A filling and sealing all-in-one machine for producing a warming patch

By designing limiting components and guide plates, the problem of heat-generating material accumulation in the production of body warmers was solved, and the non-woven bags were able to be dropped smoothly, improving bagging efficiency and avoiding damage to the packaging bags.

CN120922442BActive Publication Date: 2025-12-12TAIZHOU MEILAN DAILY NECESSITIES CO LTD
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Patent Information

Application Number
CN202511467858.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2025-12-12
Estimated Expiration
2045-10-15

AI Technical Summary

Technical Problem

When producing body warmers, the existing filling and sealing machines tend to cause the heating material to accumulate at the bottom of the non-woven bags, making bagging inconvenient and easily damaging the packaging bags.

Method used

The structure is designed with limiting components, guide plates, moving blocks, extrusion rods and insertion rods. The non-woven bag is cut by a cutter after sealing. The weight of the heating material and the rotation of the guide plate make the heating material inside the non-woven bag slide to the other side. Combined with the structure of protrusions and pressure rollers, it avoids accumulation and ensures that the non-woven bag falls flat onto the conveyor belt.

Benefits of technology

This solves the problem of heat-generating materials accumulating at the bottom of non-woven bags, improves bagging efficiency, avoids damage to packaging bags, and reduces the need for subsequent leveling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a filling and sealing integrated machine for producing a warming patch, and relates to the field of warming patch production.The filling and sealing integrated machine body is provided with a conveying assembly at the bottom, and an installation rod is arranged in the filling and sealing integrated machine body; a cutting assembly is arranged below the installation rod in the filling and sealing integrated machine body; the cutting assembly comprises a fixing frame fixed to one side of the installation rod, a cylinder is arranged at the end of the fixing frame, and an installation plate is arranged on the output end of the cylinder.The application solves the problem that the existing warming patch accumulates heat-generating materials at the bottom of the non-woven fabric bag during filling, seals the non-woven fabric bag after the heat-generating materials are filled into the non-woven fabric bag, avoids the problem that the heat-generating materials accumulate on one side, and then the non-woven fabric bag falls above the conveying belt, so that the personnel need not to perform the flattening treatment in the later period, and the work efficiency of bagging is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of warm-up patch production, in particular to a filling and sealing integrated machine for warm-up patch production. BACKGROUND

[0002] The warm-up patch is a common health care product, usually used to relieve the cold and discomfort of the body, the patch usually contains heating materials, which can generate heat through chemical reaction or physical principle after being attached to the skin surface, thereby providing a warm feeling, the warm-up patch is mainly wrapped with non-woven fabric to contain heating materials, and the filling and sealing integrated machine is used in the production of the warm-up patch.

[0003] The existing filling and sealing integrated machine has the problem that when producing the warm-up patch, since the warm-up patch packaging process adopts filling, the heating material is usually located at the bottom of the non-woven fabric bag, and then falls on the top of the conveying belt after being cut, and the heating material located at the bottom of the non-woven fabric bag will cause the non-woven fabric bag to accumulate thickly at the bottom when being loaded into the packaging bag, which will cause the problem of inconvenience to enter the packaging bag, and also easily cause the problem of damaging the packaging bag when entering the packaging bag. SUMMARY

[0004] Therefore, the purpose of the present application is to provide a filling and sealing integrated machine for warm-up patch production to solve the technical problems mentioned in the background.

[0005] To achieve the above object, the application provides the following technical scheme: a filling and sealing integrated machine for producing a warming patch, comprising a filling and sealing integrated machine body, a conveying assembly is arranged at the bottom of the filling and sealing integrated machine body, and a mounting rod is arranged in the filling and sealing integrated machine body; a cutting assembly is arranged below the mounting rod in the filling and sealing integrated machine body; the cutting assembly comprises a fixing frame fixed to one side of the mounting rod, a cylinder is arranged at the end of the fixing frame, an installation plate is arranged at the output end of the cylinder, a cutter is arranged at one side of the installation plate, and a protruding rod is fixed to both ends of the installation plate; a guide plate is arranged below the cutting assembly in the filling and sealing integrated machine body, and a rotating rod is fixed to the end of the guide plate; a first gear is fixed to the outer wall of the rotating rod; fixing blocks are fixed to both sides of the inner wall of the filling and sealing integrated machine body, and mounting blocks are fixed to the top of the fixing blocks; a tooth block is movably arranged at one side of the mounting block; limiting assemblies are arranged at both sides of the inner wall of the filling and sealing integrated machine body; the limiting assembly comprises a limiting plate; fixing rods are fixed to both sides of the inner wall of the filling and sealing integrated machine body; the end of the fixing rod is fixed with the limiting plate, and a moving block is movably arranged at one side of the limiting plate; a steel wire rope is fixed to one side of the moving block, and the end of the steel wire rope is fixedly connected with the tooth block; an extruding rod, a plug rod and a second gear are movably arranged in the moving block, and a rack is fixed to one side of each of the extruding rod and the plug rod; a horizontal groove is arranged in the limiting plate, and a plug hole is arranged at the bottom end of the inner wall of the horizontal groove; and a stop block is fixed to one side of the top of the moving block.

[0006] By adopting the above technical scheme, the problem that the heating material of the existing warming patch accumulates at the bottom of the non-woven fabric bag during filling is solved; after the heating material is filled into the non-woven fabric bag, the non-woven fabric bag is sealed by the sealing assembly, and then the sealed non-woven fabric bag is cut by the cutter; the non-woven fabric bag containing the heating material falls above the guide plate and falls under the gravity of the heating material; the second baffle blocks the non-woven fabric bag; then the cutter resets; when the cutter resets, the guide plate (the top of the guide plate is smoothly arranged) rotates around the rotating rod as the center; the non-woven fabric bag above the guide plate slides to one side; at this time, the heating material in the non-woven fabric bag slides to the other end, thereby avoiding the problem that the heating material accumulates on one side; then the non-woven fabric bag falls above the conveying belt, and personnel do not need to perform flattening treatment on the non-woven fabric bag in the later stage, thereby improving the work efficiency of bagging.

[0007] The application is further provided with a roller movably arranged at one side of the moving block, a sliding groove is arranged in the horizontal groove, and the bottom end of the inner wall of the sliding groove is in contact with the roller.

[0008] Preferably, the roller can limit the movement of the moving block; the roller is arranged in the inner wall of the sliding groove, thereby avoiding the problem that the moving block moves upward.

[0009] The limiting plate is movably provided with a connecting rod at one end, and an external wall of the connecting rod is sleeved with a fixed pulley.

[0010] As preferred, the connecting rod can facilitate the installation of the fixed pulley, and the fixed pulley can facilitate the pulling of the steel wire rope.

[0011] The guide plate is fixed with a second baffle at one end close to the rotating rod, and a plurality of vertical rods are fixed at the bottom of the guide plate, and the end of the vertical rod is movably provided with a compression roller.

[0012] As preferred, when the guide plate is turned over, the compression roller below the guide plate can compress the non-woven fabric bag above the conveying belt, avoid the phenomenon of bulging in the non-woven fabric bag, facilitate bagging, and the setting of the compression roller can also disperse the accumulated heat-generating materials, and the heat-generating materials are extruded to the two sides to avoid the problem of accumulation.

[0013] The mounting block is fixed with a cross block at one side, and the top of the cross block is fixed with a guide rod, the inside of the tooth block is provided with a limiting slot, and the inner wall of the limiting slot is matched with the outer wall of the guide rod.

[0014] As preferred, the cross block can limit the bottom of the tooth block, avoid the tooth block from continuing to move downward, and the guide rod and the limiting slot are matched with each other, so as to limit the movement direction of the tooth block, so that the tooth block can only slide up and down on the outer wall of the guide rod.

[0015] The inside of the moving block is provided with a guide slot matched with the extrusion rod, and the inside of the moving block is provided with a vertical slot matched with the inserting rod.

[0016] As preferred, the guide slot can facilitate the limitation of the movement direction of the extrusion rod, and the setting of the vertical slot can facilitate the sliding of the inserting rod in the inner wall thereof.

[0017] The inner wall of the vertical slot is provided with a connecting slot, the outer wall of the inserting rod is fixed with a connecting block, and the outer wall of the connecting block is matched with the connecting slot, and the bottom of the connecting block is fixed with a spring.

[0018] As preferred, the connecting slot can facilitate the installation of the spring, and also limit the movement direction of the inserting rod, so that the inserting rod can only slide up and down.

[0019] The top of the extrusion rod is provided with a slope at one side, the bottom of the inserting rod is provided with an arc, and the convex rod is provided as a cylinder.

[0020] As preferred, the side slope of the top of the extrusion rod is arranged to enable the convex rod to extrude the top side of the extrusion rod when moving, so as to enable the extrusion rod to move downward, reduce the friction between the convex rod and the cylinder, and the arc arrangement of the bottom of the insertion rod can facilitate insertion into the inside of the insertion hole, and also reduce the contact area between the insertion rod and the inner wall of the transverse groove.

[0021] The application further provides that the conveying assembly comprises a mounting frame mounted at the bottom of the body of the filling and sealing integrated machine, two groups of conveying rollers are mounted in the mounting frame, the end of one group of the conveying rollers is provided with a motor, the outer wall of the two groups of the conveying rollers is sleeved with a conveying belt, and the inside of the mounting frame is fixed with a horizontal plate.

[0022] As preferred, the motor works to drive the conveying rollers to rotate, the conveying rollers work to drive the conveying belt to work when rotating, the non-woven fabric bag falling above the conveying belt is also conveyed, and the horizontal plate is arranged to extrude the non-woven fabric bag with the heat-generating material and sealed above the conveying belt when the guide plate rotates downward, so as to avoid the problem of bulging of the non-woven fabric bag, and also disperse the heat-generating material accumulated in the non-woven fabric.

[0023] The application further provides that the end of the guide plate away from the rotating rod is fixed with a convex block, and the end of the convex block is arranged in an arc shape.

[0024] As preferred, when the guide plate rotates to an inclined downward state, the non-woven fabric bag above the guide plate slides above the guide plate, the heat-generating material in the non-woven fabric bag also slides in the non-woven fabric bag when sliding, and when passing through the convex block, the motion track of the non-woven fabric bag is temporarily changed, so as to buffer the motion of the heat-generating material in the non-woven fabric bag, and avoid the heat-generating material in the non-woven fabric bag from sliding to the other end when falling.

[0025] In summary, the application mainly has the following beneficial effects:

[0026] The application solves the problem of accumulation of heat-generating material at the bottom of the non-woven fabric bag during filling of the existing warming patch by arranging the limiting assembly, the guide plate, the moving block, the extrusion rod and the insertion rod, the non-woven fabric bag with the heat-generating material is sealed by the sealing assembly after the heat-generating material is filled into the non-woven fabric bag, the sealed non-woven fabric bag is cut by the cutter, the non-woven fabric bag with the heat-generating material falls above the guide plate, falls under the action of gravity of the heat-generating material, is blocked by the second baffle, the cutter is reset, the guide plate (the top of the guide plate is arranged in a smooth manner) rotates around the rotating rod when the cutter is reset, the non-woven fabric bag above the guide plate slides to one side, and the heat-generating material in the non-woven fabric bag slides to the other end at this time, so as to avoid the problem of accumulation of the heat-generating material at one side, the non-woven fabric bag falls above the conveying belt, and the personnel does not need to perform flattening treatment in the later stage, so as to improve the work efficiency of bagging.

[0027] The present application is provided with a protrusion, a vertical rod and a compression roller, the protrusion can avoid the heat generating material of the non-woven bag to be stacked on one side when falling, when the non-woven bag passes through the protrusion, the protrusion can buffer the non-woven bag, thereby avoiding the problem that the heat generating material in the non-woven bag is stacked on one side, so that the heat generating material can be better located in the non-woven bag, the compression roller can extrude the non-woven bag when the conveying belt drives the non-woven bag containing the heat generating material to move, thereby avoiding the problem that the non-woven bag expands, and the heat generating material stacked in the non-woven bag can be extruded and dispersed in the non-woven bag. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structural schematic view of the present application;

[0029] Figure 2 It is a connection schematic view of the mounting plate and the cutter of the present application;

[0030] Figure 3 It is a side view of the horizontal plate of the present application;

[0031] Figure 4 It is a connection schematic view of the moving block and the limiting plate of the present application;

[0032] Figure 5 It is a perspective view of the limiting plate of the present application;

[0033] Figure 6 It is a perspective view of the moving block of the present application;

[0034] Figure 7 It is a sectional view of the moving block of the present application;

[0035] Figure 8 It is a connection schematic view of the tooth block and the guide rod of the present application;

[0036] Figure 9 It is a sectional view of the tooth block of the present application;

[0037] Figure 10 It is a perspective view of the insertion rod of the present application;

[0038] Figure 11 It is a structural schematic view of the second embodiment of the present application;

[0039] Figure 12 It is a side view of the second embodiment of the present application.

[0040] BRIEF DESCRIPTION OF DRAWINGS:

[0041] 1, filling and sealing integrated machine body; 2, mounting rod; 21, first baffle; 3, conveying assembly; 31, mounting frame; 32, conveying roller; 33, conveying belt; 34, motor; 35, cross plate; 4, mounting plate; 41, fixed frame; 42, air cylinder; 43, cutter; 44, protruding rod; 5, limiting assembly; 51, limiting plate; 52, fixed rod; 53, transverse groove; 54, sliding groove; 55, insertion hole; 56, fixed pulley; 57, steel wire rope; 58, connecting rod; 6, guide plate; 61, second baffle; 62, rotating rod; 63, protruding block; 64, first gear; 7, fixed block; 71, mounting block; 72, cross block; 73, guide rod; 74, toothed block; 75, limiting groove; 8, vertical rod; 81, pressing roller; 9, moving block; 91, roller; 92, extruding rod; 93, insertion rod; 94, second gear; 95, vertical groove; 96, guide groove; 97, connecting block; 98, spring; 99, connecting groove; 910, stop block. DETAILED DESCRIPTION

[0042] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0043] The embodiments of the present application will be described below according to the overall structure of the present application. Embodiment one

[0044] Please refer to Figures 1-10The utility model provides a filling sealing all -in -one body 1 is provided with conveying assembly 3 at the bottom, and the inside of filling sealing all -in -one body 1 is installed with mounting rod 2, and the bottom of mounting rod 2 is fixed with first baffle 21, and the inside of filling sealing all -in -one body 1 is installed with cutting assembly below mounting rod 2, and cutting assembly includes fixed frame 41 fixed on one side of mounting rod 2, and the end of fixed frame 41 is provided with pneumatic cylinder 42, and the output of pneumatic cylinder 42 is installed with mounting plate 4, and one side of mounting plate 4 is installed with cutting knife 43, and both ends of mounting plate 4 are fixed with convex rod 44, and the end of guide plate 6 is fixed with rotating rod 62 below cutting assembly in the inside of filling sealing all -in -one body 1, and the outer wall of rotating rod 62 is fixed with first gear 64, and both sides of the inner wall of filling sealing all -in -one body 1 are fixed with fixed block 7, and the top of fixed block 7 is fixed with mounting block 71, and one side of mounting block 71 is movably installed with gear block 74, and both sides of the inner wall of filling sealing all -in -one body 1 are installed with limiting assembly 5, and limiting assembly 5 includes limiting plate 51, and both sides of the inner wall of filling sealing all -in -one body 1 are fixed with fixed rod 52, and the end of fixed rod 52 is fixed with limiting plate 51, and one side of limiting plate 51 is movably installed with moving block 9, and one side of moving block 9 is fixed with steel wire rope 57, and the end of steel wire rope 57 is fixedly connected with gear block 74, and the inside of moving block 9 is movably installed with extruding rod 92, inserting rod 93 and second gear 94, and one side of extruding rod 92 and inserting rod 93 is fixed with rack, and rack is meshedly connected with second gear 94, and the inside of limiting plate 51 is provided with transverse groove 53, and the bottom of the inner wall of transverse groove 53 is provided with insertion hole 55, and one side of the top of moving block 9 is fixed with stop block 910.

[0045] In the above embodiment, please refer to Figure 4 One side of moving block 9 is movably installed with roller 91, the inside of transverse groove 53 is provided with sliding groove 54, and the bottom of the inner wall of sliding groove 54 is in contact with roller 91, and the roller 91 can limit the movement of the moving block 9.

[0046] In the above embodiment, please refer to Figure 4 One end of limiting plate 51 is movably installed with connecting rod 58, and the outer wall of connecting rod 58 is sleeved with fixed pulley 56, and the connecting rod 58 can facilitate the installation of the fixed pulley 56, and the fixed pulley 56 can facilitate the pulling of the steel wire rope 57.

[0047] In the above embodiment, please refer to Figure 2 And Figure 3The second baffle 61 is fixed to one end of the guide plate 6 close to the rotating rod 62, and a plurality of groups of vertical rods 8 are fixed to the bottom of the guide plate 6, and the end of the vertical rod 8 movably installs a compression roller 81. When the guide plate 6 is turned over, the compression roller 81 below it can press the non-woven fabric bag located above the conveying belt 33, so as to avoid the phenomenon that the non-woven fabric bag is bulged inside, facilitate bagging, and the setting of the compression roller 81 can also disperse the accumulated heat-generating materials, extrude the heat-generating materials to both sides to avoid the problem of accumulation.

[0048] In the above embodiment, please refer to Figure 8 and Figure 9 , one side of the mounting block 71 is fixed with a cross block 72, and the top of the cross block 72 is fixed with a guide rod 73, and the inside of the tooth block 74 is provided with a limiting groove 75, and the inner wall of the limiting groove 75 is matched with the outer wall of the guide rod 73. The bottom of the tooth block 74 is limited by the cross block 72, so that the tooth block 74 cannot continue to move downward, and the guide rod 73 cooperates with the limiting groove 75, so that the movement direction of the tooth block 74 is limited, so that the tooth block 74 can only slide up and down on the outer wall of the guide rod 73.

[0049] In the above embodiment, please refer to Figure 7 , the inside of the moving block 9 is provided with a guide groove 96 matched with the extrusion rod 92, and the inside of the moving block 9 is provided with a vertical groove 95 matched with the inserting rod 93. The movement direction of the extrusion rod 92 can be limited by the guide groove 96, and the inserting rod 93 can slide in the inner wall of the vertical groove 95.

[0050] In the above embodiment, please refer to Figure 7 , the inner wall of the vertical groove 95 is provided with a connecting groove 99, the outer wall of the inserting rod 93 is fixed with a connecting block 97, and the outer wall of the connecting block 97 is matched with the connecting groove 99. The bottom of the connecting block 97 is fixed with a spring 98, and the connecting groove 99 is provided to facilitate the installation of the spring 98, and the movement direction of the inserting rod 93 is also limited, so that the inserting rod 93 can only slide up and down.

[0051] In the above embodiment, please refer to Figure 2 , Figure 6 and Figure 7 , the top of the extrusion rod 92 is provided with a slope, the bottom of the inserting rod 93 is provided with an arc, the inner wall of the insertion hole 55 is provided with an arc, the convex rod 44 is provided as a cylinder, and the top of the extrusion rod 92 is provided with a slope. When the convex rod 44 moves, it will extrude the top of the extrusion rod 92, so that the extrusion rod 92 moves downward, reducing the friction between the cylinder and the convex rod 44. The bottom of the inserting rod 93 is provided with an arc, which can be easily inserted into the inside of the insertion hole 55, and can also reduce the contact area between the inserting rod 93 and the inner wall of the horizontal groove 53.

[0052] In the above embodiments, please refer to Figure 1 and Figure 3 The conveying assembly 3 comprises a mounting frame 31 mounted at the bottom of the filling and sealing all-in-one machine body 1, and two groups of conveying rollers 32 are mounted in the mounting frame 31, the end of one group of conveying rollers 32 is provided with a motor 34, the outer wall of the two groups of conveying rollers 32 is sleeved with a conveying belt 33, and a horizontal plate 35 is fixed in the mounting frame 31, the motor 34 drives the conveying rollers 32 to rotate, the conveying rollers 32 drive the conveying belt 33 to work when rotating, and the non-woven fabric bag falling above the conveying belt 33 is also conveyed, and the horizontal plate 35 is arranged, so that when the guide plate 6 rotates downward, the non-woven fabric bag with the heat-generating material and sealed above the conveying belt 33 is extruded, the problem of bulging of the non-woven fabric bag is avoided, and the heat-generating material accumulated in the non-woven fabric can also be dispersed. Embodiment two

[0053] Please refer to Figure 11 and Figure 12 The end of the guide plate 6 away from the rotating rod 62 is fixed with a protrusion 63, and the end of the protrusion 63 is arc-shaped, so that when the guide plate 6 rotates to the state of being inclined downward, the non-woven fabric bag above the guide plate 6 slides above the guide plate 6, and the heat-generating material in the non-woven fabric bag also slides in the non-woven fabric bag, and when passing through the protrusion 63, the motion track of the non-woven fabric bag is temporarily changed, so that the motion of the heat-generating material in the non-woven fabric bag is buffered, and the heat-generating material in the non-woven fabric bag is prevented from sliding to the other end when falling.

[0054] In the specific work of the present application: when in use, the heat-generating material is poured into the filling and sealing all-in-one machine body 1, then the filling and sealing all-in-one machine body 1 works to fill the heat-generating material, the non-woven fabric is conveyed by the conveying assembly, and the non-woven fabric is sealed by the sealing assembly, then the heat-generating material enters the non-woven fabric bag, and the non-woven fabric bag is sealed again by moving the sealing assembly, the non-woven fabric bag is clamped and pulled downward, the non-woven fabric bag with the heat-generating material enters the bag inlet at the top of the mounting rod 2, then the cylinder 42 works, the cylinder 42 drives the mounting plate 4 to move slowly when working, the mounting plate 4 drives the cutter 43 and the protruding rod 44 to move simultaneously when moving, the protruding rod 44 moves and contacts the inserting rod 93, the protruding rod 44 moves and drives the inserting rod 93 to move, the inserting rod 93 drives the moving block 9 to move, the moving block 9 moves and pulls the end of the steel wire rope 57 to move, the other end of the steel wire rope 57 pulls the tooth block 74 to move upward under the action of the fixed pulley 56, the tooth block 74 moves upward and drives the first gear 64 to rotate, the first gear 64 rotates and drives the rotating rod 62 connected thereto to rotate, the rotating rod 62 rotates and drives the guide plate 6 fixed thereto to rotate, and the guide plate 6 rotates upward;

[0055] The moving block 9 moves in the horizontal slot 53, and the roller 91 on one side of the moving block 9 slides on the inner wall of the sliding slot 54. When the insertion rod 93 moves above the insertion hole 55, the spring 98 drives the connecting block 97 to move, thereby driving the insertion rod 93 connected with the connecting block 97 to move. The connecting block 97 slides in the connecting slot 99, and the insertion rod 93 slides in the vertical slot 95. When the insertion rod 93 moves downward, the rack on one side drives the second gear 94 to rotate. The second gear 94 rotates, thereby driving the extrusion rod 92 on one side to move upward. The extrusion rod 92 slides upward on the inner wall of the guide slot 96. The insertion rod 93 is inserted into the inner wall of the insertion hole 55. Then the convex rod 44 continues to slide on the top of the moving block 9. The cutter 43 on one side of the mounting plate 4 approaches the first baffle 21. When the cutter 43 contacts the first baffle 21, the non-woven bag is cut off. The non-woven bag containing the heating material is sealed and then falls off. The non-woven bag falls above the guide plate 6. Since the non-woven bag contains the heating material, the non-woven bag slides on the inclined guide plate 6 under the action of gravity. The second baffle 61 blocks the non-woven bag. Then the cylinder 42 drives the mounting plate 4 to reset.

[0056] When the mounting plate 4 moves, the convex rod 44 moves. The convex rod 44 moves above the moving block 9. Then the convex rod 44 contacts the extrusion rod 92. Since the side of the extrusion rod 92 is inclined, when the convex rod 44 continues to move, the convex rod 44 extrudes the extrusion rod 92. The extrusion rod 92 moves downward on the inner wall of the guide slot 96. When the extrusion rod 92 moves downward, the second gear 94 rotates. When the second gear 94 rotates, the insertion rod 93 moves upward. When the insertion rod 93 moves upward, the connecting block 97 moves upward. When the connecting block 97 moves upward, one end of the spring 98 is pulled. The other end of the spring 98 is fixed to the bottom end of the inner wall of the connecting slot 99. Thus, the insertion rod 93 gradually separates from the inner wall of the insertion hole 55. The convex rod 44 continues to move and contacts the stop block 910. Thus, under the action of the stop block 910, the moving block 9 continues to move. The moving block 9 slides on the inner wall of the horizontal slot 53. When the insertion rod 93 separates from the inner wall of the insertion hole 55, the guide plate 6 rotates under the action of gravity. The guide plate 6 flips, thereby causing the non-woven bag above the guide plate 6 to fall above the conveyor belt 33. When the non-woven bag falls, the heating material inside the non-woven bag also rolls inside the non-woven bag, thereby avoiding the problem that the material accumulates on one side. The motor 34 works to drive the conveying roller 32 to rotate slowly. When the guide plate 6 flips, the pressing roller 81 below the guide plate 6 presses the non-woven bag above the conveyor belt 33, thereby avoiding the phenomenon that the non-woven bag inside bulges, facilitating bagging. The arrangement of the pressing roller 81 can also disperse the accumulated heating material, thereby avoiding the problem of accumulation. Under the action of the horizontal plate 35, the deformation of the conveyor belt can be avoided. Then the above steps are continuously repeated to continuously fill.

[0057] Although the embodiments of the present application have been shown and described, the specific embodiments are merely exemplary and are not to be construed as limiting the present application, and the described specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner, and those skilled in the art can make modifications, replacements and variations to the embodiments without creative contribution after reading the specification, and as long as they are within the scope of the claims of the present application, they are protected by the patent law.

Claims

1. A filling and sealing all-in-one machine for producing a warming patch, comprising a filling and sealing all-in-one machine body (1), characterized in that: The bottom of the filling and sealing integrated machine body (1) is provided with a conveying assembly (3), and the inside of the filling and sealing integrated machine body (1) is provided with a mounting rod (2), a cutting assembly is mounted below the mounting rod (2), the cutting assembly comprises a fixing frame (41) fixed on one side of the mounting rod (2), and the end of the fixing frame (41) is provided with a gas cylinder (42), the output end of the gas cylinder (42) is provided with a mounting plate (4), one side of the mounting plate (4) is provided with a cutter (43), and both ends of the mounting plate (4) are provided with protruding rods (44), the inside of the filling and sealing integrated machine body (1) is provided with a guide plate (6) below the cutting assembly, and the end of the guide plate (6) is provided with a rotating rod (62), the outer wall of the rotating rod (62) is provided with a first gear (64), the inner wall of the filling and sealing integrated machine body (1) is provided with fixed blocks (7) on both sides, the top of the fixed block (7) is provided with a mounting block (71), one side of the mounting block (71) is movably provided with a toothed block (74), the inner wall of the filling and sealing integrated machine body (1) is provided with a limiting assembly (5) on both sides, the limiting assembly (5) comprises a limiting plate (51), one side of the limiting plate (51) is movably provided with a moving block (9), one side of the moving block (9) is provided with a steel wire rope (57), and the end of the steel wire rope (57) is fixedly connected with the toothed block (74), the inside of the moving block (9) is movably provided with an extruding rod (92), an inserting rod (93) and a second gear (94), the inside of the limiting plate (51) is provided with a horizontal groove (53), and the bottom end of the inner wall of the horizontal groove (53) is provided with an inserting hole (55).

2. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: One side of the moving block (9) is movably provided with a roller (91), the inside of the horizontal groove (53) is provided with a sliding groove (54), and the bottom end of the inner wall of the sliding groove (54) is in contact with the roller (91).

3. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: One end of the limiting plate (51) is movably provided with a connecting rod (58), and the outer wall of the connecting rod (58) is provided with a fixed pulley (56).

4. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: One end of the guide plate (6) close to the rotating rod (62) is fixedly provided with a second baffle (61), and the bottom of the guide plate (6) is fixedly provided with a plurality of vertical rods (8), and the end of the vertical rod (8) is movably provided with a pressure roller (81).

5. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: One side of the mounting block (71) is fixedly provided with a cross block (72), and the top of the cross block (72) is fixedly provided with a guide rod (73), the inside of the toothed block (74) is provided with a limiting groove (75), and the inner wall of the limiting groove (75) is in contact with the outer wall of the guide rod (73).

6. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: The inside of the moving block (9) is provided with a guide groove (96) matched with the extruding rod (92), and the inside of the moving block (9) is provided with a vertical groove (95) matched with the inserting rod (93).

7. The filling and sealing all-in-one machine for producing a warming patch according to claim 6, characterized in that: The inner wall of the vertical groove (95) is provided with a connecting groove (99), the outer wall of the inserting rod (93) is fixedly provided with a connecting block (97), and the outer wall of the connecting block (97) is in contact with the connecting groove (99), and the bottom of the connecting block (97) is fixedly provided with a spring (98).

8. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: The side slope of the top of the extrusion rod (92) is arranged, the bottom of the insertion rod (93) is arranged in an arc shape, and the convex rod (44) is arranged in a cylindrical shape.

9. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: The conveying assembly (3) comprises a mounting rack (31) mounted at the bottom of the filling and sealing integrated machine body (1), two groups of conveying rollers (32) are mounted in the mounting rack (31), the end of one group of the conveying rollers (32) is provided with a motor (34), the outer wall of the two groups of the conveying rollers (32) is sleeved with a conveying belt (33), and the inside of the mounting rack (31) is fixedly provided with a cross plate (35).

10. The filling and sealing all-in-one machine for producing a warming patch according to claim 1, characterized in that: The end of the guide plate (6) away from the rotating rod (62) is fixedly provided with a convex block (63), and the end of the convex block (63) is arranged in an arc shape.

Citation Information

Patent Citations

  • Warming paste packaging machine

    CN119840908A

  • Hot compress patch processing, pressing and bag sealing equipment

    CN120117246A