CN119726530A - A bus duct capable of sliding to take electricity - Google Patents

A bus duct capable of sliding to take electricity Download PDF

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Publication number
CN119726530A
CN119726530A CN202510212953.2A CN202510212953A CN119726530A CN 119726530 A CN119726530 A CN 119726530A CN 202510212953 A CN202510212953 A CN 202510212953A CN 119726530 A CN119726530 A CN 119726530A
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China
Prior art keywords
guide
plates
blocks
shell
sliding
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CN202510212953.2A
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Chinese (zh)
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CN119726530B (en
Inventor
马见雄
王林
陈思远
王海师
戴晶
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Zhenjiang Gardermoen Intelligent Power Technology Co ltd
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Zhenjiang Gardermoen Intelligent Power Technology Co ltd
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Publication of CN119726530B publication Critical patent/CN119726530B/en
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Abstract

The invention discloses a bus duct capable of taking electricity in a sliding way, which relates to the field of bus duct connection and comprises a wire duct shell, wherein two or more wire duct shells are spliced to form a wire duct group, two ends of the wire duct shell are movably provided with a plurality of conductive plates, two ends of the wire duct shell are provided with two guide shells, one end of each guide shell is provided with a rectangular groove in a penetrating way, the inner side of each rectangular groove is movably provided with an insulating sleeve, one end of each conductive plate is fixedly connected with one end of the corresponding insulating sleeve, two ends of each insulating sleeve are fixedly provided with two guide blocks, one end of each guide shell is provided with a guide groove in a penetrating way.

Description

Bus duct capable of taking electricity in sliding mode
Technical Field
The invention relates to the field of bus duct connection, in particular to a bus duct capable of taking electricity in a sliding mode.
Background
With the advent of modern engineering facilities and equipment, the power consumption of each industry has increased rapidly, especially the appearance of numerous high-rise buildings and large-scale factory workshops, and the bus duct has become a new type of distribution wire, and because of its different types of bus ducts, its mode of operation and function are also different, including sliding power taking bus duct, sliding power taking bus duct allows power taking operation in different positions of the bus, and does not need to carry out complicated adjustment or modification to the whole system. The design is particularly suitable for occasions needing frequent change of power supply points or flexible adjustment of power distribution;
however, when the bus duct is actually installed, the end parts of the bus duct are generally a plurality of copper plates or aluminum plates for conducting and conveying, but the copper plates at the end parts of the bus duct are generally fixedly arranged, so that when the two bus ducts are in butt joint, the bus duct is higher in installation requirement for ensuring that the two copper plates are in staggered contact, the connection direction of the bus duct needs to be controlled deliberately to finish the matched connection of the copper plates on the two bus ducts, and the installation mode is complicated and higher in operation requirement;
therefore, it is necessary to provide a bus duct capable of taking electricity in a sliding manner to solve the above-mentioned problems.
Disclosure of Invention
The invention aims to provide a bus duct capable of taking electricity in a sliding manner, so that the problem that copper plates at the end parts of two bus ducts are high in butt joint requirement when being in butt joint is solved.
The bus duct comprises a wire duct shell, two or more wire duct shells are spliced to form a wire duct group, a plurality of conducting plates are movably arranged at two ends of the wire duct shell, two guide shells are arranged at two ends of the wire duct shell, one end of each guide shell is provided with a rectangular groove in a penetrating mode, an insulating sleeve is movably arranged on the inner side of each rectangular groove, and one end of each conducting plate is fixedly connected with one end of the corresponding insulating sleeve;
two guide blocks are fixedly arranged at two ends of the insulating sleeve, one end of the guide shell is provided with a guide groove in a penetrating mode, the guide blocks slide on the inner sides of the corresponding guide grooves, and the cross sections of the guide grooves and the guide blocks are rectangular;
The rectangular groove is characterized in that a plurality of clamping blocks are symmetrically and fixedly arranged on the inner side of the rectangular groove, inclined planes are formed in one corresponding end of each clamping block, two abutting blocks are symmetrically and fixedly arranged at two ends of each insulating sleeve, each abutting block is in an isosceles trapezoid shape, and the outer sides of the abutting blocks are clamped on the inner sides of the corresponding two inclined planes.
Preferably, two arc grooves are formed in one end of the clamping block, corresponding to the abutting block, a plurality of arc plates are fixedly arranged on the outer side of the abutting block, and the arc plates are clamped on the inner sides of the corresponding arc grooves.
Preferably, the inside of the wire casing is fixedly provided with two groups of buses, the inside of the wire casing is movably provided with a plurality of sliding power connection plates for connecting the two groups of buses, the outer sides of the sliding power connection plates and the buses are provided with a plurality of contact grooves, and the sliding power connection plates and the buses are connected through the contact grooves in a matched mode.
Preferably, the two ends of the sliding power connection plate are fixedly provided with insulating plates, the upper end and the lower end of each insulating plate are fixedly provided with a plurality of guide rods, a plurality of special-shaped grooves are formed in the inner side of the wire slot shell, the guide rods slide on the inner sides of the special-shaped grooves, a plurality of jacking blocks are fixedly arranged on the outer sides of the buses, and the jacking blocks are arranged in a right trapezoid shape.
Preferably, two electric telescopic rods are fixedly arranged on the inner side of the wire slot shell, a connecting plate is fixedly arranged at the output end of each electric telescopic rod, and one end of each connecting plate is fixedly connected with one end of a corresponding insulating plate.
Preferably, the conical surface is arranged at one end, far away from the bus, of the conductive plate, a plurality of laminating grooves are symmetrically arranged at the outer side of the conductive plate, and the inner side, far away from the bus, of the laminating grooves is provided with the mounting opening.
Preferably, a baffle is fixedly arranged at one end of the wire slot shell, and connecting sleeves are connected at the end parts of the two wire slot shells through bolts;
The end part of the wire slot shell is fixedly provided with a plurality of insulating blocks, and one end of each insulating block is fixedly connected with one end of the corresponding guide shell.
Preferably, a round angle is formed on one side, close to the abutting block, of the clamping block.
Preferably, the two ends of the special-shaped groove are arranged in parallel, and the middle part of the special-shaped groove is arranged in an inclined manner.
Preferably, a current sensor and a temperature sensor are arranged on the inner wall of the connecting sleeve, and the current sensor and the temperature sensor are connected with the electric telescopic rod through a controller.
The invention has the technical effects and advantages that:
1. The insulating sleeve is arranged on the inner side of the guide shell in a sliding manner, so that when two wire slot shells are installed, the installation mode of the conductive plates is not needed to be considered, and only the wire slot shells are needed to be directly installed;
2. When two conducting plates are connected, the two conducting plates move by a mutual moving distance, so that the abutting blocks enter between the two clamping blocks, the conducting plates are fixed by the shape arrangement of the abutting blocks, the conducting plates are fixed by the arrangement of the arc plates and are moved to the position, so that the fixing of the conducting plates is ensured, the conducting plates are prevented from being irreversibly loosened due to the outside, gaps are formed, the circuit is disconnected, and the safe use of the conducting plates is synchronously ensured while the conducting plates are automatically installed;
3. Through the arrangement of the sliding power connection plate, the corresponding bus ducts can be controlled to be powered off manually, and when one bus duct fails, the corresponding bus duct can be powered off pertinently, so that the power outage range is reduced, the power outage range during maintenance of the bus ducts is reduced, and the sliding power connection plate is utilized for carrying out circuit connection of the sliding control bus;
4. Through the setting of laminating groove, when the mutual butt of current conducting plate, can increase the laminating intensity between two current conducting plates through the cooperation of laminating groove and conical surface, through the setting of laminating groove, increase the area of contact of two current conducting plates, and then increase its joint strength;
5. The contact area between the two conductive plates is enlarged through the arrangement of the lamination grooves, so that the larger the cross section area is, the resistance is reduced, the conductivity of the contact point is improved, the larger contact area means that more electrons can smoothly flow from one conductive plate to the other conductive plate, and the resistance generated by accumulation or lack of electrons at the contact point is reduced;
6. Through the setting of jacking piece, when the slip connects the electric plate to remove, will slide and connect the electric plate and originally contact the one side of generating line and break away from the generating line completely, and then in slip and connect electric plate and generating line break away from the period, prevent that conductive metal from producing galvanic corrosion, do not contact each other between the conductor, can not form the condition of electrochemical corrosion between them, consequently be difficult to take place galvanic corrosion, increase the life of slip and connect electric plate and generating line.
Drawings
Fig. 1 is a schematic diagram of a bus duct capable of taking electricity in a sliding manner.
Fig. 2 is a schematic diagram of a trunking set according to the present invention.
Fig. 3 is a schematic view of the slot housing of the present invention.
Fig. 4 is a schematic view of the internal structure of the trunking casing of the present invention.
Fig. 5 is a schematic diagram of two conductive plate structures according to the present invention.
Fig. 6 is a schematic view of a bus structure of the present invention.
Fig. 7 is a schematic view of the structure of the guide housing of the present invention.
Fig. 8 is a schematic view of the structure of the abutment block and the clamping block according to the present invention.
Fig. 9 is a schematic diagram of a conductive plate structure according to the present invention.
FIG. 10 shows a variant of the present invention the groove structure is schematically shown.
Fig. 11 is a schematic view of a connecting bus structure of a sliding electric board according to the present invention.
Fig. 12 is a schematic view of a sliding circuit board structure according to the present invention.
Fig. 13 is a schematic view of the internal structure of the connecting sleeve of the present invention.
The wire slot group comprises a wire slot shell, a wire slot (1), a baffle plate, a connecting sleeve, a current sensor, a temperature sensor, a bus bar, a conductive plate, a sliding power connection plate, a contact slot, a insulating plate, a guide rod, a special-shaped slot, a lifting block, a 408, a connecting plate, a 409, an electric telescopic rod, a5, a guide shell, a 6, a rectangular slot, a 7, an insulating sleeve, a 8, a guide slot, a 9, a guide block, a 10, a clamping block, a 101, a round angle, a 11, an inclined plane, a 12, an arc-shaped groove, a 13, an abutting block, a 14, an arc-shaped plate, a 18, a conical surface, a 19, an abutting slot, a 20, an insulating block and a 21, and a mounting opening.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention provides a bus duct capable of taking electricity in a sliding manner, which is shown in fig. 1-13, and comprises a duct housing 2, two or more duct housings 2 are spliced to form a duct group 1, one end of each duct housing 2 is fixedly provided with a baffle 201, the baffle 201 is used for protecting a copper plate for transmitting power, the end parts of the two duct housings 2 are connected by bolts, the connecting sleeve 3 is used for sealing the joint of the two duct housings 2 and reinforcing the joint of the two duct housings 2, the duct housings 2 are sealed, and the connecting sleeve 3 is of the prior art and is not described in detail.
The two ends of the trunking casing 2 are movably provided with a plurality of conductive plates 401, wherein the conductive plates 401 are generally copper plates or aluminum plates as conductors for conveying power, the conductive plates 401 are in the prior art, and not described too much, and the two ends of the trunking casing 2 are provided with two guide shells 5.
Rectangular grooves 6 are formed in one end of the guide shell 5 in a penetrating mode, insulating sleeves 7 are movably arranged on the inner sides of the rectangular grooves 6, one ends of the conductive plates 401 are fixedly connected with one ends of the corresponding insulating sleeves 7, and the guide shell 5 is made of the same material as the insulating sleeves 7 to ensure insulativity in current conduction.
Two guide blocks 9 are fixedly arranged at two ends of the insulating sleeve 7, a guide groove 8 is formed in one end of the guide shell 5 in a penetrating mode, the guide blocks 9 slide on the inner sides of the corresponding guide grooves 8, the cross sections of the guide grooves 8 and the guide blocks 9 are rectangular, a conical surface 18 is formed in one end, far away from the bus 4, of the conductive plate 401, and the moving direction of the guide blocks 9 is guaranteed through the shape arrangement of the guide grooves 8 and the guide blocks 9.
The insulating sleeve 7 is arranged on the inner side of the guide shell 5 in a sliding manner, so that when the two wire slot shells 2 are installed, the installation mode of the conductive plates 401 is not needed to be considered, and the wire slot shells 2 are only needed to be directly installed, the operation is simple, and when the two conductive plates 401 are contacted, the conductive plates 401 on two sides automatically retract through the arrangement of the conical surface 18, and the staggered lamination is carried out;
The inner side of the rectangular groove 6 is symmetrically and fixedly provided with a plurality of clamping blocks 10, one end corresponding to the clamping blocks 10 is provided with an inclined plane 11, two ends of the insulating sleeve 7 are symmetrically and fixedly provided with two abutting blocks 13, one end corresponding to the abutting blocks 13 of the clamping blocks 10 is provided with two arc-shaped grooves 12, the abutting blocks 13 are arranged in an isosceles trapezoid shape, and the outer sides of the abutting blocks 13 are clamped on the inner sides of the two corresponding inclined planes 11.
When two conductive plates 401 are connected, the two conductive plates 401 move by a mutual moving distance, so that the abutting blocks 13 enter between the two clamping blocks 10, the conductive plates 401 are fixed by the shape setting of the abutting blocks 13, the conductive plates 401 are fixed and stopped by the arc plates 14, so that the fixing of the conductive plates 401 is ensured, the conductive plates 401 are prevented from loosening to generate gaps, a circuit is disconnected, and the safe use of the conductive plates 401 is synchronously ensured while the conductive plates 401 are automatically installed;
The outer side of the abutting block 13 is fixedly provided with a plurality of arc plates 14, and the arc plates 14 are clamped on the inner sides of the corresponding arc grooves 12.
When the arc-shaped plate 14 is clamped in the arc-shaped groove 12, the position of the conductive plate 401 is completely fixed, and the moving range of the insulating sleeve 7 is larger than the thickness of the single conductive plate 401.
The inside of the wire casing 2 is fixedly provided with two groups of buses 4, the inside of the wire casing 2 is movably provided with a plurality of sliding power connection plates 402 for connecting the two groups of buses 4, the materials of the sliding power connection plates 402 are the same as those of the buses 4, the conductive materials are prevented from forming a spontaneous battery, and active metals are caused to be corroded as anodes.
The outer sides of the sliding power connection plate 402 and the bus bar 4 are provided with a plurality of contact grooves 403, the sliding power connection plate 402 and the bus bar 4 are connected in a matched mode through the contact grooves 403, and the contact area is increased through the arrangement of the contact grooves 403, so that the resistance is reduced.
The two ends of the sliding power connection plate 402 are fixedly provided with an insulating plate 404, the upper end and the lower end of the insulating plate 404 are fixedly provided with a plurality of guide rods 405, the inner side of the wire slot housing 2 is provided with a plurality of special-shaped grooves 406, the two ends of the special-shaped grooves 406 are arranged in parallel, the middle part of the special-shaped grooves is obliquely arranged, the guide rods 405 slide on the inner side of the special-shaped grooves 406, a plurality of jacking blocks 407 are fixedly arranged on the outer side of one group of buses 4, the jacking blocks 407 are made of rubber insulation materials, are common materials of the existing insulators, and are not described in excess here.
The jacking block 407 is in a right trapezoid shape, two electric telescopic rods 409 are fixedly arranged on the inner side of the wire slot shell 2, a connecting plate 408 is fixedly arranged at the output end of each electric telescopic rod 409, and one end of each connecting plate 408 is fixedly connected with one end of the corresponding insulating plate 404.
Through the setting of sliding electric plate 402, and then can control corresponding bus duct artificially and carry out the outage, and then when one of them bus duct breaks down, can pertinently cut off the power supply to it, reduce the power failure scope when maintaining the bus duct.
The inner wall of the connecting sleeve 3 is provided with a current sensor 301 and a temperature sensor 302, the current sensor 301 and the temperature sensor 302 are connected with an electric telescopic rod 409 through a controller, and the controller is in the prior art and will not be described in detail here.
And be provided with the current sensor 301 of monitoring busbar 4 electric current on adapter sleeve 3's inner wall, be connected through the controller between current sensor 301 and the electric telescopic handle 409, set for the safe threshold of passing through electric current on the busbar 4, when current sensor 301 monitored that the electric current that passes through on the busbar 4 exceeded its safe threshold, then control electric telescopic handle 409 through the controller and start for electric telescopic handle 409 drives insulation board 404 and remove, and then make insulation board 404 drive slip and connect electric plate 402 and remove, make slip and connect electric plate 402 disconnection two corresponding busbar 4's circuit connection, play the purpose of outage, avoid busbar 4 to wholly damage.
In the invention, the temperature sensor 302 is also arranged on the inner wall of the connecting sleeve 3, the temperature sensor 302 is connected with the electric telescopic rod 409 through the controller, the safety threshold of the temperature in the using process of the bus 4 is set, when the temperature sensor 302 monitors that the temperature near the bus 4 exceeds the safety threshold, the electric telescopic rod 409 is controlled by the controller to start, so that the electric telescopic rod 409 drives the insulating plate 404 to move, and then the insulating plate 404 drives the sliding power connection plate 402 to move, the sliding power connection plate 402 breaks the circuit connection of the two corresponding buses 4, the purpose of power failure is achieved, the integral damage of the bus 4 is avoided, and the purposes of automatically monitoring faults and stopping losses in time are achieved.
Through the arrangement of the jacking blocks 407, when the sliding power receiving plate 402 moves, one surface of the sliding power receiving plate 402 originally contacting the bus bar 4 is completely separated from the bus bar 4, so that during the separation of the sliding power receiving plate 402 and the bus bar 4, galvanic corrosion of conductive metal is prevented, conductors are not contacted with each other, and electrochemical corrosion conditions are not formed between the conductors, so that galvanic corrosion is not easy to occur, and the service lives of the sliding power receiving plate 402 and the bus bar 4 are prolonged.
A plurality of laminating grooves 19 are symmetrically formed in two ends of the conductive plates 401, and when the conductive plates 401 are mutually abutted, the laminating strength between the two conductive plates 401 can be increased through the cooperation of the laminating grooves 19 and the conical surfaces 18, and the contact area of the two conductive plates 401 is increased through the arrangement of the laminating grooves 19, so that the connection strength of the two conductive plates is increased;
And through the arrangement of the laminating groove 19, the contact area between the two conductive plates 401 is enlarged, and then the cross section area is enlarged to reduce the resistance and improve the conductive performance of the contact point when current transmission is carried out, and the larger contact area means that more electrons can smoothly flow from one conductive plate 401 to the other conductive plate 401, and the resistance generated by electron accumulation or lack at the contact point is reduced.
The mounting opening 21 is formed in the inner side, far away from the bus bar 4, of the attaching groove 19, so that the mutual connection of the conductive plates 401 is ensured, and the two conductive plates 401 are prevented from being propped against, so that the connection failure is caused.
A round angle 101 is formed on one side, close to the abutting block 13, of the clamping block 10, and the round angle 101 facilitates the arc-shaped plate 14 to enter the inner side of the arc-shaped groove 12.
The arc 14 and the abutting block 13 are made of elastic insulating rubber, and the electric resistance is high due to the fact that the rubber is used for preventing the electronic transportation and prevention line from being branched more.
The end of the slot casing 2 is fixedly provided with a plurality of insulating blocks 20, wherein the insulating blocks 20 are made of the conventional common rubber insulating material, and not described herein too much, one end of each insulating block 20 is fixedly connected with one end of the corresponding guide shell 5.
The operation principle is that an operator connects two wire slot shells 2, firstly, one wire slot shell 2 is fixed, then a second wire slot shell 2 is installed, the second wire slot shell 2 is aligned with one end of the first wire slot shell 2, the first wire slot shell 2 and the second wire slot shell 2 are guaranteed to be positioned in the same horizontal plane, and then are directly connected, the second wire slot shell 2 drives an insulating block 20 to move, and then the insulating block 20 drives a guide shell 5 to move, and then the guide shell 5 drives an insulating sleeve 7 to move, and then the insulating sleeve 7 drives corresponding conductive plates 401 to move, and then the tail ends of the two groups of conductive plates 401 are contacted with each other, the two conductive plates 401 are pushed by pushing force through the arrangement of a conical surface 18, and the conductive plates 401 are staggered through the elasticity of the conductive plates 401, and then the conductive plates 401 are driven to move by the abutting blocks 13, and then the conductive plates 9 slide in the guide slots 8, and then the conductive plates 401 can only move in parallel, and then the abutting blocks 13 move between the two corresponding clamping blocks 10, and then the abutting blocks 13 drive the contact blocks 14 to drive the inclined surfaces 11 to enter the arc-shaped plates 13, and then the arc-shaped plates 13 are prevented from being fixed and then the arc-shaped plates are prevented from being rocked;
When the conductive plates 401 are in contact with each other, the two conductive plates 401 are in contact with each other through the mounting opening 21, the connection directions of the two conductive plates 401 are opposite, the attaching grooves 19 of the two conductive plates are staggered with each other, as shown in fig. 5, the conductive plates 401 are mounted, and the connecting sleeve 3 is mounted, so that the wire groove group 1 is mounted;
When one of the buses 4 is in short circuit or the like, the power of the bus needs to be cut off, an operator controls the corresponding electric telescopic rods 409 to work through a control switch to drive the connecting plates 408 to work, the connecting plates 408 drive the plurality of insulating plates 404 to move at the same time, the insulating plates 404 are arranged through lead rods, the guide rods 405 slide in the special-shaped grooves 406 to limit the moving direction of the insulating plates 404, the insulating plates 404 drive the sliding power receiving plates 402 to move, the sliding power receiving plates 402 are separated from one of the buses 4, the circuit breaking control is completed, and the buses 4 needing to be maintained are maintained;
When the sliding power receiving plate 402 moves, the sliding power receiving plate 402 presses the bus 4 through the arrangement of the jacking block 407, so that the end part of the bus 4 is fixedly supported;
After the maintenance is completed, the electric telescopic rod 409 is controlled to drive the insulating plate 404 to reset, and the circuit is connected in a sliding manner, wherein the corners of the contact grooves 403 on the bus 4 are provided with oblique angles which are convenient for the sliding of the sliding power connection plate 402.

Claims (10)

1. The bus duct capable of taking electricity in a sliding mode comprises a wire duct shell (2), and two or more wire duct shells (2) are spliced to form a wire duct group (1), and is characterized in that a plurality of conducting plates (401) are movably arranged at two ends of the wire duct shell (2), two guide shells (5) are arranged at two ends of the wire duct shell (2), one end of each guide shell (5) is provided with a rectangular groove (6) in a penetrating mode, an insulating sleeve (7) is movably arranged on the inner side of each rectangular groove (6), and one end of each conducting plate (401) is fixedly connected with one end of the corresponding insulating sleeve (7);
Two guide blocks (9) are fixedly arranged at two ends of the insulating sleeve (7), one end of the guide shell (5) is provided with a guide groove (8) in a penetrating mode, the guide blocks (9) slide on the inner sides of the corresponding guide grooves (8), and the cross sections of the guide grooves (8) and the guide blocks (9) are rectangular;
The rectangular groove (6) is internally and symmetrically fixed with a plurality of clamping blocks (10), one end corresponding to the clamping blocks (10) is provided with an inclined surface (11), two ends of the insulating sleeve (7) are symmetrically and fixedly provided with two abutting blocks (13), the abutting blocks (13) are arranged in an isosceles trapezoid shape, and the outer sides of the abutting blocks (13) are clamped on the inner sides of the two corresponding inclined surfaces (11).
2. The bus duct capable of taking electricity in a sliding mode according to claim 1, wherein two arc-shaped grooves (12) are formed in one end of the clamping block (10) corresponding to the abutting block (13), a plurality of arc-shaped plates (14) are fixedly arranged on the outer side of the abutting block (13), and the arc-shaped plates (14) are clamped on the inner sides of the corresponding arc-shaped grooves (12).
3. The bus duct capable of taking electricity in a sliding mode is characterized in that two groups of buses (4) are fixedly arranged on the inner side of the wire duct housing (2), a plurality of sliding power receiving plates (402) used for connecting the two groups of buses (4) are movably arranged on the inner side of the wire duct housing (2), a plurality of contact grooves (403) are formed in the outer sides of the sliding power receiving plates (402) and the outer sides of the buses (4), and the sliding power receiving plates (402) and the buses (4) are connected in a matched mode through the contact grooves (403).
4. The bus duct capable of taking electricity in a sliding mode according to claim 3, wherein insulating plates (404) are fixedly arranged at two ends of the sliding power receiving plate (402), a plurality of guide rods (405) are fixedly arranged at the upper end portion and the lower end portion of the insulating plates (404), a plurality of special-shaped grooves (406) are formed in the inner side of the wire duct shell (2), the guide rods (405) slide on the inner side of the special-shaped grooves (406), a plurality of jacking blocks (407) are fixedly arranged on the outer side of one group of buses (4), and the jacking blocks (407) are arranged in a right trapezoid mode.
5. The bus duct capable of taking electricity in a sliding mode according to claim 4, wherein two electric telescopic rods (409) are fixedly arranged on the inner side of the wire duct shell (2), connecting plates (408) are fixedly arranged at output ends of the electric telescopic rods (409), and one ends of the connecting plates (408) are fixedly connected with one ends of corresponding insulating plates (404).
6. The bus duct capable of taking electricity in a sliding mode according to claim 1, wherein one end, far away from the bus bar (4), of the conducting plate (401) is provided with a conical surface (18), the outer side of the conducting plate (401) is symmetrically provided with a plurality of attaching grooves (19), and the inner side, far away from the bus bar (4), of the attaching grooves (19) is provided with a mounting opening (21).
7. The bus duct capable of taking electricity in a sliding manner according to claim 5, wherein a baffle (201) is fixedly arranged at one end of the wire duct shell (2), and connecting sleeves (3) are connected at the end parts of the two wire duct shells (2) through bolts;
a plurality of insulating blocks (20) are fixedly arranged at the end parts of the wire slot shells (2), and one ends of the insulating blocks (20) are fixedly connected with one ends of corresponding guide shells (5).
8. The bus duct capable of taking electricity in a sliding mode according to claim 1, wherein a round corner (101) is formed on one side, close to the abutting block (13), of the clamping block (10).
9. The bus duct capable of taking electricity in a sliding manner according to claim 4, wherein two ends of the special-shaped groove (406) are arranged in parallel, and the middle part of the special-shaped groove is arranged in an inclined manner.
10. The bus duct capable of taking electricity in a sliding mode according to claim 7 is characterized in that a current sensor (301) and a temperature sensor (302) are installed on the inner wall of the connecting sleeve (3), and the current sensor (301) and the temperature sensor (302) are connected with an electric telescopic rod (409) through a controller.
CN202510212953.2A 2025-02-26 2025-02-26 A bus duct capable of sliding to take electricity Active CN119726530B (en)

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CN119726530B CN119726530B (en) 2025-05-27

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CN113300301A (en) * 2021-04-19 2021-08-24 华翔翔能科技股份有限公司 Fire-resistant bus duct
CN214069500U (en) * 2020-11-12 2021-08-27 深圳市胜威南方科技有限公司 Bus end supporting device and bus duct
CN216355884U (en) * 2021-11-17 2022-04-19 四川鑫振川电力科技有限公司 Bus duct dislocation-proof connecting device
CN114552516A (en) * 2022-01-25 2022-05-27 江苏向荣电气有限公司 Intelligent bus connecting device and intelligent bus system
CN118889298A (en) * 2024-07-24 2024-11-01 王保康 A length adjustment component and bus duct using the same

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111478254A (en) * 2020-04-17 2020-07-31 鼎圣集团有限公司 Bus system
CN214069500U (en) * 2020-11-12 2021-08-27 深圳市胜威南方科技有限公司 Bus end supporting device and bus duct
CN113300301A (en) * 2021-04-19 2021-08-24 华翔翔能科技股份有限公司 Fire-resistant bus duct
CN216355884U (en) * 2021-11-17 2022-04-19 四川鑫振川电力科技有限公司 Bus duct dislocation-proof connecting device
CN114552516A (en) * 2022-01-25 2022-05-27 江苏向荣电气有限公司 Intelligent bus connecting device and intelligent bus system
CN118889298A (en) * 2024-07-24 2024-11-01 王保康 A length adjustment component and bus duct using the same

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