CN208872443U - A kind of civil engineering prestressing force measuring device - Google Patents
A kind of civil engineering prestressing force measuring device Download PDFInfo
- Publication number
- CN208872443U CN208872443U CN201821134513.1U CN201821134513U CN208872443U CN 208872443 U CN208872443 U CN 208872443U CN 201821134513 U CN201821134513 U CN 201821134513U CN 208872443 U CN208872443 U CN 208872443U
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- Prior art keywords
- switch button
- pressure sensor
- supporting table
- pedestal
- hole
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Abstract
The utility model discloses a kind of civil engineering prestressing force measuring devices of technical field of civil engineering, including pedestal, middle-end is respectively connected with the first hydraulic pressure support bar at left and right sides of the top of the pedestal, the top rear and front end middle-end of the pedestal is respectively connected with support plate, the front surface of support plate described in front end is equipped with control cabinet, the front surface of the control cabinet is equipped with display screen, first switch button and second switch button, the first switch button and second switch button are in the lower end of display screen, the first switch button is in the left end of second switch button, supporting table is respectively connected at the top of two first hydraulic pressure support bars, the front surface of the supporting table is equipped with first pressure sensor and second pressure sensor, the utility model integrated design, it is small in size, facilitate carrying, it can be in narrow space to building Prestressing force measurement is carried out, the security risk of building has been effectively eliminated, has ensured the safety of building.
Description
Technical field
The utility model relates to technical field of civil engineering, specially a kind of civil engineering prestressing force measuring device.
Background technique
Building large-scale at present be mostly using steel frame construction, using large area cable wire furred ceiling, cable wire ceiling structure by
It is widely used in bridge, waiting needs when building to cable wire with the heavy constructions places such as waiting hall, these buildings
Artificial application prestressing force effectively can completely or partially offset tensile stress caused by load, build however as these large sizes
The prestressing force of the prolonged use built, cable wire can change, and need timing to detect the prestressing force of cable wire, ensure building
Safety, however prestressed detection device used at present, there are volumes greatly, moving transhipment, inconvenient and assembly is cumbersome, it is difficult to
The prestressing force of steelframe cable wire is measured in narrow space, the more narrow place in some spaces can not carry out it
Measurement leaves security risk for building.
Utility model content
The purpose of this utility model is to provide a kind of civil engineering prestressing force measuring devices, to solve above-mentioned background technique
The prestressed detection device used at present of middle proposition, there are volumes greatly, moving transhipment, inconvenient and assembly is cumbersome, it is difficult to
The prestressing force of steelframe cable wire is measured in narrow space, building can not comprehensively be measured, is building
The problem of leaving security risk.
To achieve the above object, the utility model provides the following technical solutions: a kind of civil engineering prestressing force measuring device,
Including pedestal, middle-end is respectively connected with the first hydraulic pressure support bar, the top front and back of the pedestal at left and right sides of the top of the pedestal
Both ends middle-end is respectively connected with support plate, and the front surface of support plate described in front end is equipped with control cabinet, the front surface of the control cabinet
Display screen, first switch button and second switch button are installed, the first switch button and second switch button are aobvious
The lower end of display screen, the first switch button is at the left end of second switch button, the top of two first hydraulic pressure support bars
It is respectively connected with supporting table, the front surface of the supporting table is equipped with first pressure sensor and second pressure sensor, and described
One pressure sensor is connected with anchorage, the top of the anchorage at the top of the upper end of second pressure sensor, the supporting table
It is plugged with cable wire, the top middle-end of the supporting table offers first through hole, inserts respectively at left and right sides of the bottom of the supporting table
It is connected to detection probe, the top middle-end of the pedestal offers the second through-hole, and the bottom of the cable wire is through first through hole and the
Two through-holes, two support plates are mutually plugged with the second hydrostatic sensor, the phase of two second hydrostatic sensors depending on face
It is contacted with cable wire depending on face, the base rear end is plugged with battery, is connected with central processing on the left of the inner cavity of the control cabinet
Device and display module, the central processing unit are opened by conducting wire with control cabinet, first in the upper end of display module, the battery
It closes button to connect with second switch button, first pressure sensor with second pressure sensor, the first switch button passes through
Conducting wire is connect with the first hydraulic pressure support bar, and the second switch button is connect by conducting wire with the second hydrostatic sensor, two institutes
It states detection probe and passes through conducting wire respectively and connect with first pressure sensor and second pressure sensor, the first pressure sensor
Pass through conducting wire with second pressure sensor to connect with central processing unit, the output end of the central processing unit by conducting wire and is shown
Show the input terminal connection of module, the display module is connect by conducting wire with display screen.
Preferably, the bottom of supporting table and the top of pedestal are respectively welded at the top and bottom of first hydraulic pressure support bar
Portion.
Preferably, the contact surface mutually depending on face and the second hydrostatic sensor of the support plate offers mounting groove, the second liquid
Pressure sensor is plugged in mounting groove, is bolted and two the second hydrostatic sensors are in same level.
Preferably, the anchorage and supporting table are fixed together, and anchorage and supporting table are combined into an entirety.
Preferably, the first through hole is identical as the diameter of the second through-hole, and the axial line of first through hole and the second through-hole
On same straight line.
Compared with prior art, the utility model has the beneficial effects that the utility model integrated design, small in size, side
Just it carries, prestressing force measurement can be carried out to building in narrow space, effectively eliminate the security risk of building,
The safety of building is ensured.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model supporting table cross-sectional view;
Fig. 3 is the utility model pedestal left view cross-sectional view;
Fig. 4 is the utility model control cabinet cross-sectional view;
Fig. 5 is Tthe utility model system structure chart.
In figure: 1 pedestal, 2 first hydraulic pressure support bars, 3 support plates, 4 control cabinets, 5 display screens, 6 first switch buttons, 7
Two switch buttons, 8 supporting tables, 9 first pressure sensors, 10 second pressure sensors, 11 anchorages, 12 cable wires, 13 first lead to
Hole, 14 detection probes, 15 second through-holes, 16 second hydrostatic sensors, 17 batteries, 18 central processing units, 19 display modules.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, the utility model provides a kind of technical solution: a kind of civil engineering prestressing force measuring device, packet
Include pedestal 1, middle-end is respectively connected with the first hydraulic pressure support bar 2 at left and right sides of the top of pedestal 1, in the top rear and front end of pedestal 1
End is respectively connected with support plate 3, and the front surface of front support plate 3 is equipped with control cabinet 4, and the front surface of support plate 3 is offered and controlled
The groove that case 4 processed matches, control cabinet 4 are mounted in groove by bolt, and before the front surface of control cabinet 4 and support plate 3
Flush, the front surface of control cabinet 4 are equipped with display screen 5, first switch button 6 and second switch button 7, and display screen 5 is
Liquid crystal display, first switch button 6 and second switch button 7 are pressed for the first time to start, and are pressed for the second time to close,
First switch button 6 and second switch button 7 are in the lower end of display screen 5, and first switch button 6 is in second switch button 7
Left end, the top of two the first hydraulic pressure support bars 2 are respectively connected with supporting table 8, and supporting table 8 is convex supporting table, it is convenient with it is tested
Face contact, the front surface of supporting table 8 are equipped with first pressure sensor 9 and second pressure sensor 10, first pressure sensor
9 in the upper end of second pressure sensor 10, and the top of supporting table 8 is connected with anchorage 11, and the convex portion of supporting table 8 is completely and anchor
11 fitting of tool, the top of anchorage 11 are plugged with cable wire 12, and the top middle-end of supporting table 8 offers first through hole 13, supporting table 8
Bottom at left and right sides of be plugged with detection probe 14 respectively, two detection probes 14 are contacted with two the first hydraulic pressure support bars 2,
It detects the pressure of the first hydraulic pressure support bar 2 and is delivered separately to first pressure sensor 9 and second pressure sensor 10, pedestal 1
Top middle-end offer the second through-hole 15, first through hole 13 and the second through-hole 15, first through hole 13 are run through in the bottom of cable wire 12
It is plugged with fixed ring with the inner cavity of the second through-hole 15, fixed ring can be selected according to the diameter of cable wire 12, can be effective
Cable wire 12 is fixed in first through hole 13 and the second through-hole 15, two support plates 3 are mutually plugged with the second hydraulic biography depending on face
Sensor 16, two the second hydrostatic sensors 16 are mutually contacted with cable wire 12 depending on face, two the second hydrostatic sensors 16 and cable wire
12 contact surface offers diamond shape non-slip groove, increases the frictional force with 12 contact surface of cable wire, can effectively lock cable wire 12, bottom
1 rear end of seat is plugged with battery 17, and the outside of battery 17 is connected with charging jack, can carry out electric energy benefit to battery 17
It fills, is connected with central processing unit 18 and display module 19, the model AMD- of central processing unit 18 on the left of the inner cavity of control cabinet 4
Ryzen-5-2400G, the model SG12232SYD-01ALYE of display module 19, central processing unit 18 is in display module 19
Upper end, battery 17 by conducting wire and control cabinet 4, first switch button 6 and second switch button 7, first pressure sensor 9 and
Second pressure sensor 10 connects, and first switch button 6 is connect by conducting wire with the first hydraulic pressure support bar 2, second switch button 7
Connect by conducting wire with the second hydrostatic sensor 16, two detection probes 14 respectively by conducting wire and first pressure sensor 9 and
Second pressure sensor 10 connects, and first pressure sensor 9 and second pressure sensor 10 pass through conducting wire and central processing unit
The output end of 18 connections, central processing unit 18 is connect by conducting wire with the input terminal of display module 19, and display module 19 is by leading
Line is connect with display screen 5.
Wherein, the top and bottom of the first hydraulic pressure support bar 2 are respectively welded at the bottom of supporting table 8 and the top of pedestal 1
Portion, by the first hydraulic pressure support bar 2 by pedestal 1 and one, 8 Liancheng of supporting table entirety, the mutually view face of support plate 3 and second hydraulic
The contact surface of sensor 16 offers mounting groove, and the second hydrostatic sensor 16 is plugged in mounting groove, is bolted and two
A second hydrostatic sensor 16 facilitates the installation and removal of the second hydrostatic sensor 16, two the second liquid in same level
Pressure sensor 16 can effectively clamp cable wire 12 in same level, and anchorage 11 and supporting table 8 are fixed together,
Anchorage 11 and supporting table 8 are combined into an entirety, and first through hole 13 is identical as the diameter of the second through-hole 15, and first through hole
13 and second through-hole 15 axial line on same straight line, facilitate passing through for cable wire 12.
Working principle: in use, the top of supporting table 8 is withstood on anchorage 11, by cable wire 12 through first through hole 13 and the
Two through-holes 15 click second switch button 7, and second switch button 7 powers on, and electric current is transmitted to by second switch button 7
On second hydrostatic sensor 16, the second hydrostatic sensor 16, which is powered, to be started, and two the second hydrostatic sensors 16 are inwardly squeezed steel
Rope 12 is locked, and clicks first switch button 6 after locking again, and first switch button 6 powers on, and electric current passes through first switch button
6 are transmitted in the first hydraulic pressure support bar 2, and the first hydraulic pressure support bar 2, which is powered, to be started, and the top of the first hydraulic pressure support bar 2 will support
Platform 8 jacks up upwards, and supporting table 8 withstands anchorage 11 and jacks up anchorage 11 upwards, and two detection probes 14 detect the first hydraulic pressure support
The operating pressure of bar 2 is simultaneously delivered separately to first pressure sensor 9 and second pressure sensor 10,9 He of first pressure sensor
Signal is passed to central processing unit 18 by second pressure sensor 10, and central processing unit 18 carries out logical operation to it, is calculated flat
Pass to display module 19 after mean value, signal is passed to display screen 5 by display module 19, and display screen 5 is by first pressure sensor
9 and the numerical value that detects of second pressure sensor 10 and the calculated average value of central processing unit 18 all show and, convenient for inspection
The observation of survey personnel and record.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.
Claims (5)
1. a kind of civil engineering prestressing force measuring device, including pedestal (1), it is characterised in that: the top or so of the pedestal (1)
Two sides middle-end is respectively connected with the first hydraulic pressure support bar (2), and the top rear and front end middle-end of the pedestal (1) is respectively connected with support plate
(3), the front surface of support plate described in front end (3) is equipped with control cabinet (4), and the front surface of the control cabinet (4) is equipped with display
Shield (5), first switch button (6) and second switch button (7), the first switch button (6) and second switch button (7) are equal
In the lower end of display screen (5), for the first switch button (6) in the left end of second switch button (7), two described first hydraulic
It is respectively connected at the top of support rod (2) supporting table (8), the front surface of the supporting table (8) is equipped with first pressure sensor (9)
With second pressure sensor (10), the first pressure sensor (9) is in the upper end of second pressure sensor (10), the support
It is connected at the top of platform (8) anchorage (11), is plugged with cable wire (12) at the top of the anchorage (11), the top of the supporting table (8)
Portion's middle-end offers first through hole (13), is plugged with detection probe (14), institute respectively at left and right sides of the bottom of the supporting table (8)
The top middle-end for stating pedestal (1) offers the second through-hole (15), and the bottom of the cable wire (12) is through first through hole (13) and the
Two through-holes (15), two support plates (3) are mutually plugged with the second hydrostatic sensor (16) depending on face, and two described second hydraulic
The mutually view face of sensor (16) is contacted with cable wire (12), and pedestal (1) rear end is plugged with battery (17), the control cabinet
(4) it is connected with central processing unit (18) and display module (19) on the left of inner cavity, the central processing unit (18) is in display module
(19) upper end, the battery (17) pass through conducting wire and control cabinet (4), first switch button (6) and second switch button
(7), first pressure sensor (9) and second pressure sensor (10) connection, the first switch button (6) pass through conducting wire and the
One hydraulic pressure support bar (2) connection, the second switch button (7) are connect by conducting wire with the second hydrostatic sensor (16), and two
The detection probe (14) is connect by conducting wire with first pressure sensor (9) and second pressure sensor (10) respectively, described
First pressure sensor (9) and second pressure sensor (10) are connect by conducting wire with central processing unit (18), the center
The output end of processor (18) is connect by conducting wire with the input terminal of display module (19), and the display module (19) passes through conducting wire
It is connect with display screen (5).
2. a kind of civil engineering prestressing force measuring device according to claim 1, it is characterised in that: the first hydraulic branch
The bottom of supporting table (8) and the top of pedestal (1) are respectively welded at the top and bottom of strut (2).
3. a kind of civil engineering prestressing force measuring device according to claim 1, it is characterised in that: the support plate (3)
The contact surface mutually depending on face and the second hydrostatic sensor (16) offer mounting groove, the second hydrostatic sensor (16) is plugged on installation
In slot, it is bolted and two the second hydrostatic sensors (16) is in same level.
4. a kind of civil engineering prestressing force measuring device according to claim 1, it is characterised in that: the anchorage (11) and
Supporting table (8) is fixed together, and anchorage (11) and supporting table (8) are combined into an entirety.
5. a kind of civil engineering prestressing force measuring device according to claim 1, it is characterised in that: the first through hole
(13) identical as the diameter of the second through-hole (15), and the axial line of first through hole (13) and the second through-hole (15) is in same straight line
On.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821134513.1U CN208872443U (en) | 2018-07-17 | 2018-07-17 | A kind of civil engineering prestressing force measuring device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821134513.1U CN208872443U (en) | 2018-07-17 | 2018-07-17 | A kind of civil engineering prestressing force measuring device |
Publications (1)
Publication Number | Publication Date |
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CN208872443U true CN208872443U (en) | 2019-05-17 |
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ID=66462946
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CN201821134513.1U Expired - Fee Related CN208872443U (en) | 2018-07-17 | 2018-07-17 | A kind of civil engineering prestressing force measuring device |
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CN (1) | CN208872443U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111006796A (en) * | 2019-11-12 | 2020-04-14 | 福建省永正工程质量检测有限公司 | Sensor for bridge support of Internet of things |
-
2018
- 2018-07-17 CN CN201821134513.1U patent/CN208872443U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111006796A (en) * | 2019-11-12 | 2020-04-14 | 福建省永正工程质量检测有限公司 | Sensor for bridge support of Internet of things |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190517 Termination date: 20200717 |