Stacking device for paper extraction production
By designing a paper pumping production stacking device including the main frame, dovetail chute, dovetail slider, material transfer assembly and material feeding assembly, the misalignment problem when stacking long strips of paper is solved, and a more beautiful product and a simpler packaging process is achieved.
Patent Information
- Application Number
- CN202421529980.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-01
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-01
AI Technical Summary
During the paper pumping process, long strips of paper are prone to misalignment when stacking, which affects the aesthetics and subsequent packaging processes.
A stacking device for paper pumping production is designed, including a main frame body, a dovetail slider, a dovetail slider, a material transfer assembly and a material feeding assembly. The first gear is driven by the second servo reduction motor, and the side pressure plate rotates downward to the vertical direction, trims and aligns the stacked strips of paper.
It effectively solves the problem of misalignment when stacking long strips of paper, improves the aesthetics of the product, and simplifies the subsequent slitting and packaging process.
Smart Images

Figure CN222892788U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toilet paper production equipment, in particular to a stacking device for tissue paper production. Background Art
[0002] Tissue paper, also known as box tissue, paper tissue, boxed facial tissue, tissue paper, tissue paper, etc., is made of wood pulp, bamboo pulp, straw pulp, etc. During production, wood pulp, bamboo pulp, straw pulp, etc. are first made into wide paper rolls, and then cut into long strips of paper. After the long strips of paper are stacked, they are cut and packaged to make finished products. However, the long strips of paper have the following defects when stacked:
[0003] When long strips of paper are stacked, they are prone to misalignment on both sides, which will reduce the appearance after subsequent cutting and will also affect the subsequent packaging process.
[0004] For this reason, we propose a stacking device for paper tissue production to solve the above problems. Utility Model Content
[0005] The purpose of the utility model is to provide a stacking device for paper tissue production to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a stacking device for paper production, comprising a main frame, a dovetail slide groove is provided on one side of the main frame, a dovetail slider is vertically slidably connected in the dovetail slide groove, a material shifting assembly is provided on the side wall of the dovetail slider, and a material receiving assembly is provided on the side wall of the main frame directly below the material shifting assembly;
[0007] The material moving assembly includes a transverse plate, two hinge blocks are fixedly connected to the two sides of the transverse plate, the two hinge blocks are rotatably connected to the two hinge seats, the two hinge seats are fixedly connected to the two side pressure plates, the two hinge blocks are horizontally rotatably connected to the two transverse shafts, the transverse shafts are fixedly connected to the hinge seats, the two transverse shafts are fixedly sleeved with two driven pulleys, the inside of the transverse plate is rotatably connected to the two first gears, the two first gears are meshed with each other, the two first gear shaft ends are fixedly connected to the two driving pulleys, the driving pulleys and the driven pulleys are sleeved with synchronous belts, the inside of the transverse plate is fixedly connected to the second servo reduction motor, and the shaft end of the second servo reduction motor is fixedly connected to one of the first gear shafts.
[0008] Preferably, a horizontal through hole is horizontally opened on the horizontal plate, and two slides are horizontally slidably connected in the horizontal through hole. The two slides are located outside the horizontal plate and are fixedly connected to two end plates at one end, and the bottom ends of the two end plates are horizontally fixedly connected to two supporting blocks on one side close to each other.
[0009] Preferably, the middle position in the transverse through opening is rotatably connected to the second gear, the two slides are located in the transverse through opening and are horizontally fixed to two racks at one end, the two sides of the second gear are meshed and connected to the two racks, the top surface inside the transverse through opening is fixedly embedded with the third servo reduction motor, and the shaft end of the third servo reduction motor is fixedly connected to the shaft of the second gear.
[0010] Preferably, the material receiving assembly includes a vertical plate, a through groove is vertically opened in the middle of the vertical plate, a sliding plate is vertically slidably connected in the through groove, one side of the sliding plate is horizontally fixedly connected to the material receiving plate, the material receiving plate is located directly below the cross plate, two support openings are opened at both ends of the top of the material receiving plate, and the thickness of the support openings is greater than the thickness of the support block.
[0011] Preferably, the side of the vertical plate away from the material receiving plate is fixedly connected to the second servo electric cylinder, the output end of the second servo electric cylinder is fixedly connected to the bottom surface of the end of the sliding plate, two side openings are opened on both sides of the vertical plate, two side blocks are fixedly connected to the side of the vertical plate at both ends of the material receiving plate, the side blocks are vertically slidably connected to the side openings, the side of the vertical plate close to the main frame is horizontally fixedly connected to multiple cross brackets, and the ends of the multiple cross brackets are fixedly connected to the side walls of the main frame.
[0012] Preferably, the material moving assembly also includes a cross block fixedly connected to the side wall of the dovetail slider, a plurality of column grooves are horizontally opened at the end of the cross block, a plurality of sliding columns are horizontally slidably connected in four of the column grooves, the ends of the plurality of sliding columns are fixedly connected to a top block, a vertical rod is vertically fixed between the bottom surface of the top block and the top surface of the cross plate, the top surface of the cross block is fixedly connected to a first servo electric cylinder, the top surface of the top block is fixedly connected to a power plate, and the output end of the first servo electric cylinder is fixedly connected to the side wall of the power plate.
[0013] Preferably, the dovetail slide groove is vertically connected to a screw rod, the dovetail slider is fixed to a threaded sleeve, the screw rod is threadedly connected to the threaded sleeve, the top surface of the main frame is fixed to the first servo reduction motor, the shaft end of the first servo reduction motor is fixed to the top of the screw rod, and the bottom surface of the main frame is fixed to the support plate.
[0014] Compared with the prior art, the beneficial effects of the utility model are:
[0015] The utility model is provided with a material moving component, which can drive the two first gears to rotate through the second servo reduction motor, and the directions are opposite, so that the side pressure plates on both sides will rotate downward to the vertical direction, and the stacked long strips of paper can be trimmed to align the two sides, which is more beautiful and convenient for the subsequent cutting and packaging processes. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the main structure in the first and second embodiments of the utility model;
[0017] Figure 2 It is a schematic diagram of the cutaway structure of the material moving assembly in the first and second embodiments of the utility model;
[0018] Figure 3 For this utility model Figure 2 A schematic diagram of the enlarged structure of the structure at center A;
[0019] Figure 4 This is a schematic diagram of the cross-section structure of the second embodiment of the utility model;
[0020] Figure 5 It is a schematic diagram of the cross-section structure of the material receiving component in the second embodiment of the utility model.
[0021] In the figure: 1, main frame; 2, material transfer assembly; 3, material receiving assembly; 11, dovetail slide; 12, dovetail slider; 13, support plate; 14, screw rod; 15, threaded sleeve; 16, first servo reduction motor; 21, cross plate; 22, hinge block; 23, cross axis; 24, hinge seat; 25, side pressure plate; 26, cross opening; 27, slide plate; 28, end plate; 29, support block; 210, cross block; 211, column slot; 212, slide column; 213, top block; 214, Vertical pole; 215, first gear; 216, driving pulley; 217, driven pulley; 218, synchronous belt; 219, second servo reduction motor; 220, second gear; 221, rack; 222, third servo reduction motor; 223, first servo electric cylinder; 224, power plate; 31, vertical plate; 32, through groove; 33, sliding plate; 34, receiving plate; 35, supporting mouth; 36, second servo electric cylinder; 37, horizontal bracket; 38, side mouth; 39, side block. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0023] Embodiment 1:
[0024] See also Figure 1-3 The utility model provides a technical solution: a stacking device for paper production, comprising a main frame 1, a dovetail chute 11 is provided on one side of the main frame 1, a dovetail slider 12 is vertically slidably connected in the dovetail chute 11, a material shifting assembly 2 is provided on the side wall of the dovetail slider 12, and a material receiving assembly 3 is provided on the side wall of the main frame 1 directly below the material shifting assembly 2;
[0025] The material moving assembly 2 includes a transverse plate 21, two hinge blocks 22 are fixedly connected on both sides of the transverse plate 21, the two hinge blocks 22 are rotatably connected to two hinge seats 24, two side pressure plates 25 are fixedly connected to the two hinge seats 24, the two hinge blocks 22 are horizontally rotatably connected to two transverse shafts 23, the transverse shafts 23 are fixedly connected to the hinge seats 24, two driven pulleys 217 are fixedly sleeved on the two transverse shafts 23, the interior of the transverse plate 21 is rotatably connected to two first gears 215, the two first gears 215 are meshed and connected with each other, and the two first gears 215 are fixedly connected to the two driving pulleys 21 at the ends of the rotating shafts. 6. The driving pulley 216 and the driven pulley 217 are sleeved with a synchronous belt 218. The second servo reduction motor 219 is fixedly connected inside the transverse plate 21. The end of the second servo reduction motor 219 is fixedly connected to the shaft of one of the first gears 215. The second servo reduction motor 219 can drive the two first gears 215 to rotate in opposite directions, so that the side pressure plates 25 on both sides will rotate downward to the vertical direction, so that the stacked long strips of paper can be trimmed to align the two sides, which is more beautiful and convenient for the subsequent slitting and packaging processes.
[0026] Embodiment 2:
[0027] See also Figure 1-5 , which is the second embodiment of the utility model. This embodiment is based on the previous embodiment. A horizontal through hole 26 is horizontally opened on the horizontal plate 21. Two slide plates 27 are horizontally slidably connected in the horizontal through hole 26. The two slide plates 27 are located outside the horizontal plate 21 and are fixed with two end plates 28 at one end. The bottom ends of the two end plates 28 are horizontally fixed with two supporting blocks 29 on one side close to each other. The supporting blocks 29 support the bottom ends of the long paper strips after stacking.
[0028] The middle position in the transverse through opening 26 is rotatably connected to the second gear 220, and the two slide plates 27 are located in the transverse through opening 26 and are horizontally fixedly connected to the two racks 221 at one end. The two sides of the second gear 220 are meshed and connected to the two racks 221. The top surface of the inside of the transverse through opening 26 is fixedly embedded with the third servo reduction motor 222, and the shaft end of the third servo reduction motor 222 is fixedly connected to the shaft of the second gear 220. The third servo reduction motor 222 is used to drive the two end plates 28 to move, so that the support block 29 is inserted into the support opening 35 of the material receiving component 3.
[0029] The material receiving assembly 3 includes a vertical plate 31, a through groove 32 is vertically provided in the middle of the vertical plate 31, a sliding plate 33 is vertically slidably connected in the through groove 32, and a material receiving plate 34 is horizontally fixedly connected to one side of the sliding plate 33. The material receiving plate 34 is located directly below the cross plate 21, and two support openings 35 are provided at both ends of the top of the material receiving plate 34. The thickness of the support opening 35 is greater than the thickness of the support block 29.
[0030] The side of the vertical plate 31 away from the material receiving plate 34 is fixedly connected to the second servo electric cylinder 36, and the output end of the second servo electric cylinder 36 is fixedly connected to the bottom surface of the end of the sliding plate 33. Two side openings 38 are opened on both sides of the vertical plate 31. Two side blocks 39 are fixedly connected to the two ends of the material receiving plate 34 close to the side of the vertical plate 31. The side blocks 39 are vertically slidably connected to the side openings 38. The side of the vertical plate 31 close to the main frame 1 is horizontally fixedly connected to multiple cross brackets 37, and the ends of the multiple cross brackets 37 are fixedly connected to the side wall of the main frame 1. The second servo electric cylinder 36 is used to drive the material receiving plate 34 to move slowly downward so that the material can be continuously received.
[0031] The material moving assembly 2 also includes a cross block 210 fixedly connected to the side wall of the dovetail slider 12, a plurality of column grooves 211 are horizontally provided at the end of the cross block 210, a plurality of sliding columns 212 are horizontally slidably connected in the four column grooves 211, the ends of the plurality of sliding columns 212 are fixedly connected to a top block 213, a vertical rod 214 is vertically fixedly connected between the bottom surface of the top block 213 and the top surface of the cross plate 21, the top surface of the cross block 210 is fixedly connected to a first servo electric cylinder 223, the top surface of the top block 213 is fixedly connected to a power plate 224, and the output end of the first servo electric cylinder 223 is fixedly connected to the side wall of the power plate 224.
[0032] A screw rod 14 is vertically rotated in the dovetail slide groove 11, a threaded sleeve 15 is fixed in the dovetail slider 12, the screw rod 14 is threadedly connected to the threaded sleeve 15, the top surface of the main frame 1 is fixedly connected to the first servo reduction motor 16, the shaft end of the first servo reduction motor 16 is fixedly connected to the top of the screw rod 14, the bottom surface of the main frame 1 is fixedly connected to the support plate 13, and the first servo reduction motor 16 is used to drive the material moving component 2 to move the stack downward and transfer the stacked long strips of paper.
[0033] Embodiment 3:
[0034] See also Figure 1-5 , which is the third embodiment of the utility model. This embodiment is based on the above two embodiments. When the utility model is in use, it is placed on the conveyor line. The material receiving component 3 should be located at the place where the long paper strips fall on the conveyor line. The long paper strips will fall onto the material receiving plate 34 of the material receiving component 3. When receiving the materials, the material receiving plate 34 will slowly move down under the drive of the second servo electric cylinder 36. After stacking, the material moving component 2 moves down, the cross plate 21 presses on the top surface of the stacked long paper strips, and then the two end plates 28 move inward, and the support block 29 is inserted into the bottom of the support opening 35. Then the material moving component 2 moves up. Since the thickness of the support block 29 is less than the support opening 35, the upper After being moved, the stacked long paper strips will be in a more fluffy state, and then the two side pressure plates 25 will rotate downward to apply force on both sides of the stacked long paper strips to align the two sides of the long paper strips, and then the material moving component 2 will send the stacked long paper strips to another conveyor line through dual-axis movement; the utility model is provided with a material moving component 2, which can drive the two first gears 215 to rotate through the second servo reduction motor 219, and the directions are opposite, so that the side pressure plates 25 on both sides will rotate downward to the vertical direction, and the stacked long paper strips can be trimmed to make the two sides aligned, more beautiful, and convenient for subsequent slitting and packaging processes.
[0035] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A stacking device for paper production, comprising a main frame (1), characterized in that: A dovetail slide groove (11) is provided on one side of the main frame (1), a dovetail slider (12) is vertically slidably connected in the dovetail slide groove (11), a material shifting assembly (2) is provided on the side wall of the dovetail slider (12), and a material receiving assembly (3) is provided on the side wall of the main frame (1) directly below the material shifting assembly (2); The material transfer assembly (2) comprises a transverse plate (21), two hinge blocks (22) are fixedly connected to two hinge seats (24) on both sides of the transverse plate (21), the two hinge blocks (22) are rotatably connected to two hinge seats (24), two side pressure plates (25) are fixedly connected to the two hinge seats (24), the two hinge blocks (22) are horizontally rotatably connected to two transverse shafts (23), the transverse shafts (23) are fixedly connected to the hinge seats (24), two driven pulleys (217) are fixedly sleeved on the two transverse shafts (23), and the transverse plate (21) Two first gears (215) are internally rotatably connected, the two first gears (215) are meshed and connected with each other, the two first gears (215) are fixedly connected to two driving pulleys (216) at the rotating shaft ends, the driving pulleys (216) and the driven pulleys (217) are sleeved with synchronous belts (218), the second servo reduction motor (219) is fixedly connected to the inside of the transverse plate (21), and the rotating shaft end of the second servo reduction motor (219) is fixedly connected to the rotating shaft of one of the first gears (215).
2. A stacking device for paper production according to claim 1, characterized in that: The transverse plate (21) is horizontally provided with a transverse opening (26), and two slide plates (27) are horizontally slidably connected in the transverse opening (26). The two slide plates (27) are located outside the transverse plate (21) and are fixedly connected to two end plates (28) at one end. The bottom ends of the two end plates (28) are horizontally fixedly connected to two supporting blocks (29) at one side close to each other.
3. A stacking device for paper production according to claim 2, characterized in that: The middle position of the transverse through hole (26) is rotatably connected to the second gear (220), one end of the two slide plates (27) located in the transverse through hole (26) is horizontally fixedly connected to two racks (221), the two sides of the second gear (220) are meshedly connected to the two racks (221), the top surface of the interior of the transverse through hole (26) is fixedly embedded with the third servo reduction motor (222), and the shaft end of the third servo reduction motor (222) is fixedly connected to the shaft of the second gear (220).
4. A stacking device for paper production according to claim 2, characterized in that: The material receiving assembly (3) comprises a vertical plate (31), a through groove (32) is vertically provided in the middle of the vertical plate (31), a sliding plate (33) is vertically slidably connected in the through groove (32), a material receiving plate (34) is horizontally fixedly connected to one side of the sliding plate (33), the material receiving plate (34) is located directly below the transverse plate (21), two support openings (35) are provided at two ends of the top of the material receiving plate (34), and the thickness of the support openings (35) is greater than the thickness of the support block (29).
5. A stacking device for paper production according to claim 4, characterized in that: The side of the vertical plate (31) away from the material receiving plate (34) is fixedly connected to the second servo electric cylinder (36), and the output end of the second servo electric cylinder (36) is fixedly connected to the bottom surface of the end of the sliding plate (33). Two side openings (38) are provided on both sides of the vertical plate (31). Two side blocks (39) are fixedly connected to the side of the vertical plate (31) at both ends of the material receiving plate (34). The side blocks (39) are vertically slidably connected to the side openings (38). The side of the vertical plate (31) close to the main frame (1) is horizontally fixedly connected to a plurality of transverse brackets (37), and the ends of the plurality of transverse brackets (37) are fixedly connected to the side wall of the main frame (1).
6. A stacking device for paper production according to claim 1, characterized in that: The material moving assembly (2) further comprises a transverse block (210) fixedly connected to the side wall of the dovetail slider (12); a plurality of column grooves (211) are horizontally provided at the end of the transverse block (210); a plurality of sliding columns (212) are horizontally slidably connected in four of the column grooves (211); the ends of the plurality of sliding columns (212) are fixedly connected to a top block (213); a vertical rod (214) is vertically fixedly connected between the bottom surface of the top block (213) and the top surface of the transverse plate (21); the top surface of the transverse block (210) is fixedly connected to a first servo electric cylinder (223); the top surface of the top block (213) is fixedly connected to a power plate (224); and the output end of the first servo electric cylinder (223) is fixedly connected to the side wall of the power plate (224).
7. A stacking device for producing tissue paper according to claim 1, characterized in that: A screw rod (14) is vertically rotatably connected in the dovetail slide groove (11), a threaded sleeve (15) is fixedly connected in the dovetail slider (12), the screw rod (14) is threadedly connected to the threaded sleeve (15), the top surface of the main frame (1) is fixedly connected to a first servo reduction motor (16), the shaft end of the first servo reduction motor (16) is fixedly connected to the top of the screw rod (14), and the bottom surface of the main frame (1) is fixedly connected to a support plate (13).