Self-adjustable detection device

By designing a self-adjustable detection device, using components such as sensors and pushers to detect and self-adjust the box, the problem of box offset during box sealing is solved, and the box sealing failure is ensured to ensure the stable progress of box sealing steps.

CN223021118UActive Publication Date: 2025-06-24SUZHOU HENGMU PRECISION PARTS CO LTD
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Patent Information

Application Number
CN202421649591.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-24
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

During the sealing process, the conveying line causes the box to be subjected to uneven force during the conveying process of the box, resulting in partial deviation, which makes the sealing parts of the sealing machine unable to perform the sealing step normally.

Method used

A self-adjustable detection device is designed, including mounting parts, pushing parts and detection parts. Through the coordination of sensors, guides, buffer parts and pushing parts, the detection and self-adjustment correction of the box are realized, ensuring that the box is positioned directly under the sealing part.

Benefits of technology

The detection and self-adjustment correction function is realized during the sealing process, ensuring that the box can be stably positioned directly below the sealing component, so that the sealing component can carry out the sealing step normally, ensuring the stable progress of the sealing step.

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Abstract

The utility model relates to a self-adjustable detection device, which comprises a mounting part, a pushing part and a detection part, the detection part is positioned above the middle part of the mounting part, and the pushing part is positioned on the side surface of the mounting part; the pushing part comprises a pushing piece and a pushing plate; the detection component comprises an inductor, a guide piece, a buffer piece, a first piece and a second piece; the inductor is specifically located on the installation part, the second part is connected with the installation part through the guiding part, the guiding part penetrates through the first part, the first part is movably connected with the second part through the buffering part, and the first part and the inductor are located on the same straight line. The utility model provides a self-adjusting type detection device which can position a box needing to be sealed to the position under a box sealing component, so that the box sealing component can normally conduct the box sealing step, and it is guaranteed that the box sealing step is conducted stably.
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Description

Technical Field

[0001] The utility model relates to the field of detection, and particularly relates to an adjustable detection device. Background Art

[0002] A detection device is a device used to detect products. During the transportation process of a box, it is necessary to detect whether the box is in the required position, so the position of the box needs to be detected. The box includes a non-movable main body and long and wide boards at the foldable opening. A sealing machine is a commonly used device in industrial production for sealing boxes. Boxes are usually sealed with transparent tape. The working process of the sealing machine is generally as follows: First, the operator places the box to be sealed on the conveyor line. The pressing mechanism on the conveyor line presses down the long and wide boards of the box, and then the conveyor line takes the box under the sealing component of the sealing machine. Then the sealing component works. The transparent tape roll on the sealing component approaches the box and adheres the transparent tape to the long board of the box, thus completing the box sealing step.

[0003] However, during the box sealing process, due to the uneven force on the box during the transportation by the conveyor line, the box is partially offset, resulting in the inability of the sealing component of the sealing machine to perform the normal box sealing step. It is urgent to solve these problems now. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an adjustable detection device to solve the above problems.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] An adjustable detection device includes a mounting member, a pushing component, and a detection component. The detection component is located above the middle of the mounting member, and the pushing component is located on the side of the mounting member;

[0007] The pushing component includes a pusher and a push plate;

[0008] The detection component includes a sensor, a guide member, a buffer member, a first member, and a second member. The sensor is specifically located on the mounting member. The second member is connected to the mounting member through the guide member. The guide member penetrates through the first member. The first member is movably connected to the second member through the buffer member. The first member and the sensor are in a straight line.

[0009] Further, the two ends of the buffer member are respectively connected to the first member and the second member. The buffer member is located between the guide members, and the buffer member is an elastic element.

[0010] Further, the buffer member is specifically a spring. The guiding member is movably connected to the first member, and the guiding member is fixedly connected to the second member. Both the first member and the second member are disc-shaped.

[0011] Further, the guiding member is specifically a guiding shaft. A limiting ring is provided on the guiding member, and the guiding member is symmetric about the buffer member.

[0012] Further, a contact portion is provided on the second member. The contact portion is located on the surface of the second member away from the buffer member, and a fillet is provided on the contact portion.

[0013] Further, the inductor is specifically a pressure sensor. The inductor is fixedly connected to the mounting member. The sensing surface of the inductor faces the first member, and the inductor, the buffer member, the first member, and the second member are on the same straight line.

[0014] Further, the buffer member is separated from the guiding member. The middle of the guiding member is separated from the first member, and the cross-section of the guiding member is specifically cylindrical.

[0015] Further, the mounting member is specifically U-shaped. The pushing member is located on the side plate of the mounting member. The inductor and the guiding member penetrate through the middle plate of the mounting member, and the limiting ring of the guiding member is located on the side of the mounting member away from the first member.

[0016] Further, the pushing member is a cylinder, an oil cylinder or an electric cylinder. The push plate is connected to the push rod of the pushing member. The push plate is symmetric about the contact portion, and a fillet is provided on the push plate.

[0017] Further, the cylinder body of the pushing member is fixedly connected to the mounting member. The push rod of the pushing member penetrates through the mounting member. The pushing member is located on the surface of the mounting member away from the detection member. The side plate of the mounting member is located between the pushing member and the push plate, and the cross-section of the push plate is specifically rectangular.

[0018] The beneficial effects of the present utility model are as follows: A self-adjustable detection device is provided. By the mutual cooperation of the mounting member, the pushing member and the detection member, a self-adjustable detection device is made to detect and perform self-adjustable deviation correction on the box on the cartoning machine, achieving the effect of positioning the box to be cartoned directly below the cartoning member during the cartoning process, so that the box to be cartoned can be positioned directly below the cartoning member, thereby enabling the cartoning member to perform the cartoning step normally and ensuring the stable progress of the cartoning step. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is an axonometric view of the overall structure of a self-adjustable detection device of the present utility model.

[0020] Figure 2 This is an axonometric view of another overall structure of a self - adjustable detection device of the present utility model.

[0021] Figure 3 This is the front view of the overall structure of a self - adjustable detection device of the present utility model.

[0022] Figure 4 This is another axonometric view of the overall structure of a self - adjustable detection device of the present utility model.

[0023] In the figure: 1, mounting member; 2, pushing member; 3, pusher; 4, push plate; 5, detection member; 6, inductor; 7, guiding member; 8, buffer member; 9, first member; 10, second member; 11, contact portion. Detailed implementation mode

[0024] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the following further describes the present utility model in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model. Among them, the same or similar reference numerals throughout represent the same or similar elements or elements with the same or similar functions. The embodiments described in the accompanying drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.

[0025] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present utility model. In addition, features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise stated, the meaning of "a plurality" is two or more.

[0026] Refer to Figures 1 to 4 , a self - adjustable detection device, comprising a mounting member 1, a pushing member 2 and a detection member 5. The detection member 5 is located above the middle part of the mounting member 1 and is used to detect whether the box below the middle part of the mounting member 1, that is, whether the box is in the middle part of the conveyor line. The pushing member 2 is located on the side of the mounting member 1 and is used to push the box to move to the middle part of the conveyor line, that is, to correct the deviation of the box.

[0027] The pushing component 2 includes a pusher 3 and a push plate 4, which are used to push the box to move to the middle of the conveyor line, that is, to correct the deviation of the box.

[0028] The detection component 5 includes a sensor 6, a guide 7, a buffer 8, a first part 9 and a second part 10; the sensor 6 is specifically located on the mounting part 1, the second part 10 is connected to the mounting part 1 through the guide 7, the guide 7 penetrates through the first part 9, and the first part 9 is movably connected to the second part 10 through the buffer 8, which is used to ensure good accuracy of the movement paths of the first part 9 and the second part 10. The buffer 8 is used to buffer the pressure of the second part 10 on the first part 9. The first part 9 and the sensor 6 are in a straight line, which is used to detect the change in the position of the first part 9. Both the pushing component 2 and the detection component 5 are connected to an external control system, which is used to control the operation and stop of both.

[0029] Two end parts of the buffer 8 are respectively connected to the first part 9 and the second part 10, which is used to buffer the pressure of the second part 10 on the first part 9. The buffer 8 is located between the guides 7. The buffer 8 is an elastic element used to buffer the pressure of the second part 10 on the first part 9.

[0030] The buffer 8 is specifically a spring. The guide 7 is movably connected to the first part 9, and the guide 7 is fixedly connected to the second part 10, which is used to ensure good accuracy of the movement paths of the first part 9 and the second part 10. The second part 10 moves synchronously with the guide 7, and relative movement can occur between the first part 9 and the guide 7. Both the first part 9 and the second part 10 are disc-shaped.

[0031] The guide 7 is specifically a guide shaft. A limit ring is provided on the guide 7, which is used to prevent the first part 9 and the second part 10 on the detection component 5 from falling off the mounting part 1 under the action of gravity. The guide 7 is symmetric about the buffer 8, which is used to ensure good accuracy of the movement paths of the first part 9 and the second part 10.

[0032] A contact part 11 is provided on the second part 10, which is used to directly contact the box to be detected. The contact part 11 is located on the surface of the second part 10 away from the buffer 8. A fillet is provided on the contact part 11, which is used to avoid scratching the box.

[0033] The sensor 6 is specifically a pressure sensor, which is used to judge whether the second part 10 is located in the part between the long boards of the box, that is, to judge whether the box is located in the middle of the conveyor line, through the pressure signal between the first part 9 and the sensor 6. The sensor 6 is fixedly connected to the mounting part 1. The sensing surface of the sensor 6 faces the first part 9. The sensor 6, the buffer 8, the first part 9 and the second part 10 are in a straight line.

[0034] The buffer member 8 is separated from the guide member 7, the middle part of the guide member 7 is separated from the first member 9, and the cross-section of the guide member 7 is specifically circular.

[0035] The mounting member 1 is specifically U-shaped, the pushing member 2 is located on the side plates of the mounting member 1, the inductor 6 and the guide member 7 penetrate through the middle plate of the mounting member 1, and the limiting ring of the guide member 7 is located on the side of the mounting member 1 away from the first member 9.

[0036] The pushing member 3 is a cylinder, an oil cylinder or an electric cylinder, the push plate 4 is connected to the push rod of the pushing member 3, the push plate 4 is symmetric about the contact portion 11, and the push plate 4 is provided with rounded corners.

[0037] The cylinder body of the pushing member 3 is fixedly connected to the mounting member 1, the push rod of the pushing member 3 penetrates through the mounting member 1, the pushing member 3 is located on the surface of the mounting member 1 away from the detection member 5, the side plates of the mounting member 1 are located between the pushing member 3 and the push plate 4, and the cross-section of the push plate 4 is specifically rectangular.

[0038] The working principle of the present utility model is as follows: Before starting to use an adjustable detection device, the adjustable detection device is installed on the cartoning machine, and the pushing member 2 and the detection member 5 are electrically connected to the control system of the cartoning machine; When starting to use an adjustable detection device: The external handling mechanism transports the box to be cartoned onto the conveyor line. Under the control of the cartoning machine control system, the conveyor line operates to drive the box forward. During this process, under the control of the cartoning machine control system, the pushing member 2 operates. During this process, the push plates 4 on both sides of the conveyor line approach the box, pushing the box to the middle of the conveyor line. Then, as the conveyor line operates, the box reaches below the detection member 5. During this process, the contact portion 11 on the second member 10 contacts the middle parts of the two long plates of the box. At this time, the contact portion 11 does not exert pressure on the second member 10, and thus the first member 9 does not exert pressure on the inductor 6. At this time, it is proved that the box is located in the middle of the conveyor line, and the deviation correction device works normally. At this time, the cartoning machine can normally perform the cartoning steps on the box; When the contact portion 11 is not between the two long plates, the second member 10 will exert pressure on the first member 9 through the buffer member 8. As a result, the first member 9 generates a pressure signal with the inductor 6. The inductor 6 transmits the pressure signal to the cartoning machine control system, thereby determining that the box is not in the cartoning position. The cartoning machine stops the cartoning work, and the operator needs to manually place the box at the cartoning position, and then the conveyor line continues to operate, maintaining the above process until the work is completed.

[0039] The above content is a further detailed description of the present utility model in combination with specific preferred embodiments. It cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field of the present utility model, without departing from the concept of the present utility model, several simple deductions or substitutions can still be made, and all should be regarded as belonging to the protection scope of the present utility model.

Claims

1. A self-adjustable detection device, characterized in that: It comprises a mounting member (1), a pushing member (2) and a detection member (5), wherein the detection member (5) is located above the middle of the mounting member (1), and the pushing member (2) is located on the side of the mounting member (1); The pushing component (2) comprises a pushing member (3) and a pushing plate (4); The detection component (5) comprises a sensor (6), a guide member (7), a buffer member (8), a first member (9) and a second member (10); the sensor (6) is specifically located on the mounting member (1); the second member (10) is connected to the mounting member (1) via the guide member (7); the guide member (7) passes through the first member (9); the first member (9) is movably connected to the second member (10) via the buffer member (8); and the first member (9) and the sensor (6) are on a straight line.

2. A self-adjustable detection device according to claim 1, characterized in that: The two ends of the buffer member (8) are respectively connected to the first member (9) and the second member (10); the buffer member (8) is located between the guide members (7); and the buffer member (8) is an elastic element.

3. A self-adjustable detection device according to claim 2, characterized in that: The buffer member (8) is specifically a spring, the guide member (7) and the first member (9) are movably connected, the guide member (7) and the second member (10) are fixedly connected, and the first member (9) and the second member (10) are both disc-shaped.

4. A self-adjustable detection device according to claim 3, characterized in that: The guide member (7) is specifically a guide shaft, a limit ring is provided on the guide member (7), and the guide member (7) is symmetrical with respect to the buffer member (8).

5. The self-adjustable detection device according to claim 3, characterized in that: The second member (10) is provided with a contact portion (11), the contact portion (11) is located on a surface of the second member (10) away from the buffer member (8), and the contact portion (11) is provided with a rounded corner.

6. The self-adjustable detection device according to claim 1, characterized in that: The sensor (6) is specifically a pressure sensor. The sensor (6) is fixedly connected to the mounting member (1). The sensing surface of the sensor (6) faces the first member (9). The sensor (6) and the buffer member (8), the first member (9) and the second member (10) are in a straight line.

7. The self-adjustable detection device according to claim 3, characterized in that: The buffer member (8) is separated from the guide member (7), the middle portion of the guide member (7) is separated from the first member (9), and the cross section of the guide member (7) is specifically circular.

8. The self-adjustable detection device according to claim 1, characterized in that: The mounting member (1) is specifically U-shaped, the pushing member (2) is located on a side plate of the mounting member (1), the sensor (6) and the guide member (7) pass through the middle plate of the mounting member (1), and the limiting ring of the guide member (7) is located on a side of the mounting member (1) away from the first member (9).

9. The self-adjustable detection device according to claim 1, characterized in that: The pushing member (3) is a pneumatic cylinder, an oil cylinder or an electric cylinder, the pushing plate (4) is connected to the pushing rod of the pushing member (3), the pushing plate (4) is symmetrical about the contact portion (11), and a rounded corner is arranged on the pushing plate (4).

10. The self-adjustable detection device according to claim 9, characterized in that: The cylinder body of the pushing member (3) is fixedly connected to the mounting member (1), the push rod of the pushing member (3) passes through the mounting member (1), the pushing member (3) is located on the surface of the mounting member (1) away from the detection component (5), the side plate of the mounting member (1) is located between the pushing member (3) and the push plate (4), and the cross-section of the push plate (4) is specifically rectangular.