scraping piece is an upper and lower elastic telescopic structure.

4. The hot compress patch processing, pressing and sealing bag device according to claim 2, characterized in that: The foreign matter removal upper mechanism includes an upper dust suction head, and an upper dust suction head connected to the lower dust suction head is arranged on the left side of the smoothing roller on the lower side, an L-shaped piece one symmetrically fixed on the side wall of the front support plate front and back is rotatably connected to an air guide hood one arranged outside the upper dust suction head on the right side wall through a torsion spring rod one, a plasma air outlet head is arranged above the upper dust suction head, and the height of the plasma air outlet head is lower than the smoothing roller on the upper side, and a L-shaped piece two symmetrically fixed on the side wall of the front support plate front and back is rotatably connected to an air guide hood two arranged outside the plasma air outlet head on the right side wall through a torsion spring rod two.

5. The hot compress patch processing, pressing and sealing bag device according to claim 4, characterized in that: The foreign body removal upper mechanism also includes a driving assembly, and the two front support plates are jointly provided with a driving assembly, the driving assembly includes a motor, the tops of the two front support plates are both equipped with motors through plates, and the bottom wall of the output end of the motor is fixedly connected with cam 1, bevel gear 1 and cam 2 from top to bottom through shaft rod 1, and cam 1 and cam 2 are respectively distributed corresponding to air guide cover 2 and air guide cover 1 on the right.

6. The hot compress patch processing, pressing and sealing bag device according to claim 5, characterized in that: The preheating mechanism includes an air guide hood three, a lower side wall of an L-shaped member three symmetrically fixed on the side wall of the rear support plate is rotatably connected to the air guide hood three through a torsion spring rod three, and the air guide hood three is provided with two corresponding left and right parts, and a plurality of hot air outlets are evenly installed on the air guide hood three from front to back, the top wall of the bevel gear one is meshedly connected with the bevel gear two, and the right side wall of the bevel gear two is connected to a cam three corresponding to the air guide hood three through a shaft rod two.

7. The hot compress patch processing, pressing and sealing bag device according to claim 1, characterized in that: The guide assembly includes two guide plates which are correspondingly distributed up and down and fixedly connected to the rear support plate, and the upper guide plate is provided with a plurality of guide holes which are penetrated up and down in a matrix shape, a plurality of slide grooves which are staggered with the guide holes are penetrated up and down on the left part of the upper guide plate, and a plurality of installation grooves which are staggered with the guide holes are penetrated up and down on the right part of the upper guide plate.

8. The hot compress patch processing, pressing and sealing bag device according to claim 7, characterized in that: The longitudinal smoothing assembly also includes a hydraulic rod installed on the side walls of the two rear support plates close to each other through a plate, and the bottom walls of the output ends of the two hydraulic rods are fixedly connected to the longitudinal flattening member. The longitudinal flattening member is composed of two T-shaped members symmetrically distributed front and back and slidably connected to the rear support plates and a pressure rod group distributed up and down and fixed between the two T-shaped members, and the pressure rod group is composed of a plurality of rods distributed from left to right.

9. The hot compress patch processing, pressing and sealing bag device according to claim 8, characterized in that: A U-shaped guide channel is provided inside the lower rod of the longitudinal flattening member and the T-shaped member of the longitudinal flattening member, and wind collecting scoops are fixed at both top ends of the guide channel. A heat conduction plate arranged below the guide channel is installed inside the lower rod of the longitudinal flattening member, and air outlets are provided through the top end of the guide channel and the top wall of the corresponding lower rod of the longitudinal flattening member.

10. The hot compress patch processing, pressing and sealing bag device according to claim 8, characterized in that: The transverse flattening members are provided with two corresponding upper and lower ones, and the transverse flattening members are composed of a connecting rod fixed together with the outer wall of one side close to the two rear support plates, and the bottom wall of the connecting rod is composed of multiple short pressure rods evenly fixed from front to rear, the upper pressure rod group is adapted to the slide groove, and the lower pressure rod group is arranged below the lower guide plate, the upper short pressure rod is adapted to the installation groove, and the lower short pressure rod is arranged below the lower guide plate.

Citation Information

Patent Citations

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