Paper packaging material fastness detection device

By designing a paper packaging material fastness detection device combining servo motors, electric push rods and electric cylinders, the problem that existing equipment cannot detect the soft extrusion pressure tolerance strength of the carton is solved, and comprehensive inspection and quality assurance of the carton strength is achieved.

CN223021781UActive Publication Date: 2025-06-24TIANJIN YIXUAN PACKAGING PROD CO LTD
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Patent Information

Application Number
CN202422035633.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-24
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing carton strength detection equipment can only detect the impact resistance of the carton, and cannot detect the strength of the carton to withstand soft extrusion pressure.

Method used

A paper packaging material fastness detection device is designed. Through a servo motor driving the bearing plate and pillar, combined with electric push rods, electric cylinders and springs, it simulates the soft squeeze pressure around and on the top to achieve comprehensive inspection of the carton.

Benefits of technology

This device can effectively detect the strength of the carton under soft extrusion, increase the data accuracy of the carton strength detection, and ensure the quality of the carton.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223021781U_ABST
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Abstract

The utility model discloses a paper packaging material fastness detection device which comprises a base, a servo motor is embedded in the upper wall of the base, a bearing plate is assembled at the driving end of the servo motor, a supporting column is assembled on the bearing plate, a bearing table is assembled on the supporting column, two assembling blocks are assembled on the bearing table, and the two assembling blocks are assembled on the upper wall of the base. Electric push rods are assembled in the opposite walls of the two assembly blocks respectively, a top column is assembled at the telescopic end of each electric push rod and located in the corresponding assembly block, and a top frame is assembled on the end face of each top column. The device simulates soft extrusion force generated in the directions of the periphery and the top in the using process, the strength of the soft extrusion force borne by the periphery and the top of the carton is detected, carton strength detection data is increased, and the quality of the carton is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of fastness detection of paper packaging materials, in particular to a fastness detection device for paper packaging materials. Background Technique

[0002] Packaging materials are essential important materials in the field of social industrial production. With the continuous development of economy and trade, packaging materials play an increasingly important role in industry.

[0003] After the existing cardboard boxes are produced, in order to ensure product quality, the strength of the cardboard boxes will be detected. During the use of the packaging cardboard boxes, they will be subjected to soft extrusion forces under the influence of the external environment. Some cardboard box strength detection devices can only detect the impact resistance of the cardboard boxes and cannot detect the strength of the cardboard boxes to withstand soft extrusion forces. There may already be technical solutions to solve the above technical problems. In view of this, this case wants to provide a replacement or alternative technical solution. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides a fastness detection device for paper packaging materials, which solves the technical problems that after the existing cardboard boxes are produced, in order to ensure product quality, the strength of the cardboard boxes will be detected. During the use of the packaging cardboard boxes, they will be subjected to soft extrusion forces under the influence of the external environment. Some cardboard box strength detection devices can only detect the impact resistance of the cardboard boxes and cannot detect the strength of the cardboard boxes to withstand soft extrusion forces.

[0005] To achieve the above purposes, the utility model is realized through the following technical solutions: A fastness detection device for paper packaging materials, including a base, a servo motor is embedded in the upper wall of the base, a bearing plate is assembled on the driving end of the servo motor, a support column is assembled on the bearing plate, a bearing table is assembled on the support column, two assembly blocks are assembled on the bearing table, electric push rods are respectively assembled in the opposite walls of the two assembly blocks, a top column is respectively assembled on the telescopic end of each electric push rod and located in each assembly block, a top frame is respectively assembled on the end face of each top column, an installation frame is assembled on the base and above the bearing table, a first electric cylinder is assembled on the lower wall of the cross beam of the installation frame, a first extension rod is assembled on the telescopic end of the first electric cylinder, and a first top plate is assembled on the telescopic end of the first extension rod.

[0006] Preferably, electric slide rails are respectively assembled on the opposite walls of the two legs of the installation frame, second electric cylinders are respectively assembled on the moving ends of each electric slide rail, second extension rods are respectively assembled on the telescopic ends of each second electric cylinder, and second top plates are respectively assembled on the end faces of each second extension rod.

[0007] Preferably, two springs are respectively assembled on the opposite walls of the two legs of each top frame, and a supporting plate is assembled on each two springs.

[0008] Preferably, a rubber layer is respectively assembled on the side wall of each supporting plate.

[0009] Preferably, four universal wheels are assembled on the lower wall of the base.

[0010] Preferably, two handles are respectively assembled on the side walls of the two legs of the mounting frame.

[0011] Beneficial effects

[0012] The utility model provides a fastness detection device for paper packaging materials. It has the following beneficial effects: The device simulates the soft extrusion forces generated in the surrounding and top directions during the use process, realizes the detection of the strength of the soft extrusion forces received by the four sides and the top of the carton, increases the carton strength detection data, and ensures the quality of the carton. Description of the drawings

[0013] Figure 1 It is a schematic structural diagram of a fastness detection device for paper packaging materials described in the utility model.

[0014] Figure 2 It is a schematic side sectional structural diagram of a fastness detection device for paper packaging materials described in the utility model.

[0015] Figure 3 It is a schematic top sectional structural diagram of a fastness detection device for paper packaging materials described in the utility model.

[0016] In the figure: 1 - base; 2 - servo motor; 3 - bearing plate; 4 - pillar; 5 - bearing table; 6 - assembly block; 7 - electric push rod; 8 - top column; 9 - top frame; 10 - mounting frame; 11 - first electric cylinder; 12 - first extension rod; 13 - first top plate; 14 - electric slide rail; 15 - second electric cylinder; 16 - second extension rod; 17 - second top plate; 18 - spring; 19 - supporting plate; 20 - rubber layer; 21 - universal wheel; 22 - handle. Detailed implementation manners

[0017] Next, the technical solutions in the embodiments of the utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the utility model.

[0018] Persons skilled in the art shall connect all the electrical components in this case to their adapted power supplies through wires, and a suitable controller should be selected according to the actual situation to meet the control requirements. For the specific connection and control sequence, reference should be made to the working sequence among the electrical components in the following working principle to complete the electrical connection. The detailed connection means are well-known techniques in this field. The following mainly introduces the working principle and process, and no further explanation of electrical control will be provided.

[0019] Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Embodiment: Refer to Figures 1-3 , a fastness detection device for paper packaging materials, including a base 1, a servo motor 2 is embedded in the upper wall of the base 1, a carrier plate 3 is assembled on the driving end of the servo motor 2, a support column 4 is assembled on the carrier plate 3, a carrier table 5 is assembled on the support column 4, two assembly blocks 6 are assembled on the carrier table 5, electric push rods 7 are respectively assembled in the opposite walls of the two assembly blocks 6, a top column 8 is respectively assembled on the telescopic end of each electric push rod 7 and is located inside each assembly block 6, a top frame 9 is respectively assembled on the end face of each top column 8, an installation frame 10 is assembled on the base 1 and above the carrier table 5, a first electric cylinder 11 is assembled on the lower wall of the cross beam of the installation frame 10, a first extension rod 12 is assembled on the telescopic end of the first electric cylinder 11, and a first top plate 13 is assembled on the telescopic end of the first extension rod 12; electric slide rails 14 are respectively assembled on the opposite walls of the two legs of the installation frame 10, a second electric cylinder 15 is respectively assembled on the moving end of each electric slide rail 14, a second extension rod 16 is respectively assembled on the telescopic end of each second electric cylinder 15, and a second top plate 17 is respectively assembled on the end face of each second extension rod 16; two springs 18 are respectively assembled on the opposite walls of the two legs of each top frame 9, a support plate 19 is respectively assembled on each two springs 18; a rubber layer 20 is respectively assembled on the side wall of each support plate 19; four universal wheels 21 are assembled on the lower wall of the base 1; two handles 22 are respectively assembled on the side walls of the two legs of the installation frame 10;

[0021] The specific working principle is as follows:

[0022] The staff places the carton that needs to be tested on the load-bearing platform 5. After the carton is placed, the electric push rod 7 installed in the assembly block 6 pushes the top column 8 installed on its telescopic end to move relative to it, so that the top frame 9 clamps the carton. At the same time, the carton opens the support plate 19, and the support plate 19 squeezes the spring 18. The spring 18 moves elastically to make the support plate 19 fit tightly to the carton. The rubber layer 20 is used to increase the friction force and improve the stability of the clamping. The spring 18 assists the support plate 19 in the chassis to facilitate the clamping of cartons of different sizes and increase flexibility. After the clamping is completed, the first electric cylinder 11 installed on the mounting frame 10 pushes the first top plate 13 installed on the first extension rod 12 on its telescopic end to descend, and the top soft squeezing force test is performed on the carton. The carton is qualified if there is no deformation of the product. After the top test is completed, the first electric cylinder 11 is reset and mounted on the mounting frame 1 0, so as to adjust the lateral extrusion position of the carton, and stop when the second top plate 17 is located at the center of both sides of the carton. The second electric cylinder 15 installed on the moving end of the electric slide rail 14 drives the second extension rod 16 installed on its telescopic end to move relatively, so that the second top plate 17 squeezes both sides of the carton, and performs soft extrusion detection on both sides of the carton. After the detection on both sides is completed, the telescopic end of the second electric cylinder 15 is reset, and the servo motor 2 installed in the base 1 drives the bearing plate 3 installed on its driving end to rotate, thereby driving the bearing platform 5 on the pillar 4 to rotate, and the clamped carton rotates accordingly, so as to adjust the detection surface around the carton so that soft extrusion detection can be performed on all sides of the carton. When it is necessary to move the device, the handle 22 installed on the mounting frame 10 can be used to push the device to move through the universal wheel 21 installed on the base 1.

[0023] 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 paper packaging material fastness detection device, comprising a base (1), characterized in that: A servo motor (2) is embedded in the upper wall of the base (1); a bearing plate (3) is mounted on the driving end of the servo motor (2); a pillar (4) is mounted on the bearing plate (3); a bearing platform (5) is mounted on the pillar (4); two assembly blocks (6) are mounted on the bearing platform (5); electric push rods (7) are mounted in opposite walls of the two assembly blocks (6); a top column (8) is mounted on the telescopic end of each electric push rod (7) and located in each assembly block (6); a top frame (9) is mounted on the end surface of each top column (8); a mounting frame (10) is mounted on the base (1) and located above the bearing platform (5); a first electric cylinder (11) is mounted on the lower wall of the crossbeam of the mounting frame (10); a first extension rod (12) is mounted on the telescopic end of the first electric cylinder (11); and a first top plate (13) is mounted on the telescopic end of the first extension rod (12).

2. A paper packaging material fastness detection device according to claim 1, characterized in that: The two legs of the mounting frame (10) are respectively equipped with electric slide rails (14) on the opposite walls, each of the moving ends of the electric slide rails (14) is respectively equipped with a second electric cylinder (15), each of the telescopic ends of the second electric cylinders (15) is respectively equipped with a second extension rod (16), and each of the end surfaces of the second extension rods (16) is respectively equipped with a second top plate (17).

3. A paper packaging material fastness detection device according to claim 1, characterized in that: Two springs (18) are respectively mounted on the opposite walls of the two legs of each top frame (9), and a supporting plate (19) is respectively mounted on each of the two springs (18).

4. A paper packaging material fastness detection device according to claim 3, characterized in that: A rubber layer (20) is respectively mounted on the side wall of each supporting plate (19).

5. A paper packaging material fastness detection device according to claim 1, characterized in that: Four universal wheels (21) are mounted on the lower wall of the base (1).

6. A paper packaging material fastness detection device according to claim 1, characterized in that: Two handles (22) are respectively mounted on the side walls of the two legs of the mounting frame (10).