Calibration table device of inclinometer

By installing liquid bottles and casters on the column of the inclinometer calibration platform, combined with adjustable legs, the problems of heavy weight and difficult calibration of traditional inclinometer calibration platforms are solved, enabling convenient positioning and vertical calibration.

CN223461043UActive Publication Date: 2025-10-21刘彩霞
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Patent Information

Application Number
CN202422809458.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-21
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

Traditional inclinometer calibration platforms are heavy and inconvenient to move, and it is difficult to calibrate the perpendicularity of the working surface to the gravity line, resulting in inconvenience in positioning and calibration.

Method used

An observation hole is set on the column of the inclinometer calibration platform, and a liquid bottle is placed in the hole. The horizontal line inside the liquid bottle is perpendicular to the axis of the column. Combined with casters and adjustable legs, the height of the legs is adjusted by inserting rods to achieve movement and fixation. The horizontal plane of the liquid is aligned with the horizontal line to correct the perpendicularity of the working surface to the Earth's gravity line.

Benefits of technology

It enables easy positioning and efficient calibration of the inclinometer calibration platform at the work site, ensuring the perpendicularity of the working surface to the Earth's gravity line.

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Abstract

The utility model relates to an improvement of a traditional inclinometer calibration table, in particular to an inclinometer calibration table device, which is characterized in that observation holes are symmetrically arranged on a stand column of an inclinometer calibration table, liquid bottles are arranged in the observation holes, a horizontal line is arranged in the middle of each liquid bottle, and anti-freezing colored liquid is arranged in each liquid bottle. A universal wheel and a leg capable of being adjusted up and down are arranged at the outer end of a fixing frame at the bottom of the inclinometer calibration table, the height from the universal wheel to the ground is fixed, and the minimum value of leg adjustment is smaller than the height from the universal wheel to the ground. The maximum value of adjustment of the legs is larger than the height of the universal wheels relative to the ground, the inclinometer calibration table can be moved and fixed by adjusting the vertical height of the legs, and the perpendicularity of the working face of the inclinometer calibration table and the earth gravity line can also be adjusted.
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Description

TECHNICAL FIELD

[0001] The present application relates to a kind of inclinometer tool, mainly applicable to the inclinometer of the inclinometer calibration bench device of the inclination angle of ground or structure. BACKGROUND

[0002] Due to the working nature of the inclinometer calibration bench, the weight is generally larger, the traditional inclinometer calibration bench foot is supported by three legs on the ground, and it is very inconvenient to position and move in the work site;In order to ensure that the plane on the inclinometer calibration bench is perpendicular to the gravity, the plumb line is often used for correction, which is not only inconvenient, but also will form an error. SUMMARY

[0003] The utility model discloses an improvement to the traditional inclinometer calibration bench, the observation hole is symmetrically arranged on the stand column of inclinometer calibration bench, the liquid bottle is arranged in the observation hole, the horizontal line is arranged in the middle part of liquid bottle, the antifreezing colored liquid is arranged in the liquid bottle, the plane of liquid is aligned with the horizontal line and is perpendicular to the axis of stand column, the universal wheel and the leg that can be adjusted up and down are arranged on the outer end of the bottom fixed frame of inclinometer calibration bench, the height of universal wheel from ground is fixed, the minimum value of leg adjustment is less than the height of universal wheel from ground, the maximum value of leg adjustment is greater than the height of universal wheel from ground, by adjusting the height of leg up and down, the movement and fixation of inclinometer calibration bench can be realized, and the perpendicularity of inclinometer calibration bench working surface and earth gravity line can be adjusted.

[0004] The utility model discloses a technical scheme that solves its technical problem, it is by disc seat, dial I, scale ring I, pivot, carousel, column, scale ring II, dial II, locking screw, stand, observation hole I, horizontal line, observation hole II, leg I, jack I, fixed leg I, leg II, 1 jack II, gasket I, universal wheel I, wheel frame I, gasket II, universal wheel II, fixed leg II, fixed leg III, universal wheel III, wheel frame II, gasket III, leg III, jack III, observation hole III, inclinometer, locking hoop, crank, liquid bottle, liquid, observation hole IV, fixed leg IV, leg IV, jack IV, gasket IV, universal wheel IV, wheel frame III, wheel frame IV, auxiliary line I, auxiliary line II, plug stick composition, its characterized is: the stand is the circular tube, and sets up observation hole I, observation hole II, observation hole III, observation hole IV in the same horizontal line of the middle part of the stand, and observation hole I and observation hole III coaxial line and with the axle line of stand vertical, and observation hole II and observation hole IV coaxial line and with the axle line of stand vertical, and the axle line of observation hole I observation hole III and the axle line of observation hole II observation hole IV vertical, and the bottom end of the stand sets up fixed leg I, fixed leg II, fixed leg III, fixed leg IV, and the center line of fixed leg I, fixed leg III is parallel with the center line of observation hole I, observation hole III, and the center line of fixed leg II, fixed leg IV is parallel with the center line of observation hole II, observation hole IV, and the outer end of fixed leg I, fixed leg II, fixed leg III, fixed leg IV sets up leg II and universal wheel I, leg I and universal wheel II, leg III and universal wheel III, leg IV and universal wheel IV respectively, and the height of wheel frame I, wheel frame II, wheel frame III, wheel frame IV of universal wheel I, universal wheel II, universal wheel III, universal wheel IV is fixed value, and leg II, leg I, leg III, leg IV sets up the screw thread and can be adjusted on fixed leg I, fixed leg II, fixed leg III, fixed leg IV, and with jack insertion jack I, jack II, jack III, jack IV carries out positive and negative rotation, makes the height of leg II, leg I, leg III, leg IV from ground can be higher than and lower than the height of universal wheel I, universal wheel II, universal wheel III, universal wheel IV from ground, realizes the movement or fixed of inclinometer calibration platform device.

[0005] Liquid bottle is arranged at the center axis position of the observation hole I, the observation hole II, the observation hole III and the observation hole IV of the column, the length of the liquid bottle is greater than the length of the observation hole I, the observation hole II, the observation hole III and the observation hole IV, the axial center line of the liquid bottle is on the same axial center line with the axial center line of the column, the middle part of the liquid bottle is arranged with a horizontal line in the vertical direction of the axial center line, the auxiliary line I and the auxiliary line II are arranged below the horizontal line, liquid is arranged in the liquid bottle, the horizontal plane of the liquid is aligned with the horizontal line, the liquid is selected as the colored liquid that prevents freezing, when the column is fixed, the plug-in rod is inserted into the insertion hole I, the insertion hole II, the insertion hole III and the insertion hole IV to rotate, so that the horizontal line is aligned with the liquid plane, and the working surface of the inclinometer calibration table is perpendicular to the earth gravity line can be realized.

[0006] The beneficial effect of the device is that the positioning movement is convenient in the working site, and the working surface of the inclinometer calibration table is perpendicular to the earth gravity line can be corrected conveniently. BRIEF DESCRIPTION OF DRAWINGS

[0007] The utility model is further explained in connection with the drawings and examples.

[0008] Figure 1 It is the structure diagram of inclinometer calibration table

[0009] Figure 2 It is Figure 1 A-A sectional view of

[0010] Figure 3 It is the sectional view of column 10

[0011] Figure 4 It is the structure diagram of liquid bottle 35

[0012] Figure 5 It is the structure diagram of plug-in rod 47 DETAILED DESCRIPTION

[0013] 1. disc base, 2. dial I, 3. ring I, 4. spindle, 5. turntable, 6. column shaft, 7. ring II, 8. dial II, 9. set screw, 10. stand, 11. viewing hole I, 12. level, 13. viewing hole II, 14. leg I, 15. socket I, 16. fixed leg I, 17. leg II, 18. socket II, 19. spacer I, 20. caster I, 21. wheel carrier I, 22. spacer II, 23. caster II, 24. fixed leg II, 25. fixed leg III, 26. caster III, 27. wheel carrier II, 28. spacer III, 29. leg III, 30. socket III, 31. viewing hole III, 32. clinometer, 33. locking collar, 34. crank, 35. liquid bottle, 36. liquid, 37. viewing hole IV, 38. fixed leg IV, 39. leg IV, 40. socket IV, 41. spacer IV, 42. caster IV, 43. wheel carrier III, 44. wheel carrier IV, 45. auxiliary line I, 46. auxiliary line II, 47. insertion rod.

[0014] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5As shown, the column (10) is a circular tube, and the observation hole I (11), the observation hole II (13), the observation hole III (31), and the observation hole IV (37) are arranged at the same horizontal line in the middle of the column (10). The observation hole I (11) and the observation hole III (31) are coaxial and perpendicular to the axis of the column (10), and the observation hole II (13) and the observation hole IV (37) are coaxial and perpendicular to the axis of the column (10). The axis of the observation hole I (11) and the observation hole III (31) is perpendicular to the axis of the observation hole II (13) and the observation hole IV (37). The bottom end of the column (10) is provided with the fixed leg I (16), the fixed leg II (24), the fixed leg III (25), and the fixed leg IV (38). The center line of the fixed leg I (16) and the fixed leg III (25) is parallel to the center line of the observation hole I (11) and the observation hole III (31), and the center line of the fixed leg II (24) and the fixed leg IV (38) is parallel to the center line of the observation hole II (13) and the observation hole IV (37). The outer end of the fixed leg I (16), the fixed leg II (24), the fixed leg III (25), and the fixed leg IV (38) is respectively provided with the leg foot II (17) and the universal wheel I (20), the leg foot I (14) and the universal wheel II (23), the leg foot III (29) and the universal wheel III (26), and the leg foot IV (39) and the universal wheel IV (42). The height of the wheel frame I (21), the wheel frame II (27), the wheel frame III (43), and the wheel frame IV (44) of the universal wheel I (20), the universal wheel II (23), the universal wheel III (26), and the universal wheel IV (42) is a fixed value. The leg foot II (17), the leg foot I (14), the leg foot III (29), and the leg foot IV (39) are provided with a screw thread, which can be adjusted up and down on the fixed leg I (16), the fixed leg II (24), the fixed leg III (25), and the fixed leg IV (38). The insertion of the insertion rod (47) into the insertion hole I (15), the insertion hole II (18), the insertion hole III (30), and the insertion hole IV (40) is used for forward and reverse rotation, so that the height of the leg foot II (17), the leg foot I (14), the leg foot III (29), and the leg foot IV (39) from the ground can be higher or lower than the height of the universal wheel I (20), the universal wheel II (23), the universal wheel III (26), and the universal wheel IV (42) from the ground, thereby realizing the movement or fixation of the inclinometer calibration table device.

[0015] As Figure 2 , Figure 3 , Figure 4 , Figure 5As shown, liquid bottle (35) is arranged at the center axis position of observation hole I (11), observation hole II (13), observation hole III (31) and observation hole IV (37) of the column (10), the length of the liquid bottle (35) is greater than the length of the observation hole I (11), the observation hole II (13), the observation hole III (31) and the observation hole IV (37), the axis of the liquid bottle (35) is on the same axis as the axis of the column (10), the middle part of the liquid bottle (35) is arranged with a horizontal line (12) perpendicular to the axis, an auxiliary line I (45) and an auxiliary line II (46) are arranged below the horizontal line (12), a liquid (36) is arranged in the liquid bottle (35), the horizontal plane of the liquid (36) is aligned with the horizontal line (12), the liquid (36) is selected from colored liquid that prevents freezing, after the column (10) is fixed, a plug (47) is inserted into the insertion hole I (15), the insertion hole II (18), the insertion hole III (30) and the insertion hole IV (40) to rotate, so that the horizontal line (12) is aligned with the plane of the liquid (36), and the working surface of the inclinometer calibration table is perpendicular to the earth gravity line.

Claims

1. A calibrating device for inclinometer, which is composed of a base (1), a scale disc I (2), a scale ring I (3), a rotating shaft (4), a rotating disc (5), a column shaft (6), a scale ring II (7), a scale disc II (8), a locking screw (9), a stand (10), an observation hole I (11), a horizontal line (12), an observation hole II (13), a leg I (14), a socket I (15), a fixed leg I (16), a leg II (17), a socket II (18), a pad I (19), a universal wheel I (20), a wheel frame I (21), a pad II (22), a universal wheel II (23), a fixed leg II (24), a fixed leg III (25), a universal wheel III (26), a wheel frame II (27), a pad III (28), a leg III (29), a socket III (30), an observation hole III (31), an inclinometer rod (32), a locking hoop (33), a crank (34), a liquid bottle (35), a liquid (36), an observation hole IV (37), a fixed leg IV (38), a leg IV (39), a socket IV (40), a pad IV (41), a universal wheel IV (42), a wheel frame III (43), a wheel frame IV (44), an auxiliary line I (45), an auxiliary line II (46), a plug-in rod (47), characterized in that: The column (10) is a circular tube, and the observation hole I (11), the observation hole II (13), the observation hole III (31) and the observation hole IV (37) are arranged at the same horizontal line in the middle of the column (10). The observation hole I (11) and the observation hole III (31) are coaxial and perpendicular to the axis of the column (10), the observation hole II (13) and the observation hole IV (37) are coaxial and perpendicular to the axis of the column (10), the axis of the observation hole I (11) and the observation hole III (31) is perpendicular to the axis of the observation hole II (13) and the observation hole IV (37), the bottom end of the column (10) is provided with the fixed leg I (16), the fixed leg II (24), the fixed leg III (25) and the fixed leg IV (38), the center line of the fixed leg I (16) and the fixed leg III (25) is parallel to the center line of the observation hole I (11) and the observation hole III (31), the center line of the fixed leg II (24) and the fixed leg IV (38) is parallel to the center line of the observation hole II (13) and the observation hole IV (37), the outer end of the fixed leg I (16), the fixed leg II (24), the fixed leg III (25) and the fixed leg IV (38) is respectively provided with the leg foot II (17) and the universal wheel I (20), the leg foot I (14) and the universal wheel II (23), the leg foot III (29) and the universal wheel III (26), the leg foot IV (39) and the universal wheel IV (42), the height of the wheel frame I (21), the wheel frame II (27), the wheel frame III (43) and the wheel frame IV (44) of the universal wheel I (20), the universal wheel II (23), the universal wheel III (26) and the universal wheel IV (42) is a fixed value, the leg foot II (17), the leg foot I (14), the leg foot III (29) and the leg foot IV (39) are provided with a screw thread which can be adjusted up and down on the fixed leg I (16), the fixed leg II (24), the fixed leg III (25) and the fixed leg IV (38), the plug rod (47) is inserted into the plug hole I (15), the plug hole II (18), the plug hole III (30) and the plug hole IV (40) to rotate forward and backward, so that the height of the leg foot II (17), the leg foot I (14), the leg foot III (29) and the leg foot IV (39) from the ground can be higher or lower than the height of the universal wheel I (20), the universal wheel II (23), the universal wheel III (26) and the universal wheel IV (42) from the ground, and the movement or fixation of the inclinometer calibration table device is realized.

2. A calibration apparatus for a inclinometer according to claim 1, characterized in that The center axis position of the column (10) observation hole I (11), observation hole II (13), observation hole III (31), observation hole IV (37) is provided with a liquid bottle (35), the length of the liquid bottle (35) is greater than the length of the observation hole I (11), the observation hole II (13), the observation hole III (31), the observation hole IV (37), the axis of the liquid bottle (35) is on the same axis as the axis of the column (10), the middle part of the liquid bottle (35) is provided with a horizontal line (12) perpendicular to the axis, the horizontal line (12) is provided with an auxiliary line I (45), an auxiliary line II (46) below, the liquid bottle (35) is provided with a liquid (36), the horizontal plane of the liquid (36) is aligned with the horizontal line (12), the liquid (36) is selected from colored liquid that prevents freezing, after the column (10) is fixed, the plug (47) is inserted into the plug hole I (15), the plug hole II (18), the plug hole III (30), the plug hole IV (40) to rotate, so that the horizontal line (12) is aligned with the liquid (36) plane, which can realize the working surface of the inclinometer calibration bench perpendicular to the earth gravity line.