Vertical and horizontal dual-purpose heavy-load sealing machine

By designing a vertical and horizontal dual-purpose heavy-duty sealing machine, the sealing machine can be flexibly switched between vertical and horizontal forms, solving the problem of poor adaptability of existing sealing machines, improving operating efficiency and reducing production costs.

CN120736065APending Publication Date: 2025-10-03WENZHOU BROTHER MASCH CO LTD
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Patent Information

Application Number
CN202511174861.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-21
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

The existing sealing machine needs to be replaced with a vertical or horizontal sealing machine according to different packaging products, which is inconvenient to operate and has poor adaptability.

Method used

A vertical and horizontal dual-purpose heavy-duty sealing machine is designed. The rotation and height adjustment of the main module and the conveying module are achieved through a locking structure and a lifting structure. It supports switching between vertical and horizontal modes and enhances adaptability.

Benefits of technology

The adaptability of the sealing machine to different products is improved, the operation process is simplified, and the production cost is reduced.

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Abstract

The invention relates to the technical field of sealing machines, and discloses a vertical and horizontal dual-purpose heavy-load sealing machine which comprises a supporting frame, a main machine frame, a conveying frame, a conveying module and a main machine module, the main machine frame and the conveying frame are arranged on the supporting frame, the conveying module is arranged on the conveying frame, and the main machine frame comprises two first mounting plates; and the host module comprises a host box rotationally connected between the two first mounting plates, locking structures for limiting rotation of the host module are arranged on the first mounting plates, and the effect of improving the adaptability of the sealing machine is achieved.
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Description

Technical Field

[0001] The present application relates to the technical field of sealing machines, and in particular to a vertical and horizontal dual-purpose heavy-duty sealing machine. Background Art

[0002] Sealing machine is a kind of equipment used to seal packaging, which is widely used in food, medicine, chemical industry, daily chemical, electronics and other industries.

[0003] A sealing machine in the related art includes a support frame, the support frame is provided with a sealing module and a conveying module, and the sealing module is located above the conveying module. The conveying module conveys the product, and the sealing module seals the product.

[0004] Existing sealing machines include vertical sealing machines and horizontal sealing machines. When sealing different packaged products, workers need to switch different sealing machines to perform sealing operations, and the operation is very invariant. Summary of the Invention

[0005] In order to improve the adaptability of the sealing machine, the present application provides a vertical and horizontal dual-purpose heavy-duty sealing machine.

[0006] This application provides a vertical and horizontal dual-purpose heavy-duty sealing machine, which adopts the following technical solutions: A vertical and horizontal dual-purpose heavy-load sealing machine, comprising Support frame; A main frame is arranged on the support frame; The conveying frame is arranged on the supporting frame and is located below the main frame; A conveying module, disposed on the conveying frame and used for conveying packaging bags; A host module is provided on the main frame and is used to seal the packaging bag; The main frame includes two first mounting plates, the host module includes a host box rotatably connected between the two first mounting plates, and a locking structure for limiting the rotation of the host module is provided on the first mounting plates.

[0007] By adopting the above technical solution, when it is necessary to seal different products, the locking structure on the main module is first released, and then the main box is driven to rotate, and then the adjusted main unit is further locked through the locking structure to complete the switching of the sealing machine between vertical and horizontal modes, thereby increasing the types of products that can be processed by the sealing machine and improving the adaptability of the sealing machine.

[0008] Optionally, a plurality of adjustment holes are provided on a side of the first mounting plate away from the main chassis, and the plurality of adjustment holes are distributed in a circumferential array around the rotation axis of the main chassis. A locking hole is provided on the end face of the main chassis facing the first mounting plate, and the locking structure includes a locking bolt, which can be threaded into the locking hole by passing through any adjustment hole.

[0009] By adopting the above technical solution, when the angle of the main case needs to be adjusted, first turn the locking bolt, remove the locking bolt from the adjustment hole, release the locking bolt from the main case, and then rotate the main case to align the locking hole on the main case with the new adjustment hole. Then, pass the locking bolt through the new adjustment hole and thread it into the locking hole to complete the adjustment of the main case angle.

[0010] The transmission gear of the present invention is a gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a first gear and a second gear selected from the group consisting of a

[0011] By adopting the above technical solution, the first rotating component drives the first active rod to rotate, the first active rod drives the first driving gear to rotate, and the first driving gear drives the first gear belt to move. When the first gear belt drives the first connecting seat and the first connecting column to rise, the main frame and the main box are raised together. Conversely, when the first rotating component drives the first active rod to rotate in the opposite direction, its first gear belt drives the first connecting seat and the first connecting column to descend, that is, the main frame and the main box are lowered together, so that the main box is away from or close to the conveying module, so that the sealing machine can process products of different sizes, thereby improving the adaptability of the sealing machine.

[0012] Optionally, the first rotating assembly includes an operating box arranged on the side of the vertical plate away from the first gear belt, the first active rod is inserted into the operating box, a worm gear is provided in the operating box and is sleeved on the outside of the first active rod, a worm is rotatably connected to the operating box and meshes with the worm gear, and one end of the worm extends out of the operating box and is connected to a rocker handle.

[0013] By adopting the above technical solution, the crank handle is driven to rotate, and the crank handle drives the worm to rotate. Since the worm is engaged with the worm wheel, the worm drives the worm wheel and the first active rod to rotate, so that the main frame and the main box are raised together. Conversely, the crank handle is rotated in the opposite direction to achieve the main frame and the main box being lowered together.

[0014] Optionally, a first fastening assembly connecting the first mounting block and the first mounting bar is provided between the two, a first mounting portion is provided on the side of the first mounting plate facing the first mounting block, and the first fastening assembly includes two horizontally distributed first fastening bolts, which pass through the first mounting block and the first mounting bar and are threadedly connected to a first fastening nut.

[0015] Optionally, the first lifting structure includes a first guide assembly for improving the stability of the main frame during lifting, the first guide assembly includes a guide column located between the first cross plate and the second cross plate and a guide roller mounted outside two first fastening bolts, the guide roller is located between the first mounting plate and the first mounting block, the guide column is located between the two guide rollers, and the guide roller is in conflict with the guide column.

[0016] By adopting the above technical solution, the guide column is located between the two guide rollers, so that the main frame is not easy to move horizontally during the lifting process, thereby maintaining the stability of the main frame and the host module; the guide rollers and the guide rods are moved in a rolling manner, which can reduce the wear of the guide rollers and the guide rods.

[0017] Optionally, a connecting frame is provided on the mounting surface of the main chassis, a connecting frame is rotatably connected to the connecting frame, a control box is provided on the connecting frame, and a rotation axis of the control frame is parallel to the rotation axis of the main chassis.

[0018] By adopting the above technical solution, when the host module switches its form, the control box may be inconvenient for the staff to operate. By rotating the control box and changing its direction, the staff can operate the control box more easily.

[0019] Optionally, the connecting frame includes two connecting plates, and the end faces of the two connecting plates close to each other are each provided with a waist-shaped connecting hole. A connecting piece connecting the connecting frame and the control frame is provided between the connecting frame and the control frame, and the connecting piece includes a connecting bolt, which passes through the connecting hole and the control frame and is threadedly connected to a connecting handle.

[0020] By adopting the above technical solution, the connecting bolts and the connecting handle are loosened, and then the control frame is driven to rotate or slide in the connecting hole to adjust the position and angle of the control box, making it easier for workers to operate the control box.

[0021] Optionally, an operating handle is provided on the connecting frame.

[0022] By adopting the above technical solution, the staff can drive the main box to rotate through the operating handle, which is also conducive to maintaining the position of the main box so that the holes in the main box are aligned with the holes on the first mounting plate.

[0023] Optionally, the conveying frame includes two second mounting plates, and a displacement component for moving the conveying module toward / away from the support frame is provided on the second mounting plates. The displacement component includes a material support bar provided on the side where the two second mounting plates are close to each other, and a displacement bar is slidingly provided above the two material support bars. The end surfaces of the two displacement bars close to each other are provided with material support plates, and the upper ends of the two material support plates are connected to the lower end of the conveying module, and a positioning member for limiting the movement of the displacement bar is provided on the second mounting plate.

[0024] By adopting the above-mentioned technical solution, the locking of the positioning part on the displacement bar is released, and then the displacement bar is driven to move on the material support bar, the horizontal position of the conveying module can be adjusted so that the conveying module can adapt to the host module in a vertical state or the host module in a horizontal state; the horizontal position of the conveying module can be adjusted to reduce the width required for the conveying module and reduce the material required for the conveying module, that is, to reduce the production cost of the conveying module.

[0025] In summary, this application includes at least one of the following beneficial technical effects: 1. When sealing different products, first release the lock on the main unit module by the locking structure, then drive the main unit box to rotate, and then further lock the adjusted main unit through the locking structure to complete the switching of the sealing machine between vertical and horizontal modes, so that the variety of products that the sealing machine can process increases and improves the adaptability of the sealing machine; 2. The position and angle of the control box can be adjusted to facilitate the operation of the control box by the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0027] Figure 1 It is a structural diagram of an embodiment of the present application; Figure 2 It is a schematic diagram highlighting the structure of the movable frame; Figure 3 It is a schematic diagram highlighting the support frame structure; Figure 4 yes Figure 2 A magnified schematic diagram of part A; Figure 5 It is along Figure 2 Cross-sectional view along the midline BB; Figure 6 It is a structural diagram highlighting the host module; Figure 7 yes Figure 2 A magnified schematic diagram of part C; Figure 8 It is a schematic diagram of the local structure highlighting the displacement component.

[0028] 1. The support frame is provided with a plurality of support members, each of which is provided with a plurality of support members, and a plurality of support members are provided with plurality of support members. Second mounting bar; 405, second mounting portion; 406, second fastening bolt; 407, second fastening nut; 500, host module; 501, host case; 502, rotating bolt; 503, transmission assembly; 504, sealing assembly; 505, connecting frame; 506, control box; 507, rotating hole; 509, locking structure; 510, locking bolt; 511, adjustment hole; 512, locking hole; 513, mounting surface; 514, control surface; 515, transmission wheel; 516, transmission belt; 517, connecting base; 518, connecting plate; 519, control frame; 520, connecting piece; 521, connecting hole; 522, control bar; 523, control board ; 524, connecting bolt; 525, connecting handle; 526, handle plate; 527, operating handle; 600, conveying module; 601, fixing plate; 602, conveyor belt; 700, first lifting structure; 701, first main bearing seat; 702, first slave bearing seat; 703, first active rod; 704, first active gear; 705, first gear shaft; 706, first connecting seat; 707, first connecting column; 708, first gear belt; 709, first rotating assembly; 710, first guide assembly; 711, first through hole; 712, first through hole; 713, operating box; 714, worm gear; 715, worm; 716, rocker handle; 71 7. Operating chamber; 718. Guide column; 719. Guide roller; 800. Second lifting structure; 801. Second main bearing seat; 802. Second active rod; 803. Second active gear; 804. Second gear shaft; 805. Second connecting seat; 806. Second connecting column; 807. Second gear belt; 808. Second rotating assembly; 809. Second guide assembly; 810. Second through hole; 811. Second perforation; 900. Displacement assembly; 901. Support bar; 902. Displacement bar; 903. Support plate; 904. Reinforcement rod; 905. Reinforcement bar; 906. Positioning piece; 907. Positioning handle; 908. Positioning bar; 909. Sliding hole. DETAILED DESCRIPTION

[0029] The following is combined with Figure 1-8 This application is described in further detail.

[0030] This embodiment discloses a vertical and horizontal dual-purpose heavy-duty sealing machine. Figure 1 A vertical and horizontal dual-purpose heavy-load sealing machine includes a support frame 100, a movable frame 200, a main frame 300, a conveying frame 400, a main module 500, a conveying module 600, a first lifting structure 700 and a second lifting structure 800.

[0031] Reference Figure 2 The movable frame 200 is used to move the support frame 100 , and the movable frame 200 includes a movable rod 201 , a movable bar 202 , a universal wheel 203 and a support assembly 204 .

[0032] Reference Figure 2 Two movable rods 201 are provided, and the two movable rods 201 are horizontally distributed and parallel to each other. Two movable bars 202 are provided, and the two movable bars 202 are arranged between the two movable rods 201. The two movable bars 202 are horizontally distributed and parallel to each other, and the two ends of the two movable bars 202 along the length direction are each connected to a movable bar 202.

[0033] Reference Figure 2 Two universal wheels 203 are provided under each movable bar 202, and the two universal wheels 203 are distributed along the length direction of the movable bar 202. Two supporting components 204 are provided on the side of the two movable rods 201 away from the movable bar 202, and the two supporting components 204 are distributed along the length direction of the movable rod 201.

[0034] Reference Figure 2 The support assembly 204 includes a support base 205, a support rod 206, and a support plate 207. The support base 205 is fixedly connected to the end face of the movable rod 201 away from the movable bar 202. The support rod 206 is vertically arranged and bolted to the support base 205. The support plate 207 is fixedly connected to the lower end face of the support rod 206.

[0035] Reference Figure 2 The support frame 100 is arranged on the movable frame 200, and the support frame 100 includes a vertical plate 101, a first horizontal plate 102 and a second horizontal plate 103. There are two vertical plates 101 and they are parallel to each other. The end surface of each movable rod 201 facing the movable bar 202 is fixedly connected to a vertical plate 101.

[0036] Reference Figure 2 The first transverse plate 102 and the second transverse plate 103 are both disposed between the two vertical plates 101. The first transverse plate 102 is fixedly connected to one vertical plate 101 at both ends along its length, and the second transverse plate 103 is fixedly connected to one vertical plate 101 at both ends along its length. The second transverse plate 103 is located directly above the first transverse plate 102.

[0037] Reference Figure 3and Figure 4 The main frame 300 includes a first mounting plate 301, a first mounting block 302, a first fastening assembly 303, and a first mounting bar 304. Two first mounting plates 301 are provided, and the two first mounting plates 301 are horizontally arranged and symmetrical to each other. The adjacent end surfaces of the two first mounting plates 301 are fixedly connected to a first mounting portion 305. Two first mounting blocks 302 are provided, and the two first mounting blocks 302 are located between the two first mounting portions 305. The distal end surfaces of the two first mounting blocks 302 each abut against one first mounting portion 305. The first mounting bar 304 is provided between the two first mounting blocks 302.

[0038] Reference Figure 3 and Figure 4 The first fastening assembly 303 is used to connect the first mounting block 302 to the adjacent first mounting bar 304. Two sets of first fastening assemblies 303 are provided, arranged in a vertical array. The first fastening assemblies 303 include first fastening bolts 306 and first fastening nuts 307. Two first fastening bolts 306 are provided, arranged horizontally. The two first fastening bolts 306 pass through the first mounting block 302 and the first mounting plate 301, and each is threadedly connected to a first fastening bolt 306.

[0039] Reference Figure 4 and Figure 5 The first lifting structure 700 is used to drive the main frame 300 to rise and fall. The first lifting structure 700 includes a first main bearing seat 701, a first slave bearing seat 702, a first active rod 703, a first active gear 704, a first gear shaft 705, a first coupling seat 706, a first coupling column 707, a first gear belt 708, a first rotating assembly 709, and a first guide assembly 710.

[0040] Reference Figure 2 and Figure 5 Two first main bearing seats 701 are provided, each fixedly connected to the lower end surface of the first transverse plate 102. A first gear shaft 705 is rotatably connected to each first main bearing seat 701. A first through-hole 711 is defined on the end surface of the first main bearing seat 701 facing the first transverse plate 102, and the first through-hole 711 aligns with the gear portion of the first gear shaft 705. A first through-hole 712 is defined on the upper end surface of the first transverse plate 102, and the first through-hole 712 aligns with the first through-hole 711.

[0041] Reference Figure 5 There are two first slave bearing seats 702 , and both first slave bearing seats 702 are fixedly connected to the lower end surface of the second transverse plate 103 .

[0042] Reference Figure 5One end of the first active rod 703 is rotatably connected to one vertical plate 101, and the other end of the first active rod 703 passes through two first slave bearing seats 702 and is rotatably connected to the other vertical plate 101. The first slave bearing seats 702 are all rotatably connected to the first active rod 703.

[0043] Reference Figure 5 Two first driving gears 704 are provided, and both first driving gears 704 are sleeved outside the first active rod 703. The first driving gear 704 is rotatably connected to the first slave bearing seat 702.

[0044] Reference Figure 4 Each first mounting block 302 is provided with a first coupling seat 706 and a first coupling post 707. The first coupling seat 706 and the first coupling post 707 are both fixedly connected to the side of the first mounting block 302 facing the first mounting bar 304. The first coupling seat 706 is located directly above the first coupling post 707.

[0045] Reference Figure 2 、 Figure 4 and Figure 5 One end of the first gear belt 708 is connected to the side of the first coupling seat 706 away from the first coupling column 707. The other end of the first gear belt 708 passes over the top of the first driving gear 704 and extends downward, then passes through the first through-hole 712 and the first through-hole 711, passes under the gear portion of the first gear shaft 705, and finally passes through the first through-hole 712 and the first through-hole 711 again to connect with the lower end surface of the first coupling column 707. The gear portions of the first driving gear 704 and the first gear shaft 705 are both meshed with the first gear belt 708.

[0046] Reference Figure 3 and Figure 5 The first rotating assembly 709 is disposed on the vertical plate 101 and is used to drive the first active rod 703 to rotate. The first rotating assembly 709 includes an operating box 713, a worm gear 714, a worm 715 and a rocker handle 716.

[0047] Reference Figure 3 and Figure 5 The operation box 713 is fixedly connected to the end surface of the vertical plate 101 away from the main frame 300. An operation cavity 717 is provided inside the operation box 713, and one end of the first active rod 703 is inserted into the operation cavity 717.

[0048] Reference Figure 3 and Figure 5The worm gear 714 is disposed within the operating chamber 717 and is sleeved onto the outside of the first active rod 703. A worm 715 is rotatably connected to the operating box 713, with one end of the worm 715 extending outside the operating box 713. The worm 715 is located below the worm gear 714, and the worm 715 and the worm gear 714 are meshed with each other. In other embodiments, the worm 715 is disposed above the worm gear 714. A rocker handle 716 is disposed outside the operating box 713 and is connected to the worm 715.

[0049] Reference Figure 4 and Figure 5 The first guide assembly 710 ensures stability during the raising and lowering of the main frame 300. A first guide assembly 710 is disposed between the first mounting plate 301 and the first mounting block 302. The first guide assembly 710 includes a guide post 718 and four guide rollers 719. The lower end of the guide post 718 is connected to the upper end surface of the first transverse plate 102, and the upper end surface of the guide post 718 is connected to the second transverse plate 103. The guide post 718 is located between two horizontally arranged first fastening bolts 306 within the first fastening assembly 303.

[0050] Reference Figure 4 and Figure 5 The four guide rollers 719 are each sleeved outside a first fastening bolt 306 , and the guide rollers 719 are located between the first mounting plate 301 and the first mounting block 302 . The two horizontally arranged guide rollers 719 abut against the guide post 718 .

[0051] Reference Figure 1 and Figure 6 The main module 500 is arranged on the main frame 300 and is used to seal the product. The main module 500 includes a main box 501, a rotating bolt 502, a transmission component 503, a sealing component 504, a connecting frame 505 and a control box 506.

[0052] Reference Figure 1 and Figure 4 The main chassis 501 is disposed between the two first mounting plates 301. A rotation hole 507 is defined on the end surface of the first mounting plate 301 away from the main chassis 501. A rotation bolt 502 is disposed on each first mounting plate 301. The rotation bolt 502 passes through the rotation hole 507 and is threadedly connected to the main chassis 501, allowing the main chassis 501 to rotate about the axis of the rotation bolt 502.

[0053] Reference Figure 1 and Figure 4A locking structure 509 is provided on the first mounting plate 301 to restrict the rotation of the host module 500. The locking structure 509 includes a locking bolt 510. A plurality of adjustment holes 511 are defined on the end surface of the first mounting plate 301 away from the host chassis 501. The plurality of adjustment holes 511 are arranged in a circular array around the axis of the rotation hole 507.

[0054] Reference Figure 4 and Figure 6 The main chassis 501 is provided with a locking hole 512 on its end surface facing the first mounting plate 301 . When the main chassis 501 rotates around the axis of the rotating bolt 502 , the locking hole 512 can be aligned with the adjustment hole 511 .

[0055] Reference Figure 6 The main chassis 501 includes a mounting surface 513 and a control surface 514 . The mounting surface 513 and the control surface 514 are both parallel to the axis of the locking hole 512 .

[0056] Reference Figure 6 Two transmission assemblies 503 are provided, both mounted on the main chassis 501, and the two transmission assemblies 503 cooperate to move the product. The transmission assembly 503 includes a transmission wheel 515, a conveyor belt 516, and a transmission drive source. Two transmission wheels 515 are provided, both rotatably connected to the mounting surface 513. The two transmission wheels 515 are distributed along the length of the main chassis 501. The conveyor belt 516 is mounted outside the two conveyor belts 516. The transmission motor is located within the main chassis 501, and the output shaft of the transmission motor is connected to the transmission wheel 515.

[0057] Reference Figure 6 The sealing assembly 504 is arranged on the mounting surface 513 and is used to seal the product. The sealing assembly 504 includes components such as a fixed heating strip and a movable heating strip arranged on the mounting surface 513.

[0058] Reference Figure 6 The connecting frame 505 is disposed on the control surface 514. The connecting frame 505 includes a connecting base 517 and a connecting plate 518. The connecting base 517 is fixedly connected to the control surface 514. Two connecting plates 518 are provided, and both connecting plates 518 are fixedly connected to the end surface of the connecting base 517 away from the main chassis 501. The connecting plates 518 are perpendicular to the control surface 514. The two connecting plates 518 are parallel to each other and are distributed along the length of the main chassis 501.

[0059] Reference Figure 6The connecting frame 505 is rotatably connected to a control frame 519, with a connecting member 520 disposed between the connecting frame 505 and the control frame 519. The adjacent end surfaces of the two connecting plates 518 each have a waist-shaped connecting hole 521, with the length of the connecting hole 521 parallel to the control surface 514. The control frame 519 includes a control bar 522 and two control plates 523, with the two connecting plates 518 positioned between the two control plates 523. The control bar 522 is disposed between the two control plates 523, and is fixedly connected to a control plate 523 at each end along the length of the main chassis 501.

[0060] Reference Figure 6 The connecting member 520 includes a connecting bolt 524 and a connecting handle 525. The connecting bolt 524 passes through the connecting hole 521 and the control plate 523 in sequence and is threadedly connected to the connecting handle 525.

[0061] Reference Figure 6 The control box 506 is installed on the control board 523, and the control box 506 is used to control the opening or closing of the sealing component 504 and the transmission component 503.

[0062] Reference Figure 6 A handle plate 526 is fixedly connected to the side of the connecting base 517 away from the main box 501, and an operating handle 527 is provided on the end face of the handle plate 526 along the length direction of the main box 501.

[0063] Reference Figure 3 and Figure 7 The conveyor rack 400 includes a second mounting plate 401, a second mounting block 402, a second fastening assembly 403, and a second mounting strip 404. Two second mounting plates 401 are provided, and the two second mounting plates 401 are horizontally distributed and symmetrical to each other. The end surfaces of the two second mounting plates 401 that are close to each other are fixedly connected to a second mounting portion 405. Two second mounting blocks 402 are provided, and the two second mounting blocks 402 are located between the two second mounting portions 405. The end surfaces of the two second mounting blocks 402 that are away from each other are both in contact with one second mounting portion 405. The second mounting strip 404 is provided between the two second mounting blocks 402.

[0064] Reference Figure 3 and Figure 7The second fastening assembly 403 is used to connect the second mounting block 402 to the adjacent second mounting bar 404. Two sets of second fastening assemblies 403 are provided, arranged in a vertical array. The second fastening assemblies 403 include second fastening bolts 406 and second fastening nuts 407. Two second fastening bolts 406 are provided, arranged horizontally. The two second fastening bolts 406 pass through the second mounting block 402 and the second mounting plate 401, and each is threadedly connected to a second fastening bolt 406.

[0065] Reference Figure 5 and Figure 7 The second lifting structure 800 is used to drive the conveyor frame 400 to move up and down. The second lifting structure 800 includes a second main bearing seat 801, a second active rod 802, a second active gear 803, a second gear shaft 804, a second coupling seat 805, a second coupling column 806, a second gear belt 807, a second rotating assembly 808, and a second guide assembly 809.

[0066] Reference Figure 5 and Figure 7 Two second main bearing seats 801 are provided, each fixedly connected to the lower end surface of the first transverse plate 102. A second gear shaft 804 is rotatably connected to each second main bearing seat 801. A second through-hole 810 is defined on the end surface of the second main bearing seat 801 facing the first transverse plate 102, and the second through-hole 810 aligns with the gear portion of the second gear shaft 804. A second through-hole 811 is defined on the upper end surface of the first transverse plate 102, and the second through-hole 811 aligns with the second through-hole 810.

[0067] Reference Figure 5 and Figure 7 The second active rod 802 is located below the first active rod 703. One end of the second active rod 802 is rotatably connected to one vertical plate 101, and the other end of the second active rod 802 is rotatably connected to the other vertical plate 101.

[0068] Reference Figure 5 There are two second driving gears 803 , and both second driving gears 803 are sleeved outside the second active rod 802 .

[0069] Reference Figure 5 and Figure 7 Each second mounting plate 401 is provided with a second coupling seat 805 and a second coupling post 806. The second coupling seat 805 and the second coupling post 806 are both fixedly connected to a side of the second mounting plate 401 away from the second mounting bar 404. The second coupling seat 805 is located directly above the second coupling post 806.

[0070] Reference Figure 5 and Figure 7 One end of the second gear belt 807 is connected to the side of the second coupling base 805 away from the second coupling column 806. The other end of the second gear belt 807 passes over the top of the second driving gear 803 and extends downward, then passes through the second through-hole 811 and the second through-hole 810, passes under the gear portion of the second gear shaft 804, and finally passes through the second through-hole 811 and the second through-hole 810 again to connect to the lower end surface of the second coupling column 806. The gear portions of the second driving gear 803 and the second gear shaft 804 are both meshed with the second gear belt 807.

[0071] Reference Figure 3 and Figure 7 The second rotating assembly 808 is disposed on the vertical plate 101 and is located directly below the first rotating assembly 709. The second rotating assembly 808 is used to drive the second active rod 802 to rotate. The structure of the second rotating assembly 808 is the same as that of the first rotating assembly 709.

[0072] Reference Figure 4 and Figure 7 The second guide assembly 809 is used to ensure stability during the lifting of the conveyor frame 400. A second guide assembly 809 is provided between the second mounting plate 401 and the second mounting block 402. The structure of the second guide assembly 809 is identical to that of the second guide assembly 809, with the difference being that the guide roller 719 in the second guide assembly 809 is mounted outside the second fastening bolt 406, while the guide roller 719 in the first guide assembly 710 is mounted outside the first fastening bolt 306.

[0073] Reference Figure 1 and Figure 7 The conveying module 600 is used to convey the packaging bags. The conveying module 600 is arranged on the second mounting plate 401 and can move in a direction close to or away from the vertical plate 101.

[0074] Reference Figure 8 A displacement assembly 900 is provided on the conveyor frame 400 , and the displacement assembly 900 includes a material supporting bar 901 , a displacement bar 902 , a material supporting plate 903 , a reinforcing rod 904 , a reinforcing bar 905 and a positioning member 906 .

[0075] Reference Figure 8 There are two supporting strips 901, and the end surfaces of the two second mounting plates 401 that are close to each other are fixedly connected to one supporting strip 901. The lower ends of the two supporting strips 901 are connected to the upper end surface of the reinforcing strip 905, further improving the strength of the conveyor frame 400.

[0076] Reference Figure 8Each of the two displacement bars 902 is slidably mounted above a support bar 901. Two support plates 903 are provided, positioned between the two displacement bars 902. The sides of the two support plates 903 facing away from each other are each connected to a support bar 901. A reinforcement rod 904 is positioned between the two support bars 901, with each end of the reinforcement rod 904 connected to a support bar 901, thus connecting the two displacement bars 902 into a single unit.

[0077] Reference Figure 8 The positioning member 906 is used to position the displacement bar 902, and the positioning member 906 includes a positioning handle 907, a positioning screw and a positioning bar 908. The positioning bar 908 is fixedly connected to the end surface of the supporting plate 903 away from the second mounting plate 401.

[0078] Reference Figure 7 and Figure 8 A horizontal, waist-shaped sliding hole 909 is provided between the two second mounting plates 401. A positioning handle 907 is located on the side of the second mounting plate 401 facing away from the support plate 903. A positioning screw is fixedly connected to the end of the positioning handle 907 facing the second mounting plate 401. The positioning screw passes through the sliding hole 909 and is threadedly connected to the displacement bar 902.

[0079] Reference Figure 1 and Figure 8 The conveyor module 600 includes a fixed plate 601, conveyor rollers, a conveyor belt 602, and a conveyor drive source. Two fixed plates 601 are provided, and their lower end surfaces are connected to the upper end surfaces of the two second mounting plates 401. Multiple conveyor rollers are provided, each rotatably connected between the two fixed plates 601. The conveyor belt 602 is sleeved over the conveyor rollers. The conveyor drive source is fixedly connected to the fixed plate 601 and is used to drive the conveyor rollers to rotate.

[0080] The operating principle of the vertical and horizontal dual-purpose heavy-duty sealing machine of the present application embodiment is as follows: when the state of the main module 500 needs to be changed, the locking bolt 510 is first loosened, and the main box 501 is rotated using the operating handle 527. After the angle of the main box 501 is adjusted, the main box 501 is re-locked using the locking bolt 510. The height of the main module 500 is adjusted using the first lifting structure 700, and the height of the conveying module 600 is adjusted using the second lifting structure 800. The positioning screw is loosened, and the horizontal position of the conveying module 600 is adjusted to match the conveying module 600 with the main module 500. In summary, the sealing machine can be adjusted so that the sealing machine can process the specified product.

[0081] Unless otherwise defined, the technical or scientific terms used in this application shall have the usual meanings understood by persons of ordinary skill in the field to which this application belongs. The words "first", "second", "third" and similar terms used in the specification and claims of this application do not indicate any order, quantity or importance, but are only used to distinguish different components. Words such as "one" or "a" do not indicate a quantity limitation, but rather indicate the existence of at least one. Words such as "include" or "comprise" mean that the elements or objects appearing before "include" or "comprises" cover the elements or objects listed after "include" or "comprises" and their equivalents, and do not exclude other elements or objects. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0082] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the design concept of the present application should be included in the scope of protection of the present application.

Claims

1. A vertical and horizontal dual-purpose heavy-duty sealing machine, characterized by: include Support frame (100); A main frame (300) is arranged on the support frame (100); A conveying frame (400) is arranged on the supporting frame (100) and is located below the main frame (300); A conveying module (600) is arranged on the conveying frame (400) and is used to convey packaging bags; A mainframe module (500) is arranged on the mainframe (300) and is used to seal the packaging bag; The main frame (300) includes two first mounting plates (301), the main module (500) includes a main box (501) rotatably connected between the two first mounting plates (301), and a locking structure (509) for limiting the rotation of the main module (500) is provided on the first mounting plates (301).

2. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 1, characterized in that: A plurality of adjustment holes (511) are provided on a side of the first mounting plate (301) away from the main chassis (501), and the plurality of adjustment holes (511) are distributed in a circumferential array around the rotation axis of the main chassis (501). A locking hole (512) is provided on the end surface of the main chassis (501) facing the first mounting plate (301). The locking structure (509) includes a locking bolt (510), and the locking bolt (510) can be threadedly connected to the locking hole (512) by passing through any adjustment hole (511).

3. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 1, characterized in that: The support frame (100) is provided with a first lifting structure (700) for driving the main frame (300) to lift and lower. The support frame (100) comprises two vertical plates (101) parallel to each other and a first horizontal plate (102) arranged between the two vertical plates (101). A first mounting block (302) is set at one end of the two first mounting plates (301) close to each other; the first lifting structure (700) comprises a first main bearing seat (701) arranged below the first horizontal plate (102), a first active rod (703) rotatably connected between the two vertical plates (101), a first connecting seat (706) and a first connecting rod (707) arranged on a side of the first mounting block (302) away from the first mounting plate (301). The first connecting column (707) is provided with a first driving gear (704) on its outer surface, the first active rod (703) is rotatably connected to the first gear shaft (705) on the first main bearing seat (701), a first gear belt (708) is provided below the first connecting column (707), the first gear belt (708) passes through the bottom of the first gear shaft (705) and the top of the first driving gear (704) in sequence and is connected to the upper end of the first connecting seat (706), the gear portion of the first gear shaft (705) and the first driving gear (704) are both engaged with the first gear belt (708), and a first rotating assembly (709) for driving the first active rod (703) to rotate is provided on the vertical plate (101).

4. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 3, characterized in that: The first rotating assembly (709) includes an operating box (713) arranged on a side of the vertical plate (101) away from the first gear belt (708), the first active rod (703) is inserted into the operating box, a worm wheel (714) sleeved on the outside of the first active rod (703) is arranged in the operating box (713), a worm (715) meshing with the worm wheel (714) is rotatably connected in the operating box (713), and one end of the worm (715) extends out of the operating box (713) and is connected to a rocker handle (716).

5. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 3, characterized in that: A first fastening assembly (303) is provided between the first mounting block (302) and the first mounting bar (304) to connect the two. A first mounting portion (305) is provided on the side of the first mounting plate (301) facing the first mounting block (302). The first fastening assembly (303) includes a first fastening bolt (306). The first fastening bolt (306) passes through the first mounting block (302) and the first mounting bar (304) and is then threadedly connected to a first fastening nut (307).

6. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 5, characterized in that: The first lifting structure (700) includes a first guide assembly (710) for improving the stability of the main frame (300) during the lifting process. The first guide assembly (710) includes a guide column (718) located between the first transverse plate (102) and the second transverse plate (103) and a guide roller (719) sleeved outside the two first fastening bolts (306). The guide roller (719) is located between the first mounting plate (301) and the first mounting block (302). The guide column (718) is located between the two guide rollers (719). The guide roller (719) abuts against the guide column (718).

7. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 1, characterized in that: A control frame (519) is provided on the mounting surface (513) of the main chassis (501), a connecting frame (505) is rotatably connected to the control frame (519), a control box (506) is provided on the connecting frame (505), and a rotation axis of the control box (506) is parallel to a rotation axis of the control frame (519).

8. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 7, characterized in that: The connecting frame (505) includes two connecting plates (518), and the end surfaces of the two connecting plates (518) close to each other are each provided with a waist-shaped connecting hole (521). A connecting piece (520) is provided between the connecting frame (505) and the control frame (519) to connect the two. The connecting piece (520) includes a connecting bolt (524). The connecting bolt (524) passes through the connecting hole (521) and the control frame (519) and is then threadedly connected to a connecting handle (525).

9. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 7, characterized in that: An operating handle (527) is provided on the control frame (519).

10. The vertical and horizontal dual-purpose heavy-duty sealing machine according to claim 1, characterized in that: The conveying frame (400) includes two second mounting plates (401), and a displacement assembly (900) for moving the conveying module (600) toward / away from the support frame (100) is provided on the second mounting plates (401). The displacement assembly (900) includes a supporting bar (901) provided on the side where the two second mounting plates (401) are close to each other, and a displacement bar (902) is slidably provided above the two supporting bars (901). The end surfaces of the two displacement bars (902) close to each other are provided with supporting plates (903), and the upper ends of the two supporting plates (903) are connected to the lower end of the conveying module (600). A positioning member (906) for limiting the movement of the displacement bar (902) is provided on the second mounting plate (401).