CN207300226U - A kind of Iron tower incline rate measuring instrument - Google Patents

A kind of Iron tower incline rate measuring instrument Download PDF

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Publication number
CN207300226U
CN207300226U CN201721017079.4U CN201721017079U CN207300226U CN 207300226 U CN207300226 U CN 207300226U CN 201721017079 U CN201721017079 U CN 201721017079U CN 207300226 U CN207300226 U CN 207300226U
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China
Prior art keywords
driving mechanism
axis
dial plate
iron tower
axis driving
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CN201721017079.4U
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Chinese (zh)
Inventor
李佳
王浩
王福海
马素岩
刘博晗
燕雨
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Shandong Transmission And Transformation Engineering Co Ltd
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Shandong Transmission And Transformation Engineering Co Ltd
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Priority to CN201721017079.4U priority Critical patent/CN207300226U/en
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Abstract

The purpose of this utility model is to provide a kind of Iron tower incline rate measuring instrument, for solving the technical problem to Iron tower incline rate ordinary surveying.It includes support base, driving mechanism, measuring mechanism, positioning marking mechanism and control system;The support base is installed on the top of steel tower, and the driving mechanism is movably installed on support base, and the measuring mechanism is installed in the driving mechanism, and measuring mechanism includes light source emitter;The positioning marking mechanism includes dial plate, and the dial plate is located at the bottom of an iron rake with three to six teeth, and dial plate is equipped with X-axis graduation mark and Y-axis graduation mark;Dial plate is correspondingly arranged up and down with the light source emitter;The driving mechanism is electrically connected with the control system.The utility model beneficial effect:It is simple in structure, carry, is easy to use, it is with strong applicability to iron tower of power transmission line engineering construction actual conditions, significantly improve the measurement efficiency and measurement accuracy of Iron tower incline rate.

Description

A kind of Iron tower incline rate measuring instrument
Technical field
Iron tower incline rate measuring device technical field is the utility model is related to, specifically a kind of Iron tower incline rate measurement Instrument.
Background technology
Measurement to Iron tower incline rate at present is mainly based on transit survey, and one kind exists in the prior art, and " steel tower inclines The equipment of slope on-line monitoring system ", " Iron tower incline rate on-line monitoring system " can monitor shaft tower and tilt and by network by number According to monitoring center is passed back, this kind of equipment need to install two shaft towers on steel tower and tilt monitoring unit, be separately fixed at positioned at shaft tower At 2/3 height and shaft tower top.
But " Iron tower incline rate on-line monitoring system " installation is complicated, and modified device is suitable for carrying out a base steel tower The situation of continuous monitoring, in practice of construction, unit in charge of construction need not carry out long-time continuity slope to a base steel tower Monitoring, but the measurement for the heeling condition sometime put to the steel tower of substantial amounts.
Utility model content
It is simple to Iron tower incline rate for solving the purpose of this utility model is to provide a kind of Iron tower incline rate measuring instrument The technical problem of measurement.
The technical scheme in the invention for solving the technical problem is:
A kind of Iron tower incline rate measuring instrument, including support base, driving mechanism, measuring mechanism, positioning marking mechanism and control System;The support base is installed on the top of steel tower, and the driving mechanism is movably installed on support base, the measurement Mechanism is installed in the driving mechanism, and measuring mechanism includes light source emitter;The positioning marking mechanism includes sign Plate, the dial plate are located at the bottom of an iron rake with three to six teeth, and dial plate is equipped with X-axis graduation mark and Y-axis graduation mark;Dial plate and the light Source transmitter is correspondingly arranged up and down;The driving mechanism is electrically connected with the control system.
Further, the driving mechanism includes X-axis driving mechanism and Y-axis driving mechanism, the X axis driving machines Structure is installed on the support base, and the Y-axis driving mechanism is connected with the power output end of X-axis driving mechanism;The Y-axis The power output end of driving mechanism is connected with the measuring mechanism.
Further, the X-axis driving mechanism and Y-axis driving mechanism use screw screw mechanism.
Further, the dial plate uses 90 ° of sector structures.
The effect provided in utility model content is only the effect of embodiment, rather than whole effects that utility model is all Fruit, has the following advantages that in above-mentioned technical proposal or beneficial effect:
It is simple in structure, carry, is easy to use, it is with strong applicability to iron tower of power transmission line engineering construction actual conditions, significantly Improve the measurement efficiency and measurement accuracy of Iron tower incline rate.
Brief description of the drawings
Fig. 1 is the overall structure schematic elevation view of the utility model embodiment;
Fig. 2 is X-axis driving mechanism and Y-axis driving mechanism and measuring mechanism matching relationship in the utility model embodiment Elevational schematic view;
Fig. 3 is the schematic top plan view of dial plate;
In figure:1. support base;2. measuring mechanism;3. position marking mechanism;4. control cabinet;5.X axis driving mechanisms;6.Y axis Driving mechanism;21. laser emitter;31. dial plate;32.X axis graduated scales;33.Y axis graduated scales;51.X axis drive installation seats; 52.X axis drives motor;53.X axis drives screw;54.X axis drives screw;55.X axis drives sliding block;The driving installation of 61.Y axis Seat;62.Y axis drives motor;63.Y axis drives screw;64.Y axis drives screw;65.Y axis drives sliding block;7. steel tower.
Embodiment
In order to the technical characterstic of clear explanation this programme, below by embodiment, and its attached drawing is combined, to this Utility model is described in detail.It should be noted that illustrated component is not drawn necessarily to scale in the accompanying drawings.The utility model Eliminate to known assemblies and known technology description, to avoid the utility model is unnecessarily limiting.
As shown in Figures 1 to 3, a kind of Iron tower incline rate measuring instrument, including support base 1, driving mechanism, measuring mechanism 2, positioning Marking mechanism 3 and control system.The support base 1 uses cross frame structure, and 1 level of support base is fixedly mounted on steel tower 7 Top.The driving mechanism is installed on the bottom of the support base 1, for driving the measuring mechanism 2 to move, makes Measuring mechanism 2 can be moved to the center on 7 top of steel tower.
The driving mechanism includes X-axis driving mechanism 5 and Y-axis driving mechanism 6, and the X-axis driving mechanism 5 includes X-axis Drive installation seat 51, X-axis driving motor 52, X-axis driving screw 53, X-axis driving screw 54 and X-axis driving sliding block 55.The X Axis drive installation seat 51 is fixedly mounted on the X-direction lower end of the support base 1, and the both sides of X-axis drive installation seat 51 are equipped with X-axis Sliding slot;The both ends of the X-axis driving screw 53 are rotatably installed in the X-axis drive installation seat 51;The X-axis driving Motor 52 is installed on one end of the X-axis drive installation seat 51, and the power output end of X-axis driving motor 52 drives with the X-axis The power intake connection of screw 53;The X-axis driving motor 52 uses stepper motor, X-axis driving motor 52 and the control System processed is electrically connected;The X-axis driving screw 54, which matches, to be threaded on the X-axis driving screw 53, the X-axis Sliding block 55 is driven to be installed on the bottom of X-axis driving screw 54, the both sides of X-axis driving sliding block 55 are equipped with X-axis slide rail, described X-axis slide rail is slidably mounted in the X-axis sliding slot.
The Y-axis driving mechanism 6 includes Y-axis drive installation seat 61, Y-axis driving motor 62, Y-axis driving screw 63, Y-axis and drives Dynamic screw 64 and Y-axis driving sliding block 65.The Y-axis drive installation seat 61 is fixedly mounted under the X-axis driving sliding block 55 End, the both sides of Y-axis drive installation seat 61 are equipped with Y-axis sliding slot;The both ends of the Y-axis driving screw 63 are rotatably installed on described Y-axis drive installation seat 61 on;The Y-axis driving motor 62 is installed on one end of the Y-axis drive installation seat 61, Y-axis driving The power output end of motor 62 is connected with the power intake of Y-axis driving screw 63;The Y-axis driving motor 62 is using step Stepper motor, Y-axis driving motor 62 are electrically connected with the control system;The Y-axis driving matching of screw 64 is threaded in On the Y-axis driving screw 63, the Y-axis driving sliding block 65 is installed on the bottom of Y-axis driving screw 64, Y-axis driving The both sides of sliding block 65 are equipped with Y-axis slide, and the Y-axis slide is slidably mounted in the Y-axis sliding slot.
The measuring mechanism 2 includes measurement mounting base and laser emitter 21, the measurement mounting base are installed on institute The bottom of Y-axis driving sliding block 65 is stated, the laser emitter 21 is vertically installed at the lower end of measurement mounting base, laser emitter 21 light source transmitting terminal is installed downward.Under the action of control system, driven by adjusting the X-axis driving mechanism 5 and Y-axis Mechanism 6, can make measuring mechanism 2 be located at the center on 7 top of steel tower.
The positioning marking mechanism 3 is installed on 7 bottom of steel tower, and positioning marking mechanism 3 includes dial plate 31, the mark Show that plate 31 uses 90 ° of sector structures, dial plate 31 is equipped with X-axis graduated scale 32 and Y axis graduated scale 33;The X-axis graduated scale 32 It is 1cm with the scale interval on Y-axis graduated scale 33;The right angle end of the dial plate 31 is overlapped with the center of 7 bottom of steel tower, X-axis Graduated scale 32 is overlapped with the X shaft centre lines of steel tower 7, and Y-axis graduated scale 33 is overlapped with the Y-axis center line of steel tower 7.Work as Laser emission When device 21 is aimed downwardly, light beam is radiated on dial plate 31, and the number of coordinates on dial plate 31 is read according to beam irradiation position Word, is the numeral of 7 top structure center deviation bottom centre of steel tower.
The control system includes manipulation plate, controller, wireless receiver and control cabinet 4;The controller and nothing For line receiver integrated installation in the control cabinet 4, the control cabinet 4 is installed on the upper end of the support base 1, described Manipulation plate uses remote control panel, and manipulation plate is equipped with corresponding control button.The signal input part of the controller and the nothing Line receiver is electrically connected, wireless receiver and the manipulation plate wireless connection;The signal output part of the controller respectively with X-axis driving motor 52, Y-axis driving motor 62 and the laser emitter 21 is electrically connected.
The advantages of technical solutions of the utility model embodiment, is:It is simple in structure, carry, is easy to use, to transmission line of electricity 7 engineering construction actual conditions of steel tower are with strong applicability, significantly improve the measurement efficiency and measurement accuracy of 7 slope of steel tower.
It is the known technology of those skilled in the art in addition to the technical characteristic described in specification.
It is above-mentioned although specific embodiments of the present invention are described with reference to the accompanying drawings, but not to this practicality newly The limitation of type protection domain, on the basis of technical solutions of the utility model, those skilled in the art need not pay creativeness The various modifications that can make of work or deformation it is still within the protection scope of the present utility model.

Claims (4)

1. a kind of Iron tower incline rate measuring instrument, its feature are being, including support base, driving mechanism, measuring mechanism, positioning Marking machine Structure and control system;The support base is installed on the top of steel tower, and the driving mechanism is movably installed on support base, institute The measuring mechanism stated is installed in the driving mechanism, and measuring mechanism includes light source emitter;The positioning marking mechanism Including dial plate, the dial plate is located at the bottom of an iron rake with three to six teeth, and dial plate is equipped with X-axis graduation mark and Y-axis graduation mark;Dial plate with The light source emitter is correspondingly arranged up and down;The driving mechanism is electrically connected with the control system.
2. a kind of Iron tower incline rate measuring instrument according to claim 1, it is characterized in that, the driving mechanism includes X-axis Driving mechanism and Y-axis driving mechanism, the X-axis driving mechanism are installed on the support base, the Y-axis driving mechanism It is connected with the power output end of X-axis driving mechanism;The power output end of the Y-axis driving mechanism is connected with the measuring mechanism.
3. a kind of Iron tower incline rate measuring instrument according to claim 2, it is characterized in that, the X-axis driving mechanism and Y-axis Driving mechanism uses screw screw mechanism.
4. a kind of Iron tower incline rate measuring instrument according to claim 1, it is characterized in that, the dial plate uses 90 ° of sectors Structure.
CN201721017079.4U 2017-08-14 2017-08-14 A kind of Iron tower incline rate measuring instrument Active CN207300226U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721017079.4U CN207300226U (en) 2017-08-14 2017-08-14 A kind of Iron tower incline rate measuring instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721017079.4U CN207300226U (en) 2017-08-14 2017-08-14 A kind of Iron tower incline rate measuring instrument

Publications (1)

Publication Number Publication Date
CN207300226U true CN207300226U (en) 2018-05-01

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020098020A1 (en) * 2018-11-16 2020-05-22 凯睿隆誉(成都)科技有限公司 Pylon tilt monitoring method and system based on invisible light

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020098020A1 (en) * 2018-11-16 2020-05-22 凯睿隆誉(成都)科技有限公司 Pylon tilt monitoring method and system based on invisible light

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CB03 Change of inventor or designer information
CB03 Change of inventor or designer information

Inventor after: Li Jia

Inventor after: Wang Hao

Inventor after: Wang Fuhai

Inventor after: Ma Suyan

Inventor after: Liu Bo

Inventor after: Yan Yu

Inventor before: Li Jia

Inventor before: Wang Hao

Inventor before: Wang Fuhai

Inventor before: Ma Suyan

Inventor before: Liu Bohan

Inventor before: Yan Yu