Glove bagging box, glove bagging device, and glove bagging machine
By designing a hollow hand-held bagging box and bagging device, and employing a rotating roller friction and pressing, lifting, and pushing mechanism, the cumbersome manual operation and adhesive adhesion problems in the hand-held bagging process are solved, achieving automated and efficient bagging.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 周政
- Filing Date
- 2025-08-28
- Publication Date
- 2026-07-21
AI Technical Summary
Traditional manual bagging methods are cumbersome, inefficient, and labor-intensive. Furthermore, during automated bagging, the gloves are prone to sticking together due to the high temperature of the adhesive, which affects bagging efficiency and continuity.
Design a hollow glove bagging box and bagging device. The device uses rolling friction of a rotating roller to replace sliding friction, and combines pressing, lifting and pushing mechanisms to achieve automatic glove bagging. The rotating roller dynamically peels off the adhesive film to prevent sticking.
It has enabled automated bagging of gloves, reduced manual labor intensity, improved bagging efficiency, ensured smooth movement of gloves without residue, and guaranteed the continuity and efficiency of bagging.
Smart Images

Figure CN224529145U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glove packaging equipment technology, and in particular to glove bagging boxes, glove bagging devices, and glove bagging machines. Background Technology
[0002] After the gloves are manufactured on the production line, they need to be neatly stacked into pairs. Then, a specified number of pairs of gloves need to be stacked neatly to prepare for the subsequent bagging and sealing operations.
[0003] Traditionally, glove bagging relies primarily on either manual labor or automated equipment. The manual bagging process involves an operator arranging several neatly stacked pairs of gloves, manually opening the bag, and then stuffing the entire stack of gloves into the bag. This method has significant drawbacks: cumbersome and repetitive steps, low overall efficiency, and high labor intensity for workers. Furthermore, given that gloves are high-frequency consumable protective equipment, their production scale is enormous, leading to a surge in demand for manpower in the packaging process, thus significantly increasing overall production costs.
[0004] Automated bagging involves stacking several pairs of gloves neatly in sequence, placing them as a whole into a glove bagging box, and then pushing them into a packaging bag in one go using a mechanical device. While this method replaces the manual insertion of gloves, a key problem exists during the pushing process: because the gloves have just undergone high-temperature processing steps such as pre-forming, dipping, baking, and demolding, the adhesive on their surface is still at a high temperature, making it very easy for them to stick to the inner wall of the glove bagging box during pushing. This adhesion has multiple adverse consequences: firstly, it directly affects the bagging effect of the current batch, causing some gloves to not be fully inserted into the packaging bag, requiring manual re-inspection and re-packing; secondly, the adhesive residue on the inner wall of the sleeve interferes with the normal pushing action of subsequent batches of gloves, requiring manual inspection and thorough cleaning of residue before the equipment can resume operation. This series of problems ultimately severely reduces the efficiency and continuity of automated bagging. Utility Model Content
[0005] In view of this, the technical problem to be solved by this utility model is to provide a glove bagging box, a glove bagging device and a glove bagging machine, which can automatically put neatly stacked gloves into packaging bags, reducing the intensity of manual labor; at the same time, it ensures that the gloves can be bagged normally, meet the bagging requirements and improve the bagging efficiency.
[0006] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0007] A handbag box, wherein the handbag box has a hollow structure, including a vertically arranged receiving part and a horizontally arranged bagging part, and the inner cavity of the receiving part is connected to the inner cavity of the bagging part;
[0008] The top and bottom of the receiving part are both open, and a push port is provided on the side wall of the receiving part. The push port corresponds to the position of the bagging part, and the outer end of the bagging part is open.
[0009] Several rotating rollers are rotatably installed at the top and bottom of the inner cavity of the bagging part, and the several rotating rollers are arranged in a horizontal direction.
[0010] Preferably, the handbag box includes a bag box body and a cover plate, and the bagging part is formed between the cover plate and the bag box body;
[0011] Side plates are fixedly provided on the lower sides of the cover plate, and the vertical position between the side plates and the bag box body is adjustable. Several rotating rollers are rotatably installed between the two side plates.
[0012] A baffle is vertically fixed at the inner end of the cover plate, and the vertical position between the baffle and the bag box body is adjustable.
[0013] A handbag bagging device, comprising a frame; wherein the frame is equipped with:
[0014] At least one handbag box, the handbag box having a hollow structure, including a vertically arranged receiving part and a horizontally arranged bagging part, the inner cavity of the receiving part communicating with the inner cavity of the bagging part, and the top end of the receiving part and the outer end of the bagging part being open;
[0015] A pressing mechanism, comprising a pressing power member and at least one pressure plate, wherein the pressing power member drives the pressure plate to reciprocate vertically, the pressure plate is located above the receiving portion, and the pressure plate is used to extend into the inner cavity of the receiving portion to press down on the glove;
[0016] A lifting mechanism, comprising a lifting power component and at least one top plate, wherein the lifting power component drives the top plate to reciprocate vertically, the top plate being disposed opposite to the pressure plate, and the top plate being used to support, lift, and compress the gloves placed in the receiving portion in cooperation with the pressure plate;
[0017] A horizontal pushing mechanism, comprising a horizontal pushing force member and at least one push plate, wherein the horizontal pushing force member drives the push plate to reciprocate in a horizontal direction, the push plate being positioned corresponding to the bagging portion, and the push plate being used to push the gloves placed in the receiving portion out of the bagging portion;
[0018] Several rotating rollers are rotatably installed at the top and bottom of the inner cavity of the bagging part, and the several rotating rollers are arranged in a horizontal direction.
[0019] Preferably, the bottom end of the receiving portion is open, and the top plate extends into the inner cavity of the receiving portion through the bottom end;
[0020] A push-out is provided on the side wall of the receiving part, the push-out corresponds to the position of the bag-covering part, and the push plate extends into the inner cavity of the receiving part through the push-out.
[0021] Preferably, the pressing mechanism further includes two pressing mounting seats, which are arranged opposite to each other. A pressing connecting plate is vertically slidably arranged on the pressing mounting seat. A pressing crossbeam is fixed between the two pressing connecting plates. The pressing plate is installed below the pressing crossbeam by a pressing rod. Several horizontally arranged rotating rollers are rotatably installed at the bottom of the pressing plate.
[0022] The pressing power component is mounted on one of the pressing mounting seats, and the pressing power component is located close to the pressing connecting plate. The pressing power component drives the pressing connecting plate to reciprocate vertically through the pressing transmission assembly.
[0023] Preferably, the frame is further equipped with an avoidance mechanism, which is used to drive the downward mounting base to reciprocate horizontally; the avoidance mechanism includes:
[0024] An avoidance motor is mounted on the pressure mounting base;
[0025] An avoidance rack is mounted on the frame, and the avoidance motor and the avoidance rack are connected by an avoidance gear pair.
[0026] An avoidance slider slide rail assembly is installed between the pressure mounting base and the frame.
[0027] Preferably, the lifting mechanism further includes two lifting mounting seats, which are slidably mounted vertically on the frame. The two lifting mounting seats are arranged opposite to each other, and a lifting beam is fixed between the two lifting mounting seats. The top plate is mounted above the lifting beam by a top rod, and a number of horizontally arranged rollers are rotatably mounted on the top of the top plate.
[0028] The lifting power component is mounted on one of the lifting mounting seats, and the lifting power component drives the lifting mounting seat to move vertically back and forth through the lifting transmission assembly.
[0029] Preferably, the pushing mechanism further includes two pushing mounting seats, which are slidably disposed on the frame, and a pushing beam is fixed between the two pushing mounting seats. The push plate is mounted on the pushing beam via a push rod.
[0030] The horizontal pushing force component is mounted on one of the horizontal pushing mounting seats, and the horizontal pushing force component drives the horizontal pushing mounting seat to reciprocate in the horizontal direction through the horizontal pushing transmission assembly.
[0031] Preferably, the frame is also equipped with an upper bag clamping mechanism and a matching lower bag clamping mechanism, the upper bag clamping mechanism and the lower bag clamping mechanism being vertically disposed above and below the bag-covering part;
[0032] The upper bag clamping mechanism has the same structure as the lower bag clamping mechanism; the upper bag clamping mechanism includes:
[0033] At least one bag-clamping cylinder, the bag-clamping cylinder being vertically arranged, and the piston rod of the bag-clamping cylinder being arranged toward the bag-covering part;
[0034] A bag-clamping crossbeam, which is connected to the piston rod of the bag-clamping cylinder;
[0035] At least one bag clamping pressure roller assembly is installed between the bag clamping crossbeam and the bag covering part, and the bag clamping pressure roller assembly includes a pressure roller that is rotatably disposed corresponding to the position of the bag covering part.
[0036] A hand-bagging machine, which includes the aforementioned hand-bagging device.
[0037] After adopting the above technical solution, the beneficial effects of this utility model are:
[0038] The handbag box of this application has a hollow structure, including a receiving part and a bagging part. The inner cavity of the receiving part is connected to the inner cavity of the bagging part. The top and bottom of the receiving part are open. The side wall of the receiving part is provided with a push port, which corresponds to the position of the bagging part. The outer end of the bagging part is open. Several rotating rollers are rotatably installed at the top and bottom of the inner cavity of the bagging part. The several rotating rollers are arranged in a horizontal direction.
[0039] Before bagging the gloves, a glove bagging box allows for the stacking and storage of gloves within the receiving section, and the packaging bag can be placed on the bagging section to secure it. During the bagging process, several rotating rollers replace traditional sliding friction with rolling friction, reducing the contact area between the gloves and the high-temperature adhesive. Simultaneously, their rolling characteristics dynamically peel off the adhesive film, preventing continuous adhesion between the adhesive and metal surfaces. The line contact of the rollers (compared to planar contact) makes it difficult for the adhesive to form effective bonds, ensuring smooth, residue-free movement of the gloves, guaranteeing continuous operation efficiency, meeting bagging requirements, and improving bagging efficiency.
[0040] The hand glove bagging device of this application includes a frame on which a hand glove bagging box, a pressing mechanism, a lifting mechanism, and a pushing mechanism are mounted. The hand glove bagging box has a hollow structure, including a receiving part and a bagging part. The top of the receiving part and the outer end of the bagging part are both open. Before bagging gloves, by setting the hand glove bagging box, the gloves to be bagged can be stacked and stored in the receiving part, and the packaging bag can be placed on the bagging part to fix the packaging bag.
[0041] The pressing mechanism includes a pressing power component and a pressure plate. The pressing power component drives the pressure plate to move vertically reciprocatingly. The pressure plate is located above the receiving section and is used to extend into the inner cavity of the receiving section to press down the gloves. The lifting mechanism includes a lifting power component and a top plate. The lifting power component drives the top plate to move vertically reciprocatingly. The top plate is positioned opposite the pressure plate and is used to support, lift, and compress the gloves placed in the receiving section in conjunction with the pressure plate. The top plate and pressure plate work together to compress the gloves in the receiving section, reducing the height of the gloves so that they can be transported as a whole into the bagging section.
[0042] The horizontal pushing mechanism includes a horizontal pushing force component and a push plate. The horizontal pushing force component drives the push plate to reciprocate in the horizontal direction. The push plate is positioned corresponding to the bagging part. The push plate is used to push the gloves placed in the receiving part out of the bagging part. After being pushed by the push plate, the compressed gloves can enter the bagging part and be continuously pushed out into the packaging bag.
[0043] By employing a combination of a pressing mechanism, a lifting mechanism, and a pushing mechanism, gloves placed in the receiving section can be stored, compressed, and pushed into bags. During the pushing and bagging process, because the packaging bag is placed on the outside of the bagging section, when the glove is pushed out and touches the bottom of the packaging bag, it can push the packaging bag outwards until the glove is completely pushed into the packaging bag, completing the bagging action. Therefore, after the gloves are placed in the receiving section, this application can automatically pack the gloves into the packaging bag through the bagging section, completing the automatic bagging action, replacing the traditional manual bagging action, and reducing the intensity of manual labor.
[0044] Several rotating rollers are rotatably mounted at the top and bottom of the inner cavity of the bagging section, arranged horizontally. When the flat-push mechanism pushes the gloves out for bagging via the push plate, the rotating rollers reduce the contact area between the gloves and the high-temperature adhesive material by using rolling friction instead of traditional sliding friction. Simultaneously, their rolling characteristics dynamically peel off the adhesive film, preventing continuous adhesion between the adhesive and metal surfaces. During the pressing down of the pressure plate, the lifting of the top plate, and the pushing process, the line contact of the rollers (compared to planar contact) makes it difficult for the adhesive material to form effective adhesion, ensuring smooth and residue-free movement of the gloves, guaranteeing continuous operation efficiency, meeting bagging requirements, and improving bagging efficiency. Attached Figure Description
[0045] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0046] Figure 1 This is a structural schematic diagram of a one-piece set of bags and boxes according to an embodiment of this utility model;
[0047] Figure 2 This is a schematic diagram of the structure of the second-hand kit bag device according to an embodiment of this utility model;
[0048] Figure 3 yes Figure 2 Enlarged view of part A;
[0049] Figure 4 This is a schematic diagram of the second-hand kit bag device from another direction according to an embodiment of this utility model;
[0050] Figure 5 yes Figure 4 Enlarged view of part B;
[0051] Figure 6 This is a partial structural schematic diagram of the second-hand kit bag device according to an embodiment of this utility model;
[0052] Figure 7 This is a cross-sectional view of a hand-held bag device according to an embodiment of this utility model;
[0053] In the picture:
[0054] 1. Frame; 11. Bag carrier plate;
[0055] 2. Handbag box; 21. Receiving section; 22. Bag-making section; 23. Push-out port; 24. Bag box body; 25. Cover plate; 26. Side plate; 27. Baffle plate;
[0056] 3. Pressing mechanism; 31. Pressing power component; 32. Pressure plate; 33. Pressing mounting base; 34. Pressing connecting plate; 35. Pressing crossbeam; 36. Pressure rod; 37. Pressing transmission assembly;
[0057] 4. Lifting mechanism; 41. Lifting power component; 42. Top plate; 43. Lifting mounting base; 44. Lifting crossbeam; 45. Lifting rod; 46. Lifting transmission assembly;
[0058] 5. Horizontal pushing mechanism; 51. Horizontal pushing force component; 52. Push plate; 53. Horizontal pushing mounting base; 54. Horizontal pushing crossbeam; 55. Push rod; 56. Horizontal pushing transmission assembly;
[0059] 6. Rotary roller;
[0060] 7. Avoidance mechanism; 71. Avoidance motor; 72. Avoidance rack; 73. Avoidance gear pair;
[0061] 8. Upper bag clamping mechanism; 81. Bag clamping cylinder; 82. Bag clamping crossbeam; 83. Bag clamping pressure roller assembly; 84. Pressure roller;
[0062] 9. Lower bag clamping mechanism. Detailed Implementation
[0063] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0064] Example 1
[0065] like Figure 1 As shown, this embodiment discloses a handbag box, which has a hollow structure, including a vertically arranged receiving part 21 and a horizontally arranged bagging part 22. The inner cavity of the receiving part 21 is connected to the inner cavity of the bagging part 22. The top and bottom ends of the receiving part 21 are open. A push port 23 is provided on the side wall of the receiving part 21, and the push port 23 corresponds to the position of the bagging part 22. The outer end of the bagging part 22 is open. Several rotating rollers 6 are rotatably installed on the top and bottom of the inner cavity of the bagging part 22, and the several rotating rollers 6 are arranged in the horizontal direction.
[0066] Before bagging the gloves, a glove bagging box allows for the stacking and storage of gloves in the receiving section 21, and the packaging bag can be placed on the bagging section 22 to secure it. When pushing the gloves out for bagging, several rotating rollers 6 are used. These rollers use rolling friction instead of traditional sliding friction, reducing the contact area between the gloves and the high-temperature adhesive. Simultaneously, their rolling characteristics dynamically peel off the adhesive film, preventing continuous adhesion between the adhesive and the metal surface. The line contact of the rollers 6 (compared to planar contact) makes it difficult for the adhesive to form effective bonds, ensuring smooth, residue-free movement of the gloves, guaranteeing continuous operation efficiency, meeting bagging requirements, and improving bagging efficiency.
[0067] Preferably, the handbag box includes a bag box body 24 and a cover plate 25, with a bag-covering part 22 formed between the cover plate 25 and the bag box body 24; side plates 26 are fixedly provided on the lower sides of the cover plate 25 respectively, and the vertical position between the side plates 26 and the bag box body 24 is adjustable; a plurality of rollers 6 are rotatably installed between the two side plates 26; a baffle 27 is fixedly provided vertically at the inner end of the cover plate 25, and the vertical position between the baffle 27 and the bag box body 24 is adjustable.
[0068] Preferably, the side plate 26 has a long through hole, and the side plate is connected to the bag box body 24 by bolts. The height between the cover plate 25 and the cover plate 24 can be adjusted by the vertically set long through hole, thereby adjusting the overall height of the bagging part 22, so that different numbers of gloves can be bagged.
[0069] The rotating roller 6 at the top of the inner cavity of the bagging section 22 is installed between the two side plates 26, which can drive the rotating roller 6 to adjust together while adjusting the height of the cover plate 25, so as to meet the bagging requirements.
[0070] Example 2
[0071] like Figures 1 to 7 As shown in the figure, this embodiment discloses a handbag bagging device, including a frame 1, on which at least one handbag bag box 2, a pressing mechanism 3, a lifting mechanism 4, and a pushing mechanism 5 are mounted.
[0072] The glove bag box 2 has a hollow structure, including a vertically arranged receiving portion 21 and a horizontally arranged bagging portion 22. The inner cavity of the receiving portion 21 is connected to the inner cavity of the bagging portion 22, and both the top end of the receiving portion 21 and the outer end of the bagging portion 22 are open. By providing the glove bag box 2, gloves that need to be bagged can be stacked and stored in the receiving portion 21, and packaging bags can be placed on the bagging portion 22 to secure the packaging bags.
[0073] The pressing mechanism 3 includes a pressing power member 31 and at least one pressure plate 32. The pressing power member 31 drives the pressure plate 32 to reciprocate vertically. The pressure plate 32 is located above the receiving part 21 and is used to extend into the inner cavity of the receiving part 21 to press down the glove. The lifting mechanism 4 includes a lifting power member 41 and at least one top plate 42. The lifting power member 41 drives the top plate 42 to reciprocate vertically. The top plate 42 is disposed opposite to the pressure plate 32 and is used to support, lift, and cooperate with the pressure plate 32 to compress the glove placed in the receiving part 21.
[0074] After the gloves are placed in the receiving section 21, multiple gloves are stacked and stored. The top plate and the pressure plate work together to compress the multiple gloves in the receiving section 21, reducing the volume of the multiple gloves so that they can be transported as a whole into the bagging section 22.
[0075] The horizontal pushing mechanism 5 includes a horizontal pushing force member 51 and at least one push plate 52. The horizontal pushing force member 51 drives the push plate 52 to reciprocate in the horizontal direction. The push plate 52 corresponds to the position of the bagging part 22 and is used to push the gloves placed in the receiving part 21 out of the bagging part 22. After being pushed by the push plate 52, the compressed gloves can enter the bagging part 22 and be continuously pushed out into the packaging bag.
[0076] In this embodiment, the positions and quantities of the handbag box 2, pressure plate 32, top plate 42 and push plate 52 correspond one-to-one.
[0077] By employing a pressing mechanism 3, a lifting mechanism 4, and a pushing mechanism 5 working in concert, gloves placed in the receiving section 21 can be stored, compressed, and pushed into bags. During the bagging process, because the packaging bag is placed on the outside of the bagging section 22, when the glove is pushed out and touches the bottom of the packaging bag, it can push the packaging bag outwards until the glove is completely pushed into the packaging bag, completing the bagging action. Therefore, after placing the gloves in the receiving section 21, this application can automatically pack the gloves into the packaging bag through the bagging section 22, completing the automatic bagging action, replacing the traditional manual bagging action, and reducing the intensity of manual labor.
[0078] Meanwhile, several rotating rollers 6 are rotatably installed at the top and bottom of the inner cavity of the bagging section 22, the bottom of the pressure plate 32, and the top of the top plate 42, arranged horizontally. When the flat pushing mechanism 5 pushes the gloves out for bagging via the push plate 52, the rotating rollers 6 reduce the contact area of the high-temperature adhesive on the gloves by using rolling friction instead of traditional sliding friction. Simultaneously, their rolling characteristics dynamically peel off the adhesive film, preventing the adhesive from continuously adhering to the metal surface. During the pressing of the pressure plate 32, the lifting of the top plate 42, and the pushing of the push plate 52, the line contact of the rotating rollers 6 (compared to planar contact) makes it difficult for the adhesive to form effective adhesion, ensuring smooth movement of the gloves without residue, guaranteeing continuous operation efficiency, meeting bagging requirements, and improving bagging efficiency.
[0079] Preferably, the bottom end of the receiving part 21 is open, and the top plate 42 extends into the inner cavity of the receiving part 21 through the bottom end of the receiving part 21; a push port 23 is provided on the side wall of the receiving part 21, the push port 23 corresponds to the position of the bag part 22, and the push plate 52 extends into the inner cavity of the receiving part 21 through the push port 23.
[0080] The handbag box 2 includes a bag box body 24 and a cover plate 25, with a bag-covering part 22 formed between the cover plate 25 and the bag box body 24; side plates 26 are fixedly provided on the lower sides of the cover plate 25 respectively, and the vertical position between the side plates 26 and the bag box body 24 is adjustable; several rollers 6 are rotatably installed between the two side plates 26; a baffle 27 is fixedly provided vertically at the inner end of the cover plate 25, and the vertical position between the baffle 27 and the bag box body 24 is adjustable.
[0081] Preferably, the side plate 26 has a long through hole, and the side plate is connected to the bag box body 24 by bolts. The height between the cover plate 25 and the cover plate 24 can be adjusted by the vertically set long through hole, thereby adjusting the overall height of the bagging part 22, so that different numbers of gloves can be bagged.
[0082] The rotating roller 6 at the top of the inner cavity of the bagging section 22 is installed between the two side plates 26, which can drive the rotating roller 6 to adjust together while adjusting the height of the cover plate 25, so as to meet the bagging requirements.
[0083] In this embodiment, the pressing mechanism 3 further includes two pressing mounting seats 33, which are arranged opposite to each other. A pressing connecting plate 34 is vertically slidably arranged on the pressing mounting seat 33. A pressing crossbeam 35 is fixed between the two pressing connecting plates 34. A pressure plate 32 is installed below the pressing crossbeam 35 through a pressure rod 36. A pressing power component 31 is installed on one of the pressing mounting seats 33. The pressing power component 31 is arranged close to the pressing connecting plate 34. The pressing power component 31 drives the pressing connecting plate 34 to reciprocate vertically through the pressing transmission assembly 37.
[0084] Preferably, the pressing power component 31 is a motor, and the pressing transmission component 37 is a gear and rack assembly. The gear is mounted on the power shaft of the motor, and the rack is mounted on the pressing connecting plate 34. Driven by the motor, the gear and rack mesh to drive the pressing connecting plate 34 to move vertically back and forth. When the pressing connecting plate 34 moves downward, it drives the pressing crossbeam 35, the pressure rod 36 and the pressure plate 32 to move downward together to press down on the glove.
[0085] An avoidance mechanism 7 is also installed on the frame 1. The avoidance mechanism 7 is used to drive the pressure mounting base 33 to reciprocate in the horizontal direction. The avoidance mechanism 7 includes an avoidance motor 71, an avoidance rack 72 and an avoidance slider slide rail assembly. The avoidance motor 71 is installed on the pressure mounting base 33, the avoidance rack 72 is installed on the frame 1, and the avoidance motor 71 and the avoidance rack 72 are connected by an avoidance gear pair 73. The avoidance slider slide rail assembly is installed between the pressure mounting base 33 and the frame 1.
[0086] Before stacking multiple gloves sequentially in the receiving section 21, the position of the pressure plate 32 needs to be adjusted so that it does not obstruct or interfere with the receiving section 21. Therefore, by setting the avoidance mechanism 7, the position of the pressure plate 32 can be moved horizontally. Specifically, when the power shaft of the avoidance motor 71 rotates, it can engage the avoidance gear pair 73 and the avoidance rack 72, driving the lower pressure mounting base 33 on which the avoidance motor 71 is mounted to reciprocate in the horizontal direction. This allows the pressure plate 32 mounted on the lower pressure mounting base 33 to move simultaneously, moving it away from or closer to the receiving section 21, thus completing the avoidance action.
[0087] The lifting mechanism 4 also includes two lifting mounting seats 43, which are slidably mounted on the frame 1 along the vertical direction. The two lifting mounting seats 43 are arranged opposite to each other, and a lifting beam 44 is fixed between the two lifting mounting seats 43. The top plate 42 is mounted on the top of the lifting beam 44 through the top rod 45. The lifting power component 41 is mounted on one of the lifting mounting seats 43, and the lifting power component 41 drives the lifting mounting seat 43 to move back and forth along the vertical direction through the lifting transmission assembly 46.
[0088] Preferably, the lifting power component 41 is a motor, and the lifting transmission component 46 is a gear and rack assembly. The gear is mounted on the power shaft of the motor, and the rack is mounted on the frame. Driven by the motor, the gear and rack mesh, causing the lifting mounting base 43 to move vertically back and forth. When the lifting mounting base 43 moves upward, it drives the lifting beam 44, the top rod 45, and the top plate 42 to move upward together, thus lifting the glove.
[0089] The top plate 42 lifts the gloves, and the pressure plate 32 presses them down. The two work together to compress the gloves, reducing their volume so that they can be easily passed through the bagging section 22 for bagging.
[0090] The horizontal pushing mechanism 5 also includes two horizontal pushing mounting seats 53, which are slidably mounted on the frame 1. A horizontal pushing beam 54 is fixed between the two horizontal pushing mounting seats 53. A push plate 52 is mounted on the horizontal pushing beam 54 via a push rod 55. A horizontal pushing force component 51 is mounted on one of the horizontal pushing mounting seats 53. The horizontal pushing force component 51 drives the horizontal pushing mounting seat 53 to reciprocate in the horizontal direction via a horizontal pushing transmission assembly 56.
[0091] Preferably, the flat-push mechanism 5 is used to push out the compressed gloves. The flat-push force component 51 is a motor, and the flat-push transmission assembly 56 is a gear and rack assembly. The gear is mounted on the motor's power shaft, and the rack is mounted on the frame 1. Driven by the motor, the gear and rack mesh, causing the flat-push mounting base 53 to reciprocate horizontally. When the flat-push mounting base 53 moves towards the glove bag box 2, it drives the flat-push beam 54, push rod 55, and push plate 52 to extend into the receiving part 21, pushing the gloves into and out of the bagging part 22, and into the packaging bag, completing the bagging process.
[0092] Before bagging, the packaging bag needs to be put on the bagging part 22. In order to prevent the packaging bag from falling off and to improve the bagging effect, the frame 1 is also equipped with an upper bag clamping mechanism 8 and a matching lower bag clamping mechanism 9. The upper bag clamping mechanism 8 and the lower bag clamping mechanism 9 are vertically arranged above and below the bagging part 22, respectively. The upper bag clamping mechanism 8 and the lower bag clamping mechanism 9 have the same structure.
[0093] The upper bag clamping mechanism 8 includes at least one bag clamping cylinder 81, a bag clamping crossbeam 82, and at least one bag clamping pressure roller assembly 83. The bag clamping cylinder 81 is vertically arranged, and the piston rod of the bag clamping cylinder 81 is arranged towards the bag covering part 22. The bag clamping crossbeam 82 is connected to the piston rod of the bag clamping cylinder 81. The bag clamping pressure roller assembly 83 is installed between the bag clamping crossbeam 82 and the bag covering part 22. The bag clamping pressure roller assembly 83 includes a pressure roller 84 that is rotatably arranged and corresponds to the position of the bag covering part 22.
[0094] After the packaging bag is placed onto the bag-covering part 22, the upper bag-clamping mechanism 8 cooperates with the bag-covering part 22 to press down and fix the upper part of the packaging bag; while the lower bag-clamping mechanism 9 cooperates with the bag-covering part 22 to lift and fix the lower part of the packaging bag. Because the structures of the two are the same, the operation process of the upper bag-clamping mechanism 8 will be described in principle in this embodiment. Before hand-closing the bag, the packaging bag needs to be fixed first. The bag-clamping cylinder 81 drives the bag-clamping beam 82 to move down, which in turn drives the bag-clamping pressure roller assembly 83 to move down, causing the pressure roller 84 to abut against the bag-covering part 22 to clamp and fix the packaging bag between the two. Similarly, the pressure roller 84 in the lower bag-clamping mechanism 9 moves up to clamp and fix the packaging bag. The two mechanisms cooperate with each other to fix the packaging bag, and because the pressure roller 84 is rotatable, it does not affect the movement of the packaging bag.
[0095] In this embodiment, the positions and quantities of the pressure rollers 84 in the handbag box 2, the upper bag clamping mechanism 8, and the lower bag clamping mechanism 9 correspond one-to-one.
[0096] The frame 1 is also equipped with a bag carrier plate 11, which is located on the outside of the bag-covering part 22. After the gloves are put into the packaging bag, the gloves push the packaging bag to continue to move outward until it falls on the bag carrier plate 11 and is placed there, making it convenient for staff to collect containers.
[0097] Example 3
[0098] This embodiment discloses a glove bagging machine, including the glove bagging device described in the above embodiment. When bagging gloves, the machine automatically inserts the gloves into a packaging bag via the bagging section 22, completing the automatic bagging action. This replaces the traditional manual bagging action, reducing labor intensity. Simultaneously, the use of rolling friction instead of traditional sliding friction reduces the contact area of the high-temperature adhesive on the gloves, ensuring smooth movement of the gloves without residue, guaranteeing continuous operation efficiency, meeting bagging requirements, and improving bagging efficiency.
[0099] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A handbag box, characterized in that, The handbag box has a hollow structure, including a vertically arranged receiving part and a horizontally arranged bagging part, and the inner cavity of the receiving part is connected to the inner cavity of the bagging part; The top and bottom of the receiving part are both open, and a push port is provided on the side wall of the receiving part. The push port corresponds to the position of the bagging part, and the outer end of the bagging part is open. Several rotating rollers are rotatably installed at the top and bottom of the inner cavity of the bagging part, and the several rotating rollers are arranged in a horizontal direction.
2. The handbag box as described in claim 1, characterized in that, The handbag box includes a bag box body and a cover plate, with the bagging part formed between the cover plate and the bag box body; Side plates are fixedly provided on the lower sides of the cover plate, and the vertical position between the side plates and the bag box body is adjustable. Several rotating rollers are rotatably installed between the two side plates. A baffle is vertically fixed at the inner end of the cover plate, and the vertical position between the baffle and the bag box body is adjustable.
3. A hand-held bagging device, comprising a frame; characterized in that, The frame is equipped with: At least one handbag box, the handbag box having a hollow structure, including a vertically arranged receiving part and a horizontally arranged bagging part, the inner cavity of the receiving part communicating with the inner cavity of the bagging part, and the top end of the receiving part and the outer end of the bagging part being open; A pressing mechanism, comprising a pressing power member and at least one pressure plate, wherein the pressing power member drives the pressure plate to reciprocate vertically, the pressure plate is located above the receiving portion, and the pressure plate is used to extend into the inner cavity of the receiving portion to press down on the glove; A lifting mechanism, comprising a lifting power component and at least one top plate, wherein the lifting power component drives the top plate to reciprocate vertically, the top plate being disposed opposite to the pressure plate, and the top plate being used to support, lift, and compress the gloves placed in the receiving portion in cooperation with the pressure plate; A horizontal pushing mechanism, comprising a horizontal pushing force member and at least one push plate, wherein the horizontal pushing force member drives the push plate to reciprocate in a horizontal direction, the push plate being positioned corresponding to the bagging portion, and the push plate being used to push the gloves placed in the receiving portion out of the bagging portion; Several rotating rollers are rotatably installed at the top and bottom of the inner cavity of the bagging part, and the several rotating rollers are arranged in a horizontal direction.
4. The handbag bagging device as described in claim 3, characterized in that, The bottom end of the receiving part is open, and the top plate extends into the inner cavity of the receiving part through the bottom end of the receiving part. A push-out is provided on the side wall of the receiving part, the push-out corresponds to the position of the bag-covering part, and the push plate extends into the inner cavity of the receiving part through the push-out.
5. The handbag bagging device as described in claim 3, characterized in that, The pressing mechanism also includes two pressing mounting seats, which are arranged opposite to each other. A pressing connecting plate is vertically slidably arranged on the pressing mounting seat. A pressing crossbeam is fixed between the two pressing connecting plates. The pressing plate is installed below the pressing crossbeam by a pressing rod. Several horizontally arranged rotating rollers are rotatably installed at the bottom of the pressing plate. The pressing power component is mounted on one of the pressing mounting seats, and the pressing power component is located close to the pressing connecting plate. The pressing power component drives the pressing connecting plate to reciprocate vertically through the pressing transmission assembly.
6. The handbag bagging device as described in claim 5, characterized in that, An avoidance mechanism is also installed on the frame, the avoidance mechanism being used to drive the pressing mounting base to reciprocate horizontally; the avoidance mechanism includes: An avoidance motor is mounted on the pressure mounting base; An avoidance rack is mounted on the frame, and the avoidance motor and the avoidance rack are connected by an avoidance gear pair. An avoidance slider slide rail assembly is installed between the pressure mounting base and the frame.
7. The handbag bagging device as described in claim 3, characterized in that, The lifting mechanism also includes two lifting mounting seats, which are slidably mounted on the frame in a vertical direction. The two lifting mounting seats are arranged opposite to each other, and a lifting beam is fixed between the two lifting mounting seats. The top plate is mounted above the lifting beam by a top rod, and a number of horizontally arranged rollers are rotatably mounted on the top of the top plate. The lifting power component is mounted on one of the lifting mounting seats, and the lifting power component drives the lifting mounting seat to move vertically back and forth through the lifting transmission assembly.
8. The handbag bagging device as described in claim 3, characterized in that, The pushing mechanism also includes two pushing mounting seats, which are slidably mounted on the frame. A pushing beam is fixed between the two pushing mounting seats, and the push plate is mounted on the pushing beam via a push rod. The horizontal pushing force component is mounted on one of the horizontal pushing mounting seats, and the horizontal pushing force component drives the horizontal pushing mounting seat to reciprocate in the horizontal direction through the horizontal pushing transmission assembly.
9. The handbag bagging device as described in claim 3, characterized in that, The frame is also equipped with an upper bag clamping mechanism and a matching lower bag clamping mechanism, which are vertically positioned above and below the bag-covering part. The upper bag clamping mechanism has the same structure as the lower bag clamping mechanism; The upper bag clamping mechanism includes: At least one bag-clamping cylinder, the bag-clamping cylinder being vertically arranged, and the piston rod of the bag-clamping cylinder being arranged toward the bag-covering part; A bag-clamping crossbeam, which is connected to the piston rod of the bag-clamping cylinder; At least one bag clamping pressure roller assembly is installed between the bag clamping crossbeam and the bag covering part, and the bag clamping pressure roller assembly includes a pressure roller that is rotatably disposed corresponding to the position of the bag covering part.
10. A hand-made bagging machine, characterized in that, The hand-bagging machine includes the hand-bagging apparatus as described in any one of claims 3 to 9.