CN205861067U - With magnetic azimuth location can self-calibration teleclinometer calibrating installation - Google Patents
With magnetic azimuth location can self-calibration teleclinometer calibrating installation Download PDFInfo
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- CN205861067U CN205861067U CN201620851141.9U CN201620851141U CN205861067U CN 205861067 U CN205861067 U CN 205861067U CN 201620851141 U CN201620851141 U CN 201620851141U CN 205861067 U CN205861067 U CN 205861067U
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- rotating disk
- teleclinometer
- calibration
- rib body
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Abstract
The utility model discloses a kind of band magnetic azimuth location can self-calibration teleclinometer calibrating installation, mainly solve the problem that existing teleclinometer measurement error is big.Azimuth rotating disk is used for calibrating teleclinometer azimuth, inclination angle rotating disk is used for calibrating teleclinometer inclination angle, tool face azimuth rotating disk is used for calibrating teleclinometer tool face azimuth, it is used for during multi-functional assembled shaft routine use magnetic azimuth localizer is installed, when needs carry out azimuth rotating disk self calibration to device for installing special rib body, it is used for clamping teleclinometer during teleclinometer fixture routine use, when needs carry out tool face azimuth rotating disk self calibration to device for clamping rib body assembled shaft, special rib body is installed, magnetic azimuth localizer is arranged on the rotating disk of azimuth by multi-functional assembled shaft, coaxial with azimuth rotating disk, special rib body central hole has screw thread, it is arranged in assembled shaft the calibration for rotating disk.There is measurement accurately, feature easy to use.
Description
Technical field
This utility model relates to a kind of angular measure device, and what a kind of band magnetic azimuth positioned can self-calibration well
Tiltedly instrument calibrating installation.
Background technology
The location of existing teleclinometer calibrating installation magnetic azimuth is all to use the indirect method of measurement, and one is to pass through fluxgate
Theodolite is carried out angle calculation by magnetic azimuth test desk after measuring magnetic north direction;Another kind is by transit survey real north
After calculate.Such as, the Chinese utility model patent of Publication No. CN202017484U, a kind of three axles are without magnetic checking table, and it is fixed
Position is by calculating magnetic north direction after transit survey real north;It is positioned such that meeting production method error, increases and measure not
Degree of certainty component, and efficiency and the real-time measured are relatively low, it addition, existing teleclinometer calibrating installation can not realize device originally
The calibration of body, makes calibration result cannot meet traceability requirement.
Utility model content
In order to overcome the disadvantages described above of existing apparatus, this utility model provides a kind of and carries the permissible of magnetic azimuth localizer
The teleclinometer calibrating installation of self calibration, it is achieved magnetic azimuth is accurately positioned measurement in real time, and can be by installing special rib additional
Body carries out angle disk self calibration.
This utility model solves the scheme that its technical problem used:
A kind of band magnetic azimuth location can self-calibration teleclinometer calibrating installation, including pedestal, azimuth rotating disk, inclination
Angle rotating disk, tool face azimuth rotating disk, multi-functional assembled shaft (band synchronization locking device), rib body assembled shaft, inclination angle calibration standard shaft, well
Tiltedly instrument fixture, magnetic azimuth localizer, special rib body, pedestal is provided with azimuth rotating disk, and azimuth center of turntable is provided with
Multi-functional assembled shaft, multi-functional assembled shaft is provided with magnetic azimuth localizer, is provided with one outside described azimuth rotating disk
To symmetrical column, column be arranged above inclination angle calibration standard shaft, inclination angle calibration standard shaft on be provided with inclination angle rotating disk,
Tool face azimuth rotating disk, teleclinometer fixture and rib body assembled shaft, wherein, teleclinometer fixture is clamped with rib body assembled shaft, and rib body fills
Join and special rib body is installed on axle.
Further, azimuth rotating disk, inclination angle rotating disk, tool face azimuth rotating disk, all coordinate and be provided with for locking or pine
The turntable locking device opened.
Further, multi-functional assembled shaft is provided with magnetic azimuth localizer, it is also possible to installing can be to the device side of carrying out
The self-alignment special rib body of parallactic angle rotating disk.
Further, rib body assembled shaft can be installed special rib body.
Further, described special rib body central hole has screw thread, may be installed in rib body assembled shaft for rotating disk
Calibration.
Further, teleclinometer fixture can clamp teleclinometer, it is possible to clamping rib body assembled shaft.
The beneficial effects of the utility model are: by using the technical solution of the utility model, it is achieved that to magnetic azimuth
Be accurately positioned measurement in real time, and special rib body can be coordinated to realize the self calibration of angle disk by using autocollimator.
Accompanying drawing explanation
Fig. 1 is this utility model organigram.
1 pedestal in figure, 2 fix bolt, 3 azimuth rotating disks, 4 turntable locking devices, 5 multi-functional assembled shaft, 6 columns, 7 ribs
Body assembled shaft, 8 inclination angle calibration standard shafts, 9 tool face azimuth rotating disks, 10 teleclinometer fixtures, 11 inclination angle rotating disks, 12 inclination angle fine settings
Handwheel, 13 magnetic azimuth localizers, 14 special rib bodies.
Detailed description of the invention
Below in conjunction with the accompanying drawings this utility model is described further.
As shown in Figure 1 a kind of band magnetic azimuth location can self-calibration teleclinometer calibrating installation, including pedestal 1, use
In calibration teleclinometer azimuthal azimuth rotating disk 3, for calibrating the inclination angle rotating disk 11 at teleclinometer inclination angle, for calibrating well
The tiltedly tool face azimuth rotating disk 9 of instrument tool face azimuth, multi-functional assembled shaft 5, rib body assembled shaft 7, inclination angle calibration standard shaft 8, teleclinometer
Fixture 10, magnetic azimuth localizer 13, special rib body 14, pedestal 1 is provided with azimuth rotating disk 3, and azimuth rotating disk 3 center sets
It is equipped with multi-functional assembled shaft 5, multi-functional assembled shaft 5 is provided with magnetic azimuth localizer 13, outside described azimuth rotating disk 3
Being provided with a pair symmetrical column, column is arranged above inclination angle calibration standard shaft 8, and calibration standard shaft 8 in inclination angle is provided with
Inclination angle rotating disk 11, tool face azimuth rotating disk 9, teleclinometer fixture 10 and rib body assembled shaft 7, wherein, teleclinometer fixture 10 clamps
There is rib body assembled shaft 7, rib body assembled shaft 7 is provided with special rib body 14, azimuth rotating disk 3, inclination angle rotating disk 11, tool face azimuth
Rotating disk 9, all 360 ° of rotations, all cooperation can be provided with the turntable locking device 4 for locking or unclamp, described special rib body 14
Central hole has screw thread, may be installed the calibration for rotating disk in rib body assembled shaft 7, and teleclinometer fixture 10 is clamped with teleclinometer,
It is used for clamping teleclinometer during teleclinometer fixture 10 routine use, uses when needs carry out tool face azimuth rotating disk 9 self calibration to device
In clamping rib body assembled shaft 7, special rib body 14 is installed.
When teleclinometer being carried out magnetic azimuth calibration, first measured magnetic north direction by magnetic azimuth localizer 13, then
By the zero position magnetic north direction of azimuth rotating disk 3, carry out synchrolock by the synchronization locking device in multi-functional assembled shaft 5
Tightly, rotational orientation angle rotating disk 3 can measure arbitrary orientation angle.
When device being carried out rotating disk scale self calibration, when azimuthal rotating disk 3 carries out self calibration, by multi-functional assembling
Axle 5 installs special rib body 14, and special rib body 14 is coaxial with azimuth rotating disk 3, outside autocollimator carry out angular surveying, to work
When angle, tool face rotating disk 9 carries out self calibration, fix rib body assembled shaft 7 by teleclinometer fixture 10, rib body assembled shaft 7 is installed specially
With rib body 14, special rib body 14 is coaxial with tool face azimuth rotating disk 9, outside autocollimator carry out angular surveying, turn inclination angle
When dish 11 carries out self calibration, installing special rib body 14 by rib body assembled shaft 7, special rib body 14 is coaxial with inclination angle rotating disk 11,
Angular surveying is carried out by outside autocollimator.
Claims (6)
1. band magnetic azimuth location can a self-calibration teleclinometer calibrating installation, including pedestal, azimuth rotating disk, inclination angle
Rotating disk, tool face azimuth rotating disk, multi-functional assembled shaft, rib body assembled shaft, inclination angle calibration standard shaft, teleclinometer fixture, magnetic azimuth
Localizer, special rib body, it is characterised in that: being provided with azimuth rotating disk on pedestal, azimuth center of turntable is provided with multi-functional
Assembled shaft, multi-functional assembled shaft is provided with magnetic azimuth localizer, be provided with outside described azimuth rotating disk a pair relative
The column claimed, column is arranged above inclination angle calibration standard shaft, calibration standard shaft in inclination angle is provided with inclination angle rotating disk, tool-face
Angle rotating disk, teleclinometer fixture and rib body assembled shaft.
Band magnetic azimuth the most according to claim 1 location can self-calibration teleclinometer calibrating installation, it is characterised in that
Azimuth rotating disk, inclination angle rotating disk, tool face azimuth rotating disk, all coordinate the turntable locking device being provided with for locking or unclamp.
Band magnetic azimuth the most according to claim 1 location can self-calibration teleclinometer calibrating installation, it is characterised in that
Magnetic azimuth localizer is installed in multi-functional assembled shaft, it is also possible to it is self-alignment specially that installation can carry out azimuth rotating disk to device
Use rib body.
Band magnetic azimuth the most according to claim 1 location can self-calibration teleclinometer calibrating installation, it is characterised in that
Special rib body can be installed in rib body assembled shaft.
Band magnetic azimuth the most according to claim 1 location can self-calibration teleclinometer calibrating installation, it is characterised in that
Described special rib body central hole has screw thread, may be installed the calibration for rotating disk in rib body assembled shaft.
Band magnetic azimuth the most according to claim 1 location can self-calibration teleclinometer calibrating installation, it is characterised in that
Teleclinometer fixture can clamp teleclinometer, it is possible to clamping rib body assembled shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620851141.9U CN205861067U (en) | 2016-08-08 | 2016-08-08 | With magnetic azimuth location can self-calibration teleclinometer calibrating installation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620851141.9U CN205861067U (en) | 2016-08-08 | 2016-08-08 | With magnetic azimuth location can self-calibration teleclinometer calibrating installation |
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Publication Number | Publication Date |
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CN205861067U true CN205861067U (en) | 2017-01-04 |
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CN201620851141.9U Active CN205861067U (en) | 2016-08-08 | 2016-08-08 | With magnetic azimuth location can self-calibration teleclinometer calibrating installation |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109506594A (en) * | 2018-10-11 | 2019-03-22 | 九江精密测试技术研究所 | A kind of turntable detection method of rotatable autocollimator |
CN115355813A (en) * | 2022-10-21 | 2022-11-18 | 北京科技大学 | High-precision three-axis nonmagnetic test turntable system |
CN116256003A (en) * | 2023-03-08 | 2023-06-13 | 青岛智腾微电子有限公司 | Full-automatic triaxial non-magnetic constant temperature calibration stand |
-
2016
- 2016-08-08 CN CN201620851141.9U patent/CN205861067U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109506594A (en) * | 2018-10-11 | 2019-03-22 | 九江精密测试技术研究所 | A kind of turntable detection method of rotatable autocollimator |
CN115355813A (en) * | 2022-10-21 | 2022-11-18 | 北京科技大学 | High-precision three-axis nonmagnetic test turntable system |
CN116256003A (en) * | 2023-03-08 | 2023-06-13 | 青岛智腾微电子有限公司 | Full-automatic triaxial non-magnetic constant temperature calibration stand |
CN116256003B (en) * | 2023-03-08 | 2023-10-24 | 青岛智腾微电子有限公司 | Full-automatic triaxial non-magnetic constant temperature calibration stand |
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