Safety monitoring multi-point connecting device for automatic workshop

Through the adjustment of the spacing slide box and hidden line box structure, the problems of complex construction and cumbersome dismantling of traditional monitoring equipment in the automation workshop are solved, and flexible adjustment of equipment spacing and hidden design are realized, reducing costs and improving installation efficiency.

CN223153269UActive Publication Date: 2025-07-25INNER MONGOLIA HONGSHU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422145921.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-07-25
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

Traditional monitoring equipment requires a large amount of equipment and auxiliary materials when forming networks in automation workshops, which are difficult to construct and maintain, are costly, and are inconvenient to adjust the spacing of monitoring equipment, which affects the safety monitoring effect, and is cumbersome to dismantle, which causes damage to the area during the installation process.

Method used

The space adjustment slide box and hidden line box structure are adopted. Through the combination of the spacing slider and guide screw, flexible spacing adjustment of the monitoring equipment is achieved, and the monitoring main line and tapping branch line are hidden in the hidden line box, simplifying the installation and removal process.

Benefits of technology

It realizes flexible adjustment of the spacing of monitoring equipment, reduces construction and maintenance difficulties, reduces equipment investment, improves installation and dismantling efficiency, while maintaining beauty and equipment protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a safety monitoring multi-point connecting device for an automatic workshop, which belongs to the technical field of monitoring and comprises a distance adjusting sliding box, a wire hiding box fixed behind the distance adjusting sliding box, a monitoring main wire arranged inside the wire hiding box, a distance adjusting mechanism arranged inside the distance adjusting sliding box, and a safety monitoring mechanism arranged inside the distance adjusting sliding box. The distance adjusting mechanism comprises distance adjusting sliding blocks, guide screw rods, a first rotary knob and a second rotary knob, the distance adjusting sliding blocks are connected into sliding cavities of the distance adjusting sliding boxes in a sliding mode, the guide screw rods are fixed to the inner walls of the two ends of the distance adjusting sliding boxes, and the first rotary knob is arranged on one side of one distance adjusting sliding block; through the arrangement of the wire hiding box and the distance adjusting mechanism, the position of the safety monitor can be adjusted by utilizing the distance adjusting sliding block to slide along the distance adjusting sliding box, so that the distance can be flexibly adjusted according to a row of monitoring application requirements in the use process of the safety monitor; and the monitoring main line and the branching branch lines are designed in a hidden manner in the line hiding box, so that the effects of protection and attractiveness can be achieved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of monitoring, and particularly relates to a multi-point connection device for safety monitoring in an automated workshop. Background Technique

[0002] An automated workshop refers to a production base that realizes informatization, automation, and intelligence of the factory's production process through advanced computers, modern sensing technologies, machine vision, artificial intelligence, etc. It can help the factory comprehensively collect and process digital information, accelerate the automation, networking, and intelligence of the production process, and improve production efficiency. Currently, in order to safely monitor the assembly line operation in an automated workshop, monitoring devices are arranged in a row along the direction of the assembly line, and each camera needs to be connected to a signal line when networking traditional monitoring devices.

[0003] When networking traditional monitoring devices, due to factors such as the distribution of monitoring points, it is often necessary to rely on adding switches or wireless bridges. At the same time, it will also increase the investment in various equipment and auxiliary materials such as network cables, switches, waterproof boxes, power supplies, and wires, increasing the difficulty of construction and maintenance. More importantly, the cost will be greatly increased. In addition, the row of monitors arranged are respectively fixed at designated positions using screw fasteners, which makes it inconvenient to adjust the distance between adjacent monitoring devices and affects the safety monitoring of each unit on the assembly line. Moreover, the method of assembling each monitoring device one by one makes the subsequent centralized demolition operation more cumbersome, and the screw hole opening operation of the row of monitoring devices at the installation site will also cause certain damage to the installation area.

[0004] Therefore, a multi-point connection device for safety monitoring in an automated workshop is needed to solve the problems existing in the prior art. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a multi-point connection device for safety monitoring in an automated workshop to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A multi-point connection device for safety monitoring in an automated workshop, including an adjustable-distance sliding box, a wire storage box is fixed behind the adjustable-distance sliding box, a monitoring main line is arranged inside the wire storage box, an adjustable-distance mechanism is arranged inside the adjustable-distance sliding box, the adjustable-distance mechanism includes an adjustable-distance slider, a guiding screw, a first knob, and a second knob, the adjustable-distance slider is slidably connected in the sliding cavity of the adjustable-distance sliding box, the guiding screw is fixed on the inner walls at both ends of the adjustable-distance sliding box, the first knob is arranged on one side of an adjustable-distance slider, the second knob is arranged on the other side of an adjustable-distance slider, and branch connecting lines are branched from the monitoring main line.

[0007] It should be noted in the solution that a T-shaped slider is fixed on the surface of the distance-adjusting slider, a guide slot is provided on the inner wall of the distance-adjusting slide box, and the T-shaped slider is slidably connected in the guide slot of the distance-adjusting slide box.

[0008] It is further worth mentioning that a hollow groove is provided on the rear end surface of the distance-adjusting slider, and a guide sliding opening is provided on the side surface of the distance-adjusting slider.

[0009] It should be further explained that the guide sliding opening of the distance-adjusting slider is slidably sleeved on the outside of the guide screw, and a through opening is opened on the front end surface of the distance-adjusting slider.

[0010] As a preferred implementation, the branch line passes through the through-hole of the pitch-adjusting slider, and the branch line is arranged below the guide screw.

[0011] As a preferred embodiment, a monitoring head mounting hole is provided on the surface of the distance-adjusting slider, a wire hiding box is fixed to the rear of the distance-adjusting slider, and a preset mounting hole is provided on the ear of the wire hiding box. During use, each safety monitor is installed on each distance-adjusting slider, so that it can be ensured that each safety monitor is arranged in a row in a straight line direction, and the centralized assembly method of the safety monitor facilitates the subsequent one-time dismantling that saves time and effort.

[0012] As a preferred embodiment, a branch line movable groove is opened on the rear end face of the distance adjusting slide box, and the branch line is slidably connected in the branch line movable groove of the distance adjusting slide box. A docking plug is fixed at one end of each branch line away from the monitoring main line.

[0013] As a preferred implementation, an inspection port is provided at the upper end of the wire hiding box, and the monitoring main line is passed through the inside of the wire hiding box.

[0014] Compared with the prior art, the utility model provides a multi-point connection device for safety monitoring of an automated workshop, which has at least the following beneficial effects:

[0015] By setting up a wire hiding box and a distance adjusting mechanism, the position of the safety monitor can be adjusted by sliding the distance adjusting slider along the distance adjusting slide box, thereby ensuring that the safety monitor can flexibly adjust the spacing according to the application requirements of a row of monitoring during use, and the monitoring main line and branch line are hidden in the wire hiding box to play a protective and aesthetic role.

[0016] By setting up the distance-adjusting slider, distance-adjusting slide box and wire hiding box, each safety monitor installed on each distance-adjusting slider can ensure that each safety monitor is arranged in a row along a straight line direction, and the centralized assembly method of the safety monitor facilitates the subsequent one-time dismantling that saves time and effort. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0018] Figure 1 It is a three-dimensional view of the overall structure of a multi-point connection device for safety monitoring in an automated workshop of the present utility model;

[0019] Figure 2 It is a three-dimensional view of the T-shaped slider structure of a multi-point connection device for safety monitoring in an automated workshop of the present utility model;

[0020] Figure 3 It is a three-dimensional view of the through-hole structure of a multi-point connection device for safety monitoring in an automated workshop of the present utility model;

[0021] Figure 4 It is a three-dimensional view of the docking plug structure of a multi-point connection device for safety monitoring in an automated workshop of the present utility model.

[0022] In the figure: 1, distance-adjusting sliding box; 2, guiding screw; 3, distance-adjusting slider; 4, monitoring head mounting hole; 5, guiding chute; 6, T-shaped slider; 7, hollow groove; 8, guiding sliding opening; 9, monitoring main line; 10, branch connecting line; 11, docking plug; 12, through-hole; 13, wire storage box; 14, preset mounting hole; 15, maintenance opening; 16, branch line moving groove; 17, first knob; 18, second knob. Specific embodiments

[0023] The following further describes the present utility model in conjunction with the embodiments.

[0024] Please refer to Figures 1-4 , the present utility model provides a multi-point connection device for safety monitoring in an automated workshop, including a distance-adjusting sliding box 1. A wire storage box 13 is fixed behind the distance-adjusting sliding box 1. A monitoring main line 9 is arranged inside the wire storage box 13. A distance-adjusting mechanism is arranged inside the distance-adjusting sliding box 1. The distance-adjusting mechanism includes a distance-adjusting slider 3, a guiding screw 2, a first knob 17 and a second knob 18. The distance-adjusting slider 3 is slidably connected in the sliding cavity of the distance-adjusting sliding box 1. The guiding screw 2 is fixed on the inner walls at both ends of the distance-adjusting sliding box 1. The first knob 17 is arranged on one side of a distance-adjusting slider 3, and the second knob 18 is arranged on the other side of a distance-adjusting slider 3. Branch connecting lines 10 are branched on the monitoring main line 9.

[0025] Further, as shown in Figure 1 , Figure 2 and Figure 3As shown, it is worth specifically stating that a T-shaped slider 6 is fixed on the surface of the distance-adjusting slider 3, and a guiding chute 5 is formed on the inner wall of the distance-adjusting slide box 1. The T-shaped slider 6 is slidably connected in the guiding chute 5 of the distance-adjusting slide box 1.

[0026] Furthermore, as Figure 3 shown, it is worth specifically stating that a hollow groove 7 is formed at the rear end face of the distance-adjusting slider 3, and a guiding sliding opening 8 is formed on the side surface of the distance-adjusting slider 3.

[0027] The present solution has the following working process: Before use, the wire storage box 13 is fixed in the designated installation area through the preset installation holes 14 at the ears and screw fasteners, and the safety monitor is installed at the monitor head installation hole 4 of the distance-adjusting slider 3 through screw fasteners. At the same time, the docking plug 11 at one end of the branched connecting wire 10 is inserted into the safety monitor. During use, by sliding the distance-adjusting slider 3 along the distance-adjusting slide box 1, the position of the safety monitor can be adjusted, so as to ensure that the safety monitor can flexibly adjust the spacing according to the requirements of a row of monitoring applications during use. Moreover, both the main monitoring wire 9 and the branched connecting wire 10 are designed in a hidden manner in the wire storage box 13, which can play a role in protection and aesthetics.

[0028] According to the above working process, it can be known that by sliding the distance-adjusting slider 3 along the distance-adjusting slide box 1, the position of the safety monitor can be adjusted, so as to ensure that the safety monitor can flexibly adjust the spacing according to the requirements of a row of monitoring applications during use. Moreover, both the main monitoring wire 9 and the branched connecting wire 10 are designed in a hidden manner in the wire storage box 13, which can play a role in protection and aesthetics.

[0029] Furthermore, as Figure 1 、 Figure 2 and Figure 4 shown, it is worth specifically stating that the guiding sliding opening 8 of the distance-adjusting slider 3 is slidably sleeved outside the guiding screw rod 2, and a passing opening 12 is formed at the front end face of the distance-adjusting slider 3.

[0030] Furthermore, as Figure 4 shown, it is worth specifically stating that the branched connecting wire 10 passes through the passing opening 12 of the distance-adjusting slider 3, and the branched connecting wire 10 is arranged below the guiding screw rod 2.

[0031] Furthermore, as Figure 1 shown, it is worth specifically stating that a monitor head installation hole 4 is formed on the surface of the distance-adjusting slider 3, a wire storage box 13 is fixed behind the distance-adjusting slide box 1, and preset installation holes 14 are formed at the ears of the wire storage box 13. During use, each safety monitor is installed on each distance-adjusting slider 3, so as to ensure that each safety monitor is arranged in a row along a straight line direction, and the centralized assembly method of the safety monitors is convenient for subsequent time-saving and labor-saving one-time removal.

[0032] Furthermore, as Figure 1As shown, it is worth specifically stating that a branch line activity slot 16 is provided on the rear end face of the distance-adjusting sliding box 1, and the tapping branch line 10 is slidably connected in the branch line activity slot 16 of the distance-adjusting sliding box 1. A docking plug 11 is fixed to one end of each tapping branch line 10 away from the monitoring main line 9.

[0033] Furthermore, as shown in Figure 1 it is worth specifically stating that a maintenance opening 15 is provided at the upper end of the wire storage box 13, and the monitoring main line 9 is threaded through the inside of the wire storage box 13.

[0034] In summary: By sliding the distance-adjusting slider 3 along the distance-adjusting sliding box 1, the location of the safety monitoring can be adjusted, so as to ensure that the distance can be flexibly adjusted according to the monitoring application requirements in a row during the use of the safety monitoring. Moreover, the monitoring main line 9 and the tapping branch lines 10 are both designed in a hidden manner in the wire storage box 13, which can play a role in protection and aesthetics; each safety monitoring device is installed on each distance-adjusting slider 3, which can ensure that each safety monitoring device is arranged in a row along a straight line direction, and the centralized assembly method of the safety monitoring devices is convenient for subsequent time-saving and labor-saving one-time removal.

[0035] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A safety monitoring multi-point connection device for an automated workshop, comprising an adjustable distance sliding box (1), characterized in that: A cable storage box (13) is fixed at the rear of the distance-adjustable sliding box (1). A monitoring main line (9) is arranged inside the cable storage box (13). A distance-adjusting mechanism is arranged inside the distance-adjustable sliding box (1). The distance-adjusting mechanism includes a distance-adjusting slider (3), a guiding screw rod (2), a first knob (17), and a second knob (18). The distance-adjusting slider (3) is slidably connected in the sliding cavity of the distance-adjustable sliding box (1). The guiding screw rod (2) is fixed on the inner walls at both ends of the distance-adjustable sliding box (1). The first knob (17) is arranged on one side of a distance-adjusting slider (3), and the second knob (18) is arranged on the other side of a distance-adjusting slider (3). A tapping branch line (10) is branched from the monitoring main line (9).

2. The safety monitoring multi-point connection device for an automated workshop according to claim 1, characterized in that: A T-shaped slider (6) is fixed on the surface of the distance-adjusting slider (3). A guiding sliding groove (5) is formed on the inner wall of the distance-adjustable sliding box (1). The T-shaped slider (6) is slidably connected in the guiding sliding groove (5) of the distance-adjustable sliding box (1).

3. The safety monitoring multi-point connection device for an automated workshop according to claim 2, characterized in that: A hollow groove (7) is formed on the rear end face of the distance-adjusting slider (3), and a guiding sliding opening (8) is formed on the side surface of the distance-adjusting slider (3).

4. The safety monitoring multi-point connection device for an automated workshop according to claim 3, characterized in that: The guiding sliding opening (8) of the distance-adjusting slider (3) is slidably sleeved on the outside of the guiding screw rod (2). A passing-out opening (12) is formed on the front end face of the distance-adjusting slider (3).

5. The safety monitoring multi-point connection device for an automated workshop according to claim 4, characterized in that: The tapping branch line (10) passes through the passing-out opening (12) of the distance-adjusting slider (3), and the tapping branch line (10) is arranged below the guiding screw rod (2).

6. The safety monitoring multi-point connection device for an automated workshop according to claim 5, characterized in that: A monitoring head mounting hole (4) is formed on the surface of the distance-adjusting slider (3). A cable storage box (13) is fixed at the rear of the distance-adjustable sliding box (1). A preset mounting hole (14) is formed on the ear part of the cable storage box (13).

7. The safety monitoring multi-point connection device for an automated workshop according to claim 6, wherein: A branch line movable groove (16) is formed on the rear end face of the distance-adjustable sliding box (1). The tapping branch line (10) is slidably connected in the branch line movable groove (16) of the distance-adjustable sliding box (1). One end of each tapping branch line (10) away from the monitoring main line (9) is fixed with a docking plug (11).

8. The safety monitoring multi-point connection device for an automated workshop according to claim 7, characterized in that: An inspection opening (15) is formed on the upper end of the cable storage box (13), and the monitoring main line (9) is arranged inside the cable storage box (13).