Thermal energy engineering maintenance tool

The tool addresses screwdriver loosening and jamming issues by securing it within a locking mechanism, ensuring stability and adaptability during hot energy engineering maintenance.

CN223099086UActive Publication Date: 2025-07-15HARBIN ZEBIN PURIFICATION ENG CO LTD
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Patent Information

Application Number
CN202422274190.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-15
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

In existing thermal energy engineering maintenance tools, the fixing method between the screwdriver and the equipment is prone to slip and blockage due to long-term stress, resulting in insufficient adaptability of the equipment during use.

Method used

By inserting the screwdriver and the screwdriver support rod into the support positioning groove of the equipment barrel, and fixing it with the butt pin and tightening spring to match the clamping pin, ensure that the screwdriver is not blocked by force during use, and at the same time, different types of screwdrivers are stored through magnetic rods to increase stability.

Benefits of technology

It effectively avoids the problem of stress-blocking during thermal energy engineering maintenance, improves the adaptability and stability of the equipment, and ensures the reliable use of the screwdriver.

✦ Generated by Eureka AI based on patent content.

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Abstract

A heat energy engineering maintenance tool comprises an equipment cylinder, a push rod, a screwdriver shaft sleeve, a clamping ring, an outer frame, a clamping table, a clamping base and a tensioning spring, the front portion of the equipment cylinder is fixedly connected with the push rod, the rear portion of the equipment cylinder is fixedly connected with a handle, a positioning pin is arranged in the equipment cylinder, a positioning groove is formed in the side portion of a rotating shaft, the positioning pin is matched with the positioning groove, and the positioning pin is connected with the positioning groove. A support shaft groove is formed in the upper portion of the screwdriver supporting rod, the support shaft is matched with the support shaft groove, the support shaft is connected with the support shaft groove, the support shaft groove rotates in the support shaft, and the lower portion of the screwdriver supporting rod is fixedly connected with the screwdriver shaft sleeve. A shaft sleeve groove is formed in the screwdriver, and the screwdriver shaft sleeve is matched with the shaft sleeve groove.
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Description

Technical Field

[0001] The utility model relates to the field of engineering maintenance, in particular to a heat energy engineering maintenance tool. Background Art

[0002] The existing patent (publication number: CN218137956U) proposes a heat energy engineering maintenance tool. It includes a placing box A, the inside of the placing box A is fixedly connected with a motor box, the inside of the motor box is fixedly connected with a rotating assembly, one end of the rotating assembly is threadedly connected with a screwdriver, holes are formed on the surfaces of the screwdriver and the rotating assembly, a limiting rod is inserted into the holes, and a number of threaded holes adapted to the screwdriver are formed on the surface of the motor box. However, for the device, "one end of the connecting rod is fixedly connected with a connecting ring", and the screwdriver is fixed by the connecting ring at the front part of the placing box A through threads. When subjected to force for a long time, it may cause thread slipping and jamming, which has certain limitations. Summary of the Invention

[0003] In view of the above-mentioned deficiencies of the prior art, the utility model provides a heat energy engineering maintenance tool. After inserting the required screwdriver and the screwdriver support rod into the support rod positioning slots on the side of the equipment cylinder and the motor platform, and after docking with the docking pin and the motor shaft, and cooperating with the tension spring to tension the locking pin, the clamping ring on the side of the screwdriver is fixed by the locking pin, so as to avoid the equipment from being jammed due to force during the heat energy engineering maintenance process, thereby increasing the adaptability of the equipment.

[0004] The purpose of the utility model is achieved through the following technical solutions:

[0005] A heat energy engineering maintenance tool includes an equipment cylinder, a push rod, a screwdriver shaft sleeve, a clamping ring, an outer frame, a clamping table, a clamping seat, and a tension spring. The front part of the equipment cylinder is fixedly connected with the push rod, the rear part of the equipment cylinder is fixedly connected with a handle, the inside of the equipment cylinder has a positioning pin, the side of the rotating shaft has a positioning slot, the positioning pin is adapted to the positioning slot, the positioning pin is connected to the positioning slot, and the positioning slot rotates inside the positioning pin. The side of the rotating shaft is fixedly connected with a hanging platform, the inside of the hanging platform is fixedly connected with a support shaft, the upper part of the screwdriver support rod has a support shaft slot, the support shaft is adapted to the support shaft slot, the support shaft is connected to the support shaft slot, and the support shaft slot rotates inside the support shaft. The lower part of the screwdriver support rod is fixedly connected with the screwdriver shaft sleeve, the inside of the screwdriver has a shaft sleeve slot, the screwdriver shaft sleeve is adapted to the shaft sleeve slot, the screwdriver shaft sleeve is connected to the shaft sleeve slot, and the shaft sleeve slot rotates inside the screwdriver shaft sleeve. The upper part of the screwdriver has a docking pin.

[0006] The front part of the screwdriver bushing is fixedly connected to the snap ring. The lower part of the rotating shaft is fixedly connected to the magnetic rod. The side part of the magnetic rod corresponds to the position of the screwdriver support rod. The lower part of the magnetic rod is fixedly connected to the storage seat. The side part of the storage seat has a storage groove, and the screwdriver bushing corresponds to the storage groove. The side part of the storage seat has a guard plate, the upper part of the guard plate has an outer frame, and the lower part of the equipment cylinder has a limiting ring, and the limiting ring is adapted to the outer frame.

[0007] The limiting ring is connected to the outer frame, and the outer frame rotates inside the limiting ring. The upper part of the equipment cylinder has a motor platform, the inside of the motor platform is fixedly connected to the driving motor, the inside of the driving motor is fixedly connected to the motor shaft, the upper part of the motor platform has a motor shaft groove, and the motor shaft groove is adapted to the motor shaft. The motor shaft groove is connected to the motor shaft, and the motor shaft rotates inside the motor shaft groove. The docking pin is inserted into the inside of the motor shaft.

[0008] The rear part of the motor platform is fixedly connected to the clamping platform. The upper part of the clamping platform has a clamping seat. The clamping pin slides inside the clamping seat. The side part of the clamping pin is fixedly connected to the clamping pin positioning rod. The side part of the clamping seat has a clamping pin positioning groove, and the clamping pin positioning groove is adapted to the clamping pin positioning rod. The clamping pin positioning groove is connected to the clamping pin positioning rod, and the clamping pin positioning rod slides inside the clamping pin positioning groove. The front part of the clamping pin positioning rod is fixedly connected to the release handle. Beneficial effects

[0009] 1. During the use of the thermal energy engineering maintenance tool of the present utility model, after inserting the required screwdriver and the screwdriver support rod into the support rod positioning groove on the side of the equipment cylinder and the motor platform, and after docking the docking pin with the motor shaft, and cooperating with the tension spring to tension the clamping pin, the snap ring on the side of the screwdriver is fixed by the clamping pin, so that during the maintenance of the thermal energy project, the equipment is prevented from being blocked by force, thereby increasing the adaptability of the equipment.

[0010] 2. During the use of the thermal energy engineering maintenance tool of the present utility model, the snap ring is locked by the clamping pin at the lower part of the motor platform. The front part of the clamping pin has a certain docking arc and is tensioned in cooperation with the tension spring, so that the clamping pin automatically enters the snap ring during docking, making it convenient for personnel to install.

[0011] 3. During the use of the thermal energy engineering maintenance tool of the present utility model, various types of screwdrivers are stored by the magnetic rod and the guard plate at the lower part of the equipment cylinder. When using one of the screwdrivers, the equipment cylinder and the magnetic rod jointly block other types of screwdrivers to prevent them from falling off due to vibration, thereby increasing the stability of the equipment. Description of the drawings

[0012] Figure 1 It is a schematic structural diagram of a thermal energy engineering maintenance tool described in the present utility model.

[0013] Figure 2This is a partial cross-sectional three-dimensional assembly schematic diagram of the structure of a maintenance tool for thermal energy engineering according to the present utility model.

[0014] Figure 3 This is a three-dimensional assembly schematic diagram of the shaft structure of a maintenance tool for thermal energy engineering according to the present utility model.

[0015] Figure 4 This is a three-dimensional assembly schematic diagram of the motor platform structure of a maintenance tool for thermal energy engineering according to the present utility model.

[0016] Figure 5 This is a three-dimensional assembly schematic diagram of the clamping platform structure of a maintenance tool for thermal energy engineering according to the present utility model. Detailed implementation manners

[0017] The present utility model will be further described in detail below with reference to the drawings and embodiments:

[0018] Embodiment 1:

[0019] A maintenance tool for thermal energy engineering includes an equipment cylinder 01, a push rod 02, a screwdriver shaft sleeve 11, a snap ring 15, an outer frame 20, a clamping platform 26, a clamping seat 27, and a tension spring 32. The front part of the equipment cylinder 01 is fixedly connected to the push rod 02, the rear part of the equipment cylinder 01 is fixedly connected to a handle 03, the equipment cylinder 01 has a positioning pin 04 inside, the side part of a rotating shaft 05 has a positioning groove 06, the positioning pin 04 is adapted to the positioning groove 06, the positioning pin 04 is connected to the positioning groove 06, and the positioning groove 06 rotates inside the positioning pin 04. The side part of the rotating shaft 05 is fixedly connected to a hanging platform 07, the inside of the hanging platform 07 is fixedly connected to a support shaft 08, the upper part of a screwdriver support rod 09 has a support shaft groove 10, the support shaft 08 is adapted to the support shaft groove 10, the support shaft 08 is connected to the support shaft groove 10, and the support shaft groove 10 rotates inside the support shaft 08. The lower part of the screwdriver support rod 09 is fixedly connected to the screwdriver shaft sleeve 11, the screwdriver 12 has a shaft sleeve groove 13 inside, the screwdriver shaft sleeve 11 is adapted to the shaft sleeve groove 13, the screwdriver shaft sleeve 11 is connected to the shaft sleeve groove 13, and the shaft sleeve groove 13 rotates inside the screwdriver shaft sleeve 11. The upper part of the screwdriver 12 has a docking pin 14.

[0020] Embodiment 2:

[0021] The front part of the screwdriver bushing 11 of the present utility model is fixedly connected to the snap ring 15, the lower part of the rotating shaft 05 is fixedly connected to the magnetic rod 16, the side part of the magnetic rod 16 corresponds to the position of the screwdriver support rod 09. During the use of the thermal energy engineering maintenance tool, various types of screwdrivers are stored by the magnetic rod 16 at the lower part of the equipment cylinder 01 and the guard plate 19. When using one of the screwdrivers, the equipment cylinder 01 and the magnetic rod 16 jointly block other types of screwdrivers to prevent them from falling off due to vibration, thereby increasing the stability of the equipment. The lower part of the magnetic rod 16 is fixedly connected to the storage seat 17, the side part of the storage seat 17 has a storage groove 18, the screwdriver bushing 11 corresponds to the position of the storage groove 18, the side part of the storage seat 17 has a guard plate 19, the upper part of the guard plate 19 has an outer frame 20, and the lower part of the equipment cylinder 01 has a limiting ring 21, and the limiting ring 21 is adapted to the outer frame 20.

[0022] Embodiment 3:

[0023] The limiting ring 21 of the present utility model is connected to the outer frame 20, and the outer frame 20 rotates inside the limiting ring 21. The upper part of the equipment cylinder 01 has a motor platform 22. During the use of the thermal energy engineering maintenance tool, the snap ring 15 is locked by the snap pin 28 at the lower part of the motor platform 22. The front part of the snap pin 28 has a certain docking arc and is tightened in cooperation with the tension spring 32, so that the snap pin 28 automatically enters the inside of the snap ring 15 during docking, thereby facilitating installation by personnel. The inside of the motor platform 22 is fixedly connected to the drive motor 23, the inside of the drive motor 23 is fixedly connected to the motor shaft 24, the upper part of the motor platform 22 has a motor shaft groove 25, the motor shaft groove 25 is adapted to the motor shaft 24, the motor shaft groove 25 is connected to the motor shaft 24, the motor shaft 24 rotates inside the motor shaft groove 25, and the docking pin 14 is inserted into the inside of the motor shaft 24.

[0024] Embodiment 4:

[0025] The rear part of the motor platform 22 of the present utility model is fixedly connected to the clamping table 26. During the use of the thermal energy engineering maintenance tool, after inserting the required screwdriver 12 and the screwdriver support rod 09 into the support rod positioning groove 33 on the side of the equipment cylinder 01 and the motor platform 22, and after docking the docking pin 14 with the motor shaft 24, and tightening the snap pin 28 in cooperation with the tension spring 32, the snap ring 15 on the side of the screwdriver 12 is fixed by the snap pin 28, so that during the thermal energy engineering maintenance process of the equipment, the equipment is prevented from being blocked by force, thereby increasing the adaptability of the equipment. The upper part of the clamping table 26 has a clamping seat 27, the snap pin 28 slides inside the clamping seat 27, the side part of the snap pin 28 is fixedly connected to the snap pin positioning rod 29, the side part of the clamping seat 27 has a snap pin positioning groove 30, the snap pin positioning groove 30 is adapted to the snap pin positioning rod 29, the snap pin positioning groove 30 is connected to the snap pin positioning rod 29, the snap pin positioning rod 29 slides inside the snap pin positioning groove 30, and the front part of the snap pin positioning rod 29 is fixedly connected to the release handle 31.

[0026] Embodiment 5:

[0027] The pin 28 of the present utility model is fixedly connected to the inside of the card seat 27 through a tension spring 32. The snap ring 15 is adapted to the pin 28. The snap ring 15 is connected to the pin 28, and the pin 28 is inserted into the inside of the snap ring 15. Both the surface of the equipment cylinder 01 and the motor platform 22 have a rod positioning groove 33, which is adapted to the screwdriver rod 09. The rod positioning groove 33 is connected to the screwdriver rod 09, and the screwdriver rod 09 is inserted into the inside of the rod positioning groove 33.

[0028] Embodiment 6:

[0029] Installation steps of the present utility model: fixedly connect the front part of the equipment cylinder 01 with the push rod 02, fixedly connect the rear part of the equipment cylinder 01 with the handle 03, rotate the positioning groove 06 inside the positioning pin 04, fixedly connect the side part of the rotating shaft 05 with the suspension platform 07, fixedly connect the inside of the suspension platform 07 with the support shaft 08, rotate the support shaft groove 10 inside the support shaft 08, fixedly connect the lower part of the screwdriver rod 09 with the screwdriver bushing 11, rotate the bushing groove 13 inside the screwdriver bushing 11, fixedly connect the front part of the screwdriver bushing 11 with the snap ring 15, fixedly connect the lower part of the rotating shaft 05 with the magnetic rod 16, make the side part of the magnetic rod 16 correspond to the position of the screwdriver rod 09, fixedly connect the lower part of the magnetic rod 16 with the storage seat 17, make the screwdriver bushing 11 correspond to the storage groove 18, rotate the outer frame 20 inside the limit ring 21, fixedly connect the inside of the motor platform 22 with the drive motor 23, fixedly connect the inside of the drive motor 23 with the motor shaft 24, rotate the motor shaft 24 inside the motor shaft groove 25, insert the docking pin 14 into the motor shaft 24, fixedly connect the rear part of the motor platform 22 with the clamping table 26, slide the pin 28 inside the card seat 27, fixedly connect the side part of the pin 28 with the pin positioning rod 29, slide the pin positioning rod 29 inside the pin positioning groove 30, fixedly connect the front part of the pin positioning rod 29 with the release handle 31, fixedly connect the pin 28 with the inside of the card seat 27 through a tension spring 32, insert the pin 28 into the inside of the snap ring 15, and insert the screwdriver rod 09 into the inside of the rod positioning groove 33.

[0030] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A thermal energy engineering maintenance tool, characterized in that : It includes a device cylinder (01), a push rod (02), a screwdriver bushing (11), a snap ring (15), an outer frame (20), a clamping platform (26), a clamping seat (27), and a tension spring (32). The front part of the device cylinder (01) is fixedly connected to the push rod (02), and the rear part of the device cylinder (01) is fixedly connected to the handle (03). Inside the device cylinder (01), there is a positioning pin (04). On the side of the rotating shaft (05), there is a positioning groove (06). The positioning pin (04) is adapted to the positioning groove (06). The positioning pin (04) is connected to the positioning groove (06), and the positioning groove (06) rotates inside the positioning pin (04). The side of the rotating shaft (05) is fixedly connected to the hanging platform (07). Inside the hanging platform (07), it is fixedly connected to the support shaft (08). On the upper part of the screwdriver support rod (09), there is a support shaft groove (10). The support shaft (08) is adapted to the support shaft groove (10). The support shaft (08) is connected to the support shaft groove (10), and the support shaft groove (10) rotates inside the support shaft (08). The lower part of the screwdriver support rod (09) is fixedly connected to the screwdriver bushing (11). Inside the screwdriver (12), there is a bushing groove (13). The screwdriver bushing (11) is adapted to the bushing groove (13). The screwdriver bushing (11) is connected to the bushing groove (13), and the bushing groove (13) rotates inside the screwdriver bushing (11). On the upper part of the screwdriver (12), there is a docking pin (14).

2. The thermal energy engineering maintenance tool according to claim 1, characterized in that : The front part of the screwdriver bushing (11) is fixedly connected to the snap ring (15). The lower part of the rotating shaft (05) is fixedly connected to the magnetic rod (16). The side of the magnetic rod (16) corresponds to the position of the screwdriver support rod (09). The lower part of the magnetic rod (16) is fixedly connected to the storage seat (17). On the side of the storage seat (17), there is a storage groove (18). The screwdriver bushing (11) corresponds to the position of the storage groove (18). On the side of the storage seat (17), there is a guard plate (19). On the upper part of the guard plate (19), there is an outer frame (20). On the lower part of the device cylinder (01), there is a limit ring (21). The limit ring (21) is adapted to the outer frame (20).

3. The a thermal energy engineering maintenance tool according to claim 2, characterized in that : The limit ring (21) is connected to the outer frame (20), and the outer frame (20) rotates inside the limit ring (21). On the upper part of the device cylinder (01), there is a motor platform (22). Inside the motor platform (22), it is fixedly connected to the drive motor (23). Inside the drive motor (23), it is fixedly connected to the motor shaft (24). On the upper part of the motor platform (22), there is a motor shaft groove (25). The motor shaft groove (25) is adapted to the motor shaft (24). The motor shaft groove (25) is connected to the motor shaft (24), and the motor shaft (24) rotates inside the motor shaft groove (25). The docking pin (14) is inserted into the inside of the motor shaft (24).

4. The thermal energy engineering maintenance tool according to claim 3, characterized in that : The rear part of the motor table (22) is fixedly connected to the clamping table (26). The upper part of the clamping table (26) has a clamping seat (27). The clamping pin (28) slides inside the clamping seat (27). The side part of the clamping pin (28) is fixedly connected to the clamping pin positioning rod (29). The side part of the clamping seat (27) has a clamping pin positioning groove (30). The clamping pin positioning groove (30) is adapted to the clamping pin positioning rod (29). The clamping pin positioning groove (30) connects the clamping pin positioning rod (29). The clamping pin positioning rod (29) slides inside the clamping pin positioning groove (30). The front part of the clamping pin positioning rod (29) is fixedly connected to the release handle (31).

5. The a thermal energy engineering maintenance tool according to claim 3, characterized in that : The clamping pin (28) is fixedly connected to the inside of the clamping seat (27) through a tension spring (32). The snap ring (15) is adapted to the clamping pin (28). The snap ring (15) connects the clamping pin (28). The clamping pin (28) is snapped into the inside of the snap ring (15). Both the equipment cylinder (01) and the surface of the motor table (22) have a support rod positioning groove (33). The support rod positioning groove (33) is adapted to the screwdriver support rod (09). The support rod positioning groove (33) connects the screwdriver support rod (09). The screwdriver support rod (09) is inserted into the inside of the support rod positioning groove (33).

Citation Information

Patent Citations

  • Maintenance tool for heat energy and power engineering

    CN218137956U