Centralized display device for on-line monitoring of high-parameter header stress
By introducing a sliding indicator light device into the high-parameter header stress online monitoring system, the problem of abnormal parameter nodes not being conspicuous enough is solved, more intuitive abnormal parameter identification and processing is achieved, and the response efficiency of the monitoring system is improved.
Patent Information
- Application Number
- CN202422315825.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In the existing high-parameter header stress online monitoring system, abnormal parameter nodes are not prominent enough on the large screen, making them difficult to quickly identify and locate.
A centralized display device for online monitoring of high-parameter header stress is designed. A sliding indicator light device is used. The indicator light emits bright light at the abnormal parameter node. Combined with the data processing algorithm to dynamically display the parameters, the indicator light can be moved vertically and horizontally to ensure that each parameter node has an indicator light and lights up brightly in the event of an abnormality.
The visibility of abnormal parameter nodes is improved, making it easier for staff to quickly identify and handle abnormal situations. It is more eye-catching and intuitive than traditional pop-up warnings.
Smart Images

Figure CN223450531U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to high parameter header stress analysis technical field, specifically relates to a kind of centralized display device for high parameter header stress online monitoring. BACKGROUND
[0002] High parameter header stress online monitoring system is a system combining sensor technology, data processing algorithm and real-time monitoring function, mainly used for real-time monitoring and analysis of the stress change of high parameter header under various working conditions. This online monitoring system uses advanced data processing algorithm to build production line model, and dynamically displays corresponding parameters at nodes.
[0003] Central control room is the place for centralized processing of node parameters, and centralized technicians and managers handle abnormal conditions on shift. A large screen is installed in the central control room to display the entire production line model and dynamically display corresponding parameters at nodes.
[0004] When the large screen displays node parameters, an emergency pop-up window is displayed for abnormal parameters, and a loud sound is emitted by a buzzer. However, the emergency pop-up window is limited by screen brightness and cannot brightly indicate abnormal nodes in the production line model, and the loud sound cannot clearly indicate abnormal nodes. In addition, there are many node parameters to be displayed, which is not conducive to highlighting abnormal nodes in the process. Therefore, we propose a centralized display device for high parameter header stress online monitoring. CONTENT OF THE UTILITY MODEL
[0005] The utility model aims to provide a centralized display device for high parameter header stress online monitoring. When parameter abnormalities occur, the indicator light emits a bright glow at the corresponding parameter node, highlighting the abnormal parameter node in the process.
[0006] The technical solution adopted by the utility model is as follows:
[0007] The utility model provides a kind of high parameter set box stress on-line monitoring with centralized display device, including electronic display screen, both sides of the electronic display screen are fixed with slide rail, a plurality of sliding members are slidably arranged outside the two slide rails, the front of the electronic display screen is vertically distributed with a plurality of glass plates, the both ends of the glass plate are fixedly connected to adjacent sliding member, the side of the glass plate away from the electronic display screen is opened with sliding slot along the axial direction, the sliding slot and the glass plate are all provided with round corner, a plurality of indicating lights are slidably installed in the opening of the sliding slot, the indicating light is signal connected to the electronic display screen, when on-line monitoring parameter, using advanced data processing algorithm, construct production line model, display corresponding parameter at node dynamically, the sliding member, glass plate and indicating light can be moved in vertical direction along two slide rails, then indicating light is moved in horizontal direction along sliding slot, so that indicating light has vertical and horizontal freedom, move indicating light to reach parameter node, the number of indicating light on each sliding slot can increase or decrease, until one indicating light is arranged at each parameter node, and the indicating light corresponding to parameter node is recorded in the on-line monitoring system of development board, once the parameter node is abnormal, on-line monitoring system will light up the indicating light corresponding to parameter node, and bright light is emitted at the parameter node, compared with the pop-up warning of electronic display screen, the abnormal parameter node in display process is more eye-catching, and the staff can grasp the situation of abnormal parameter node in time.
[0008] The sliding member includes a plastic sleeve arranged in the form of a ring outside the slide rail, a locking bolt is threaded through one side of the plastic sleeve, one end of the locking bolt extends into the adjacent plastic sleeve along the axial direction, and the locking bolt inserted into the plastic sleeve abuts against the slide rail when rotating in the forward direction. The plastic sleeve is locked by friction to stably support the glass plate. Conversely, the locking bolt is disengaged from the slide rail by reversing the direction of rotation, thereby releasing the locking state. Since the glass plate is horizontally arranged outside the electronic display screen, the indicating light can stably hover and only move when pushed.
[0009] Abrasive strips are embedded on one side of the two slide rails near the locking bolt, and the two abrasive strips are arranged along the axial direction of the slide rail. The locking bolt is disengaged by the abrasive strips on the two slide rails, which increases the friction between the locking bolt and the slide rail and improves the stability of the locking bolt after abutting.
[0010] A running groove is formed in the interior of the sliding slot, preferably in the lower wall of the sliding slot, to hide the cables of the indicating light. The exterior of the cables is preferably wrapped with a reflective coating to reflect the light beam of the electronic display screen and reduce the shielding effect.
[0011] The indicating light includes a lamp holder and a lamp head fixedly connected to the lamp holder. Transparent silicone pads are fixed on both sides of the lamp holder and inserted into the sliding slot. The lamp holder is tightly inserted into the sliding slot by the transparent silicone pads to reduce the amplitude of shaking and facilitate stable hovering.
[0012] The damping strips are fixed on both sides of the front of the electronic display screen, and the two damping strips are attached to the outer side of the glass plate away from the electronic display screen.
[0013] The utility model discloses the technical effects achieved are:
[0014] The utility model discloses a centralized display device for high parameter header stress on -line monitoring, when on -line monitoring parameter, utilize advanced data processing algorithm, construct production line model, and the corresponding parameter is shown dynamically to node, can move the sliding piece, glass board and pilot lamp in vertical direction along two slide rails, then moves pilot lamp in horizontal direction along the sliding groove, makes pilot lamp have the freedom of vertical and horizontal, moves pilot lamp to reach parameter node, the number of pilot lamp on each sliding groove can increase or reduce, until setting up a pilot lamp at each parameter node, and recording the corresponding pilot lamp of parameter node in the on -line monitoring system of development board, once the parameter node appears abnormally, and the on -line monitoring system will light up the corresponding pilot lamp of parameter node, and the bright light is sent at the parameter node, compared with the pop -up warning of electronic display screen, is more eye -catching, and the abnormal parameter node in display process is highlighted, and the staff can grasp the situation of abnormal parameter node in time. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the front view of the centralized display device of the utility model;
[0016] Figure 2 It is the front view of the slide rail of the utility model;
[0017] Figure 3 It is the front view of the glass plate of the utility model;
[0018] Figure 4 It is the glass plate of the utility model;
[0019] Figure 5 It is the front view of the pilot lamp of the utility model;
[0020] Figure 6 It is the front view of the plastic sleeve of the utility model.
[0021] In the drawings, the component list represented by each sign is as follows:
[0022] 1, electronic display screen;2, slide rail;3, glass plate;4, sliding groove;5, pilot lamp;6, plastic sleeve;7, locking bolt;8, frosted band;9, running line groove;10, transparent silica gel pad;11, damping strip. DETAILED DESCRIPTION
[0023] In order to make the purposes and advantages of the present utility more apparent, the following will specifically describe the present utility with examples. It should be understood that the following description is only used to describe one or several specific embodiments of the present utility, and does not strictly limit the scope of protection specifically requested by the present utility.
[0024] As shown in Figures 1-6 A kind of high parameter set box stress on-line monitoring is concentrated display device, including electronic display screen 1, electronic display screen 1 electrically connected with several sensors, based on the development board embedded in electronic display screen 1, using sensor technology, data processing algorithm and the development of real-time monitoring function system, mainly used for real-time monitoring and analysis high parameter set box stress changes under various working conditions, electronic display screen 1 can select Hisense series liquid crystal screen, both sides of electronic display screen 1 are fixed with slide rail 2, two slide rails 2 are slidably provided with several sliding members outside, electronic display screen 1 front vertically distributes several glass plates 3, both ends of glass plate 3 are fixedly connected to adjacent sliding member, glass plate 3 is away from the side of electronic display screen 1 and is provided with sliding groove 4 along the axial direction, the upper portion of sliding groove 4 and glass plate 3 are all provided with round corners, the opening of sliding groove 4 is slidably provided with several indicator lights 5, indicator light 5 is signal connected to electronic display screen 1, when on-line monitoring parameter, using advanced data processing algorithm, constructs production line model, dynamically displays corresponding parameters at node, can move sliding member, glass plate 3 and indicator light 5 along two slide rails 2 in vertical direction, then moves indicator light 5 along sliding groove 4 in horizontal direction, so that indicator light 5 has the freedom of vertical and horizontal directions, moves indicator light 5 to reach parameter node, the number of indicator light 5 on each sliding groove 4 can be increased or decreased, until one indicator light 5 is arranged at each parameter node, and the corresponding indicator light 5 of parameter node is recorded in the on-line monitoring system of development board, once the parameter node is abnormal, on-line monitoring system will light up the corresponding indicator light 5 of parameter node, emits bright light at the parameter node, compared with the pop-up alert of electronic display screen 1, is more eye-catching, highlights the abnormal parameter node in display process, so that staff can timely grasp the situation of abnormal parameter node.
[0025] These parameter nodes can display upper limit temperature, lower limit temperature, upper limit temperature holding time and lower limit temperature holding time, and maintain a certain interval with indicator light 5 to avoid being blocked by indicator light 5.
[0026] As shown in Figure 1 , Figure 2 and Figure 6As shown in the drawings, the sliding member comprises a plastic sleeve 6 arranged in a ring shape outside the slide rail 2, and a locking bolt 7 is arranged on one side of the plastic sleeve 6 through screwing, and one end of the locking bolt 7 extends into the interior of the adjacent plastic sleeve 6 in the axial direction, and the locking bolt 7 is inserted into the interior of the plastic sleeve 6 to abut against the slide rail 2, and the plastic sleeve 6 is locked by using friction to stably support the glass plate 3, and conversely, the locking bolt 7 is disengaged from the slide rail 2 to release the locking state. Since the glass plate 3 is horizontal outside the electronic display screen 1, the indicator lamp 5 can stably hover and move only when pushed.
[0027] As shown in the drawings, Figure 1 , Figure 2 and Figure 6 , the two slide rails 2 are embedded with a ground glass belt 8 on the side close to the locking bolt 7, and the two ground glass belts 8 are arranged in the axial direction of the slide rail 2, and the two slide rails 2 are unlocked by using the ground glass belt 8 to increase the friction between the locking bolt 7 and the slide rail 2 and improve the stability after the locking bolt 7 is abutted.
[0028] As shown in the drawings, Figure 1 , Figure 4 and Figure 5 , a running groove 9 is arranged in the interior of the sliding groove 4, and the running groove 9 is preferably arranged in the lower wall of the sliding groove 4 to hide the cables of the indicator lamp 5 and avoid the cables from hanging down. The exterior of these cables is preferably wrapped with a reflective coating to reflect the light beam of the electronic display screen 1 and reduce the shielding effect.
[0029] As shown in the drawings, Figure 1 and Figure 5 , the indicator lamp 5 comprises a lamp holder and a lamp head fixedly connected with the lamp holder, and transparent silica gel pads 10 are fixed on both sides of the lamp holder and inserted into the interior of the sliding groove 4, and the lamp holder is inserted into the sliding groove 4 by using the transparent silica gel pads 10 to reduce the shaking amplitude and facilitate stable suspension.
[0030] As shown in the drawings, Figure 1 and Figure 3 , the two sides of the front face of the electronic display screen 1 are fixed with damping strips 11, and the sides away from the electronic display screen 1 of the two damping strips 11 are attached to the outer side of the glass plate 3. When the glass plate 3 approaches the electronic display screen 1, it first contacts the two damping strips 11 to buffer by using the deformation of the two damping strips 11 to avoid mutual knocking between the electronic display screen 1 and the glass plate 3.
[0031] The working principle of the utility model is: when monitoring parameters online, advanced data processing algorithms are used to build a production line model, and corresponding parameters are dynamically displayed at nodes. The sliding member, glass plate 3 and indicator light 5 can be moved vertically along the two slide rails 2, and the indicator light 5 can be moved horizontally along the slide groove 4, so that the indicator light 5 has vertical and horizontal degrees of freedom. The indicator light 5 is moved to the parameter node. The number of indicator lights 5 on each slide groove 4 can be increased or decreased until one indicator light 5 is provided at each parameter node, and the corresponding indicator light 5 of the parameter node is recorded in the online monitoring system of the development board.
[0032] Once the parameter node is abnormal, the online monitoring system will light up the indicator light 5 corresponding to the parameter node, and emit bright light at the corresponding parameter node. Compared with the pop-up warning of the electronic display screen 1, the abnormal parameter node in the process is highlighted, and the staff can timely master the situation of the abnormal parameter node.
[0033] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the art, without departing from the principle of the utility model, a number of improvements and refinements can be made, and these improvements and refinements should be regarded as the protection scope of the utility model. The structures, devices and operation methods not specifically described and explained in the utility model are implemented according to the conventional means in the art, unless otherwise specified and limited.
Claims
1. A centralized display device for online monitoring of high-parameter header stress, comprising an electronic display screen (1), characterized in that: Slide rails (2) are fixed on both sides of the electronic display screen (1), and a plurality of sliding parts are slidably arranged on the outside of the two slide rails (2). A plurality of glass plates (3) are vertically distributed on the front of the electronic display screen (1), and both ends of the glass plates (3) are fixedly connected to adjacent sliding parts. A slide groove (4) is axially provided on the side of the glass plate (3) away from the electronic display screen (1), and the slide groove (4) and the glass plate (3) both have rounded corners. A plurality of indicator lights (5) are slidably installed at the opening of the slide groove (4), and the indicator lights (5) are all connected to the electronic display screen (1) by signal.
2. The centralized display device for online monitoring of high-parameter header stress according to claim 1, characterized in that: The sliding member comprises a plastic sleeve (6) which is annularly sleeved on the outside of the slide rail (2); a locking bolt (7) is threadedly installed through one side of the plastic sleeve (6); and one end of the locking bolt (7) extends axially into the interior of the adjacent plastic sleeve (6).
3. The centralized display device for online monitoring of high-parameter header stress according to claim 2, characterized in that: A frosted belt (8) is embedded and installed on one side of the two slide rails (2) close to the locking bolt (7), and the two frosted belts (8) are arranged along the axial direction of the slide rail (2).
4. The centralized display device for online monitoring of high-parameter header stress according to claim 1, characterized in that: The chute (4) is provided with a running line groove (9) inside.
5. The centralized display device for online monitoring of high-parameter header stress according to claim 1, characterized in that: The indicator lights (5) each include a lamp holder and a lamp head fixedly connected to the lamp holder, transparent silicone pads (10) are fixed on both sides of the lamp holder, and the transparent silicone pads (10) are inserted into the slide groove (4).
6. The centralized display device for online monitoring of high-parameter header stress according to claim 1, characterized in that: Damping strips (11) are fixed on both sides of the front of the electronic display screen (1), and the sides of the two damping strips (11) away from the electronic display screen (1) are both attached to the outer side of the glass plate (3).