Automatic packing box packing equipment for glass cleaning sheets

By designing an automatic packaging boxing equipment for glass cleaning sheets, the problems of low efficiency and high cost of manual packaging boxing in the prior art are solved, and more efficient production and higher yields are achieved.

CN222833133UActive Publication Date: 2025-05-06YIWU KELI TECH CO LTD
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Patent Information

Application Number
CN202421932713.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-05-06
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

During the production process of existing glass cleaning sheets, pure manual packaging makes it difficult to improve production efficiency and labor costs remain high.

Method used

A glass cleaning sheet automatic packaging box equipment is designed, including a conveyor belt, a conductive roller, a lifting plate, an upper limiting plate and a propulsion plate. The motor drives the rotation of the conductive roller and the thruster drives the lifting plate and the propulsion plate movement to realize the automatic conveying and boxing of the cleaning sheet stack block.

Benefits of technology

It improves the production efficiency of glass cleaning sheets, reduces labor demand and labor costs, reduces the probability of deformation and tearing of cleaning sheets during boxing, and significantly improves the product yield rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to automatic packing box packing equipment for glass cleaning sheets. The conveying device comprises a conveying belt, two side plates, a plurality of transmission rollers, a lifting plate, an upper limiting plate and a propelling plate, motors are arranged on the side plates, guide wheels are arranged on the transmission rollers, a plurality of avoiding grooves are formed in the lifting plate, a first propeller is arranged on the side plates, a second propeller is arranged on the side plates, and anti-sliding plates are further arranged at the rear ends of the side plates and located on the upper sides of the transmission rollers. The anti-sliding plate is parallel to the propelling plate, and a third propeller capable of pushing the anti-sliding plate to horizontally move left and right is arranged on the side plate. The side plate is further provided with a photoelectric sensor used for detecting the position of the cleaning piece stacking block. The cleaning piece packing machine is semi-automatic packing box equipment, the production efficiency is greatly improved, one person can cope with production of at least two cleaning piece packing machines, the labor requirement is greatly reduced, the labor cost is reduced, the probability that cleaning piece stacking blocks are wrinkled, deformed and torn in the packing process is greatly reduced, and the production efficiency is greatly improved. And the yield of products is obviously improved.
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Description

Technical Field

[0001] The utility model relates to a glass cleaning piece production device, in particular to a glass cleaning piece automatic packaging box device. Background Art

[0002] Glass is widely used in various industries such as construction and automobiles. Glass needs to be cleaned regularly to keep it transparent. In order to improve the cleaning efficiency and effect of glass, there are many glass cleaners on the market. However, existing glass cleaners are almost all liquid preparations, and the weight of the products is heavy, which is not convenient to carry with you, so it is not convenient to use when going out. Later, someone developed a soluble glass cleaning sheet, which is shaped like a piece of paper and can be completely dissolved in water and make the aqueous solution have the effect of cleaning glass. There is a glass cleaning sheet product, including a rectangular plastic packaging box and a number of glass cleaning sheets stacked inside it. Its production process includes sheet making, die cutting, stacking and boxing. The boxing process is generally done manually, but because the internal space of the packaging box is close to the outer size of the stacked glass cleaning sheets, it is even necessary to compress the stacked glass cleaning sheets before putting them into the packaging box. Therefore, it is necessary to use a guide mold to improve the boxing effect and boxing success rate, but it is still difficult to improve production efficiency, and the labor cost is also high. Summary of the invention

[0003] The utility model provides an automatic box packaging device for glass cleaning pieces, which solves the problem in the prior art that the production efficiency of glass cleaning pieces is difficult to improve and the labor cost remains high due to pure manual box packaging.

[0004] The above technical problems of the utility model are mainly solved by the following technical solutions: an automatic packaging box device for glass cleaning sheets, including a conveyor belt for conveying stacked blocks of cleaning sheets, characterized in that it also includes two vertically parallel fixed side plates, a plurality of conductive rollers arranged on the side plates at the same height, a horizontally arranged lifting plate, an upper limit plate and a pushing plate fixed horizontally above the lifting plate, the side plates are provided with a motor for driving all conductive rollers to rotate at the same speed and in the same direction, the conductive rollers are provided with a plurality of guide wheels that are spaced apart and of equal size, the outer diameter of the guide wheels is larger than the outer diameter of the conductive rollers, the output end of the conveyor belt is directly opposite to the input end of the conductive rollers, and in the top view From a visual angle, the distribution areas of the lifting plate and the conduction roller partially overlap, and the lifting plate is provided with a plurality of avoidance grooves so that the upper surface of the lifting plate can be lowered to no higher than the highest point of the guide wheel, and the side plate is provided with a first propeller for driving the lifting plate to rise and fall, and the propulsion plate is vertically arranged on the lower side of the upper limit plate, and the side plate is provided with a second propeller for driving the propulsion plate to translate forward and backward, and a stop plate is also provided at the rear end of the side plate and located on the upper side of the conduction roller, and the stop plate is parallel to the propulsion plate, and a third propeller is provided on the side plate for pushing the stop plate to translate left and right; a photoelectric sensor for detecting the position of the cleaning sheet stacking block is also provided on the side plate.

[0005] The operating principle of the utility model is as follows: after the stacking process, the rectangular cleaning sheets are stacked into neat blocks and transported backwards along the conveyor belt. The conveying direction of the conveyor belt is directly opposite to the conduction roller. The height of the upper surface of the conveyor belt is almost the same as the highest point of the guide wheel. The motor drives all the conduction rollers to rotate at the same speed and in the same direction, so that the linear speed of the guide wheel is close to the conveying speed of the conveyor belt. In this way, when the cleaning sheet stacking block moves to the end of the conveyor belt, the guide wheel will guide the cleaning sheet stacking block to continue to move backwards along the rotation direction of the conduction roller until the front end of the cleaning sheet stacking block abuts against the stop slide plate. At this time, the photoelectric sensor detects that the cleaning sheet stacking block has moved to the trigger position, the motor stops, and the third The pusher drives the anti-slip plate to move so that it leaves the lifting path of the lifting plate. The lifting plate located at the lower side of the cleaning sheet stacking block is lifted upward under the push of the first pusher, driving the cleaning sheet stacking block to approach the upper limit plate until it abuts against it. At this time, the cleaning sheet stacking block is in a compressed state, and its overall thickness is slightly smaller than the accommodating thickness of the packaging box. The rear end widths of the lifting plate and the upper limit plate are close to the inner width of the packaging box. The opening of the packaging box can be directly and integrally arranged between the lifting plate and the upper limit plate. Then, the pushing plate located at the front side of the cleaning sheet stacking block will push the cleaning sheet stacking block backward under the push of the second pusher, so that the cleaning sheet stacking block can slide smoothly into the packaging box. To sum up, the utility model is a semi-automatic packaging box equipment. The packaging box needs to be manually placed between the lifting plate and the upper limit plate, and the lid needs to be removed and closed. However, compared with the previous fully manual boxing, the production efficiency has been greatly improved, and one person can handle the production of at least two machines of the utility model, which greatly reduces the manpower demand and labor costs. In addition, the probability of wrinkles, deformation and tearing of the cleaning sheet stacking blocks during the boxing process is greatly reduced, and the product yield rate is significantly improved.

[0006] Furthermore, a horizontal partition is fixed at the bottom between the two side panels, and the first thruster is fixed on the horizontal partition. The first thruster is a double-axis cylinder, and a base plate is fixed on the cylinder rod of the double-axis cylinder. The base plate is located at the bottom of the lifting plate, and a number of connecting rods are fixedly connected between the two. A limit block is provided on the side panel, and the first thruster can push the base plate until it abuts against the limit block, and the lifting plate is in a high position at this time. The double-axis cylinder has a good guiding effect to ensure the stability of the lifting and lowering process of the lifting plate. At the same time, the cylinder moves quickly, is simple to control, and has a low procurement cost. Under the action of the limit block, the double-axis cylinder can be pushed out and stopped accurately at the set height.

[0007] Furthermore, guide plates are provided on both sides of the conveyor belt, and the passing width between the two guide plates is gradually reduced. The actual spacing between the two side plates is slightly larger than the width of the cleaning sheet stacking block, and the guide plates are used to correct the position and posture of the cleaning sheet stacking block on the conveyor belt in advance, ensuring that the cleaning sheet stacking block can enter directly into the space between the two side plates to avoid contact with the side plates.

[0008] Therefore, compared with the prior art, the utility model has the following characteristics: 1. The utility model is a semi-automatic packaging box equipment. The packaging box needs to be manually placed between the lifting plate and the upper limit plate, and the cover needs to be removed and closed. However, compared with the previous fully manual boxing, the production efficiency has been greatly improved, and one person can handle the production of at least two machines of the present invention, which greatly reduces the manpower demand and labor costs. In addition, the probability of wrinkles, deformation and tearing of the cleaning sheet stacking blocks during the boxing process is greatly reduced, and the product yield rate is significantly improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Attached Figure 1 It is a state schematic diagram of the utility model;

[0010] Attached Figure 2 It is a schematic diagram of the rear end of the conveyor belt;

[0011] Attached Figure 3 This is a schematic diagram of the second state of the utility model;

[0012] Attached Figure 4 It is a schematic diagram of the third state removed by the utility model;

[0013] Attached Figure 5 It is a schematic diagram of the structure of the utility model observed from the front side;

[0014] Attached Figure 6 It is a schematic diagram of the structure of the utility model observed from the rear side;

[0015] Attached Figure 7 It is a schematic diagram of the structure of the conduction roller. DETAILED DESCRIPTION

[0016] The technical solution of the utility model is further specifically described below through embodiments and in conjunction with the accompanying drawings.

[0017] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0018] Example 1: See Figure 1 , Figure 5 and Figure 6, an automatic packaging device for glass cleaning sheets, comprising a conveyor belt 100 for conveying stacked blocks of cleaning sheets, and guide plates 110 are provided on both sides of the rear end of the conveyor belt (see Figure 2 ), the passing width between the two guide plates is gradually reduced, and the present embodiment further comprises two vertically parallel fixed side plates 200, five conductive rollers 210 arranged on the side plates at the same height, a horizontally arranged lifting plate 220, an upper limit plate 230 and a pushing plate 240 fixed horizontally above the lifting plate, a motor 250 driving all conductive rollers to rotate at the same speed and in the same direction is arranged on the side plate, and three guide wheels 211 (see Figure 7 ), the outer diameter of the guide wheel is larger than the outer diameter of the conduction roller, the output end of the conveyor belt is directly opposite to the input end of the conduction roller, and in a top-down view, the distribution areas of the lifting plate and the conduction roller partially overlap, and three avoidance grooves 221 are provided on the lifting plate. The width of the avoidance grooves is slightly larger than the width of the guide wheel, so that the upper surface of the lifting plate can be lowered to no higher than the highest point of the guide wheel, and a first propeller 260 for driving the lifting plate to rise and fall is provided on the side plate, and the propulsion plate is vertically arranged on the lower side of the upper limit plate, and a second propeller 270 for driving the propulsion plate to move forward and backward is provided on the side plate, and a stop plate 280 is also provided at the rear end of the side plate and located on the upper side of the conduction roller, and the stop plate is parallel to the propulsion plate, and a third propeller 290 for pushing the stop plate to move left and right is provided on the side plate; a photoelectric sensor 300 for detecting the position of the cleaning sheet stacking block is also provided on the side plate.

[0019] See Figure 1 A horizontal partition 201 is fixed at the bottom between the two side plates, and the first thruster is fixed on the horizontal partition. The first thruster is a double-axis cylinder, and a base plate 261 is fixed on the cylinder rod of the double-axis cylinder. The base plate is located at the bottom of the lifting plate, and a number of connecting rods 262 are fixedly connected between the two. A limit block 202 is provided on the side plate, and the first thruster can push the base plate until it abuts against the limit block. At this time, the lifting plate is in a high position. The second thruster is a long-stroke cylinder, and the third thruster is a short-stroke cylinder.

[0020] See Figure 1 and Figure 6 The rear ends of the lifting plate and the upper limit plate are extended backward, and the rear ends of the lifting plate are provided with upwardly bent lower guide pieces 221 on both sides, and the rear ends of the upper limit plate are provided with downwardly bent upper guide pieces 231 on both sides, which are used to guide the cleaning sheet stacking block to slide; a synchronous pulley 212 is connected to the same end of all the conduction rollers, and a synchronous belt 213 is connected between adjacent synchronous pulleys, and the motor is connected to any one of the conduction rollers for transmission, and the motor is a reduction motor.

[0021] In order to reduce the friction between the cleaning sheet and the upper surface of the lifting plate and the lower surface of the upper limit plate are generally provided with a Fluorocarbon coating.

[0022] See Figure 1 , Figure 3 and Figure 4 The operating principle of this embodiment is as follows: after the stacking process, the rectangular cleaning sheets are stacked into neat blocks and conveyed backward along the conveyor belt. The conveying direction of the conveyor belt is directly opposite to the conductive roller. The height of the upper surface of the conveyor belt is almost the same as the highest point of the guide wheel. The motor drives all the conductive rollers to rotate at the same speed and in the same direction, so that the linear speed of the guide wheel is close to the conveying speed of the conveyor belt. In this way, when the cleaning sheet stacking block 10 moves to the end of the conveyor belt, the guide wheel will guide the cleaning sheet stacking block to continue to move backward along the rotation direction of the conductive roller until the front end of the cleaning sheet stacking block abuts against the stop slide. At this time, the photoelectric sensor detects that the cleaning sheet stacking block has moved to the trigger position, the motor stops, and the third propeller The anti-slip plate is driven to move and leave the lifting path of the lifting plate. The lifting plate located at the lower side of the cleaning sheet stacking block is lifted upward under the push of the first pusher, driving the cleaning sheet stacking block to approach the upper limit plate until the base plate abuts against the limit block. At this time, the cleaning sheet stacking block is in a state of being squeezed by the lifting plate and the upper limit plate, and its overall thickness is slightly smaller than the accommodating thickness of the packaging box. The opened packaging box cover 20 is manually arranged at the rear end of the lifting plate and the upper limit plate, and then the pushing plate located at the front side of the cleaning sheet stacking block will push the cleaning sheet stacking block backward under the push of the second pusher, so that the cleaning sheet stacking block can smoothly slide into the packaging box, the packaging box is manually removed, and then all parts are reset. In summary, this embodiment is a semi-automatic packaging box equipment. The packaging box needs to be manually placed between the lifting plate and the upper limit plate, and the cover needs to be removed and closed. However, compared with the previous fully manual boxing, the production efficiency has been greatly improved, and one person can handle the production of at least two machines of this embodiment, which greatly reduces manpower requirements and labor costs. In addition, the probability of wrinkles, deformation, and tearing of the cleaning sheet stacking blocks during the boxing process is greatly reduced, and the product yield rate is significantly improved.

[0023] It is obvious to those skilled in the art that the utility model can be changed in many ways, and such changes are not considered to be out of the scope of the utility model. All such modifications obvious to those skilled in the art will be included in the scope of the claims.

Claims

1. An automatic packaging device for glass cleaning sheets, comprising a conveyor belt for conveying stacked blocks of cleaning sheets, characterized in that: It also includes two side plates fixed vertically and parallelly, a plurality of conduction rollers arranged horizontally at the same height on the side plates, a horizontally arranged lifting plate, an upper limit plate and a propulsion plate fixed horizontally above the lifting plate, the side plates are provided with a motor driving all the conduction rollers to rotate at the same speed and in the same direction, the conduction rollers are provided with a plurality of guide wheels distributed at intervals and of equal size, the outer diameter of the guide wheels is larger than the outer diameter of the conduction rollers, the output end of the conveyor belt is directly opposite to the input end of the conduction roller, and in a top-down view, the distribution areas of the lifting plate and the conduction roller partially overlap, and the lifting plate is provided with a plurality of The avoidance groove allows the upper surface of the lifting plate to be lowered to no higher than the highest point of the guide wheel. The side plate is provided with a first propeller for driving the lifting plate to rise and fall. The propulsion plate is vertically arranged on the lower side of the upper limit plate. The side plate is provided with a second propeller for driving the propulsion plate to translate back and forth. A stop plate is also provided at the rear end of the side plate and located on the upper side of the conduction roller. The stop plate is parallel to the propulsion plate. The side plate is provided with a third propeller that can push the stop plate to translate left and right. The side plate is also provided with a photoelectric sensor for detecting the position of the cleaning sheet stacking block.

2. The automatic packaging equipment for glass cleaning sheets according to claim 1, characterized in that: A horizontal partition is fixed at the bottom between the two side plates, and the first thruster is fixed on the horizontal partition. The first thruster is a double-axis cylinder, and a base plate is fixed on the cylinder rod of the double-axis cylinder. The base plate is located at the bottom of the lifting plate, and a number of connecting rods are fixedly connected between the two. A limit block is provided on the side plate, and the first thruster can push the base plate until it abuts against the limit block, and the lifting plate is in a high position at this time.

3. The automatic packaging equipment for glass cleaning sheets according to claim 1, characterized in that: Guide plates are arranged on both sides of the conveyor belt, and the passing width between the two guide plates is gradually reduced.

4. The automatic packaging equipment for glass cleaning sheets according to claim 1, characterized in that: The rear ends of the lifting plate and the upper limit plate are extended backwards.

5. The automatic packaging equipment for glass cleaning sheets according to claim 1, characterized in that: The same end of all the conduction rollers is connected with a synchronous pulley, and a synchronous belt is connected between adjacent synchronous pulleys. The motor is drivingly connected with any conduction roller, and the motor is a reduction motor.