Equipment fault detection device for equipment department
By designing equipment fault detection devices for hydraulic cylinder-driven lifting brackets and wire retracting components, large-scale equipment detection problems are solved, efficient and safe fault detection and maintenance are achieved, and different equipment shapes and sizes are adapted to different equipment.
Patent Information
- Application Number
- CN202421822135.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The existing medical equipment failure detection device cannot lift large equipment during the inspection process and cannot carry enough maintenance tools, which affects the detection efficiency and maintenance progress.
A device fault detection device including a platform, moving parts, hydraulic cylinder, lifting bracket and wire retraction assembly is designed. The crossbar is driven by the hydraulic cylinder, and the cable is managed in conjunction with the lifting bracket and wire retraction assembly to provide stable installation and tool storage, which is suitable for different equipment sizes.
Improves the efficiency and safety of medical equipment failure detection, ensures clean cable management, provides stable installation and flexible lifting functions, and adapts to different equipment shapes and sizes.
Smart Images

Figure CN223049719U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of medical equipment department, and specifically relates to a device failure detection device for the equipment department. Background Technique
[0002] The device failure detection device for the medical equipment department is a system or tool specially designed to detect, diagnose and prevent the failures of medical equipment. With the continuous progress of medical technology, medical equipment has become more and more complex, and the requirements for the reliability and safety of the equipment are also getting higher and higher. The failure of medical equipment may not only lead to treatment delays, but also pose a threat to the safety of patients. Therefore, ensuring the normal operation of medical equipment is an important part of the management of medical institutions. With the development of electronic technology, sensor technology, data processing technology and artificial intelligence, the medical equipment failure detection technology is also constantly advancing. Modern detection devices can monitor the equipment status in real time, predict potential failures through data analysis, so as to achieve preventive maintenance. The failure detection device usually integrates data collection, storage and analysis functions, and can provide a large amount of equipment operation data for medical institutions. These data can be used for equipment performance evaluation, maintenance strategy optimization and equipment procurement decision-making. The device failure detection device for the medical equipment department is an important tool for medical institutions to ensure the safe and efficient operation of equipment, and its development is promoted by various factors such as technological progress, regulatory requirements, economic considerations, patient safety and maintenance efficiency.
[0003] At present, the detection instruments used in the process of medical equipment failure detection are troublesome to detect failures because some medical equipment is relatively large in volume and cannot be lifted during the detection process. At the same time, it is impossible to carry a relatively large number of maintenance tools during the failure detection process, and it is impossible to perform rapid maintenance when a failure is detected, which affects the maintenance progress after the failure detection. Therefore, a device failure detection device for the equipment department is proposed. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a device failure detection device for the equipment department.
[0005] The technical solution adopted by the present utility model to solve its technical problems is: a device failure detection device for the equipment department, including a platform and a moving member. Moving members are provided at the four corners of the bottom end of the platform. A vertical rod is provided on the right side of the top end of the platform. A pushing member is provided on the right side of the top end of the vertical rod. A wire winding assembly is provided on the outer wall of the vertical rod. A housing is provided on the top end of the platform. An equipment mounting rack is provided on the right side of the top end of the housing. A hydraulic cylinder is provided inside the housing. A cross bar is provided at the top end of the hydraulic cylinder. Lifting brackets are provided at both ends of the cross bar. A support member is provided on the left side of the outer wall of the housing. A slidable connecting member is provided on the outer wall of the support member. A third fixing member is provided on the outer wall of the support member. A storage assembly is provided on the left side of the connecting member. A fixing assembly is provided on the left side of the top end of the housing.
[0006] Further, a vertical strip-shaped chute is provided inside the outer wall of the housing, and a horizontal strip-shaped chute is provided inside the connecting member.
[0007] Further, the wire winding assembly includes a first fixing member provided on the outer wall of the vertical rod, and a rotatable wire wheel is provided between the first fixing members.
[0008] Further, the wire wheel is connected to the first fixing member through a bearing, and a plurality of wire winding grooves are provided on the outer wall of the wire wheel.
[0009] Further, the lifting bracket includes a sliding member provided at both ends of the cross bar and connected to the strip-shaped chute on the housing. A support plate is provided on the outside of the sliding member. A stabilizing member is provided at the bottom end of the support plate. A rotating member is provided on the outer wall of the stabilizing member. A first lifting plate is provided on the left side of the rotating member. A slidable second lifting plate is provided inside the first lifting plate. Second fixing members are provided inside the first lifting plate and the second lifting plate.
[0010] Further, a plurality of card slots are provided inside the second lifting plate.
[0011] Further, part of the second fixing member is a smooth rod, and a thread is provided at the end of the second fixing member.
[0012] Further, the storage assembly includes a cover plate rotatably provided between the connecting members. A toolbox is provided on the right side of the cover plate. A box cover is provided on the right side of the toolbox. A fixing block is provided on the top end of the cover plate.
[0013] Further, the cover plate is connected to the connecting member through a pin shaft. The bottom end of the box cover is connected to the toolbox through a pin shaft. The top end of the box cover is connected to the toolbox through a threaded fixing block.
[0014] Further, a plurality of partitions are provided inside the toolbox.
[0015] Further, the fixing component includes a vertical plate symmetrically arranged on the left side of the housing. A spring is arranged outside the vertical plate, and a clamping block is arranged outside the spring. The other end of the clamping block is connected to the vertical plate.
[0016] Further, a clamping groove for clamping the clamping block is arranged on the outer wall of the fixing block.
[0017] The beneficial effects of the present utility model are as follows:
[0018] 1. Cable management: The setting of the wire winding component effectively manages the detection wire and power supply wire used by the fault detection device, avoids cable chaos and entanglement, and keeps the working environment clean.
[0019] 2. Protection and storage: The housing provides protection and storage space for the fault detection device, ensuring the safety of the device in the non-working state. At the same time, the device mounting rack provides a stable mounting position for the fault detection device.
[0020] 3. Efficient lifting: The design of the hydraulic cylinder in cooperation with the cross bar and the lifting bracket enables the medical device to be easily lifted, facilitating fault detection and improving the efficiency of the detection work.
[0021] 4. Multifunctional support: The design of the support member and the connecting member not only provides support for the storage component, but also realizes the fixation of the connecting member through the third fixing member, ensuring the stability and safety of the storage component.
[0022] 5. Flexible lifting bracket: The lifting bracket is connected to the strip-shaped chute on the housing through a sliding member, enabling the support plate and the stabilizing member to move up and down along with the cross bar. At the same time, the design of the rotating member and the first lifting plate enables the lifting bracket to adapt to medical devices of different sizes and shapes.
[0023] 6. Adjustable lifting plate: The slidable and adjustable design of the first lifting plate and the second lifting plate, combined with the use of the second fixing member, enables the lifting plate to adapt to medical devices of different heights, improving the versatility and flexibility of the device.
[0024] In summary, through its structural design, the medical device fault detection device of the present utility model improves the mobility, operation convenience, cable management, protection and storage, efficient lifting, multifunctional support, and flexible adjustment of the lifting bracket and the lifting plate of the device, thereby enhancing the overall efficiency and safety of medical device fault detection. Brief Description of the Drawings
[0025] Figure 1 is a schematic diagram of the present utility model.
[0026] Figure 2 isFigure 1 Detailed view of the connection structure of the middle lifting bracket.
[0027] Figure 3 is Figure 1 Detailed view of the connection structure of the middle storage component.
[0028] Figure 4 is Figure 1 Detailed view of the connection structure of the middle fixing component.
[0029] Figure 5 is Figure 1 Detailed view of the front elevation sectional connection structure.
[0030] Figure 6 is Figure 1 Detailed view of the top plan sectional connection structure.
[0031] Figure 7 is Figure 1 Detailed view of the left elevation sectional connection structure.
[0032] Figure 8 is Figure 1 Detailed view of the partial sectional connection structure of the middle lifting bracket.
[0033] Figure 9 is Figure 1 Detailed view of the top plan sectional connection structure of the middle fixing component.
[0034] Explanation of reference numerals: 1, platform; 2, moving member; 3, vertical rod; 4, pushing member; 5, first fixing member; 6, wire wheel; 7, housing; 8, equipment mounting bracket; 9, hydraulic cylinder; 10, cross bar; 11, sliding member; 12, support plate; 13, stabilizing member; 14, rotating member; 15, first lifting plate; 16, second lifting plate; 17, second fixing member; 18, supporting member; 19, connecting member; 20, third fixing member; 21, cover plate; 22, tool box; 23, box cover; 24, fixing block; 25, vertical plate; 26, spring; 27, clamping block. Detailed implementation manners
[0035] The following further elaborates the present utility model in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by the appended claims of the application.
[0036] See Figures 1-9This is a schematic structural diagram of the utility model. A device fault detection device for the equipment department includes a platform 1 and a moving member 2. The moving members 2 are provided at the four corners of the bottom end of the platform 1. The platform 1 is moved through the moving members 2. The moving members 2 are selected as universal wheels. A vertical rod 3 is provided on the right side of the top end of the platform 1. A pushing member 4 is provided on the right side of the top end of the vertical rod 3. The pushing member 4 cooperates with the vertical rod 3 to push the platform 1 to move. The vertical rod 3 is used to provide an installation position for the wire winding assembly. A wire winding assembly is provided on the outer wall of the vertical rod 3. The wire winding assembly is used to wind up the detection wire and power cord used by the fault detection device.
[0037] A housing 7 is provided on the top end of the platform 1. The housing 7 is used to provide protection and storage space. An equipment mounting rack 8 is provided on the right side of the top end of the housing 7. The equipment mounting member 8 is used to provide an installation position for the fault detection device. A hydraulic cylinder 9 is provided inside the housing 7. The hydraulic cylinder 9 is used to drive the cross bar 10 to move up and down. The top end of the hydraulic cylinder 9 is provided with a cross bar 10. The hydraulic cylinder 9 cooperates with the cross bar 10 to drive the lifting bracket to lift the medical equipment for facilitating the fault detection work. Lifting brackets are provided at both ends of the cross bar 10. A support member 18 is provided on the left side of the outer wall of the housing 7. The support member 18 is used to support the connecting member 19. The connecting member 19 can slide left and right on the outer wall of the support member 18. A slidable connecting member 19 is provided on the outer wall of the support member 18. A third fixing member 20 is provided on the outer wall of the support member 18. The third fixing member 20 is used to fix the sliding connecting member 19. A storage component is provided on the left side of the connecting member 19. The connecting member 19 is used to support the storage component. The storage component is opened through the connecting member 19. A fixing component is provided on the left side of the top end of the housing 7. The fixing component is used to fix the storage component after it is buckled.
[0038] It should be noted that a vertical strip-shaped chute is provided inside the outer wall of the housing 7. The strip-shaped chute is used to provide sliding limit for the sliding member 11. A horizontal strip-shaped chute is provided inside the connecting member 19. The connecting member 19 slides left and right on the outer wall of the support member 18 through the strip-shaped chute.
[0039] Specifically, the wire winding assembly includes a first fixing member 5. The first fixing member 5 is provided on the outer wall of the vertical rod 3. A rotatable wire wheel 6 is provided between the first fixing members 5. The first fixing member 5 is used to support and install the wire wheel 6. The wire wheel 6 is connected to the first fixing member 5 through a bearing. When the wire wheel 6 rotates, it is convenient to wind up the power cord and the fault detection wire. A plurality of wire winding grooves are provided on the outer wall of the wire wheel 6.
[0040] More specifically, the lifting bracket includes a sliding member 11, which is arranged at both ends of the cross bar 10 and connected to the strip-shaped sliding groove on the outer shell 7. When the cross bar 10 moves up and down, it can drive the sliding member 11 to slide up and down inside the strip-shaped sliding groove of the outer shell 7. A support plate 12 is arranged on the outer side of the sliding member 11. During the sliding process of the sliding member 11, it can drive the support plate 12 to move. The support plate 12 is used to provide a support installation position for the stabilizing member. A stabilizing member 13 is arranged at the bottom end of the support plate 12. A rotating member 14 is arranged on the outer wall of the stabilizing member 13. The stabilizing member 13 is used to support the rotating member 14. The rotating member 14 can rotate on the outer wall of the stabilizing member 13. A first lifting plate 15 is arranged on the left side of the rotating member 14. The first lifting plate 15 performs angle adjustment work through the rotating member 14. A slidable second lifting plate 16 is arranged inside the first lifting plate 15. The second lifting plate 16 can perform telescopic work from inside the first lifting plate 15. A second fixing member 17 is arranged inside the first lifting plate 15 and the second lifting plate 16. The second fixing member 17 is used to fix the second lifting plate 16 after length adjustment. The first lifting plate 15 and the second lifting plate 16 can be inserted into the bottom of the medical device for lifting work. Multiple card slots are arranged inside the second lifting plate 16, and the card slots are used to provide an installation position for the second fixing member 17. Part of the second fixing member 17 is a smooth rod, and a thread is arranged at the end of the second fixing member 17.
[0041] More specifically, the storage component includes a cover plate 21, which is rotatably arranged between the connecting members 19. The cover plate 21 is connected to the connecting members 19 through a pin shaft. The cover plate 21 can be opened and latched on the left side of the connecting members 19 through the pin shaft. A toolbox 22 is arranged on the right side of the cover plate 21. The cover plate 21 can take out and insert the toolbox 22 from inside the outer shell 7. Multiple partition plates are arranged inside the toolbox 22, and the toolbox 22 is used to provide storage work for the maintenance equipment. A box cover 23 is arranged on the right side of the toolbox 22. A fixing block 24 is arranged at the top end of the cover plate 21. The bottom end of the box cover 23 is connected to the toolbox 22 through a pin shaft. The cover plate 23 is opened and latched on the toolbox 22 through the pin shaft. The top end of the box cover 22 is fixed to the toolbox 22 through a threaded fixing block.
[0042] More specifically, the fixing component includes a vertical plate 25, which is symmetrically arranged on the left side of the outer shell 7. The vertical plate 25 is used to fix the spring 26. A spring 26 is arranged on the outer side of the vertical plate 25. A clamping block 27 is arranged on the outer side of the spring 26. The clamping block 27 can stretch the spring 25. The reaction force of the spring 26 drives the clamping block 27 to fix the fixing block 24. The other end of the clamping block 27 is connected to the vertical plate 25. A card slot for clamping the clamping block 27 is arranged on the outer wall of the fixing block 24.
[0043] When the utility model is in use, first install the fault detection device on the top of the device mounting bracket 8. After installation, wind the power cord and the fault detection line on the fault detection device around the outer wall of the wire wheel 6. After winding, rotate the third fixing member 20. When the third fixing member 20 rotates, the fixing of the connecting member 19 is cancelled. After the fixing is cancelled, pull the clamping block 27 outwards. When the clamping block 27 is pulled, the spring 26 is stretched. During the stretching process, the clamping block 27 is pulled out from the inside of the fixing block 24. After being pulled out, the fixing of the cover plate 21 is cancelled. After the fixing is cancelled, pull the cover plate 21 outwards. When the cover plate 21 is pulled, the connecting member 19 is driven to slide outwards on the outer wall of the support member 18. The cover plate 21 pulls out the toolbox 22 from the inside of the housing 7. After being pulled out, it is unfolded from the connecting member 19 through the pin shaft. After unfolding, rotate the fixing member on the box cover 23. When the fixing member rotates, the fixing of the box cover 23 is cancelled. After the box cover 23 is unfixed, it is opened from the toolbox 22 through the pin shaft. After opening, put the maintenance tools into the inside of the toolbox 22. After putting them in, the toolbox 22 is stored into the inside of the housing 7 through the reverse operation of the above-mentioned operations.
[0044] When it is necessary to repair the medical device, first take out the toolbox 22 from the inside of the housing 7. After taking it out, take out the maintenance work. After taking it out, detach the fault detection line from the outer wall of the wire wheel 6. After detaching it, store the toolbox 22 into the inside of the housing 7. After storing it, rotate the second fixing member 17. When the second fixing member 17 rotates, the fixing of the second lifting plate 16 is cancelled. After the fixing is cancelled, pull the second lifting plate 16 out of the inside of the first lifting plate 15. After pulling it out, rotate the second fixing member 17 in the reverse direction to fix the adjusted second lifting plate 16. After fixing, insert the first lifting plate 16 and the second lifting plate 15 to the bottom end of the medical device. After inserting, control the hydraulic cylinder 9 to start working through the control unit. When the hydraulic cylinder 9 starts to work, it drives the cross bar 10 to move upwards. When the cross bar 10 moves upwards, it drives the sliding member 11 to slide upwards on the housing 7. When the sliding member 11 slides upwards, it drives the stabilizing member 13 to move upwards through the support plate 12. When the stabilizing member 13 moves upwards, it drives the first lifting plate 15 and the second lifting plate 16 to move upwards. During the moving process, the medical device is lifted for moving, and at the same time, it is convenient to repair the medical device.
Claims
1. A device for detecting equipment failures in equipment science, comprising a platform (1) and a moving part (2), wherein the moving parts (2) are arranged at the four corners of the bottom end of the platform (1), characterized in that: A vertical rod (3) is arranged on the right side of the top of the platform (1), a pushing member (4) is arranged on the right side of the top of the vertical rod (3), a wire-reeling assembly is arranged on the outer wall of the vertical rod (3), a housing (7) is arranged on the top of the platform (1), an equipment mounting frame (8) is arranged on the right side of the top of the housing (7), a hydraulic cylinder (9) is arranged inside the housing (7), a cross bar (10) is arranged on the top of the hydraulic cylinder (9), lifting brackets are arranged at both ends of the cross bar (10), a support member (18) is arranged on the left side of the outer wall of the housing (7), a slidable connecting member (19) is arranged on the outer wall of the support member (18), a third fixing member (20) is arranged on the outer wall of the support member (18), a storage assembly is arranged on the left side of the connecting member (19), and a fixing assembly is arranged on the left side of the top of the housing (7).
2. The device for detecting equipment failure according to claim 1, characterized in that: A vertical strip-shaped slide groove is provided inside the outer wall of the shell (7), and a horizontal strip-shaped slide groove is provided inside the connecting piece (19).
3. The device for detecting equipment failure according to claim 2, characterized in that: The wire take-up assembly comprises a first fixing member (5), wherein the first fixing member (5) is arranged on the outer wall of the vertical rod (3), and a rotatable wire wheel (6) is arranged between the first fixing members (5).
4. The device for detecting equipment failure according to claim 3, characterized in that: The wire wheel (6) is connected to the first fixing member (5) via a bearing, and a plurality of wire-receiving grooves are arranged on the outer wall of the wire wheel (6).
5. The device for detecting equipment failure according to claim 4, characterized in that: The lifting bracket includes a sliding member (11), which is arranged at both ends of the cross bar (10) and connected to the strip-shaped sliding groove on the outer shell (7); a support plate (12) is arranged on the outer side of the sliding member (11); a stabilizing member (13) is arranged at the bottom end of the support plate (12); a rotating member (14) is arranged on the outer wall of the stabilizing member (13); a first lifting plate (15) is arranged on the left side of the rotating member (14); a slidable second lifting plate (16) is arranged inside the first lifting plate (15); and a second fixing member (17) is arranged inside the first lifting plate (15) and the second lifting plate (16).
6. The device for detecting equipment failure according to claim 5, characterized in that: A plurality of slots are arranged inside the second lifting plate (16).
7. The device for detecting equipment failure according to claim 6, characterized in that: Part of the second fixing member (17) is a bare rod, and the end of the second fixing member (17) is provided with a thread.
8. The device for detecting equipment failure according to claim 7, characterized in that: The storage assembly comprises a cover plate (21), the cover plate (21) is rotatably arranged between the connecting members (19), a tool box (22) is arranged on the right side of the cover plate (21), a box cover (23) is arranged on the right side of the tool box (22), and a fixing block (24) is arranged on the top end of the cover plate (21).
9. The device for detecting equipment failure according to claim 8, characterized in that: The cover plate (21) is connected to the connecting piece (19) via a pin shaft, the bottom end of the box cover (23) is connected to the tool box (22) via a pin shaft, the top end of the box cover (23) is connected to the tool box (22) via a threaded fixing block, and a plurality of partitions are arranged inside the tool box (22).
10. The device for detecting equipment failure according to claim 9, characterized in that: The fixing assembly comprises a vertical plate (25), the vertical plate (25) being symmetrically arranged on the left side of the housing (7), a spring (26) being arranged on the outer side of the vertical plate (25), a clamping block (27) being arranged on the outer side of the spring (26), the other end of the clamping block (27) being connected to the vertical plate (25), and a clamping groove for clamping the clamping block (27) being arranged on the outer wall of the fixing block (24).