Integrated wiring terminal structure with built-in intelligent monitoring system

By integrating an intelligent monitoring system in the terminals and combining the design of elastic tablet and screw pressing components, the problem of lack of intelligent monitoring and poor connection stability of the terminals is solved, and the effects of intelligent monitoring, improved seismic performance and convenient operation are achieved.

CN222940218UActive Publication Date: 2025-06-03ZHENJIANG CONLIN ELECTRICAL CO LTD
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Patent Information

Application Number
CN202421509414.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-06-03
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

The existing terminals lack intelligent monitoring functions, poor connection stability, difficult to quickly locate fault points, and easily lead to poor contact in vibrating equipment.

Method used

An integrated terminal structure with built-in intelligent monitoring system is designed, including installation components and terminal body. The built-in intelligent detection system consists of a mounting base, voltage transformer, current transformer, acquisition module, wireless transmission module and alarm indicator light. Combined with elastic tablet and screw pressing components, it realizes stable connection and intelligent monitoring of cable joints.

Benefits of technology

It realizes intelligent monitoring of the connection lines, can quickly locate fault points, improves seismic performance and connection stability, simplifies operational processes, and supports remote data transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wiring terminals, and discloses an integrated wiring terminal structure with a built-in intelligent monitoring system, which solves the problems that the existing wiring terminal does not have an intelligent monitoring function and is poor in connection stability, and comprises a mounting assembly and a plurality of wiring terminal bodies, the wiring terminal body is clamped on one side of the installation assembly, a bus is fixedly arranged in the middle of the interior of the wiring terminal body, a first threading groove is formed in the top end of the interior of the wiring terminal body, a first elastic pressing piece and a first screw pressing assembly are arranged in the first threading groove, and a second threading groove is formed in the bottom end of the interior of the wiring terminal body. A second elastic pressing piece and a second screw pressing assembly are arranged in the second wire penetrating groove, the bus penetrates through the first wire penetrating groove and the second wire penetrating groove, and an intelligent detection system is arranged in the middle of the side, away from the installation assembly, of the wiring terminal body. Through the wiring terminal structure, intelligent monitoring can be realized, and the stability and convenience of cable connection can be improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of terminal blocks, and specifically relates to an integrated terminal block structure with a built-in intelligent monitoring system. Background Technique

[0002] Terminal blocks are used for circuit connection. Especially for some modular devices, it is usually necessary to use terminal block rows for transfer, which can achieve the function of efficient and rapid connection. However, existing terminal blocks usually do not have a monitoring function. When a connection line or device fails, it is not easy to quickly find the fault point, increasing the maintenance time. In addition, there are generally two connection methods for existing terminal blocks, namely elastic sheet pressing connection and screw pressing connection. Elastic sheet pressing connection can achieve rapid connection and has good seismic resistance, but it is difficult to ensure the stability of cable connection. Screw pressing connection can improve the connection stability, but for some devices that will vibrate during use, it will cause the screws to loosen, and then it is easy to cause poor contact. Therefore, this application proposes an integrated terminal block structure with a built-in intelligent monitoring system. Summary of the Invention

[0003] In view of the above situation, to overcome the defects of the prior art, this utility model provides an integrated terminal block structure with a built-in intelligent monitoring system, effectively solving the problems that existing terminal blocks do not have an intelligent monitoring function and the connection stability is not good.

[0004] To achieve the above object, this utility model provides the following technical solution: An integrated terminal block structure with a built-in intelligent monitoring system, including an installation component and a plurality of terminal block bodies. The terminal block bodies are snap-connected to one side of the installation component. A bus bar is fixedly arranged at the middle position inside the terminal block body. A wire passing groove one is opened at the top end inside the terminal block body, and an elastic pressing sheet one and a screw pressing component one are arranged inside the wire passing groove one. A wire passing groove two is opened at the bottom end inside the terminal block body, and an elastic pressing sheet two and a screw pressing component two are arranged inside the wire passing groove two. The bus bar passes through the wire passing groove one and the wire passing groove two and respectively matches with the elastic pressing sheet one, the screw pressing component one, the elastic pressing sheet two and the screw pressing component two. An intelligent detection system matching with the bus bar is arranged at the middle position on the side of the terminal block body away from the installation component.

[0005] Preferably, the intelligent detection system is composed of an installation base, a voltage transformer, a current transformer, a collection module, a wireless transmission module and a plurality of alarm indicator lights. The installation base is connected to the terminal block body through a plurality of long screw rods. The voltage transformer and the current transformer are both sleeved on the bus bar and electrically connected to the collection module. The collection module and the wireless transmission module are both fixedly connected inside the installation base. The alarm indicator lights are fixedly connected to one side inside the installation base. The wireless transmission module and the alarm indicator lights are both electrically connected to the collection module.

[0006] Preferably, a first screw installation groove communicating with the first wire threading groove is formed at the top end inside the terminal body. A first screw sleeve matching the first screw pressing assembly is fixedly arranged inside the first screw installation groove. An inner groove matching the first elastic pressing piece is formed on one side of the first wire threading groove, and the first elastic pressing piece is fixedly connected inside the inner groove.

[0007] Preferably, a second screw installation groove communicating with the second wire threading groove is formed at the bottom end inside the terminal body. A second screw sleeve matching the second screw pressing assembly is fixedly arranged inside the second screw installation groove. An inner groove matching the second elastic pressing piece is formed on one side of the second wire threading groove, and the second elastic pressing piece is fixedly connected inside the inner groove.

[0008] Preferably, both the first elastic pressing piece and the second elastic pressing piece are composed of an installation section, an elastic section, a pressing contact, a rigid bending section, and a wear-resistant contact. The installation section is fixedly connected to the inside of the terminal body through a plurality of bolts. The pressing contact is fixedly connected to the installation section through the elastic section. The rigid bending section is fixedly connected to one side of the elastic section, and the wear-resistant contact is fixedly connected to one end of the rigid bending section away from the elastic section.

[0009] Preferably, both the first screw pressing assembly and the second screw pressing assembly are composed of a screw head, a pressing screw, a limiting pressing plate, a connecting head, and a locking screw. The screw head is fixedly connected to one end of the pressing screw. The pressing screw is respectively in mating connection with the first screw sleeve and the second screw sleeve. The connecting head penetrates through one end inside the pressing screw and is connected to the pressing screw through the locking screw. A screw hole matching the locking screw is formed on the connecting head, and the limiting pressing plate is fixedly connected to one end of the connecting head. The limiting pressing plate is matched with the wear-resistant contact.

[0010] Preferably, the installation assembly is composed of a strip-shaped installation plate, an L-shaped strip-shaped clamping beam, and a plurality of split clamping components. A plurality of connecting screws are inserted through the strip-shaped installation plate. The L-shaped strip-shaped clamping beam is fixedly connected to the top end on one side of the strip-shaped installation plate. A plurality of limiting installation grooves are formed at the bottom end on one side of the strip-shaped installation plate close to the L-shaped strip-shaped clamping beam, and the split clamping components are connected inside the limiting installation grooves.

[0011] Preferably, the split clamping component is composed of a limiting guide rod, a limiting spring, a sliding seat, and an L-shaped clamping block. The limiting guide rod is fixedly connected to the inside of the limiting installation groove. The limiting spring and the sliding seat are both sleeved on the limiting guide rod, and the L-shaped clamping block is fixedly connected to one end of the sliding seat.

[0012] Preferably, a rubber cushion layer matching the strip-shaped installation plate is fixedly arranged on one side of the terminal body. A first clamping groove matching the L-shaped strip-shaped clamping beam is formed at the top end on one side of the terminal body, and a second clamping groove matching the L-shaped clamping block is formed at the bottom end on one side of the terminal body.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] (1) During operation, by setting up an intelligent detection system composed of a mounting base, a voltage transformer, a current transformer, a collection module, a wireless transmission module, and several alarm indicator lights, it is possible to monitor the voltage and current of the connected circuit, and determine whether there is a break or short circuit in the circuit based on sudden increases, sudden decreases, and disappearances of the voltage and current. The alarm indicator lights can alarm the fault location, enabling the staff to quickly find the fault point, and at the same time, remote data transmission can be achieved.

[0015] (2) By setting up elastic pressing pieces one and two composed of a mounting section, an elastic section, a pressing contact, a rigid bending section, and a wear-resistant contact, elastic pressing and limiting of the cable joint can be achieved, and the seismic performance can be improved. By setting up screw pressing assemblies one and two composed of a screw head, a pressing screw, a limiting pressing plate, a connecting head, and a locking screw, screw pressing of the cable joint can be achieved, further improving the connection stability. At the same time, elastic pressing pieces one and two can match with screw pressing assemblies one and two. During operation, only one screwdriver is needed to achieve synchronous adjustment, improving the operation convenience.

[0016] (3) By setting up a split-type clamping component composed of a limiting guide rod, a limiting spring, a sliding seat, and an L-shaped clamping block, independent installation of multiple terminal bodies can be achieved, improving the installation stability and preventing loosening. At the same time, fast clamping can be achieved, improving the installation convenience. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The drawings are used to provide a further understanding of the present utility model, and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model, and do not constitute a limitation to the present utility model.

[0018] In the drawings:

[0019] Figure 1 is a schematic structural diagram of an integrated terminal with an intelligent monitoring system of the present utility model;

[0020] Figure 2 is a schematic structural diagram of the terminal body of the present utility model;

[0021] Figure 3 is a schematic structural diagram of the intelligent detection system of the present utility model;

[0022] Figure 4 is of the present utility model Figure 2 one of the partial enlarged views;

[0023] Figure 5 is of the present utility model Figure 2The second enlarged partial view;

[0024] Figure 6 This is a schematic structural view of the first elastic pressing piece of the present utility model;

[0025] Figure 7 This is a schematic structural view of the first screw pressing assembly of the present utility model;

[0026] Figure 8 This is a schematic structural view of the installation assembly of the present utility model;

[0027] Figure 9 This is a side sectional view of the installation assembly of the present utility model;

[0028] In the figure: 1. Installation assembly; 2. Terminal body; 3. Busbar; 4. First wire trough; 5. First elastic pressing piece; 6. First screw pressing assembly; 7. Second wire trough; 8. Second elastic pressing piece; 9. Second screw pressing assembly; 10. Intelligent detection system; 11. Mounting seat; 12. Voltage transformer; 13. Current transformer; 14. Acquisition module; 15. Wireless transmission module; 16. Alarm indicator light; 17. Long screw; 18. First screw installation groove; 19. First bushing; 20. First inner groove; 21. Second screw installation groove; 22. Second bushing; 23. Second inner groove; 24. Installation section; 25. Elastic section; 26. Pressing contact; 27. Rigid bending section; 28. Wear-resistant contact; 29. Screw head; 30. Pressing screw; 31. Limit pressing plate; 32. Connecting head; 33. Locking screw; 34. Screw hole; 35. Strip-shaped mounting plate; 36. L-shaped strip-shaped clamping beam; 37. Split clamping assembly; 38. Connecting screw; 39. Limit installation groove; 40. Limit guiding rod; 41. Limit spring; 42. Slide seat; 43. L-shaped block; 44. Rubber cushion layer; 45. First clamping groove; 46. Second clamping groove. Specific embodiments

[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments; based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0030] Embodiment 1, consisting of Figure 1 and Figure 2Provided is an integrated terminal block structure with a built-in intelligent monitoring system, which includes an installation component 1 and several terminal block bodies 2. The terminal block bodies 2 are snap-connected to one side of the installation component 1. A bus bar 3 is fixedly arranged at the middle position inside the terminal block body 2. A first wire slot 4 is opened at the top end inside the terminal block body 2. An elastic pressing piece 5 and a screw pressing component 6 are arranged inside the first wire slot 4. A second wire slot 7 is opened at the bottom end inside the terminal block body 2. An elastic pressing piece 8 and a screw pressing component 9 are arranged inside the second wire slot 7. The bus bar 3 penetrates through the first wire slot 4 and the second wire slot 7 and is respectively matched with the elastic pressing piece 5, the screw pressing component 6, the elastic pressing piece 8 and the screw pressing component 9. An intelligent detection system 10 matched with the bus bar 3 is arranged at the middle position on the side of the terminal block body 2 far away from the installation component 1;

[0031] During use, the elastic pressing piece 5, the screw pressing component 6, the elastic pressing piece 8 and the screw pressing component 9 are used to stably connect the ends of two cables. The bus bar 3 is used to conduct the circuit. The intelligent detection system 10 can intelligently monitor the state of the circuit.

[0032] Embodiment 2, on the basis of Embodiment 1, Figures 1 to 3 Provided is that the intelligent detection system 10 is composed of a mounting base 11, a voltage transformer 12, a current transformer 13, a collection module 14, a wireless transmission module 15 and several alarm indicator lights 16. The mounting base 11 is connected to the terminal block body 2 through several long screw rods 17. The voltage transformer 12 and the current transformer 13 are both sleeved on the bus bar 3 and electrically connected to the collection module 14. The collection module 14 and the wireless transmission module 15 are both fixedly connected inside the mounting base 11. The alarm indicator lights 16 are fixedly connected to one side inside the mounting base 11. The wireless transmission module 15 and the alarm indicator lights 16 are both electrically connected to the collection module 14;

[0033] When the intelligent detection system 10 works, the voltage and current in the circuit are respectively monitored through the voltage transformer 12 and the current transformer 13. The collection of data is realized through the collection module 14. The fault alarm is realized through the alarm indicator lights 16, which is convenient for the staff to quickly find the fault location. The wireless transmission of data is realized through the wireless transmission module 15. The open circuit and short circuit of the circuit can be judged according to the sudden increase, sudden decrease and disappearance of the voltage and current, realizing intelligent monitoring.

[0034] Embodiment 3, on the basis of Embodiment 1, Figure 1 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 7There is provided that a screw installation groove one 18 communicating with a wire threading groove one 4 is formed at the top end inside the terminal block body 2. A screw sleeve one 19 matching with a screw pressing component one 6 is fixedly arranged inside the screw installation groove one 18. An inner groove one 20 matching with an elastic pressing piece one 5 is formed at one side of the wire threading groove one 4. The elastic pressing piece one 5 is fixedly connected inside the inner groove one 20. A screw installation groove two 21 communicating with a wire threading groove two 7 is formed at the bottom end inside the terminal block body 2. A screw sleeve two 22 matching with a screw pressing component two 9 is fixedly arranged inside the screw installation groove two 21. An inner groove two 23 matching with an elastic pressing piece two 8 is formed at one side of the wire threading groove two 7. The elastic pressing piece two 8 is fixedly connected inside the inner groove two 23. Both the elastic pressing piece one 5 and the elastic pressing piece one 5 are composed of an installation section 24, an elastic section 25, a pressing contact 26, a rigid bending section 27 and a wear-resistant contact 28. The installation section 24 is fixedly connected inside the terminal block body 2 through a plurality of bolts. The pressing contact 26 is fixedly connected with the installation section 24 through the elastic section 25. The rigid bending section 27 is fixedly connected to one side of the elastic section 25. The wear-resistant contact 28 is fixedly connected to one end of the rigid bending section 27 away from the elastic section 25. Both the screw pressing component one 6 and the screw pressing component two 9 are composed of a screw head 29, a pressing screw 30, a limiting pressing plate 31, a connecting head 32 and a locking screw 33. The screw head 29 is fixedly connected to one end of the pressing screw 30. The pressing screw 30 is respectively in cooperation connection with the screw sleeve one 19 and the screw sleeve two 22. The connecting head 32 is inserted into one end inside the pressing screw 30 and is connected with the pressing screw 30 through the locking screw 33. A screw hole 34 matching with the locking screw 33 is formed on the connecting head 32. The limiting pressing plate 31 is fixedly connected to one end of the connecting head 32. The limiting pressing plate 31 is matched with the wear-resistant contact 28;

[0035] The cable is inserted into the wire threading groove one 4 and the wire threading groove two 7. The screw head 29 and the pressing screw 30 are driven to rotate by a screwdriver. The cable end is pressed through the pressing screw 30, so that the cable end is closely attached to the bus bar 3, realizing the conduction of the circuit. When the pressing screw 30 is in a pressed state, the limiting pressing plate 31 contacts and limits the wear-resistant contact 28. The elastic force of the elastic section 25 drives the pressing contact 26 to swing, so that the pressing contact 26 is closely attached to the cable end, realizing the elastic pressing and limiting of the cable (as Figure 4As shown in the figure, through the above pressing method, the stability of the cable connection can be improved, and at the same time, the earthquake resistance can be enhanced to prevent the cable from loosening and resulting in poor contact. When the cable needs to be disassembled, a screwdriver is used to drive the screw head 29 and the pressing screw 30 to rotate. The limit pressing plate 31 rotates along with the pressing screw 30 and separates from the cable end. At this time, the limit pressing plate 31 contacts the wear-resistant contact 28 and drives the wear-resistant contact 28 to move. The wear-resistant contact 28 drives the rigid bending section 27 to swing, and the rigid bending section 27 drives the elastic section 25 to deform. The elastic section 25 drives the pressing contact 26 to swing, so that the pressing contact 26 separates from the cable end, releasing the limit on the cable, and then the cable can be taken out (as Figure 5 shown in the figure). Through the above operations, only a screwdriver in a conventional way is needed to achieve the adjustment, without separately adjusting the elastic pressing piece 5 and the elastic pressing piece 8, improving the convenience of the operation.

[0036] Embodiment 4, based on Embodiment 1, is given by Figure 1 、 Figure 2 、 Figure 8 and Figure 9 . The installation component 1 is composed of a strip-shaped mounting plate 35, an L-shaped strip-shaped clamping beam 36, and a plurality of split clamping components 37. A plurality of connecting screws 38 are inserted through the strip-shaped mounting plate 35. The L-shaped strip-shaped clamping beam 36 is fixedly connected to the top end of one side of the strip-shaped mounting plate 35. A plurality of limit mounting grooves 39 are opened at the bottom end of the strip-shaped mounting plate 35 close to the L-shaped strip-shaped clamping beam 36. The split clamping components 37 are connected to the inside of the limit mounting grooves 39. The split clamping component 37 is composed of a limit guide rod 40, a limit spring 41, a sliding seat 42, and an L-shaped clamping block 43. The limit guide rod 40 is fixedly connected to the inside of the limit mounting groove 39. The limit spring 41 and the sliding seat 42 are both sleeved on the limit guide rod 40. The L-shaped clamping block 43 is fixedly connected to one end of the sliding seat 42. A rubber cushion layer 44 matching the strip-shaped mounting plate 35 is fixedly arranged on one side of the terminal block body 2. A first clamping groove 45 matching the L-shaped strip-shaped clamping beam 36 is opened at the top end of one side of the terminal block body 2. A second clamping groove 46 matching the L-shaped clamping block 43 is opened at the bottom end of one side of the terminal block body 2;

[0037] When installing the terminal block body 2, the second clamping groove 46 is engaged with the L-shaped clamping block 43, and the terminal block body 2 is moved upward. The L-shaped clamping block 43 moves along with the terminal block body 2, and the limit spring 41 is in a compressed state. Then, the first clamping groove 45 is engaged with the L-shaped strip-shaped clamping beam 36. After the engagement is completed, the terminal block body 2 is released, and the L-shaped clamping block 43 is driven to reset by the limit spring 41. At this time, the terminal block body 2 is clamped and fixed by the L-shaped strip-shaped clamping beam 36 and the L-shaped clamping block 43, which can improve the stability and convenience of the installation.

[0038] During work, by setting up an intelligent detection system composed of a mounting base, a voltage transformer, a current transformer, a collection module, a wireless transmission module, and several alarm indicator lights, it is possible to monitor the voltage and current of the connected circuit, and judge whether there is a break or short circuit in the circuit according to sudden increases, sudden decreases, and disappearances of the voltage and current. The alarm indicator lights can alarm the fault location, enabling the staff to quickly find the fault point, and at the same time, remote data transmission can be achieved; by setting up elastic pressing pieces I and II composed of a mounting section, an elastic section, a pressing contact, a rigid bending section, and a wear-resistant contact, elastic pressing and limiting of the cable joint can be realized, and the seismic performance can be improved. By setting up screw pressing assemblies I and II composed of a screw head, a pressing screw, a limiting pressing plate, a connecting head, and a locking screw, screw pressing of the cable joint can be realized, further improving the connection stability. At the same time, elastic pressing pieces I and II can match with screw pressing assemblies I and II. During operation, only one screwdriver is needed to achieve synchronous adjustment, improving the operation convenience; by setting up a split-type clamping component composed of a limiting guide rod, a limiting spring, a sliding seat, and an L-shaped clamping block, independent installation of multiple terminal bodies can be realized, improving the installation stability, avoiding loosening, and at the same time, quick clamping can be achieved, improving the installation convenience.

Claims

1. An integrated terminal block structure with a built-in intelligent monitoring system, comprising a mounting assembly (1) and a plurality of terminal blocks (2), characterized in that: The terminal body (2) is clamped on one side of the installation component (1); a busbar (3) is fixedly arranged in the middle position inside the terminal body (2); a wire threading groove (4) is provided at the top of the terminal body (2); an elastic pressing piece (5) and a screw clamping component (6) are arranged inside the wire threading groove (4); a second wire threading groove (7) is provided at the bottom of the terminal body (2); an elastic pressing piece (8) and a screw clamping component (9) are arranged inside the wire threading groove (7); the busbar (3) is inserted into the wire threading groove (4) and the wire threading groove (7) and matches the elastic pressing piece (5), the screw clamping component (6), the elastic pressing piece (8) and the screw clamping component (9) respectively; and an intelligent detection system (10) matching the busbar (3) is arranged in the middle position of the terminal body (2) on the side away from the installation component (1).

2. The integrated terminal structure with a built-in intelligent monitoring system according to claim 1, characterized in that: The intelligent detection system (10) is composed of a mounting seat (11), a voltage transformer (12), a current transformer (13), a collection module (14), a wireless transmission module (15) and a plurality of alarm indicator lights (16); the mounting seat (11) is connected to the terminal body (2) via a plurality of long screws (17); the voltage transformer (12) and the current transformer (13) are both sleeved on the busbar (3) and electrically connected to the collection module (14); the collection module (14) and the wireless transmission module (15) are both fixedly connected to the inside of the mounting seat (11); the alarm indicator light (16) is fixedly connected to one side of the inside of the mounting seat (11); and the wireless transmission module (15) and the alarm indicator light (16) are both electrically connected to the collection module (14).

3. The integrated terminal structure with a built-in intelligent monitoring system according to claim 1, characterized in that: The top of the terminal body (2) is provided with a screw installation groove (18) connected to the threading groove (4), a screw sleeve (19) matching the screw clamping assembly (6) is fixedly arranged inside the screw installation groove (18), an inner groove (20) matching the elastic pressing sheet (5) is provided on one side of the threading groove (4), and the elastic pressing sheet (5) is fixedly connected to the inside of the inner groove (20).

4. The integrated terminal structure with a built-in intelligent monitoring system according to claim 3, characterized in that: The bottom end of the terminal body (2) is provided with a second screw installation groove (21) connected to the second threading groove (7), a second screw sleeve (22) matching the second screw clamping assembly (9) is fixedly arranged inside the second screw installation groove (21), and an inner groove (23) matching the second elastic pressing piece (8) is provided on one side of the second threading groove (7), and the second elastic pressing piece (8) is fixedly connected to the inside of the second inner groove (23).

5. The integrated terminal structure with a built-in intelligent monitoring system according to claim 4, characterized in that: The elastic pressing piece 1 (5) and the elastic pressing piece 1 (5) are both composed of a mounting section (24), an elastic section (25), a press-fit contact (26), a rigid bending section (27) and a wear-resistant contact (28); the mounting section (24) is fixedly connected to the inside of the terminal body (2) by a plurality of bolts; the press-fit contact (26) is fixedly connected to the mounting section (24) through the elastic section (25); the rigid bending section (27) is fixedly connected to one side of the elastic section (25); and the wear-resistant contact (28) is fixedly connected to one end of the rigid bending section (27) away from the elastic section (25).

6. The integrated terminal structure with a built-in intelligent monitoring system according to claim 5, characterized in that: The screw clamping assembly 1 (6) and the screw clamping assembly 2 (9) are both composed of a screw head (29), a clamping screw (30), a limiting pressure plate (31), a connecting head (32) and a locking screw (33). The screw head (29) is fixedly connected to one end of the clamping screw (30). The clamping screw (30) is respectively matched and connected with the screw sleeve 1 (19) and the screw sleeve 2 (22). The connecting head (32) is inserted into one end of the clamping screw (30) and is connected to the clamping screw (30) through the locking screw (33). The connecting head (32) is provided with a screw hole (34) matching the locking screw (33). The limiting pressure plate (31) is fixedly connected to one end of the connecting head (32). The limiting pressure plate (31) matches the wear-resistant contact (28).

7. The integrated terminal structure with a built-in intelligent monitoring system according to claim 1, characterized in that: The installation assembly (1) is composed of a strip installation plate (35), an L-shaped strip clamping beam (36) and a plurality of split clamping assemblies (37); a plurality of connecting screws (38) are inserted into the strip installation plate (35); the L-shaped strip clamping beam (36) is fixedly connected to the top of one side of the strip installation plate (35); a plurality of position limiting installation grooves (39) are provided at the bottom of the strip installation plate (35) close to the L-shaped strip clamping beam (36); and the split clamping assemblies (37) are connected to the inside of the position limiting installation grooves (39).

8. The integrated terminal structure with a built-in intelligent monitoring system according to claim 7, characterized in that: The split clamping assembly (37) is composed of a limiting guide rod (40), a limiting spring (41), a slide seat (42) and an L-shaped clamping block (43); the limiting guide rod (40) is fixedly connected to the inside of the limiting installation groove (39); the limiting spring (41) and the slide seat (42) are both sleeved on the limiting guide rod (40); and the L-shaped clamping block (43) is fixedly connected to one end of the slide seat (42).

9. The integrated terminal structure with a built-in intelligent monitoring system according to claim 8, characterized in that: A rubber cushion layer (44) matching the strip-shaped mounting plate (35) is fixedly provided on one side of the terminal body (2); a first clamping groove (45) matching the L-shaped strip-shaped clamping beam (36) is provided on the top end of one side of the terminal body (2); and a second clamping groove (46) matching the L-shaped clamping block (43) is provided on the bottom end of one side of the terminal body (2).