CN111422684A - Line body draw gear is used in power transmission line installation - Google Patents

Line body draw gear is used in power transmission line installation Download PDF

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Publication number
CN111422684A
CN111422684A CN202010280594.1A CN202010280594A CN111422684A CN 111422684 A CN111422684 A CN 111422684A CN 202010280594 A CN202010280594 A CN 202010280594A CN 111422684 A CN111422684 A CN 111422684A
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China
Prior art keywords
thread structure
longitudinal distance
rotary
distance adjusting
type
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CN202010280594.1A
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Chinese (zh)
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刘延林
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Individual
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Individual
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Priority to CN202010280594.1A priority Critical patent/CN111422684A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H51/00Forwarding filamentary material
    • B65H51/02Rotary devices, e.g. with helical forwarding surfaces
    • B65H51/04Rollers, pulleys, capstans, or intermeshing rotary elements
    • B65H51/08Rollers, pulleys, capstans, or intermeshing rotary elements arranged to operate in groups or in co-operation with other elements
    • B65H51/10Rollers, pulleys, capstans, or intermeshing rotary elements arranged to operate in groups or in co-operation with other elements with opposed coacting surfaces, e.g. providing nips
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H57/00Guides for filamentary materials; Supports therefor
    • B65H57/14Pulleys, rollers, or rotary bars
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G1/00Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines
    • H02G1/02Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for overhead lines or cables
    • H02G1/04Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for overhead lines or cables for mounting or stretching
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/30Handled filamentary material
    • B65H2701/34Handled filamentary material electric cords or electric power cables

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  • Transmission Devices (AREA)

Abstract

The invention discloses a line body traction device for installing a power transmission line, which comprises a main body shell. The invention needs to install a guide wire between two electric poles, and the device can move back and forth on the guide wire by utilizing the rotation capability of the driving motor, thereby, the function of guiding and drawing can be realized for the power transmission line, the efficiency, the safety performance and the control capability when the power transmission line is installed are improved, the complexity when the power transmission line is installed is reduced, and moreover, the device is provided with a rotary fixed connecting mechanism of two parts with the same horizontal height, can realize the fixed connection of the two rotary parts with the same horizontal height, and in addition, the device is provided with a rotary longitudinal distance adjusting mechanism with a reverse thread structure, can realize the distance adjustment between the bottom pulley and the top pulley, prevent the device and the guide wire from falling off, and in addition, the device has a thread structure rotating plug-in type component mounting mechanism and can fix an external power transmission line and a lead.

Description

Line body draw gear is used in power transmission line installation
Technical Field
The invention relates to the technical field of electric power installation, in particular to a line body traction device for power transmission line installation.
Background
At present, when an electric wire is installed, a wire between two electric power rods needs to be installed, and when the wire is installed, due to the limitation of the height of a space position, the installation is complicated and the safety performance is poor.
Disclosure of Invention
The invention aims to provide a line body traction device for installing a power transmission line, which aims to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: a line body traction device for installing a power transmission line comprises a main body shell, wherein a balance installation plate of an integrated structure is arranged at the bottom of one side of the main body shell, a driving motor installation space is arranged in the main body shell, a driving motor is installed in the driving motor installation space, a motor main shaft in the driving motor penetrates through the main body shell, the motor main shaft and the main body shell are fixedly connected through a main bearing between penetrating parts, a main belt pulley is installed at one end of the motor main shaft positioned outside, a main vertical plate is installed at one side of the top of the main body shell, two main rotating shafts with the same height are installed at the top of the main vertical plate through the main bearing, a secondary belt pulley is installed at one end of each main rotating shaft positioned at the same side of the main belt pulley, the main belt pulley is connected with the two secondary belt pulleys through a belt, and a balance weight, two install two main pulleys on the opposite side axis body of main rotation axis, two the axis body of the main rotation axis other end passes through two parts of level rotation type fixed connection mechanism and connects, another two vice rotation axis, two are installed at two parts of level rotation type fixed connection mechanism's both ends vice pulley is all installed to the one end of vice spacing axle, vice pulley is located under the main pulley, two parts of level rotation type fixed connection mechanism's middle part is through a reverse thread structure rotation type longitudinal distance adjustment mechanism fixed connection, main pulley and vice pulley periphery are provided with the annular groove structure, the rotatory bayonet part installation mechanism of one side center installation of main body shell thread structure.
Furthermore, the horizontal two-part rotary type fixed connection mechanism comprises a transverse rod body for the horizontal two-part rotary type fixed connection mechanism, an external bearing for the horizontal two-part rotary type fixed connection mechanism, an external shaft sleeve for the horizontal two-part rotary type fixed connection mechanism, a first shaft hole for the horizontal two-part rotary type fixed connection mechanism, a second shaft hole for the horizontal two-part rotary type fixed connection mechanism, a first bearing for the horizontal two-part rotary type fixed connection mechanism and a second bearing for the horizontal two-part rotary type fixed connection mechanism; the middle rod body of the transverse rod body for the horizontal two-part rotary fixed connecting mechanism is provided with an external bearing for the horizontal two-part rotary fixed connecting mechanism, the outer ring of the external bearing for the horizontal two-part rotary fixed connecting mechanism is sleeved in the external shaft sleeve for the horizontal two-part rotary fixed connecting mechanism, the inner parts of the two ends of the horizontal rod body for the horizontal two-part rotary fixed connecting mechanism are respectively provided with a first shaft hole for the horizontal two-part rotary fixed connecting mechanism and a second shaft hole for the horizontal two-part rotary fixed connecting mechanism, and a first bearing for the horizontal two-part rotary fixed connecting mechanism and a second bearing for the horizontal two-part rotary fixed connecting mechanism are respectively arranged in the first shaft hole for the horizontal two-part rotary fixed connecting mechanism and the second shaft hole for the horizontal two-part rotary fixed connecting mechanism.
Further, the shaft body of the main rotating shaft and the shaft body of the auxiliary rotating shaft are arranged in the inner ring of the first bearing for the horizontal two-component rotary type fixed connecting mechanism and the inner ring of the second bearing for the horizontal two-component rotary type fixed connecting mechanism.
Furthermore, the horizontal two-component rotary fixed connecting mechanism is arranged inside two ends of the rotary longitudinal distance adjusting mechanism with the reverse thread structure by using external shaft sleeves.
Further, the reverse thread structure rotary type longitudinal distance adjusting mechanism comprises a thread sleeve for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a thread section for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a thread structure for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a bottom threaded rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a top threaded rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism, the device comprises a limiting hole for a reverse thread structure rotary type longitudinal distance adjusting mechanism, a limiting rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a first mounting block for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a second mounting block for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a first mounting hole for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a second mounting hole for the reverse thread structure rotary type longitudinal distance adjusting mechanism; the thread sleeve for the reverse thread structure rotary type longitudinal distance adjusting mechanism is internally provided with a thread section for the reverse thread structure rotary type longitudinal distance adjusting mechanism communicating with two end surfaces of the thread sleeve for the reverse thread structure rotary type longitudinal distance adjusting mechanism at the center, the thread sleeve for the reverse thread structure rotary type longitudinal distance adjusting mechanism is provided with a thread structure for the reverse thread structure rotary type longitudinal distance adjusting mechanism on the inner wall of the thread section for the reverse thread structure rotary type longitudinal distance adjusting mechanism, the bottom and the top of the thread section for the reverse thread structure rotary type longitudinal distance adjusting mechanism are respectively connected with a bottom threaded rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a top threaded rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism through the thread structure for the reverse thread structure rotary type longitudinal distance adjusting mechanism, reverse thread structure rotation type is bottom threaded rod for longitudinal distance adjustment mechanism and reverse thread structure rotation type is top threaded rod for longitudinal distance adjustment mechanism all be provided with reverse thread structure rotation type for longitudinal distance adjustment mechanism spacing hole, two inside in reverse thread structure rotation type for longitudinal distance adjustment mechanism spacing hole inserts a reverse thread structure rotation type for longitudinal distance adjustment mechanism spacing rod, reverse thread structure rotation type for longitudinal distance adjustment mechanism bottom threaded rod and reverse thread structure rotation type for longitudinal distance adjustment mechanism other both ends of top threaded rod install reverse thread structure rotation type for longitudinal distance adjustment mechanism first installation piece and reverse thread structure rotation type for longitudinal distance adjustment mechanism second installation piece respectively, reverse thread structure rotation type for longitudinal distance adjustment mechanism first installation piece and reverse thread structure rotation type for longitudinal distance adjustment mechanism second installation piece Is provided with a first mounting hole for a reverse thread structure rotary type longitudinal distance adjusting mechanism and a second mounting hole for a reverse thread structure rotary type longitudinal distance adjusting mechanism.
Further, the thread structure for the reverse thread structure rotation type longitudinal distance adjusting mechanism comprises an internal thread structure arranged on the inner wall of the thread sleeve for the reverse thread structure rotation type longitudinal distance adjusting mechanism and an external thread structure arranged on the body of the bottom threaded rod for the reverse thread structure rotation type longitudinal distance adjusting mechanism and the top threaded rod for the reverse thread structure rotation type longitudinal distance adjusting mechanism, and the thread directions of the thread structures on the body of the bottom threaded rod for the reverse thread structure rotation type longitudinal distance adjusting mechanism and the body of the top threaded rod for the reverse thread structure rotation type longitudinal distance adjusting mechanism are opposite.
Furthermore, the structural appearance of the cross section of the limiting hole for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the structural appearance of the cross section of the limiting rod for the reverse thread structure rotary type longitudinal distance adjusting mechanism are both triangular structures, and two horizontal-height two-part rotary type external shaft sleeves are arranged in the first mounting hole for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the second mounting hole for the reverse thread structure rotary type longitudinal distance adjusting mechanism.
Further, the screw-structured rotary insertion-type component mounting mechanism includes a rod-like housing for the screw-structured rotary insertion-type component mounting mechanism, a cable insertion groove structure for the screw-structured rotary insertion-type component mounting mechanism, a threaded pipe body for the screw-structured rotary insertion-type component mounting mechanism, a touch panel groove structure for the screw-structured rotary insertion-type component mounting mechanism, a touch panel for the screw-structured rotary insertion-type component mounting mechanism, a bearing for the screw-structured rotary insertion-type component mounting mechanism, a threaded rod for the screw-structured rotary insertion-type component mounting mechanism, a screw structure for the screw-structured rotary insertion-type component mounting mechanism, and a rotary plate for the screw; the thread structure rotation plug-in type component installation mechanism is characterized in that a thread structure rotation plug-in type component installation mechanism cable plug-in groove structure is arranged at the center inside one side of a rod-shaped shell, the side surface of the rod-shaped shell for the thread structure rotation plug-in type component installation mechanism is provided with a thread pipeline body for the thread structure rotation plug-in type component installation mechanism of an integrated structure, the rod-shaped shell for the thread structure rotation plug-in type component installation mechanism is provided with a plurality of thread structure rotation plug-in type component installation mechanism touch panel groove structures on the inner wall of the thread structure rotation plug-in type component installation mechanism cable plug-in groove structure, each of the thread structure rotation plug-in type component installation mechanism touch panel for the touch panel groove structure is internally provided with a thread structure rotation plug-in, the threaded structure for the rotary plug-in component installation mechanism of the threaded structure is a threaded rod for a thread structure rotary plug-in component installation mechanism installed with a terminal surface of touch, the rod body of the threaded rod for the rotary plug-in component installation mechanism of the threaded structure runs through the rod-shaped shell for the rotary plug-in component installation mechanism of the threaded structure and the thread pipeline body for the rotary plug-in component installation mechanism of the threaded structure, and the threaded structure for the rotary plug-in component installation mechanism of the threaded structure is connected between the threaded rod for the rotary plug-in component installation mechanism of the threaded structure and the thread pipeline body for the rotary plug-in component installation mechanism of the threaded structure through the thread structure rotary plug-in component installation mechanism of.
Furthermore, the other end surface of the rod-shaped shell for the thread structure rotary plug-in type component mounting mechanism is fixedly connected with one end of the main body shell.
Furthermore, the thread structure for the thread structure rotation insertion type component mounting mechanism comprises an internal thread structure arranged on the inner wall of the rod-shaped shell for the thread structure rotation insertion type component mounting mechanism and an external thread structure arranged on the threaded rod body for the thread structure rotation insertion type component mounting mechanism.
Compared with the prior art, the invention has the beneficial effects that: the invention needs to install a guide line between two electric poles, and the device can move back and forth on the guide line by utilizing the rotation capability of the driving motor, thereby realizing the function of guiding and pulling the transmission line, improving the efficiency, the safety performance and the control capability when the transmission line is installed, and reducing the complexity when in installation, moreover, the device is provided with a horizontal two-component rotary type fixed connecting mechanism, can realize the fixed connecting function of two rotary components with the same horizontal height, and simultaneously can not influence the rotation of a middle connecting component, in addition, the device is provided with a reverse thread structure rotary type longitudinal distance adjusting mechanism, can realize the distance adjustment between a bottom pulley and a top pulley, can clamp the line body of the guide line, and can prevent the device and the guide line from falling off, in addition, the device is provided with a thread structure rotary insertion type component installation mechanism, can fix external transmission line and wire to realize work.
Drawings
FIG. 1 is a schematic diagram of a full-section structure of a line traction device for installing a power transmission line according to the present invention;
FIG. 2 is a schematic structural view of a horizontal two-part rotary type fixed connection mechanism in the wire body traction device for power transmission line installation according to the present invention;
FIG. 3 is a schematic structural view of a rotary longitudinal distance adjusting mechanism with a reverse thread structure in the wire body traction device for power transmission line installation according to the present invention;
FIG. 4 is a schematic structural diagram of a threaded structure rotation plug-in type component mounting mechanism in the wire body traction device for power transmission line mounting according to the present invention;
In the figure: 1, a main body housing, 2, a balance mounting plate, 3, a driving motor mounting space, 4, a driving motor, 5, a motor main shaft, 6, a main belt pulley, 7, a counterweight piece, 8, a main vertical plate, 9, a main bearing, 10, an auxiliary belt pulley, 11, a belt, 12, a main pulley, 13, a main rotating shaft, 14, a horizontal two-part rotary fixed connection mechanism, 141, a horizontal two-part rotary fixed connection mechanism horizontal rod body, 142, a horizontal two-part rotary fixed connection mechanism external bearing, 143, a horizontal two-part rotary fixed connection mechanism external shaft sleeve, 144, a horizontal two-part rotary fixed connection mechanism first shaft hole, 145, a horizontal two-part rotary fixed connection mechanism second shaft hole, 146, a horizontal two-part rotary fixed connection mechanism first bearing, 147, a second bearing for a horizontal two-part rotary fixed connection mechanism, 15, a reverse thread structure rotary longitudinal distance adjustment mechanism, 151, a threaded sleeve for a reverse thread structure rotary longitudinal distance adjustment mechanism, 152, a threaded section for a reverse thread structure rotary longitudinal distance adjustment mechanism, 153, a thread structure for a reverse thread structure rotary longitudinal distance adjustment mechanism, 154, a bottom threaded rod for a reverse thread structure rotary longitudinal distance adjustment mechanism, 155, a top threaded rod for a reverse thread structure rotary longitudinal distance adjustment mechanism, 156, a limit hole for a reverse thread structure rotary longitudinal distance adjustment mechanism, 157, a limit rod for a reverse thread structure rotary longitudinal distance adjustment mechanism, 158, a first mounting block for a reverse thread structure rotary longitudinal distance adjustment mechanism, 159, a second mounting block for a reverse thread structure rotary longitudinal distance adjustment mechanism, 1510, a first mounting hole for a reverse-thread-structure-rotation-type longitudinal distance adjusting mechanism, 1511, a second mounting hole for a reverse-thread-structure-rotation-type longitudinal distance adjusting mechanism, 16, a sub stopper shaft, 17, a sub pulley, 18, an annular groove structure, 19, a thread-structure-rotation-insertion-type component mounting mechanism, 191, a rod-shaped housing for a thread-structure-rotation-insertion-type component mounting mechanism, 192, a cable-insertion groove structure for a thread-structure-rotation-insertion-type component mounting mechanism, 193, a thread-structure-rotation-insertion-type component mounting mechanism, a thread pipe body for a thread-structure-rotation-insertion-type component mounting mechanism, 194, a touch panel groove structure for a thread-structure-rotation-insertion-type component mounting mechanism, 195, a touch panel for a thread-structure-rotation-insertion-type, the screw structure rotates the screw structure for the plug-in component mounting mechanism 199, and the screw structure rotates the rotation plate for the plug-in component mounting mechanism.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1, an embodiment of the present invention: the balance device comprises a main body shell 1, a balance mounting plate 2 of an integrated structure is arranged at the bottom of one side of the main body shell 1, a driving motor mounting space 3 is arranged in the main body shell 1, a driving motor 4 is mounted in the driving motor mounting space 3, a motor spindle 5 in the driving motor 4 penetrates through the main body shell 1 and is fixedly connected with the main body shell through a main bearing 9, a main belt pulley 6 is mounted at one end of the motor spindle 5 positioned outside, a main vertical plate 8 is mounted at one side of the top of the main body shell 1, two main rotating shafts 13 with the same height are mounted at the top of the main vertical plate 8 through the main bearing 9, a secondary belt pulley 10 is mounted at one end of the main rotating shafts 13 positioned at the same side of the main belt pulley 6, the main belt pulley 6 is connected with the secondary belt pulley 10 through a belt 11, and a balance weight block 7 is mounted on the upper surface of the balance mounting plate, two install two main pulleys 12 on the opposite side axis body of main rotation axis 13, two the axis body of the main rotation axis 13 other end passes through two parts of level rotation type fixed connection mechanism 14 and connects, another two vice rotation axis 16, two are installed at two ends of two parts of level rotation type fixed connection mechanism 14 vice spacing axle 16's one end all installs vice pulley 17, vice pulley 17 is located under main pulley 12, two the middle part of two parts of level rotation type fixed connection mechanism 14 is through a reverse thread structure rotation type longitudinal distance adjustment mechanism 15 fixed connection, main pulley 12 and vice pulley 17 periphery are provided with annular groove structure 18, the bayonet rotatory part installation mechanism 19 of a thread structure of one side center installation of main body housing 1.
Referring to fig. 2, the two-part rotary fixed connection mechanism 14 includes a transverse rod 141 for the two-part rotary fixed connection mechanism, an external bearing 142 for the two-part rotary fixed connection mechanism, an external shaft sleeve 143 for the two-part rotary fixed connection mechanism, a first shaft hole 144 for the two-part rotary fixed connection mechanism, a second shaft hole 145 for the two-part rotary fixed connection mechanism, a first bearing 146 for the two-part rotary fixed connection mechanism, and a second bearing 147 for the two-part rotary fixed connection mechanism; the horizontal two-part rotary type fixed connection mechanism is characterized in that an outer bearing 142 for the horizontal two-part rotary type fixed connection mechanism is arranged on a middle rod body of a transverse rod body 141 for the horizontal two-part rotary type fixed connection mechanism, an outer ring of the outer bearing 142 for the horizontal two-part rotary type fixed connection mechanism is sleeved inside an outer shaft sleeve 143 for the horizontal two-part rotary type fixed connection mechanism, a first shaft hole 144 for the horizontal two-part rotary type fixed connection mechanism and a second shaft hole 145 for the horizontal two-part rotary type fixed connection mechanism are respectively arranged inside two ends of the horizontal two-part rotary type fixed connection mechanism 141, and a first bearing 146 for the horizontal two-part rotary type fixed connection mechanism and a second bearing 145 for the horizontal two-part rotary type fixed connection mechanism are respectively arranged inside the first shaft hole 144 for the horizontal two-part rotary type fixed connection mechanism and the second shaft hole 145 for the horizontal two-part rotary type fixed connection mechanism Two bearings 147; a shaft body of the main rotating shaft 13 and the auxiliary rotating shaft 16 is mounted in the inner ring of the first bearing 146 for the horizontal two-component rotary type fixed connection mechanism and the second bearing 147 for the horizontal two-component rotary type fixed connection mechanism; the two-part horizontal rotary type fixed connection mechanism is installed inside both ends of the reverse screw structure rotary type longitudinal distance adjusting mechanism 15 with the outer bushings 143.
Referring to fig. 3, the reverse-threaded-structure rotary longitudinal distance adjustment mechanism 15 includes a reverse-threaded-structure rotary longitudinal distance adjustment mechanism threaded sleeve 151, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism threaded section 152, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism threaded structure 153, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism bottom threaded rod 154, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism top threaded rod 155, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism limiting hole 156, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism limiting rod 157, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism first mounting block 158, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism second mounting block 159, a reverse-threaded-structure rotary longitudinal distance adjustment mechanism first mounting hole 1510, and a reverse-threaded-structure rotary longitudinal distance adjustment mechanism A second mounting hole 1511; a reverse thread structure rotary type thread section 152 for a longitudinal distance adjusting mechanism communicating with both end faces of the reverse thread structure rotary type longitudinal distance adjusting mechanism thread sleeve 151 is provided at the center inside the reverse thread structure rotary type longitudinal distance adjusting mechanism thread sleeve 151, a reverse thread structure rotary type thread structure 153 for a longitudinal distance adjusting mechanism is provided on the inner wall of the reverse thread structure rotary type longitudinal distance adjusting mechanism thread section 152 of the reverse thread structure rotary type longitudinal distance adjusting mechanism thread sleeve 151, the bottom and the top of the reverse thread structure rotary type longitudinal distance adjusting mechanism thread section 152 are connected to a reverse thread structure rotary type bottom thread rod 154 for a longitudinal distance adjusting mechanism and a reverse thread structure rotary type top thread rod 155 for a longitudinal distance adjusting mechanism through the reverse thread structure rotary type thread structure 153, respectively, the reverse thread structure rotation type longitudinal distance adjusting mechanism is provided with a first mounting block 158 for a reverse thread structure rotation type longitudinal distance adjusting mechanism and a second mounting block 159 for a reverse thread structure rotation type longitudinal distance adjusting mechanism respectively at the other two ends of the reverse thread structure rotation type longitudinal distance adjusting mechanism bottom threaded rod 154 and the reverse thread structure rotation type longitudinal distance adjusting mechanism top threaded rod 155, the reverse thread structure rotation type longitudinal distance adjusting mechanism first mounting block 158 and the reverse thread structure rotation type longitudinal distance adjusting mechanism second mounting block 159 are respectively arranged on the reverse thread structure rotation type longitudinal distance adjusting mechanism bottom threaded rod 154 and the reverse thread structure rotation type longitudinal distance adjusting mechanism top threaded rod 155 A first mounting hole 1510 for a reverse-threaded-structure rotary type longitudinal distance adjustment mechanism and a second mounting hole 1511 for a reverse-threaded-structure rotary type longitudinal distance adjustment mechanism are provided inside the second mounting block 159 for an adjustment mechanism; the thread structure 153 for the reverse thread structure rotary type longitudinal distance adjusting mechanism includes an internal thread structure provided on the inner wall of the thread sleeve 151 for the reverse thread structure rotary type longitudinal distance adjusting mechanism and external thread structures provided on the bottom threaded rod 154 for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the top threaded rod 155 for the reverse thread structure rotary type longitudinal distance adjusting mechanism, and the thread directions of the thread structures on the bottom threaded rod 154 for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the top threaded rod 155 for the reverse thread structure rotary type longitudinal distance adjusting mechanism are opposite; the cross section structure appearance of the limiting hole 156 for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the cross section structure appearance of the limiting rod 157 for the reverse thread structure rotary type longitudinal distance adjusting mechanism are both triangle structures, and the two horizontal-height two-part rotary type external shaft sleeve 143 for the fixed connecting mechanism is arranged in the first mounting hole 1510 for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the second mounting hole 1511 for the reverse thread structure rotary type longitudinal distance adjusting mechanism.
Referring to fig. 4, the screw-structured rotary insertion type component mounting mechanism 19 includes a rod-like housing 191 for a screw-structured rotary insertion type component mounting mechanism, a cable insertion groove structure 192 for a screw-structured rotary insertion type component mounting mechanism, a screw pipe body 193 for a screw-structured rotary insertion type component mounting mechanism, a touch panel groove structure 194 for a screw-structured rotary insertion type component mounting mechanism, a touch panel 195 for a screw-structured rotary insertion type component mounting mechanism, a bearing 196 for a screw-structured rotary insertion type component mounting mechanism, a screw rod 197 for a screw-structured rotary insertion type component mounting mechanism, a screw structure 198 for a screw-structured rotary insertion type component mounting mechanism, and a rotary plate 199 for a screw-structured rotary insertion type component; a cable insertion groove structure 192 for a screw-structured rotary insertion-type component mounting mechanism is provided at the center inside one side of the rod-like housing 191 for the screw-structured rotary insertion-type component mounting mechanism, a screw pipe body 193 for a screw-structured rotary insertion-type component mounting mechanism of a structure integrated with the rod-like housing 191 for the screw-structured rotary insertion-type component mounting mechanism is provided on the side surface of the rod-like housing 191 for the screw-structured rotary insertion-type component mounting mechanism, a plurality of touch panel groove structures 194 for a screw-structured rotary insertion-type component mounting mechanism are provided on the inner wall of the cable insertion groove structure 192 for the screw-structured rotary insertion-type component mounting mechanism, a touch panel 195 for a screw-structured rotary insertion-type component mounting mechanism is mounted inside each of the touch panel groove structures 194 for the screw-structured rotary insertion-type, a threaded rod 197 for a screw-structured rotary insertion-type component mounting mechanism is attached to one end surface of the touch panel 195 for a screw-structured rotary insertion-type component mounting mechanism, a rod body of the threaded rod 197 for a screw-structured rotary insertion-type component mounting mechanism penetrates the rod-shaped housing 191 for a screw-structured rotary insertion-type component mounting mechanism and the screw pipe body 193 for a screw-structured rotary insertion-type component mounting mechanism, the threaded rod 197 for a screw-structured rotary insertion-type component mounting mechanism and the screw pipe body 193 for a screw-structured rotary insertion-type component mounting mechanism are connected to each other through a screw structure 198 for a screw-structured rotary insertion-type component mounting mechanism, and a rotary plate 199 for a screw-structured rotary insertion-type component mounting mechanism is attached to an; the other end surface of the rod-shaped shell 191 for the threaded structure rotary plug-in type component mounting mechanism is fixedly connected with one end of the main body shell 1; the thread structure 198 for the thread structure rotation insertion type component mounting mechanism comprises an internal thread structure arranged on the inner wall of a rod-shaped outer shell 191 for the thread structure rotation insertion type component mounting mechanism and an external thread structure arranged on a threaded rod 197 for the thread structure rotation insertion type component mounting mechanism, and has the main functions of: the power transmission line and the wire connected with the power supply are placed inside the groove structure 192 through the cable for the screw thread structure rotation plug-in type component mounting mechanism, and then the screw thread 197 for the screw thread structure rotation plug-in type component mounting mechanism is rotated to fix the wire.
The specific use mode is as follows: during the operation of the invention, the wire body of the guide wire is clamped in the annular groove structure 18 at the bottom in the top pulley 12, the rotary type longitudinal distance adjusting mechanism 15 of the reverse thread structure is adjusted, so that the bottom pulley 17 can be clamped at the bottom of the wire body of the guide wire, the power transmission line and the guide wire connected with the power supply are arranged in the rotary insertion type component mounting mechanism 19 of the thread structure, the power output end of the guide wire connected with the power supply is connected with the power input end of the driving motor 4, at the moment, the driving motor 4 rotates to drive the two pairs of belt pulleys 10 to rotate, and the movement effect can be realized under the rotation effect of the top pulley 12, and the electric wire mounting can be carried out by.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. The utility model provides a transmission line body draw gear for installation, includes main body cover (1), its characterized in that: the balance installation plate (2) of an integrated structure is arranged at the bottom of one side of the main body shell (1), a driving motor installation space (3) is arranged in the main body shell (1), a driving motor (4) is installed in the driving motor installation space (3), a motor spindle (5) in the driving motor (4) penetrates through the main body shell (1), the motor spindle and the main body shell are fixedly connected through a main bearing (9) between penetrating positions, a main belt pulley (6) is installed at one end, located outside, of the motor spindle (5), a main vertical plate (8) is installed at one side of the top of the main body shell (1), two main rotating shafts (13) with the same height are installed at the top of the main vertical plate (8) through the main bearing (9), and a pair of belt pulleys (10) are installed at one end, located at the same side of the main belt pulley (6), of the two main, the belt type balance weight block balance device is characterized in that the main belt wheel (6) is connected with two auxiliary belt wheels (10) through a belt (11), a balance weight block (7) is arranged on the upper surface of the balance mounting plate (2) in a balanced mode, two main pulleys (12) are arranged on the other side shaft body of the main rotating shaft (13), two main pulleys (13) are connected with the shaft body of the other end of the main rotating shaft (13) through a two-part rotating type fixed connecting mechanism (14) at the horizontal height, another main rotating shaft (16) is arranged at two ends of the two-part rotating type fixed connecting mechanism (14) at the horizontal height, two auxiliary pulleys (17) are arranged at one end of the auxiliary limiting shaft (16), the auxiliary pulleys (17) are located under the main pulleys (12) and are fixedly connected with the middle part of the two-part rotating type fixed connecting mechanism (14) at the horizontal height through a reverse threaded structure rotating type, the periphery of the main pulley (12) and the auxiliary pulley (17) is provided with an annular groove structure (18), and a threaded structure rotary plug-in type component mounting mechanism (19) is mounted in the center of one side of the main body shell (1).
2. The wire body traction device for power transmission line installation according to claim 1, wherein: the horizontal two-part rotary fixed connecting mechanism (14) comprises a horizontal rod body (141) for the horizontal two-part rotary fixed connecting mechanism, an external bearing (142) for the horizontal two-part rotary fixed connecting mechanism, an external shaft sleeve (143) for the horizontal two-part rotary fixed connecting mechanism, a first shaft hole (144) for the horizontal two-part rotary fixed connecting mechanism, a second shaft hole (145) for the horizontal two-part rotary fixed connecting mechanism, a first bearing (146) for the horizontal two-part rotary fixed connecting mechanism and a second bearing (147) for the horizontal two-part rotary fixed connecting mechanism; install a horizontal height two parts rotation type external bearing (142) for fixed connection mechanism on the middle section body of rod of horizontal body of rod (141) for horizontal height two parts rotation type fixed connection mechanism, the outer loop of horizontal height two parts rotation type external bearing (142) for fixed connection mechanism cup joints in the inside of horizontal height two parts rotation type external shaft sleeve (143) for fixed connection mechanism, the inside at horizontal height two parts rotation type for fixed connection mechanism horizontal body of rod (141) both ends is provided with horizontal height two parts rotation type fixed connection mechanism respectively and uses first shaft hole (144) and horizontal height two parts rotation type second shaft hole (145) for fixed connection mechanism, horizontal height two parts rotation type for fixed connection mechanism first shaft hole (144) and horizontal height two parts rotation type for fixed connection mechanism second shaft hole (145) inside is installed horizontal height two parts rotation type for fixed connection mechanism respectively and uses first bearing (146) for fixed connection mechanism ) And a second bearing (147) for a horizontal two-part rotary type fixed connection mechanism.
3. The wire body traction device for power transmission line installation according to claim 2, wherein: and shaft bodies of the main rotating shaft (13) and the auxiliary rotating shaft (16) are arranged in inner rings of the first bearing (146) for the horizontal two-component rotary type fixed connecting mechanism and the second bearing (147) for the horizontal two-component rotary type fixed connecting mechanism.
4. The wire body traction device for power transmission line installation according to claim 2, wherein: the horizontal two-part rotary fixed connecting mechanism is arranged in the inner parts of two ends of the rotary longitudinal distance adjusting mechanism (15) with a reverse thread structure by using an external shaft sleeve (143).
5. The wire body traction device for power transmission line installation according to claim 1, wherein: the reverse thread structure rotary type longitudinal distance adjusting mechanism (15) comprises a thread sleeve (151) for a reverse thread structure rotary type longitudinal distance adjusting mechanism, a thread section (152) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a thread structure (153) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a top threaded rod (155) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a limiting hole (156) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a limiting rod (157) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a first mounting block (158) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a second mounting block (159) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, A first mounting hole (1510) for a reverse thread structure rotary type longitudinal distance adjustment mechanism and a second mounting hole (1511) for a reverse thread structure rotary type longitudinal distance adjustment mechanism; the thread sleeve for the reverse thread structure rotary type longitudinal distance adjusting mechanism is characterized in that a thread section (152) for the reverse thread structure rotary type longitudinal distance adjusting mechanism is arranged at the center inside the thread sleeve (151) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and communicated with the thread sleeve (151) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, the thread sleeve (151) for the reverse thread structure rotary type longitudinal distance adjusting mechanism is positioned on the inner wall of the thread section (152) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and is provided with a thread structure (153) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, and the bottom and the top of the thread section (152) for the reverse thread structure rotary type longitudinal distance adjusting mechanism are respectively connected with a bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a reverse thread structure rotary type longitudinal distance adjusting machine through the thread structure (153) for the reverse thread A top threaded rod (155) for the structure, a bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a top threaded rod (155) for the reverse thread structure rotary type longitudinal distance adjusting mechanism are respectively provided with a limiting hole (156) for the reverse thread structure rotary type longitudinal distance adjusting mechanism in the opposite end, a limiting rod (157) for the reverse thread structure rotary type longitudinal distance adjusting mechanism is inserted into the limiting hole (156) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, the other two ends of the bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the top threaded rod (155) for the reverse thread structure rotary type longitudinal distance adjusting mechanism are respectively provided with a first mounting block (158) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a second mounting block (159) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, a first mounting hole (1510) for the reverse-thread-structure rotary type longitudinal distance adjusting mechanism and a second mounting hole (1511) for the reverse-thread-structure rotary type longitudinal distance adjusting mechanism are arranged inside the first mounting block (158) for the reverse-thread-structure rotary type longitudinal distance adjusting mechanism and the second mounting block (159) for the reverse-thread-structure rotary type longitudinal distance adjusting mechanism.
6. The wire body traction device for power transmission line installation according to claim 5, wherein: the thread structure (153) for the reverse thread structure rotary type longitudinal distance adjusting mechanism comprises an internal thread structure arranged on the inner wall of a thread sleeve (151) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and an external thread structure arranged on a bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and a top threaded rod (155) for the reverse thread structure rotary type longitudinal distance adjusting mechanism, and is located in the opposite thread directions of the thread structures on the bottom threaded rod (154) for the reverse thread structure rotary type longitudinal distance adjusting mechanism and the top threaded rod (155) for the reverse thread structure rotary type longitudinal distance adjusting mechanism.
7. The wire body traction device for power transmission line installation according to claim 5, wherein: the structure appearance of reverse thread structure rotation type is the triangle-shaped structure with the structure appearance of spacing hole (156) cross section for longitudinal distance adjustment mechanism and the structure appearance of reverse thread structure rotation type spacing rod (157) cross section for longitudinal distance adjustment mechanism, the internally mounted of reverse thread structure rotation type is two level two parts rotation type fixed connection mechanism and is used outside axle sleeve (143) with first mounting hole (1510) and reverse thread structure rotation type second mounting hole (1511) for longitudinal distance adjustment mechanism for the longitudinal distance adjustment mechanism.
8. The wire body traction device for power transmission line installation according to claim 1, wherein: the screw-structured rotary insertion-type component mounting mechanism (19) comprises a rod-shaped housing (191) for a screw-structured rotary insertion-type component mounting mechanism, a cable insertion groove structure (192) for a screw-structured rotary insertion-type component mounting mechanism, a screw pipe body (193) for a screw-structured rotary insertion-type component mounting mechanism, a touch panel groove structure (194) for a screw-structured rotary insertion-type component mounting mechanism, a touch panel (195) for a screw-structured rotary insertion-type component mounting mechanism, a bearing (196) for a screw-structured rotary insertion-type component mounting mechanism, a threaded rod (197) for a screw-structured rotary insertion-type component mounting mechanism, a screw structure (198) for a screw-structured rotary insertion-type component mounting mechanism; the inside center of rotatory bayonet part installation mechanism of screw thread structure for shaft-like shell (191) one side is provided with the rotatory bayonet part installation mechanism of screw thread structure and inserts groove structure (192) with the cable, the side of the rotatory bayonet part installation mechanism of screw thread structure for shaft-like shell (191) is provided with the rotatory bayonet part installation mechanism of screw thread structure for threaded pipe body (193) rather than integral type structure, the rotatory bayonet part installation mechanism of screw thread structure is in shaft-like shell (191) is lieing in the inner wall of the rotatory bayonet part installation mechanism of screw thread structure for cable insert groove structure (192) is provided with a plurality of screw thread structures and rotates bayonet part installation mechanism and uses touch panel groove structure (194), every the inside of the rotatory bayonet part installation mechanism of screw thread structure for touch panel groove structure (194) installs a rotatory bayonet part installation of screw thread structure through the rotatory bayonet part installation mechanism of screw A mechanism touch plate (195), one end surface of the screw structure rotation plug-in type component mounting mechanism touch plate (195) is provided with a screw rod (197) for the screw structure rotation plug-in type component mounting mechanism, a rod body of the threaded rod (197) for the screw-structured rotary-insert-type component mounting mechanism penetrates the rod-shaped housing (191) for the screw-structured rotary-insert-type component mounting mechanism and the threaded pipe body (193) for the screw-structured rotary-insert-type component mounting mechanism, and the threaded rod (197) for the thread structure rotation insertion type component mounting mechanism and the threaded pipe body (193) for the thread structure rotation insertion type component mounting mechanism are connected by the thread structure (198) for the thread structure rotation insertion type component mounting mechanism, a rotating plate (199) for a screw-structured rotary insertion-type component mounting mechanism is attached to an end of the threaded rod (197) for a screw-structured rotary insertion-type component mounting mechanism.
9. The wire body traction device for power transmission line installation according to claim 8, wherein: the other end face of the rod-shaped outer shell (191) for the threaded structure rotary plug-in type component mounting mechanism is fixedly connected with one end of the main body outer shell (1).
10. The wire body traction device for power transmission line installation according to claim 8, wherein: the thread structure (198) for the thread structure rotation insertion type component mounting mechanism comprises an internal thread structure arranged on the inner wall of a rod-shaped outer shell (191) for the thread structure rotation insertion type component mounting mechanism and an external thread structure arranged on a threaded rod (197) for the thread structure rotation insertion type component mounting mechanism.
CN202010280594.1A 2020-04-10 2020-04-10 Line body draw gear is used in power transmission line installation Withdrawn CN111422684A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010280594.1A CN111422684A (en) 2020-04-10 2020-04-10 Line body draw gear is used in power transmission line installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010280594.1A CN111422684A (en) 2020-04-10 2020-04-10 Line body draw gear is used in power transmission line installation

Publications (1)

Publication Number Publication Date
CN111422684A true CN111422684A (en) 2020-07-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202010280594.1A Withdrawn CN111422684A (en) 2020-04-10 2020-04-10 Line body draw gear is used in power transmission line installation

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CN (1) CN111422684A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113184628A (en) * 2021-04-21 2021-07-30 安徽诚得信电子科技有限公司 Multi-station wire harness traction equipment applied to wire harness machining
CN113517659A (en) * 2021-06-18 2021-10-19 国网河北省电力有限公司成安县供电分公司 Paying-off and tightening device for power transmission line

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113184628A (en) * 2021-04-21 2021-07-30 安徽诚得信电子科技有限公司 Multi-station wire harness traction equipment applied to wire harness machining
CN113517659A (en) * 2021-06-18 2021-10-19 国网河北省电力有限公司成安县供电分公司 Paying-off and tightening device for power transmission line

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Application publication date: 20200717