CN211480770U - Temporary drainage wire fixing device - Google Patents

Temporary drainage wire fixing device Download PDF

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Publication number
CN211480770U
CN211480770U CN201922190464.4U CN201922190464U CN211480770U CN 211480770 U CN211480770 U CN 211480770U CN 201922190464 U CN201922190464 U CN 201922190464U CN 211480770 U CN211480770 U CN 211480770U
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China
Prior art keywords
fixing
arm
gear
head
rod
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CN201922190464.4U
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易显涛
李刚
冯刚
颜旭东
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Chongqing Chuandong Electric Power Group Co ltd
State Grid Corp of China SGCC
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Chongqing Chuandong Electric Power Group Co ltd
State Grid Corp of China SGCC
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Abstract

The utility model provides a drainage wire temporary fixing device, including first fixed arm and second fixed arm, the head of first fixed arm is used for the centre gripping wire, the head of second fixed arm is used for the centre gripping drainage wire, the afterbody of first fixed arm and the afterbody of second fixed arm link together, the sleeve pipe is inserted respectively to the afterbody of first fixed arm and the afterbody of second fixed arm, then lock with the screw, set up tooth's socket interlock structure on two sleeve pipes, the centre gripping mouth diminishes in order to press from both sides tight electric wire when rocking arm on first fixed arm and the second fixed arm waves forward, when pulling the rocking arm backward hard, the gear is released, the centre gripping mouth opens. The utility model has the advantages of convenient to use improves work efficiency, improves security among the electrified work progress.

Description

Temporary drainage wire fixing device
Technical Field
The utility model relates to an electric power construction equipment, especially a drainage wire temporary fixation device.
Background
At present, the work related to connecting a lead wire in live working is more, and accounts for more than half of the total work task. In the process of lapping the drainage wire in daily live working, the insulating bucket arm vehicle lifts off and is shielded in an insulating mode after arriving at a site, then the insulating bucket arm vehicle descends to take a first-phase wire and lifts off for lapping, then the insulating bucket arm vehicle descends to take a second-phase wire and lifts off for lapping, then the insulating bucket arm vehicle descends to take a third-phase wire and lifts off for lapping, and finally the shielding is removed and the insulating bucket arm vehicle is taken back. Therefore, the three-phase drainage wire is lapped for 6 times on average, the drainage wire is taken up and down in the operation process and passes through a power grid, and the drainage wire is likely to fall off due to the swing of the drainage wire, so that the accidents of single-phase grounding, interphase short circuit and the like are caused, the construction safety is influenced, the operation time is long, and the working efficiency is low. When the existing ground potential insulating rod operation method is used for connecting and disconnecting the drainage wire, the drainage wire is not fixed well or cannot be fixed well, swinging or bouncing can be caused to cause insufficient safety distance, in addition, a bypass lead flow or a cable needs to be taken measures to support and fix during third type of load operation of live operation, and a live body and a grounding body which are related to insufficient safety distance need to be shielded, so that the safety risk is large, and the working efficiency is lower.
SUMMERY OF THE UTILITY MODEL
To the problem that the bypass drainage line supports when fixed has construction insecurity, operating time is long, work efficiency is low when connecing the drainage line and bypass operation that exist among the present live working, the utility model provides an interim fixing device of drainage line, it has solved because of need get the construction safety problem that the drainage line leads to from top to bottom repeatedly many times among the prior art, because of will not enough carry out the insulating construction safety risk and the low efficiency's of work problem that shields the lead to drainage line safe distance.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a temporary drainage wire fixing device comprises a first fixing arm and a second fixing arm, wherein the head of the first fixing arm is used for clamping a wire, the head of the second fixing arm is used for clamping a drainage wire, and the tail of the first fixing arm is connected with the tail of the second fixing arm; the first fixing arm and the second fixing arm respectively comprise a main fixing rod, an auxiliary fixing rod and a sliding block, the head parts of the main fixing rod, the auxiliary fixing rod and the sliding block are in a hook shape, the sliding block is of a hollow structure, the sliding block is sleeved on the main fixing rod and can slide relatively along the main fixing rod, the auxiliary fixing rod is fixedly connected with the sliding block, and the head parts of the auxiliary fixing rod and the head parts of the main fixing rod correspond to each other and jointly form a clamping port for clamping a lead or a drainage wire; the first fixing arm and the second fixing arm comprise rocker arms, gears, gear shifting rods and first springs, and the rocker arms are
Figure BDA0002306691710000011
The opening end of the rocker arm is inserted at two sides of the sliding block and connected with the sliding block through a rotating pin, the gear is supported on the rotating pin and arranged in the hollow part of the sliding block, the back of the main fixing rod is provided with teeth and meshed with the gear to form a gear tooth rod structure, one end of the gear shifting rod is hinged on the rocker arm, the middle of the gear shifting rod is provided with a first spring, the teeth arranged at the other end of the gear shifting rod are meshed with the gear under the tensioning action of the first spring, and when the rocker arm is rotated towards the head direction of the main fixing rod, the gear shifting rod shifts the gear to rotate forwards to drive the head of the auxiliary fixing rod to approach towards the head of the main fixing rod so as to clamp a lead or a drainage wire; first fixed arm with the second fixed arm all includes reversal restriction piece, second spring and locating pin, reversal restriction piece rotationally articulates inside the sliding block, reversal restriction piece is in withhold under the effect of second spring the gear tooth, the locating pin is arranged reversal restriction piece one side, works as when the gear receives the reversal moment of torsion, the locating pin restriction the gear tooth is just done all canThe reversing limiting block rotates to limit the gear to reverse, when the rocker arm is rotated towards the tail of the main fixing rod, and an included angle theta between the rocker arm and the main fixing rod is smaller than a certain angle, the rocker arm abuts against the tail of the reversing limiting block to enable the reversing limiting block to rotate, the head of the reversing limiting block is separated from the gear, meanwhile, the middle of the reversing limiting block protrudes to jack the gear shifting rod, and the gear shifting rod is separated from the gear.
Further, a plurality of dogteeth have been arranged to the afterbody of first fixed arm, the afterbody of second fixed arm arranged with a plurality of recesses of dogtooth matched with, first fixed arm with the second fixed arm with the dogtooth inserts the mode of recess is rotationally not linked together, the dogtooth size equals and circumference equipartition, the recess size equals and circumference equipartition, the afterbody of first fixed arm with the afterbody of second fixed arm still is in the same place through the fix with screw. The produced effect is, can be with the mode of a plurality of different contained angle angles between first fixed arm and the second fixed arm, the protruding tooth inserts the recess, that is, the contained angle is adjustable between first fixed arm and the second fixed arm to first fixed arm and the second fixed arm after the certain contained angle of constitution can bear great pulling force.
Preferably, the angle fixing block comprises a first socket and a second socket which form a certain included angle, the first socket is used for being inserted into the first fixing arm and fixed by a screw, and the second socket is used for being inserted into the second fixing arm and fixed by a screw. The first fixing arm and the second fixing arm are connected very simply and quickly, and work efficiency is improved.
Further, the first and second sockets are arranged at a right angle. The wiring operation is more convenient.
Generally, a 40 cm-length power frequency withstand voltage test of insulating materials between the head of the first fixing arm and the head of the second fixing arm pressurizes 45kV withstand voltage for 1 minute without breakdown, flashover and heating, and a leakage current test pressurizes 8kV withstand voltage for 15 minutes, and the leakage current is less than 0.5 mA.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the working efficiency is improved. By adopting the device, the drainage wire can be temporarily fixed on the wire at one time, the process of taking the drainage wire up and down for many times is avoided, the device is very simple to operate, the drainage wire can be tightly gripped only by shaking the rocker arm, the rocker arm is pulled to a certain position leftwards, the drainage wire can be released, and the average time of the work of lapping the drainage wire with electricity after the temporary drainage wire fixing device is developed is reduced by more than 10 minutes.
2. The construction process is optimized, and the safety in live working is improved. Before the temporary drainage wire fixing device is not used, the drainage wire is taken up and down in the operation process and passes through a power grid, and the drainage wire swings to possibly cause falling, so that single-phase grounding, interphase short circuit and other accidents are caused. In the third type live working load operation, before the drainage wire fixing device is not used, a plurality of parts need to be insulated and shielded during operation, the labor intensity and the safety risk of operators are high, the fixing device adopts an insulating material, the drainage wire is physically supported and suspended, wind deflection swinging is prevented, and the like, and the insulation between a live conductor and a grounding body is electrically achieved, so that part of related insulation shielding is reduced, the flow is optimized, and the safety is improved.
As a person skilled in the art in the field of electric power construction, the cured operation flow is found out, the problem is found out, the inertial thinking is skipped, the problem is not easy to happen, and the best technical scheme for solving the problem is found, so that the method has good technical effect, creativity and popularization value.
Drawings
Fig. 1 is a schematic structural diagram of a first fixing arm according to the present invention.
Fig. 2 is a schematic structural diagram of the present invention.
Fig. 3 is another schematic structural diagram of the present invention.
Detailed Description
The technical solution of the present invention will be further explained with reference to the accompanying drawings and embodiments.
As shown in figure 2, the utility model provides a drainage wire temporary fixing device, which comprises a first fixing arm 1 and a second fixing arm 2, wherein the head of the first fixing arm 1 is used for clamping a conducting wire, the head of the second fixing arm 2 is used for clamping a drainage wire, the tail of the first fixing arm 1 is connected with the tail of the second fixing arm 2, sleeves 4 are respectively inserted into the tail of the first fixing arm 1 and the tail of the second fixing arm 2, then the sleeves are locked by screws, a tooth socket meshing structure as shown in figure 2 is arranged on the two sleeves 4, so that the first fixing arm 1 and the second fixing arm 2 are meshed together, then the two sleeves 4 are fixed by screws, convex teeth are equal in size and are circumferentially and uniformly distributed, grooves are equal in size and are circumferentially and uniformly distributed, the tail of the first fixing arm and the tail of the second fixing arm are fixed together by screws, therefore, the first fixing arm 1 and the second fixing arm 2 can be fixed into different included angles to meet engineering requirements, and the adjustment and the use are very convenient. The structure of the sleeve 4 can also be directly made into an integral structure with the first fixing arm 1 without using the sleeve 4, and the other sleeve 4 and the second fixing arm 2 are integrally arranged, so that the first fixing arm 1 and the second fixing arm 2 can be directly snapped and fixed together. As shown in fig. 3, fig. 3 is an exploded view of a connection form of the tail portions of the first fixing arm 1 and the second fixing arm 2, the angle fixing block 3 includes a first socket 31 and a second socket 32 which form an included angle, the first fixing arm 1 is inserted into the first socket 31 and fixed by a screw, and the second fixing arm 2 is inserted into the second socket 32 and fixed by a screw. The first insertion hole 31 and the second insertion hole 32 of the angle fixing block 3 may be perpendicular or at other angles.
As shown in fig. 1-3, the first fixing arm 1 and the second fixing arm 2 have substantially the same structure, and both include a main fixing rod 11 with a hook-shaped head, an auxiliary fixing rod 13 and a sliding block 12, the sliding block 12 is hollow, the sliding block 12 is sleeved on the main fixing rod 11 and can slide relatively along the main fixing rod 11, the auxiliary fixing rod 13 is fixedly connected with the sliding block 12, and the head of the auxiliary fixing rod 13 corresponds to the head of the main fixing rod 11 to form a wire clamping or wire clamping structureA clamping opening for a drainage wire; the first fixing arm 1 and the second fixing arm 2 both comprise a rocker arm 14, a gear 15, a gear shift lever 16 and a first spring 17, the rocker arm 14 being in the shape of a rocker arm
Figure BDA0002306691710000041
The opening end of a rocker arm 14 is inserted at two sides of the sliding block 12 and connected with the sliding block 12 through a rotating pin, a gear 15 is supported on the rotating pin and arranged in the hollow part of the sliding block 12, the back of a main fixing rod 11 is provided with teeth and meshed with the gear 15 to form a gear tooth rod structure, one end of a gear shift lever 16 is hinged on the rocker arm 14, the middle of the gear shift lever 16 is provided with a first spring 17, under the tensioning action of the first spring 17, the teeth arranged at the other end of the gear shift lever 16 are meshed with the gear 15, when the rocker arm 14 is rotated towards the head direction of the main fixing rod 11, the gear shift lever 16 shifts the gear 15 to rotate forwards, and the head of an auxiliary fixing rod 13 is driven to approach towards the head of the main fixing rod 11 to clamp; the first fixing arm 1 and the second fixing arm 2 both comprise a reverse rotation limiting block 18, a second spring 19 and a positioning pin 10, the reverse rotation limiting block 18 is rotatably hinged inside the sliding block 12, the reverse rotation limiting block 18 is abutted against teeth of the gear 15 under the action of the second spring 19, the positioning pin 10 is arranged on one side of the reverse rotation limiting block 18, when the gear 15 is subjected to reverse rotation torque, the positioning pin 10 limits the rotation of the reverse rotation limiting block 18, so that the reverse rotation of the gear 15 is limited, when the rocker arm 14 is rotated towards the tail part of the main fixing rod 11, and an acute included angle theta between the rocker arm 14 and the main fixing rod 11 is smaller than a certain angle, the rocker arm 14 is abutted against the tail part of the reverse rotation limiting block 18 to rotate, the head part of the reverse rotation limiting block 18 is separated from the gear 15, meanwhile, a middle bulge of the reverse rotation limiting block 18 is abutted against the gear shift lever 16, so that the gear shift lever 16 is separated from the gear 15, and an insulating The test has no breakdown, flashover and heating in minutes, the leakage current test is pressurized to 8kV, the voltage is resisted, the leakage current is less than 0.5mA in 15 minutes, and the main fixing rod is made of glass fiber.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (5)

1. A temporary fixing device for drainage thread is characterized in that,
the drainage wire fixing device comprises a first fixing arm (1) and a second fixing arm (2), wherein the head of the first fixing arm (1) is used for clamping a wire, the head of the second fixing arm (2) is used for clamping a drainage wire, and the tail of the first fixing arm (1) is connected with the tail of the second fixing arm (2);
the first fixing arm (1) and the second fixing arm (2) respectively comprise a main fixing rod (11) with a hook-shaped head, an auxiliary fixing rod (13) and a sliding block (12), the sliding block (12) is of a hollow structure, the sliding block (12) is sleeved on the main fixing rod (11) and can relatively slide along the main fixing rod (11), the auxiliary fixing rod (13) is fixedly connected with the sliding block (12), and the head of the auxiliary fixing rod (13) corresponds to the head of the main fixing rod (11) to form a clamping port for clamping a lead or a drainage wire;
first fixed arm (1) with second fixed arm (2) all include rocking arm (14), gear (15), gear driving lever (16) and first spring (17), rocking arm (14) are and are
Figure FDA0002306691700000011
The opening end of the rocker arm (14) is inserted into two sides of the sliding block (12) and connected with the sliding block (12) through a rotating pin, the gear (15) is supported on the rotating pin and arranged in the hollow part inside the sliding block (12), the back of the main fixing rod (11) is provided with teeth and meshed with the gear (15) to form a gear-tooth-rod structure, one end of the gear shifting rod (16) is hinged to the rocker arm (14), the middle of the gear shifting rod (16) is provided with a first spring (17), and under the tensioning action of the first spring (17), the teeth arranged at the other end of the gear shifting rod (16) and the gear are connected with each other(15) When the rocker arm (14) is rotated towards the head of the main fixing rod (11), the gear shifting lever (16) shifts the gear (15) to rotate forwards, and drives the head of the auxiliary fixing rod (13) to approach towards the head of the main fixing rod (11) so as to clamp a lead or a drainage wire;
the first fixing arm (1) and the second fixing arm (2) both comprise a reverse rotation limiting block (18), a second spring (19) and a positioning pin (10), the reverse rotation limiting block (18) is rotatably hinged inside the sliding block (12), the reverse rotation limiting block (18) is abutted against the teeth of the gear (15) under the action of the second spring (19), the positioning pin (10) is arranged on one side of the reverse rotation limiting block (18), when the gear (15) is subjected to reverse rotation torque, the positioning pin (10) limits the reverse rotation limiting block (18) to rotate so as to limit the gear (15) to reverse, when the rocker arm (14) is rotated towards the tail direction of the main fixing rod (11), and when an acute angle theta between the rocker arm (14) and the main fixing rod (11) is smaller than a certain angle, the rocker arm (14) is abutted against the tail of the reverse rotation limiting block (18) to rotate, the head of the reverse rotation limiting block (18) is separated from the gear (15), and meanwhile, the middle protrusion of the reverse rotation limiting block (18) jacks up the gear shift lever (16), so that the gear shift lever (16) is separated from the gear (15).
2. The temporary drainage wire fixing device according to claim 1, wherein a plurality of convex teeth are arranged at the tail part of the first fixing arm (1), a plurality of grooves matched with the convex teeth are arranged at the tail part of the second fixing arm (2), the first fixing arm and the second fixing arm are non-rotatably connected together in a manner that the convex teeth are inserted into the grooves, the convex teeth are equal in size and are circumferentially and uniformly distributed, the grooves are equal in size and are circumferentially and uniformly distributed, and the tail part of the first fixing arm and the tail part of the second fixing arm are further fixed together through screws.
3. The temporary drainage wire fixing device according to claim 1, further comprising an angle fixing block (3), wherein the angle fixing block (3) comprises a first socket (31) and a second socket (32) which are at an included angle, the first socket (31) is used for inserting the first fixing arm (1) and fixing with screws, and the second socket (32) is used for inserting the second fixing arm (2) and fixing with screws.
4. A temporary drainage wire fixing device as claimed in claim 3, wherein the first insertion opening (31) and the second insertion opening (32) are arranged at a right angle.
5. The temporary drainage wire fixing device as claimed in claim 1, wherein the insulating material 40cm length power frequency withstand voltage test between the head of the first fixing arm and the head of the second fixing arm is pressurized with 45kV withstand voltage for 1 minute without puncture and flashover, and the leakage current test is pressurized with 8kV withstand voltage for 15 minutes, and the leakage current is less than 0.5 mA.
CN201922190464.4U 2019-12-06 2019-12-06 Temporary drainage wire fixing device Active CN211480770U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922190464.4U CN211480770U (en) 2019-12-06 2019-12-06 Temporary drainage wire fixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922190464.4U CN211480770U (en) 2019-12-06 2019-12-06 Temporary drainage wire fixing device

Publications (1)

Publication Number Publication Date
CN211480770U true CN211480770U (en) 2020-09-11

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Application Number Title Priority Date Filing Date
CN201922190464.4U Active CN211480770U (en) 2019-12-06 2019-12-06 Temporary drainage wire fixing device

Country Status (1)

Country Link
CN (1) CN211480770U (en)

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