Cable induction power taking equipment

By using an installation mechanism and clamping components in the cable induction power collection device, the problem of connection loosening caused by cable swaying was solved, and a stable connection between the cable and the device was achieved.

CN121461625APending Publication Date: 2026-02-03GUIZHOU POWER GRID CO LTD
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Patent Information

Application Number
CN202410555376.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-07
Publication Date
2026-02-03

AI Technical Summary

Technical Problem

Existing cable induction power generation equipment is prone to loosening at the connection point when the cable sways.

Method used

The installation mechanism includes an upper housing, a lower housing, and a base, which are fixed by snap-fit ​​and buckle components, combined with clamping and tensioning components to ensure stable clamping of the cable.

Benefits of technology

This effectively solves the problem of the cable becoming loose at the connection point with the power supply equipment when the cable sways, ensuring a stable connection between the cable and the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses the technical field of power taking equipment, and particularly relates to cable induction power taking equipment, which comprises a mounting mechanism, a power taking mechanism and a power taking mechanism, and is characterized in that the mounting mechanism comprises an upper shell, a lower shell and a base, the upper shell is clamped with the lower shell through a clamping piece, and the base is used for fixing the whole device; when the cable is installed on the equipment main body, the clamping assembly moves towards the direction of the storage groove along the inclined plane groove, the multiple sets of clamping rods move towards the direction of the cable, so that the cable is clamped, and the cable is driven to move towards the direction of the storage groove while the clamping rods move towards the direction of the cable; the upper shell and the lower shell can be installed on the base at the same time through the buckling pieces when the upper shell and the lower shell are installed, then the base is fixed to a proper position, and the problem that when the cable shakes, the connecting position of the cable and the power taking equipment is prone to loosening can be effectively solved.
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Description

Technical Field

[0001] This invention relates to the technical field of power generation equipment, and more particularly to a cable induction power generation device. Background Technology

[0002] Cable induction power extraction is a new type of induction power extraction device that uses the electromagnetic energy induced around high-voltage transmission lines to convert into electrical energy, providing a stable power supply for electrical equipment installed nearby. It can ensure a long-term stable power supply for the load equipment and is suitable as a power supply device for electrical equipment such as online detection, inspection, and anti-theft devices on high-voltage transmission lines.

[0003] After the three-core power cable is connected to the inductive power-gathering equipment, the existing power-gathering equipment does not have a structure for auxiliary fixing of the cable. When the cable shakes, the connection between the cable and the power-gathering equipment is prone to loosening, causing malfunctions. Summary of the Invention

[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0005] In view of the above-mentioned problem that the connection between the cable and the power supply equipment is prone to loosening when the cable shakes, the present invention is proposed.

[0006] Therefore, the purpose of this invention is to provide a cable induction power generation device.

[0007] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an installation mechanism, including an upper housing, a lower housing, and a base, wherein the upper housing and the lower housing are snapped together by a snap-fit ​​component, and the lower housing is connected to the base by a snap-fit ​​component, and the base is used to fix the overall device; a main body mechanism, disposed at the end of the lower housing, the main body mechanism including a device body, an abutment component, a clamping component, and a tensioning component, wherein the abutment component is disposed on the side wall of the device body, and the abutment component and the tensioning component are used to control the clamping state of the clamping component, and the clamping component is used to clamp the outer wall of the cable.

[0008] In a preferred embodiment of the cable induction power generation device of the present invention, the upper housing has a first semi-circular hole on its side wall and a first clamping plate is fixedly connected to the top of the upper housing.

[0009] In a preferred embodiment of the cable induction power collection device of the present invention, the lower housing has a second semi-circular hole on its side wall, a second clamping plate is fixedly connected to the lower housing, an abutment rod is fixedly connected to the end of the lower housing away from the upper housing, and a locking block is fixedly connected to the side wall of the lower housing; the first clamping plate is located directly above the second clamping plate, and the first clamping plate and the second clamping plate cooperate to clamp and fix the cable.

[0010] In a preferred embodiment of the cable induction power generation device of the present invention, the clamping component includes a clamping cylinder and a clamping rod, the clamping cylinder is fixedly connected to the upper housing, the clamping rod is fixedly connected to the lower housing, and the clamping cylinder and the clamping rod are adapted to each other.

[0011] In a preferred embodiment of the cable induction power generation device of the present invention, the base has a receiving cavity, the end of the base has a through hole, and the base has a connecting plate around its perimeter.

[0012] In a preferred embodiment of the cable induction power collection device of the present invention, the fastener is disposed in the receiving cavity of the base, the fastener includes a fixing rod, a strip groove, a return spring and a crank arm, the fixing rod is fixedly connected to the receiving cavity, the strip groove is disposed on the fixing rod, the return spring is disposed between the strip groove and the base, one end of the crank arm is disposed on the strip groove, and the crank arm passes through the through hole at the end of the base.

[0013] As a preferred embodiment of the cable induction power collection device of the present invention, the device body has a plug hole on its side wall and an inclined groove inside the device body. One end of the inclined groove is connected to the plug hole and the other end of the inclined groove is connected to the storage groove.

[0014] In a preferred embodiment of the cable induction power collection device of the present invention, the contact component includes a fixing ring and a contact plate. The fixing ring is fixedly connected to the insertion hole, the contact plate is disposed on the inner wall of the fixing ring, and the elastic rope of the contact plate is connected to the inner wall of the fixing ring.

[0015] In a preferred embodiment of the cable induction power collection device of the present invention, the clamping assembly includes a semicircular ring, a first spring, and a clamping rod. The semicircular ring has a spring groove, the first spring is disposed in the spring groove, and the clamping rod is fixedly connected to the first spring. The clamping rod includes a horizontal section and a raised section. The end face of the horizontal section is provided with a first inclined surface, and the end face of the raised section is provided with a second inclined surface. The first inclined surface and the second inclined surface are connected.

[0016] In a preferred embodiment of the cable induction power collection device of the present invention, the tensioning assembly includes a baffle and a tension spring. The tension spring is fixedly connected to one end of the receiving groove, and the other end of the tension spring is fixedly connected to the baffle. The baffle is disposed in the receiving groove, and the baffle is connected to the semi-circular ring by a connecting rope.

[0017] The beneficial effects of this invention are as follows: When the cable is installed on the main body of the equipment, as the clamping assembly moves along the inclined groove towards the receiving groove, multiple sets of clamping rods move towards the cable, thereby clamping the cable. When the clamping rods move towards the cable, they simultaneously drive the cable towards the receiving groove, thus reducing the occurrence of poor contact between the cable interface and the connection point of the main body of the equipment. When installing the upper and lower housings, the base can be installed simultaneously through the fasteners, and then the base can be fixed in a suitable position, which can effectively solve the problem of the cable and the power receiving equipment easily becoming loose when the cable shakes. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein:

[0019] Figure 1 This is a schematic diagram of the overall structure of the cable induction power collection device of the present invention.

[0020] Figure 2 This is a partial structural schematic diagram of the cable induction power collection device of the present invention.

[0021] Figure 3 This is a partial structural cross-section of the cable induction power collection device of the present invention. Figure 1 .

[0022] Figure 4 This is a partial structural enlargement of the cable induction power collection device of the present invention. Figure 1 .

[0023] Figure 5 This is a partial structural cross-section of the cable induction power collection device of the present invention. Figure 2 .

[0024] Figure 6 This is a top view of the lower housing of the cable induction power collection device of the present invention.

[0025] Figure 7 This is a schematic diagram of the clamping assembly of the cable induction power generation device of the present invention.

[0026] Figure 8Schematic diagram of the contact component of the cable induction power collection device of the present invention Figure 1 .

[0027] Figure 9 Schematic diagram of the contact component of the cable induction power collection device of the present invention Figure 2 .

[0028] Figure 10 This is a cross-sectional view of the main body of the cable induction power collection device of the present invention.

[0029] In the diagram: 100, mounting mechanism; 101, upper housing; 101a, first semi-circular hole; 101b, first clamping plate; 102, lower housing; 102a, second semi-circular hole; 102b, second clamping plate; 102c, abutting rod; 102d, locking block; 103, base; 103a, receiving cavity; 103b, through hole; 103c, connecting plate; 104, locking component; 104a, locking sleeve; 104b, locking rod; 105, fastener; 105a, fixing rod; 105b... 105c, return spring; 105d, crank arm; 200, main body mechanism; 201, main body of equipment; 201a, insertion hole; 201b, inclined groove; 201c, storage groove; 202, abutting assembly; 202a, fixing ring; 202b, abutting plate; 203, clamping assembly; 203a, semi-circular ring; 203b, first spring; 203c, clamping rod; 203d, spring groove; 204, tensioning assembly; 204a, baffle; 204b, tension spring. Detailed Implementation

[0030] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0031] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0032] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.

[0033] Secondly, the present invention is described in detail with reference to the schematic diagrams. When detailing the embodiments of the present invention, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not according to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of the present invention. In addition, actual fabrication should include three-dimensional spatial dimensions of length, width, and depth.

[0034] Example 1

[0035] Reference Figures 1 to 5 This invention provides a cable induction power collection device, comprising an installation mechanism 100, including an upper housing 101, a lower housing 102, and a base 103. The upper housing 101 and the lower housing 102 are engaged by a snap-fit ​​member 104, and the lower housing 102 is connected to the base 103 by a buckle member 105. The base 103 is used to fix the overall device. A main body mechanism 200 is disposed at the end of the lower housing 102. The main body mechanism 200 includes a device body 201, an abutment component 202, a clamping component 203, and a tensioning component 204. The abutment component 202 is disposed on the side wall of the device body 201. Component 204 is used to control the clamping state of clamping component 203, which is used to clamp the outer wall of cable X. It is worth noting that after the upper housing 101 and lower housing 102 are installed, they can protect the main body 201 of the equipment and cable X, and at the same time, they can clamp and fix cable X. When pressing the upper housing 101 to install the upper housing 101 and lower housing 102, the lower housing 102 can be connected to the base 103 through the buckle 105, and then the base 103 can be fixed in a suitable position. This can effectively solve the problem that the connection between cable X and power receiving equipment is prone to loosening when cable X shakes.

[0036] Specifically, the upper housing 101 has a first semi-circular hole 101a on its side wall and a first clamping plate 101b fixedly connected to the top of the upper housing 101. It is worth noting that the first semi-circular hole 101a is the entrance for the cable X to enter the upper housing 101, and the first clamping plate 101b is used to clamp the cable X entering the upper housing 101.

[0037] The lower housing 102 has a second semi-circular hole 102a on its side wall, a second clamping plate 102b fixedly connected to the lower housing 102, an abutment rod 102c fixedly connected to the end of the lower housing 102 away from the upper housing 101, and a locking block 102d fixedly connected to the side wall of the lower housing 102. The first clamping plate 101b is located directly above the second clamping plate 102b. The first clamping plate 101b and the second clamping plate 102b cooperate to clamp and fix the cable X. It is worth noting that the first clamping plate 101b and the second clamping plate 102b cooperate to clamp the cable X. The first semi-circular hole 101a and the second semi-circular hole 102a fit together to form a complete circular hole for the cable X to enter between the upper housing 101 and the lower housing 102.

[0038] Furthermore, the base 103 has a receiving cavity 103a, a through hole 103b at the end of the base 103, and a connecting plate 103c around the base 103. It is worth noting that the receiving cavity 103a is used to receive the buckle 105, and the connecting plate 103c around the base 103 is used to fix the base 103 in a suitable position.

[0039] Operation process: When it is necessary to fix the power supply device in a suitable position, first press the upper housing 101. When the upper housing 101 moves downward, the locking rod 104b of the lower housing 102 is locked into the locking sleeve 104a of the upper housing 101. At this time, the upper housing 101 and the lower housing 102 are installed. The cable X is located between the first semicircular hole 101a and the second semicircular hole 102a. At the same time, the cable X is also located between the first clamping plate 101b and the second clamping plate 102b. Rubber pads can be set at the ends of the first clamping plate 101b and the second clamping plate 102b to prevent the cable X from falling off when it is supported by the first clamping plate 101b and the second clamping plate 102b.

[0040] Example 2

[0041] Reference Figures 1 to 10 This embodiment differs from the first embodiment in that: the snap-fit ​​component 104 includes a snap-fit ​​cylinder 104a and a snap-fit ​​rod 104b. The snap-fit ​​cylinder 104a is fixedly connected to the upper housing 101, and the snap-fit ​​rod 104b is fixedly connected to the lower housing 102. The snap-fit ​​cylinder 104a and the snap-fit ​​rod 104b are adapted to each other. It is worth noting that the upper housing 101 and the lower housing 102 are connected and fixed by snapping the snap-fit ​​rod 104b into the snap-fit ​​cylinder 104a.

[0042] Furthermore, the latching member 105 is disposed within the receiving cavity 103a of the base 103. The latching member 105 includes a fixing rod 105a, a strip groove 105b, a return spring 105c, and a crank arm 105d. The fixing rod 105a is fixedly connected within the receiving cavity 103a. The strip groove 105b is disposed on the fixing rod 105a. The return spring 105c is disposed between the strip groove 105b and the base 103. One end of the crank arm 105d is disposed on the strip groove 105b, and the crank arm 105d passes through the base. It is worth noting that the through hole 103b at the end of 103 is hinged to the groove 105b. When the upper housing 101 presses down on the lower housing 102, the abutment rod 102c at the bottom of the lower housing 102 presses down on the groove 105b. The downward movement of the groove 105b drives the crank arm 105d to move downward at the same time and deflect it, so that the end of the crank arm 105d is engaged in the locking block 102d on the side wall of the lower housing 102, thereby fixing the base 103 to the lower housing 102.

[0043] The rest of the structure is the same as in Example 1.

[0044] Operation process: When the upper housing 101 is pressed down to connect with the lower housing 102, the lower housing 102 moves towards the base 103. As the lower housing 102 moves towards the base 103, the abutment rod 102c at the bottom of the lower housing 102 moves downward along the side wall of the fixing rod 105a of the base 103. When the abutment rod 102c moves downward, it presses the strip groove 105b and moves downward at the same time. When the strip groove 105b moves downward, it drives the crank arm 105d to move downward and deflect until the upper housing 101 and the lower housing 102 come into contact. At this time, the end of the crank arm 105d is inserted into the locking blocks 102d on both sides of the lower housing 102. Thus, the installation of the upper housing 101, the lower housing 102 and the base 103 is completed. The base 103 can be installed in a suitable position through the connecting plates 103c around the base 103.

[0045] When it is necessary to disassemble the mounting mechanism 100, the end of the crank arm 105d can be separated from the locking block 102d, and then the upper housing 101 and the lower housing 102 can be pulled upwards to separate the upper housing 101, the lower housing 102 and the base 103.

[0046] Example 3

[0047] Reference Figures 5 to 10This embodiment differs from the previous embodiments in that: the side wall of the device body 201 has a plug-in hole 201a, and the inside of the device body 201 has a sloping groove 201b. One end of the sloping groove 201b is connected to the plug-in hole 201a, and the other end of the sloping groove 201b is connected to the storage groove 201c. It is worth noting that when the clamping assembly 203 moves along the sloping groove 201b toward the storage groove 201c, multiple sets of clamping rods 203c move toward the cable X, thereby clamping the cable X. When the clamping rods 203c move toward the cable X, they simultaneously drive the cable X toward the storage groove 201c, thereby reducing the occurrence of poor contact at the connection between the cable X interface and the device body 201.

[0048] Specifically, the abutment component 202 includes a fixing ring 202a and an abutment plate 202b. The fixing ring 202a is fixedly connected to the insertion hole 201a, and the abutment plate 202b is disposed on the inner wall of the fixing ring 202a. The elastic rope of the abutment plate 202b is connected to the inner wall of the fixing ring 202a. It is worth noting that there is a gap between the fixing ring 202a and the insertion hole 201a, which is adapted to the semi-circular ring 203a. This allows the semi-circular ring 203a to be positioned between the fixing ring 202a and the insertion hole 201a when it is not in the clamping state. At the same time, the fixing ring 202a is also provided with multiple sets of through rod grooves adapted to the clamping rod 203c, so that when the clamping component 203 is not in the clamping state, the clamping rod 203c can extend out of the fixing ring 202a through the through rod grooves.

[0049] It should be noted that the purpose of fixing the elastic rope between the contact plate 202b and the fixing ring 202a is so that when the contact plate 202b is located at the storage groove 201c, it can move along the surface of the inclined groove 201b to the junction of the first and second inclined surfaces of the clamping rod 203c, that is, return to the initial state, under the elastic force of the elastic rope.

[0050] The clamping assembly 203 includes a semi-circular ring 203a, a first spring 203b, and a clamping rod 203c. The semi-circular ring 203a has a spring groove 203d, the first spring 203b is disposed in the spring groove 203d, and the clamping rod 203c is fixedly connected to the first spring 203b. The clamping rod 203c includes a horizontal section and a raised section. The end face of the horizontal section is provided with a first inclined surface, and the end face of the raised section is provided with a second inclined surface. The first inclined surface and the second inclined surface are connected. It is worth noting that when no cable X is in contact with the contact plate 202b, the contact plate 202b is located at the junction of the first inclined surface and the second inclined surface. At this time, the contact plate 202b opens the clamping rod 203c on the semi-circular ring 203a, which is conducive to the cable X being smoothly inserted into the insertion hole 201a.

[0051] Furthermore, the tensioning assembly 204 includes a baffle 204a and a tension spring 204b. The tension spring 204b is fixedly connected to one end of the receiving groove 201c, and the other end of the tension spring 204b is fixedly connected to the baffle 204a. The baffle 204a is disposed within the receiving groove 201c, and the baffle 204a is connected to the semi-circular ring 203a by a connecting rope. It is worth noting that the purpose of setting the connecting rope between the baffle 204a and the semi-circular ring 203a is so that when the baffle 204a moves along the inner wall of the receiving groove 201c, it can... The semicircular ring 203a moves along the inner wall of the inclined groove 201b. When the semicircular ring 203a moves along the inclined groove 201b, it helps the clamping rod 203c to clamp the cable X. The receiving groove 201c is not only to allow the baffle 204a to move along its inner wall, but also to receive the contact plate 202b, so that the contact plate 202b no longer blocks the cable X interface. When the contact plate 202b enters the receiving groove 201c, the cable X interface can be connected to the connection point of the equipment body 201.

[0052] The rest of the structure is the same as in Example 2.

[0053] Operation process: When inserting the interface of cable X into the connection of the device body 201, first insert cable X into the insertion hole 201a of the device body 201. As cable X is inserted into the insertion hole 201a, the contact plate 202b moves simultaneously along the inclined groove 201b towards the receiving groove 201c. When the contact plate 202b is not at the connection between the first and second inclined surfaces, the clamping plate, under the elastic force of the first spring 203b... Its end returns to the spring groove 203d of the semicircular ring 203a. At this time, the clamping plate is located on the outer wall of the cable X. As the cable X pushes the contact plate 202b to move to the receiving groove 201c, the cable X pushes the contact plate 202b into the receiving groove 201c through the inclined arc surface at the end of the contact plate 202b. When the contact plate 202b pushes into the receiving groove 201c, it pushes the baffle 204a to move towards the inner wall end of the receiving groove 201c. The semicircular ring 203a is moved along the inclined groove 201b towards the storage groove 201c by the connecting rope. When the semicircular ring 203a moves, the clamping rod 203c moves along the inclined groove 201b at the same time. When the clamping rod 203c moves along the inclined groove 201b, it clamps the cable X under the spatial restriction of the inclined groove 201b and moves the cable X towards the storage groove 201c. This is beneficial for the cable X interface to be deeply inserted into the connection of the main body 201. The cable X is clamped at the insertion hole 201a of the main body 201 to achieve the first clamping of the cable X. When the upper shell 101 and the lower shell 102 are engaged, the cable X is clamped again by the first clamping plate 101b and the second clamping plate 102b. Under the double clamping action, the problem of the cable X loosening at the connection between the cable X and the power supply equipment when the cable X shakes can be effectively solved.

[0054] When it is necessary to remove cable X from the main body 201 of the equipment, firstly, the clamping rod 203c is pushed away in the opposite direction of clamping cable X. At this time, the clamping rod 203c no longer clamps cable X, and cable X can be pulled out from the plug hole 201a. After cable X is pulled out from the plug hole 201a, the baffle 204a pushes the contact plate 202b out of the storage groove 201c under the action of the tension spring 204b. After the contact plate 202b moves out of the storage groove 201c, it moves along the inclined groove 201b under the tension of the elastic rope to the connection between the first inclined surface and the second inclined surface of the clamping rod 203c. At this time, the main body mechanism 200 returns to the initial state.

[0055] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0056] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the currently considered best mode for carrying out the invention, or those features that are not relevant to implementing the invention) may be omitted.

[0057] It should be understood that numerous specific implementation decisions can be made during the development of any practical implementation, such as in any engineering or design project. Such development efforts may be complex and time-consuming, but for those skilled in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.

[0058] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A cable inductive power pickup apparatus, characterized by: Including, The installation mechanism (100) comprises an upper shell (101), a lower shell (102) and a base (103), the upper shell (101) is clamped with the lower shell (102) through a clamping piece (104), the lower shell (102) is connected with the base (103) through a buckle piece (105), and the base (103) is used for fixing the overall device; The main body mechanism (200) is arranged at the end of the lower shell (102), and the main body mechanism (200) comprises a device main body (201), a resisting assembly (202), a clamping assembly (203) and a tensioning assembly (204), the resisting assembly (202) is arranged on the side wall of the device main body (201), the resisting assembly (202) and the tensioning assembly (204) are used for controlling the clamping state of the clamping assembly (203), and the clamping assembly (203) is used for clamping the outer wall of the cable.

2. The cable induction power pickup of claim 1, wherein: The upper shell (101) is provided with a first semicircular hole (101a) in the side wall, and the first clamping plate (101b) is fixedly connected to the top of the upper shell (101).

3. The cable induction power pickup of claim 2, wherein: The lower shell (102) is provided with a second semicircular hole (102a) in the side wall, the second clamping plate (102b) is fixedly connected to the lower shell (102), the resisting rod (102c) is fixedly connected to the end of the lower shell (102) away from the upper shell (101), and the clamping block (102d) is fixedly connected to the side wall of the lower shell (102). The first clamping plate (101b) is arranged directly above the second clamping plate (102b), and the first clamping plate (101b) and the second clamping plate (102b) are matched to clamp and fix the cable.

4. The cable induction power pickup of claim 3, wherein: The clamping piece (104) comprises a clamping barrel (104a) and a clamping rod (104b), the clamping barrel (104a) is fixedly connected with the upper shell (101), the clamping rod (104b) is fixedly connected with the lower shell (102), and the clamping barrel (104a) is matched with the clamping rod (104b).

5. The cable inductive power pickup apparatus of claim 4, wherein: The base (103) is provided with a containing cavity (103a) in the inside, the base (103) is provided with a through hole (103b) at the end, and the base (103) is provided with a connecting plate (103c) around.

6. The cable induction power pickup of claim 5, wherein: The buckle piece (105) is arranged in the containing cavity (103a) of the base (103), the buckle piece (105) comprises a fixed rod (105a), a strip-shaped groove (105b), a reset spring (105c) and a crank arm (105d), the fixed rod (105a) is fixedly connected in the containing cavity (103a), the strip-shaped groove (105b) is arranged on the fixed rod (105a), the reset spring (105c) is arranged between the strip-shaped groove (105b) and the base (103), one end of the crank arm (105d) is arranged on the strip-shaped groove (105b), and the crank arm (105d) passes through the through hole (103b) at the end of the base (103).

7. The cable induction power pickup of claim 1 or 6, wherein: The equipment body (201) side wall is provided with a plug hole (201a), and the equipment body (201) is internally provided with a bevel groove (201b), one end of the bevel groove (201b) is communicated with the plug hole (201a), and the other end of the bevel groove (201b) is communicated with a receiving groove (201c).

8. The cable induction power pickup of claim 7, wherein: The abutting component (202) comprises a fixed ring (202a) and an abutting plate (202b), the fixed ring (202a) is fixedly connected with the plug hole (201a), and the abutting plate (202b) is arranged on the inner wall of the fixed ring (202a).

9. The cable induction power pickup of claim 8, wherein: The clamping assembly (203) comprises a semicircle ring (203a), a first spring (203b) and a clamping rod (203c), the semicircle ring (203a) is provided with a spring groove (203d), the first spring (203b) is arranged in the spring groove (203d), and the clamping rod (203c) is fixedly connected with the first spring (203b). The clamping rod (203c) comprises a horizontal section and a raised section, the end surface of the horizontal section is provided with a first inclined surface, the end surface of the raised section is provided with a second inclined surface, and the first inclined surface is connected with the second inclined surface.

10. The cable inductive power pickup apparatus of claim 9, wherein: The tensioning assembly (204) comprises a baffle (204a) and a tension spring (204b), the tension spring (204b) is fixedly connected at one end of the receiving groove (201c), the other end of the tension spring (204b) is fixedly connected with the baffle (204a), the baffle (204a) is arranged in the receiving groove (201c), and the baffle (204a) and the semicircle ring (203a) are connected through a connecting rope.