[go: up one dir, main page]

CN205619923U - Crustal inclination monitoring devices - Google Patents

Crustal inclination monitoring devices Download PDF

Info

Publication number
CN205619923U
CN205619923U CN201620466520.6U CN201620466520U CN205619923U CN 205619923 U CN205619923 U CN 205619923U CN 201620466520 U CN201620466520 U CN 201620466520U CN 205619923 U CN205619923 U CN 205619923U
Authority
CN
China
Prior art keywords
suspension
electric capacity
pendulum
moving plate
utility
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201620466520.6U
Other languages
Chinese (zh)
Inventor
吴清荣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201620466520.6U priority Critical patent/CN205619923U/en
Application granted granted Critical
Publication of CN205619923U publication Critical patent/CN205619923U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Geophysics And Detection Of Objects (AREA)

Abstract

The utility model discloses a crustal inclination monitoring devices, including device shell, be equipped with in the device shell and suspend frame and processing circuit board in midair, suspend the frame in midair and go up the quadrature and be equipped with two sets of capacitive sensor, capacitive sensor includes electric capacity still, electric capacity moving plate, pendulum, and electric capacity still equidistance is laid in electric capacity moving plate both sides and is established on same horizontal plane with the electric capacity moving plate is parallel, and the electric capacity still is established on suspending the frame in midair, and the pendulum hangs to be established suspend in midair the frame go up and arrange in electric capacity moving plate below and with electric capacity moving plate rigid connection, the two sets of capacitive sensor respectively with the processing circuit board electricity even, suspend in midair and still be equipped with zero set mechanism on the frame. The utility model discloses the two sets of capacitive sensor each other do not influence when the zero set, and the pendulum drives the electric capacity moving plate and removes and change electric capacity moving plate and electric capacity still interval volume that produces capacitance variation, the influence of the stiction of pendulum among the elimination prior art, the utility model discloses the inclination deformation of mainly used monitoring earth tide, seismic precursor and the earth's crust, the utility model discloses simple structure, stability is good, the precision is high, the linear degree of output is high.

Description

A kind of ground device for monitoring inclination
Technical field
The utility model relates to precision measurement apparatus technical field, particularly relate to monitoring earth tide, The device of the inclination and distortion of seismic precursor and the earth's crust.
Background technology
Ground device for monitoring inclination is being observed and Research on Crustal shape as a kind of geodynamics instrument Becoming, the prediction to earthquake and earth tide has important effect, and ground tilt measurement is from last century Since the seventies, China carry out ratio is wide.Common ground tilt measurement has horizontal pendulum With vertical pendulum two kinds, horizontal pendulum declivity observation sensitivity is higher, but be easily disturbed, poor stability, The precision making measurement is not high.Vertical-pendulum clinometer utilizes vertical principle, its simple in construction, property Can be stable, it is widely applied, but existing vertical-pendulum clinometer, the dynamic range of pendulum Frequency band narrower, response is narrower, damping is undesirable, often occurs, by pendulum phenomenon, causing Data are discontinuous so that the output linearity of vertical-pendulum clinometer is low.And in urbanization process Under observing environment, there is the interference source such as industry, traffic, the platform location meeting mounting condition is more difficult Look for, significantly constrain the observation that existing vertical pendulum tilts.
Utility model content
The purpose of this utility model is for above-mentioned the deficiencies in the prior art, and provides a kind of structure Simply, the ground device for monitoring inclination that certainty of measurement is high, output linearity degree is high.
For solving above-mentioned technical problem, the technical scheme that the utility model uses is:
Ground device for monitoring inclination is provided, including crust of the device, in this crust of the device, is provided with suspention Frame and for processing the process circuit board of signal, orthogonal on this suspension is provided with two set electric capacity Sensor, this capacitance sensor includes electric capacity still, electric capacity moving plate, pendulum, and described electric capacity is quiet Piece is equidistantly laid in the both sides of described electric capacity moving plate and is set in parallel in same with this electric capacity moving plate On horizontal plane, the connection of described electric capacity still is arranged on described suspension, and described pendulum hangs and is located at It on described suspension, and is placed in below described electric capacity moving plate and is rigidly connected with this electric capacity moving plate, Two overlap described capacitance sensor is electrically connected with described process circuit board respectively, and described suspension also sets It is equipped with the null setting for carrying out zero point adjustment to described capacitance sensor.
In the utility model ground another embodiment of device for monitoring inclination, described orthogonal setting Two set capacitance sensors are the first capacitance sensor on described suspension for the upper and lower omnidirectional distribution With the second capacitance sensor, described null setting includes entering described two set capacitance sensors respectively First null setting of row zero point adjustment and the second null setting.
In the utility model ground another embodiment of device for monitoring inclination, described first zeroing machine Vertical support plate that structure and the second null setting all include vertically being fixedly installed on described suspension, Move up and down adjusting lever, the level board being arranged on described suspension, one end of described level board It hinged is arranged on described vertical support plate and vertical with this vertical support plate, another of described level board End is supported by one end of described adjusting lever, and the other end of this adjusting lever is connected with for driving The zeroing motor that this adjusting lever moves up and down, described electric capacity still is fixedly installed on described level board Upper surface so that be indirectly connected with being arranged on described suspension, described pendulum hangs and is located at described water The lower surface of flat board and then indirectly hang is located on described suspension.
In the utility model ground another embodiment of device for monitoring inclination, described suspension is served as reasons The frame structure that upper and lower, left and right support is in turn connected to form, in this suspension, middle part is fixing Being provided with intermediate support, the vertical support plate of described first null setting is fixedly installed on this suspension Upper bracket on, the adjusting lever of described first null setting move be arranged on this suspension upper On frame, the vertical support plate of described second null setting is fixedly installed on the intermediate support of this suspension On, the adjusting lever of described second null setting moves on the intermediate support being arranged on this suspension.
In the utility model ground another embodiment of device for monitoring inclination, described two set electric capacity pass Sensor all also includes caliberating device, and this caliberating device includes the pendulum line being installed on described pendulum Circle and the calibration coil being installed on described suspension using with described pendulum fitting coils, institute The calibration coil stating the first capacitance sensor is fixedly installed on the upper bracket of described suspension, institute The calibration coil stating the second capacitance sensor is fixedly installed on the intermediate support of described suspension.
In the utility model ground another embodiment of device for monitoring inclination, described capacitance sensor Also include lock swinging mechanism, this lock swinging mechanism include rotary electric machine, travel switch, lock cycloid and Being arranged on the hammerlock of described pendulum both sides, the described rotary electric machine of described travel switch control rotates, One end of described lock cycloid connects described rotary electric machine, and the other end connects described hammerlock.
In the utility model ground another embodiment of device for monitoring inclination, tilt monitoring describedly Device also includes orienting guiding mechanism, and this orientation guiding mechanism includes being installed in described crust of the device The fixing axle at middle part, be installed in the rotating shaft bottom described suspension, this fixing axle and this rotating shaft it Between meshed transmission gear, this rotating shaft be connected with orientation adjust motor.
In the utility model ground another embodiment of device for monitoring inclination, described orthogonal setting Two set capacitance sensors are arranged on same level, and left and right horizontal quadrature is distributed in described outstanding On suspension bracket.
In the utility model ground another embodiment of device for monitoring inclination, described suspension is served as reasons Up, down, left, right, before and after support plate connects the box like structure being formed, and described left and right is orthogonal to be set The electric capacity still of the capacitance sensor put all is installed in the upper surface of the upper supporting plate of this suspension, institute State pendulum all hang the lower surface of the upper supporting plate being located at this suspension and be in the box chamber of this suspension In, fill out around described pendulum in the box chamber of this suspension and be provided with damping material.
In the utility model ground another embodiment of device for monitoring inclination, described suspension is fixed Being arranged on inside described crust of the device, described null setting includes being installed at the bottom of described crust of the device The horizontal adjustment plate in portion, the upper supporting plate of described suspension be arranged in parallel with this horizontal adjustment plate, should The bottom surface corner of horizontal adjustment plate is provided with four adjustable lower margin legs, in described crust of the device It is installed with and adjust motor for the leg being adjusted described lower margin leg respectively.
The beneficial effects of the utility model are: the two set capacitance sensors that the utility model is arranged exist It is independent of each other during zeroing, and simple to operate, it is also independent of each other in the course of the work, can be to east The data of west and north and south both direction are separately monitored, it is thus achieved that real ground tilt variation, this In the technical scheme of utility model, electric capacity still and electric capacity moving plate are respectively positioned on the top of pendulum, pendulum Band dynamic condenser moving plate relative movement, changes the spacing between electric capacity moving plate and electric capacity still and produces electricity The variable quantity holding, the dynamic range of ground device for monitoring inclination can be increased to 114dB by this structure, Device can be made to run continuously for a long time, it is ensured that the continuity of output data.This structure disappears simultaneously Except the impact of the stiction of pendulum of the prior art, pendulum is relatively more flexible, sensitivity Higher, the data therefore exporting are more accurate, and the linearity of output is higher, and the utility model has The features such as simple in construction, good stability, maintenance and operation are simple, low in energy consumption, life-span length.
The two set upper and lower omnidirectional distribution of capacitance sensor, reduces of the present utility model furtherly The external diameter of crust of the device, makes the outside dimension of shell narrow down to 80mm~100mm, makes this reality Being more suitable in deep-well observation with novel, the two set null settings additionally arranging are respectively to corresponding Capacitance sensor carries out zeroing operation, makes the more simple side of each capacitance sensor zeroing operation Just quick.
The simple in construction of preferred null setting, easy to operate furtherly.
The caliberating device being preferably provided with furtherly, further eliminates systematic error, improves The accuracy of device, further increases output linearity degree.
The lock swinging mechanism being preferably provided with furtherly, it can be avoided that pendulum is at transport or moving process The flexural deformation of middle appearance causes the inaccurate irreversible impact of device precision.
The orientation guiding mechanism being preferably provided with furtherly, can adjust capacitance sensor relative to The direction of shell, can make the utility model not limited by geographical configuration.
Preferred two set capacitance sensors can be arranged on same water with horizontal quadrature furtherly In plane, the utility model so can be made to be more suitable for cavern's inner platform monitoring, the resistance of setting Buddhist nun's material, can stablize pendulum equally as soon as possible, exports data.
Carry out zeroing operation, appearance simple to operate preferably through burr adjustable tail margin leg furtherly Easily.
Brief description
Fig. 1 is the structural representation of embodiment 1 of the present utility model;
Fig. 2 is the structural representation of embodiment 2 of the present utility model.
Detailed description of the invention
For the ease of understanding the utility model, below in conjunction with the accompanying drawings and specific embodiment, to this reality It is described in detail with novel.Accompanying drawing gives and of the present utility model preferably implements Example.But, the utility model can realize in many different forms, however it is not limited to this theory Embodiment described by bright book.On the contrary, provide the purpose of these embodiments to be to make to this practicality The understanding of novel disclosure is more thorough comprehensively.
It should be noted that unless otherwise defined, all of technology that this specification is used and Scientific terminology with belong to the implication that those skilled in the art of the present utility model are generally understood that Identical.It is intended merely to describe concrete reality at term used in the description of the present utility model Execute the purpose of example, be not intended to limit the utility model.
Embodiment 1
Fig. 1 is the structural representation of a preferred embodiment of the present utility model, as it is shown in figure 1, A kind of ground device for monitoring inclination, including crust of the device 1, is provided with suspention in this crust of the device 1 Frame 2 and for processing the process circuit board 3 of signal, orthogonal on this suspension 2 is provided with two Set capacitance sensor, capacitance sensor includes electric capacity still the 4th, electric capacity moving plate the 5th, pendulum 6, Electric capacity still 4 is equidistantly laid in the both sides of electric capacity moving plate 5 and be arranged in parallel with this electric capacity moving plate 5 In same level, electric capacity still 4 connection is arranged on suspension 2, and pendulum 6 hangs and is located at It on this suspension 2, and is placed in below electric capacity moving plate 5 and is rigidly connected with this electric capacity moving plate 5, Two set capacitance sensors are electrically connected with process circuit board 3 respectively, and this suspension 2 is additionally provided with use In the null setting carrying out zero point adjustment to capacitance sensor.
When the earth's crust tilts, monitoring principle of the present utility model is as follows: in the utility model embodiment Pendulum 6 swing relative to suspension 2 with the inclination of the earth's crust, and then pendulum 6 swing band dynamic condenser Moving plate 5 relative capacity still 4 moves, and makes between electric capacity moving plate 5 and the electric capacity still 4 of both sides Spacing change, cause the electromotive force difference between two electric capacity stills 4 and electric capacity moving plate 5 Not there occurs change, process circuit board 3 and receive two electrical potential difference signals after changing, and by it It is converted into corresponding two voltage signals, then do difference with two voltage signals and draw pressure reduction, this pressure Difference i.e. reflects the variable quantity of the electric capacity in capacitance sensor, and two set capacitance sensors are monitored respectively The ground tilt condition of thing and north and south both direction, the treated circuit board of two paths of signals 3 is processed After, the data acquisition module being transferred to outside by cable carries out analog-to-digital conversion, is converted into number Word signal, stores at the core processor being sent to outside and transmits, by measurement electric capacity The change of amount just can monitor the tilt quantity of the earth accurately, it is achieved automatic monitor for continuously the earth inclines The purpose of oblique variable quantity, provides one for the monitoring of seismic system omen and stablizes, inclines reliably Tiltedly monitoring system.
Embodiment of the present utility model in use, needs first to carry out zero point tune to capacitance sensor Joint, two set capacitance sensors each carry out zero point regulation and are independent of each other, enforcement of the present utility model The data of thing and north and south both direction are separately monitored during monitoring by example respectively, and two Group data are independent of each other, and can obtain real ground tilt variation, and pendulum 6 carries dynamic condenser moving plate 5 Relative movement changes the spacing between itself and electric capacity still 4 and then produces the variable quantity of electric capacity.
Ground of the present utility model device for monitoring inclination pass through formula: The dynamic range trying to achieve the utility model ground tilt detecting device is 114dB, this dynamic range energy Device is enough made to run continuously for a long time, it is ensured that the continuity of output data.This structure eliminates simultaneously The impact of the stiction of pendulum in prior art, makes that pendulum is more flexible, sensitivity is higher, The data of output are more accurate, and the linearity of output is higher, the utility model have simple in construction, The features such as good stability, maintenance and operation are simple, low in energy consumption, life-span length.Can be widely applied to Seismic system ground tilts and earth tide monitoring.
In order to optimize above-described embodiment further, as it is shown in figure 1, suspension 2 for by upper and lower, The frame structure that left and right support is in turn connected to form, during in suspension 2, middle part is fixedly installed Between support 7, two set capacitance sensors be upper and lower omnidirectional distribution on suspension 2 first electricity Holding sensor and the second capacitance sensor, described null setting includes dividing two set capacitance sensors Do not carry out the first null setting and second null setting of zero point adjustment.
As it is shown in figure 1, the 8th, the first null setting and the second null setting all include vertical support plate Adjusting lever the 9th, level board 10, the vertical support plate 8 of the first null setting is vertically fixedly installed on outstanding On the upper bracket of suspension bracket 2, the vertical support plate 8 of the second null setting is vertically fixedly installed on suspention On the intermediate support 7 of frame 2, one end of level board 10 is hinged is arranged on the upper of vertical support plate 8 Holding and being vertically arranged with this vertical support plate 8, the other end of level board 10 is adjusted the one of bar 9 End supports, and the other end of adjusting lever 9 is connected with for driving this adjusting lever 9 to move up and down Zeroing motor, the adjusting lever 9 of the first null setting moves the upper bracket being arranged on suspension 2 On, the adjusting lever 9 of the second null setting moves on the intermediate support 7 being arranged on suspension 2, Electric capacity still 4 is fixedly installed on the upper surface of level board 10 and then is indirectly connected with being arranged on suspention On frame 2, pendulum 6 hangs and is located at the lower surface of level board 10 and then indirectly hangs and be located at suspension 2 On.
Before monitoring starts, need to carry out zeroing to capacitance sensor and arrange, by described zeroing Motor moves up and down the position adjusting described adjusting lever 9, and then adjusts described electric capacity still 4 institute The levelness of level board 10, in order to adjust described electric capacity moving plate 5 and described electric capacity still Relative position between 4, reaches the purpose of zeroing.
The upper and lower two set capacitance sensors that arrange of the utility model embodiment reduce this on the whole The external diameter of the crust of the device of utility model embodiment, makes the outside dimension of shell narrow down to 80mm~100mm, makes the utility model embodiment be more suitable for observation in deep-well, additionally arranges Two set null settings respectively corresponding capacitance sensor is carried out zeroing operation, make zeroing operate More simple and convenient fast.
Further optimizing above-described embodiment, two set capacitance sensors all also include caliberating device, This caliberating device includes the pendulum coil 11 being installed on pendulum 6 and joins with this pendulum coil 11 Close the calibration coil 12 being installed on suspension 2 using, the demarcation of the first capacitance sensor Coil 12 is fixedly installed on the upper bracket of suspension 2, the calibration line of the second capacitance sensor Circle 12 is fixedly installed on the intermediate support 7 of suspension 2.Need to pass electric capacity before monitoring The pendulum 6 of sensor is demarcated, after pendulum coil 11 and calibration coil 12 energising, and two coils Between produce magnetic field, level altitude guided to by pendulum 6 by calibration coil 12, produces fixing change Change amount reaches the purpose demarcated, and caliberating device can eliminate systematic error, improves the accurate of device Degree, further increases output linearity degree.
Further optimizing above-described embodiment, capacitance sensor also includes locking swinging mechanism, and this lock is put Mechanism includes rotary electric machine, travel switch, lock cycloid and the hammerlock being arranged on pendulum both sides, The trip switch control rule rotary electric machine rotates, and one end of lock cycloid connects rotary electric machine, the other end Connect the hammerlock of pendulum side, during transport, for preventing free-moving pendulum from occurring Flexural deformation, the monitoring accuracy causing device is inaccurate, turning of travel switch control rotary electric machine Dynamic, electrical power rotates Strain lock cycloid, drives two hammerlock clamping pendulums, makes pendulum fix On the side of support, complete lock pendulum.
Optimizing above-described embodiment further, ground device for monitoring inclination also includes orienting guiding mechanism, This orientation guiding mechanism includes that the fixing axle being installed in the middle part of described crust of the device 1 is the 17th, fixed Rotating shaft 18 bottom described suspension 2, passes through between this fixing axle 17 and this rotating shaft 18 One group of gear 19 meshed transmission gear, this rotating shaft 18 is connected with orientation and adjusts motor.Institute Stating adjustment electrical power rotation drives this rotating shaft 18 to rotate around this fixing axle 17, in order to adjust Capacitance sensor, relative to the direction of crust of the device 1, makes no matter the utility model is being in what During geographical position, all can make that two set capacitance sensors are correct respectively is in thing and two, north and south Direction.
Embodiment 2
The present embodiment is with the difference of embodiment 1: as in figure 2 it is shown, described orthogonal setting Two set capacitance sensors are arranged on same level, and left and right horizontal quadrature is distributed in suspension On 2.Optimize the present embodiment further, this suspension 2 for by upper and lower, left and right, front, Rear carrier plate connects the box like structure being formed, and it is internal that this suspension 2 is fixedly installed on crust of the device 1, The electric capacity still 4 of the capacitance sensor of the orthogonal setting in left and right be all installed in this suspension 2 upper The upper surface of plate, pendulum 6 all hangs the lower surface of the upper supporting plate being located at this suspension 2 and is in this In the box chamber of suspension 2.Fill out around pendulum 6 in the box chamber of this suspension 2 and be provided with damping Material 20.Null setting includes being installed in the horizontal adjustment plate 21 bottom crust of the device 1, should The upper supporting plate of suspension 2 be arranged in parallel with this horizontal adjustment plate 21, this horizontal adjustment plate 21 Bottom surface corner is provided with four adjustable lower margin legs 22, is fixedly installed in crust of the device 1 Leg for adjusting described lower margin leg 22 adjusts motor 23.Above-described embodiment is more suitable for Carry out Continuous Observation in cavern on preferred basement rock.
Preferably, the damping material 20 of the filling around pendulum 6 is oily matter, further It is preferably silicone oil, in the kinematic accuracy neither affecting pendulum and theory movement position, enable to Bob motion slows down, and makes electric capacity moving plate stable as soon as possible.Electric capacity moving plate stabilization energy as early as possible makes this reality Enter duty with novel device as early as possible.
Leg adjusts the phase contraposition that motor 23 energising rotates the corresponding horizontal adjustment plate 21 of regulation Put, and then the position of the upper supporting plate of this suspension 2 can be regulated, in order to adjust electric capacity moving plate 5 With the relative position between electric capacity still 4, reach the purpose of zeroing.
The utility model have simple in construction, good stability, precision is high, maintenance and operation simple, The features such as low in energy consumption, life-span length.
Finally should be noted that: the foregoing is only embodiment of the present utility model, and unprovoked This limits the scope of the claims of the present utility model, although entering the utility model with reference to preferred embodiment Having gone detailed description, those of ordinary skill in the field are it is understood that still can be to this The detailed description of the invention of utility model is modified or carries out equivalent replacing to portion of techniques feature Change, or be directly or indirectly used in other related technical fields, without deviating from the utility model The spirit of technical scheme, it all should cover the technical scheme scope being claimed at the utility model In the middle of.

Claims (10)

1. a ground device for monitoring inclination, including arrange in crust of the device, described crust of the device There is suspension and for processing the process circuit board of signal, it is characterised in that: described suspension Upper orthogonal being provided with two set capacitance sensors, described capacitance sensor includes electric capacity still, electric capacity Moving plate, pendulum, described electric capacity still be equidistantly laid in described electric capacity moving plate both sides and with described Electric capacity moving plate is set in parallel in same level, and the connection of described electric capacity still is arranged on described outstanding On suspension bracket, described pendulum hangs and is located on described suspension, and is placed in below described electric capacity moving plate simultaneously Being rigidly connected with described electric capacity moving plate, two overlap described capacitance sensor processes circuit with described respectively Plate is electrically connected, and described suspension is additionally provided with for carrying out zero point adjustment to described capacitance sensor Null setting.
2. device for monitoring inclination according to claim 1ly, it is characterised in that: described Two set capacitance sensors of orthogonal setting are upper and lower omnidirectional distribution first on described suspension Capacitance sensor and the second capacitance sensor, described null setting includes passing described two set electric capacity Sensor carries out the first null setting and second null setting of zero point adjustment respectively.
3. device for monitoring inclination according to claim 2ly, it is characterised in that: described First null setting and the second null setting all include vertically being fixedly installed on described suspension Vertical support plate, move up and down adjusting lever, the level board being arranged on described suspension, described One end of level board is hinged to be arranged on described vertical support plate and vertical with described vertical support plate, institute The other end stating level board is supported by one end of described adjusting lever, and the other end of described adjusting lever is even Connecing the zeroing motor being provided with for driving described adjusting lever to move up and down, described electric capacity still is solid Surely it is arranged on the upper surface of described level board and then be indirectly connected with being arranged on described suspension, institute State pendulum to hang and be located at the lower surface of described level board and then indirectly hang and be located on described suspension.
4. device for monitoring inclination according to claim 3ly, it is characterised in that: described Suspension is the frame structure being in turn connected to form by upper and lower, left and right support, described suspention In frame, middle part is fixedly installed intermediate support, and the vertical support plate of described first null setting is fixing to be set Putting on the upper bracket of described suspension, the adjusting lever of described first null setting moves and is arranged on On the upper bracket of described suspension, the vertical support plate of described second null setting is fixedly installed on institute State on the intermediate support of suspension, the adjusting lever of described second null setting move be arranged on described On the intermediate support of suspension.
5. device for monitoring inclination according to claim 4ly, it is characterised in that: described Two set capacitance sensors all also include caliberating device, and described caliberating device includes being installed on pendulum Pendulum coil and with described pendulum fitting coils use the mark being installed on described suspension Alignment circle, the calibration coil of described first capacitance sensor is fixedly installed on the upper of described suspension On support, the calibration coil of described second capacitance sensor is fixedly installed in described suspension Between on support.
6. device for monitoring inclination according to claim 5ly, it is characterised in that: described Capacitance sensor also include lock swinging mechanism, described lock swinging mechanism include rotary electric machine, travel switch, Lock cycloid and the hammerlock being arranged on described pendulum both sides, the described rotation of described travel switch control Electric machine rotation, one end of described lock cycloid connects described rotary electric machine, and the other end connects described lock Arm.
7. the ground according to any one claim in claim 1 to 6 tilts prison Survey device, it is characterised in that: described ground device for monitoring inclination also includes orienting guiding mechanism, institute State orientation guiding mechanism include being installed in the fixing axle in the middle part of described crust of the device, be installed in described Rotating shaft bottom suspension, meshed transmission gear between described fixing axle and described rotating shaft, described Rotating shaft is connected with orientation and adjusts motor.
8. device for monitoring inclination according to claim 1ly, it is characterised in that: described Two set capacitance sensors of orthogonal setting are arranged on same level, and left and right horizontal quadrature divides Cloth is on described suspension.
9. device for monitoring inclination according to claim 8ly, it is characterised in that: described Suspension is for being connected, by up, down, left, right, before and after support plate, the box like structure being formed, described The electric capacity still of the capacitance sensor of the orthogonal setting in left and right be all installed in described suspension upper The upper surface of plate, described pendulum all hangs the lower surface of the upper supporting plate being located at described suspension and is in In the box chamber of suspension, fill out around described pendulum in the box chamber of described suspension and be provided with damping Material.
10. device for monitoring inclination according to claim 9ly, it is characterised in that: described Suspension is fixedly installed on inside described crust of the device, and described null setting includes being installed in described Horizontal adjustment plate bottom crust of the device, the upper supporting plate of described suspension and described horizontal adjustment plate Be arrangeding in parallel, the bottom surface corner of described horizontal adjustment plate is provided with four adjustable lower margin legs, It is installed with in described crust of the device and adjust for the leg respectively described lower margin leg being adjusted Whole motor.
CN201620466520.6U 2016-05-20 2016-05-20 Crustal inclination monitoring devices Withdrawn - After Issue CN205619923U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620466520.6U CN205619923U (en) 2016-05-20 2016-05-20 Crustal inclination monitoring devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620466520.6U CN205619923U (en) 2016-05-20 2016-05-20 Crustal inclination monitoring devices

Publications (1)

Publication Number Publication Date
CN205619923U true CN205619923U (en) 2016-10-05

Family

ID=57024398

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620466520.6U Withdrawn - After Issue CN205619923U (en) 2016-05-20 2016-05-20 Crustal inclination monitoring devices

Country Status (1)

Country Link
CN (1) CN205619923U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105823465A (en) * 2016-05-20 2016-08-03 吴清荣 Ground tilt monitoring device
CN106767701A (en) * 2016-12-29 2017-05-31 中国地震局地震预测研究所 Dynamic balance reaction type quartz horizontal pendulum ground inclination measuring device and method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105823465A (en) * 2016-05-20 2016-08-03 吴清荣 Ground tilt monitoring device
CN105823465B (en) * 2016-05-20 2018-12-25 吴清荣 Ground device for monitoring inclination
CN106767701A (en) * 2016-12-29 2017-05-31 中国地震局地震预测研究所 Dynamic balance reaction type quartz horizontal pendulum ground inclination measuring device and method

Similar Documents

Publication Publication Date Title
CN101322048B (en) Gravity gradiometer
CN101201411B (en) Down-hole all-directional tidal observation system
CN202256695U (en) Borehole inclinometer underground probe
CN105259592B (en) High accuracy zero-initial-length spring temperature drift and the detector of long-term creep
CN104569884A (en) Calibration device and method for SQUID (Superconducting Quantum Interference Device) triaxial magnetometers
CN201110895Y (en) Integrated Gravity and Inclined Solid Tide Observer
CN1891976B (en) Floating-hammer randow directional floating-gyro inclinometer
CN103591919B (en) For the method and apparatus that precision centrifuge static radius is measured
CN106908834A (en) Electrochemistry microseism wave detector
CN107329184B (en) Axisymmetric elastic system and gravimeter
CN102818569A (en) Five-freedom-degree initiative magnetic-suspension inertially stabilized platform
CN205619923U (en) Crustal inclination monitoring devices
CN103292787A (en) Tilt angle sensor
CN105823465B (en) Ground device for monitoring inclination
GB2468408A (en) Broadband weak-motion seismometer
CN113885098A (en) Gravity sensor low-frequency response error online modeling and compensating method
CN201340456Y (en) Deep-well wideband seismograph
CN112254716A (en) Land management surveying instrument and method convenient for outdoor use
CN103809218A (en) Calibration device and calibration method for magnetic probe in TEM well
CN205404837U (en) Sensor axle center face and geographical horizontal plane contact ratio and overlap ratio automatic correction guiding mechanism
CN103134483A (en) Geography true north direction gauge
CN202382731U (en) Signal processing circuit of two-component borehole inclinometer
CN207051509U (en) Axial symmetry elastic system and gravimeter
CN208310756U (en) A kind of bore inclining gage probe
CN101738633A (en) High-accuracy deep-well six-dimensional seismograph

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20161005

Effective date of abandoning: 20181225

AV01 Patent right actively abandoned