CN212228795U - Post-tensioned prestressed duct internal slurry quality detection device - Google Patents

Post-tensioned prestressed duct internal slurry quality detection device Download PDF

Info

Publication number
CN212228795U
CN212228795U CN202020899347.5U CN202020899347U CN212228795U CN 212228795 U CN212228795 U CN 212228795U CN 202020899347 U CN202020899347 U CN 202020899347U CN 212228795 U CN212228795 U CN 212228795U
Authority
CN
China
Prior art keywords
conductive
connecting hole
pipe
post
wire
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.)
Active
Application number
CN202020899347.5U
Other languages
Chinese (zh)
Inventor
许召军
邢又家
王学成
姜瑞双
施晓
冯泽欢
王志远
刘帅
毕炳祥
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.)
Shandong Transportation Institute
Fourth Engineering Co Ltd of China Railway 14th Bureau Co Ltd
Jinan Kingyue Highway Engineering Co Ltd
Original Assignee
Shandong Transportation Institute
Fourth Engineering Co Ltd of China Railway 14th Bureau Co Ltd
Jinan Kingyue Highway Engineering Co Ltd
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 Shandong Transportation Institute, Fourth Engineering Co Ltd of China Railway 14th Bureau Co Ltd, Jinan Kingyue Highway Engineering Co Ltd filed Critical Shandong Transportation Institute
Priority to CN202020899347.5U priority Critical patent/CN212228795U/en
Application granted granted Critical
Publication of CN212228795U publication Critical patent/CN212228795U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Investigating Or Analyzing Materials By The Use Of Electric Means (AREA)

Abstract

The utility model discloses a slurry quality detection device in post-tensioning prestressing force pore canal, including bellows and resistance detector, its characterized in that, seted up first connecting hole on the tip of bellows, first connecting hole has two, and the bellows overcoat of every first connecting hole upper end has first metal ribbon, and first metal ribbon is connected with first conductive component, and the tip of first conductive component passes first metal ribbon and then connects in first connecting hole; the first conductive assembly comprises a first outer insulating sleeve and a first conductive copper pipe, the first conductive copper pipe is connected with a first conductive wire, and the first conductive wire is connected with the resistance detector through a resistance instrument connecting wire; the first outer insulating sleeve is filled with insulating cement, and the first conductive copper pipe is arranged in the insulating cement. The detection device can detect the concrete fullness more accurately and efficiently.

Description

Post-tensioned prestressed duct internal slurry quality detection device
Technical Field
The utility model relates to a building engineering field, concretely relates to thick liquid quality testing device in post-tensioned prestressing force pore canal.
Background
The corrugated pipes need to be laid inside the bridge in the bridge construction process, concrete needs to be poured inside the corrugated pipes to improve the bridge strength, the concrete filling degree inside the corrugated pipes directly influences the bridge quality, and no better detection method exists at present for the concrete filling degree inside the corrugated pipes. It is therefore highly desirable to develop a device for detecting the degree of concrete filling inside a corrugated pipe.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a thick liquid quality testing device in post-tensioned prestressing force pore canal, this detection device can carry out more accurate detection to the concrete degree of filling to detection effect is better.
The utility model discloses a realize above-mentioned purpose, the technical solution who adopts is:
a device for detecting the quality of slurry in a post-tensioning method pre-stressed duct comprises corrugated pipes and a resistance detector, wherein two first connecting holes are formed in the end parts of the corrugated pipes, a first metal ribbon is sleeved outside the corrugated pipe at the upper end of each first connecting hole and connected with a first conductive assembly, and the end part of the first conductive assembly penetrates through the first metal ribbon and then is connected into the first connecting holes; the first conductive assembly comprises a first outer insulating sleeve and a first conductive copper pipe, the first conductive copper pipe is connected with a first conductive wire, and the first conductive wire is connected with the resistance detector through a resistance instrument connecting wire; the first outer insulating sleeve is filled with insulating cement, and the first conductive copper pipe is arranged in the insulating cement.
Preferably, the corrugated pipe comprises a wave crest pipe section and a wave trough pipe section, the wave crest pipe sections and the wave trough pipe sections are alternately connected to form the corrugated pipe, and the first connecting hole is formed in the wave trough pipe section; the first metal binding belt is sleeved on the wave trough pipe section.
Preferably, the first connecting hole is a round hole; at least one second connecting hole is formed in the corrugated pipe between the two first connecting holes, a second metal binding belt is sleeved outside the corrugated pipe at the upper end of each second connecting hole, and each second metal binding belt is connected with a second conductive assembly.
Preferably, the second connecting hole is formed in the wave crest pipe section or the wave trough pipe section, and the end of the second conductive assembly penetrates through the second metal binding belt and then is connected into the second connecting hole.
Preferably, the first outer insulating sleeve and the first conductive copper pipe are both in a conical tubular shape, and a plurality of first strip-shaped grooves are vertically formed in the inner wall of the first outer insulating sleeve.
Preferably, the upper end of the first metal binding tape is provided with a wire positioning shaft sleeve, and the lower part of the first conductive assembly can penetrate through the wire positioning shaft sleeve and the first metal binding tape.
Preferably, the second conductive assembly comprises a second outer insulating sleeve and a second conductive copper pipe, and the second conductive copper pipe is connected with a second conductive wire.
The utility model has the advantages that:
among the thick liquid quality detection device in above-mentioned post-tensioned prestressing force pore canal, be provided with neotype conductive component, conductive component passes through the metal ribbon location, and conductive component's connection is more firm reliable. The utility model discloses in use through the cooperation of metal ribbon and electric wire location axle sleeve, realized the firm location of conductive component and conductor wire. And the utility model provides a be provided with first connecting hole and the second connecting hole that is used for detecting different positions in the bellows, all be provided with conductive component in every connecting hole. Through resistance detector's use, can detect the resistance at different positions to whether fill into concrete mortar in the bellows at detectable corresponding position, and through the use of conductive component and metal ribbon, detection device's connection is more firm, has avoided check out test set to empty and damage and can't carry out normal detection achievement's condition and has taken place.
Drawings
In order to clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic view of the overall structure of a slurry quality detection device in a post-tensioned pre-stressed duct.
Fig. 2 is a schematic view of the overall structure of the bellows.
Fig. 3 is a schematic view of a connection structure of the first conductive member and the bellows.
FIG. 4 is a schematic view of the connection of the first metal strap and the first conductive assembly.
Fig. 5 is a schematic view of the overall structure of the first conductive member.
Fig. 6 is an isometric illustration of a first conductive assembly.
Detailed Description
The utility model provides a thick liquid quality testing device in post-tensioned prestressing duct, for making the utility model discloses a purpose, technical scheme and effect are clearer, more clear and definite, and is following right the utility model discloses further detailed description. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The present invention will be described in detail with reference to the accompanying drawings:
example 1
Referring to fig. 1 to 6, the device for detecting the slurry quality in the post-tensioned pre-stressed duct comprises a corrugated pipe 1 and a resistance detector 2, wherein two first connection holes 11 are formed in the end portion of the corrugated pipe 1, and the two first connection holes 11 are respectively formed in the left end portion and the right end portion of the corrugated pipe 1.
The corrugated pipe 1 at the upper end of each first connecting hole 11 is sleeved with a first metal binding belt 3, the first metal binding belt 3 is connected with a first conductive assembly 4, and the end part of the first conductive assembly 4 passes through the first metal binding belt 3 and then is connected in the first connecting hole 11.
The first conductive assembly 4 comprises a first outer insulating sleeve 41 and a first conductive copper pipe 42, the first conductive copper pipe 42 is connected with a first conductive wire 43, and the first conductive wire 43 is connected with the resistance detector 2 through a resistance meter connecting wire 44. The first outer insulating sleeve 41 is filled with insulating glue 45, and the first conductive copper tube 42 is arranged in the insulating glue 45.
The corrugated pipe 1 comprises a crest pipe section 12 and a trough pipe section 13, a plurality of crest pipe sections 12 and a plurality of trough pipe sections 13 are alternately connected to form the corrugated pipe 1, and a first connecting hole 11 is formed in the trough pipe sections; the first metal ribbon 3 is sleeved on the trough pipe section 13.
The first connecting holes 11 are round holes, and the number of the first connecting holes 11 is two; at least one second connecting hole 14 is formed in the corrugated pipe 1 between the two first connecting holes 11, a second metal binding tape 15 is sleeved outside the corrugated pipe 1 at the upper end of each second connecting hole 14, and each second metal binding tape 15 is connected with a second conductive assembly 16. The first metal band 3 and the second metal band 15 are both metal bands of the prior art. The number of the first metal binding tapes 3 is two, the upper end of the first metal binding tape 3 is provided with a wire positioning sleeve 31, and the lower part of the first conductive assembly 4 can penetrate through the wire positioning sleeve 31 and the first metal binding tapes 3.
A second connection hole 14 is formed in the peak section 12 or the valley section 13, and the end of the second conductive member 16 is connected to the second connection hole 14 after passing through the second metal tie 15.
First outer insulating cover 41 and first contact tube 42 all are the toper tubulose, and a plurality of first bar grooves 411 have been seted up on the inner wall of first outer insulating cover 41 vertically, and a plurality of first bar grooves 411 are vertical parallel arrangement, and the purpose of seting up first bar groove 411 is in order to make better the adhering to in first outer insulating cover 41 of insulating cement. The second conductive assembly 16 comprises a second external insulating sleeve and a second conductive copper pipe, a second conductive wire is connected to the second conductive copper pipe, and the connection structure of the second conductive assembly 16 is the same as that of the first conductive assembly 4.
Among the thick liquid quality detection device in above-mentioned post-tensioned prestressing force pore canal, be provided with neotype conductive component, conductive component passes through the metal ribbon location, and conductive component's connection is more firm reliable. In the concrete pouring process, although the conductive head in the prior art is in interference fit with the corrugated pipe hole, the conductive head is still easy to knock down during the mortar pouring process due to different levels of pouring mortar of workers. The utility model discloses in use through the cooperation of metal ribbon and electric wire location axle sleeve, realized the firm location of conductive component and conductor wire. And the utility model provides a be provided with first connecting hole and the second connecting hole that is used for detecting different positions in the bellows, all be provided with conductive component in every connecting hole. Through resistance detector's use, can detect the resistance at different positions to whether fill into concrete mortar in the bellows at detectable corresponding position, and through the use of conductive component and metal ribbon, detection device's connection is more firm, has avoided check out test set to empty and damage and can't carry out normal detection achievement's condition and has taken place.
Example 2
The application method of the slurry quality detection device in the post-tensioning prestressed duct comprises the following steps:
step one, providing a conductive copper pipe, an outer insulating sleeve, an insulating adhesive and a pair of pliers, and removing the outer skin of the end part of the first conductive wire 43 by using the pair of pliers to expose the conductive metal of the first conductive wire 43; the conductive metal in the first conductive wire 43 is put into the narrow-end of the first conductive copper pipe 42, and then the narrow-end of the first conductive copper pipe 42 is pinched flat by using pliers, so that the narrow-end of the first conductive copper pipe clamps the conductive metal of the first conductive wire. The first conductive copper tube 42 is in a tapered tubular shape, and the conductive metal of the first conductive wire can be better clamped after being pinched flat.
Step two, filling the insulating glue into the first outer insulating sleeve 41, and then putting the first conductive copper tube 42 into the insulating glue, so that the insulating glue completely covers the conductive metals of the first conductive copper tube 42 and the first conductive wire 43, and at this time, both the inner end and the outer end of the first conductive copper tube 42 are covered by the insulating glue.
And step three, after the insulating glue is completely solidified, cutting off one end, which is not connected with the first conductive wire 43, of the first conductive copper pipe 42 along the direction vertical to the axis to expose the cross section of the first conductive copper pipe 42, and then coating the connecting end of the first conductive copper pipe and the first conductive wire with waterproof adhesive tape.
Erecting a template structure 5 of the prefabricated box girder, and arranging a steel bar net structure 51 in the template structure 5; first connection holes 11 are opened at both ends of the corrugated tube 1, and second connection holes 14 are opened on the corrugated tube 1 between the two first connection holes 11. The distance between the first connecting hole and the port of the corrugated pipe is 20-40 cm. The distance between every two adjacent through holes is 190-210 cm.
Step five, first metal strap 3 and second metal strap 15 are strapped to corrugated tube 1, and then first conductive assembly 4 is mounted on first metal strap 3 and second conductive assembly 16 is mounted on second metal strap 15.
Step six, binding the first conductive wire 42 and the second conductive wire on the steel mesh structure 51 through steel wires, wherein the first conductive wire and the second conductive wire are both exposed out of the end part of the steel mesh structure 51, and then performing pouring concrete of the bridge and grouting of the corrugated pipe;
and seventhly, in the grouting process, the resistance detector 2 is connected with the first conductive wire or the second conductive wire, one end of the resistance detector 2 is connected with the first conductive wire, and the other end of the resistance detector 2 can be connected with the other first conductive wire or one of the second conductive wires, so that the resistance values of different parts in the corrugated pipe are measured, and the grouting state is judged according to the resistance values. The resistance value of the solidified grouting material measured by the resistance detector is in the range of 60 kilo-ohms to 120 kilo-ohms.
Example 3
According to the slurry quality detection method, the conductive copper pipe, the outer insulating sleeve and the insulating glue are used, so that the accuracy of conductivity of the manufactured conductive assembly can be better improved, and the conductive assembly is prevented from being influenced by external concrete mortar. In the detection process, the head of the conductive component can be cut off as required, the cross section of the conductive copper pipe is exposed after cutting off, and the conductive copper pipe is completely covered by the insulating glue inside and outside in the machining process, so that the conductive copper pipe conducts electricity only through the exposed cross section.
When concrete mortar is not filled in the corrugated pipe, the resistance detected by the resistance detector is infinite due to the contact of the conductive copper pipe and air; when the conductive copper pipe is contacted with the concrete mortar, the resistance detected by the resistance detector is 60-120 kilohms. And detecting the resistance range in the corresponding corrugated pipe through the change of the resistance value.
According to the slurry quality detection method, on the basis of resistance detection, the convenience degree and the accuracy of detection are improved, in addition, in the detection construction method, the damage of detection equipment is avoided, the detection quality and the success rate of detection are improved, the overall detection efficiency is improved, and the problem that normal detection cannot be carried out due to the damage of the detection equipment is avoided. The detection method is novel, high in innovativeness and high in practicability.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
The parts not mentioned in the utility model can be realized by adopting or using the prior art for reference.
Of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and the changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present invention should also belong to the protection scope of the present invention.

Claims (7)

1. The device for detecting the quality of the grout in the post-tensioning method pre-stressed duct comprises a corrugated pipe and a resistance detector, and is characterized in that two first connecting holes are formed in the end part of the corrugated pipe, a first metal ribbon is sleeved outside the corrugated pipe at the upper end of each first connecting hole and connected with a first conductive assembly, and the end part of the first conductive assembly penetrates through the first metal ribbon and then is connected into the first connecting holes; the first conductive assembly comprises a first outer insulating sleeve and a first conductive copper pipe, the first conductive copper pipe is connected with a first conductive wire, and the first conductive wire is connected with the resistance detector through a resistance instrument connecting wire; the first outer insulating sleeve is filled with insulating cement, and the first conductive copper pipe is arranged in the insulating cement.
2. The apparatus for testing the quality of slurry in a post-tensioned pre-stressed duct according to claim 1, wherein the corrugated tube comprises a plurality of wave crest tube segments and a plurality of wave trough tube segments, the plurality of wave crest tube segments and the plurality of wave trough tube segments are alternately connected to form a corrugated tube, and the first connection hole is formed in the wave trough tube segments; the first metal binding belt is sleeved on the wave trough pipe section.
3. The apparatus for testing slurry quality in a post-tensioned pre-stressed duct according to claim 2, wherein the first connecting hole is a circular hole; at least one second connecting hole is formed in the corrugated pipe between the two first connecting holes, a second metal binding belt is sleeved outside the corrugated pipe at the upper end of each second connecting hole, and each second metal binding belt is connected with a second conductive assembly.
4. The apparatus for testing the quality of slurry in a post-tensioned pre-stressed duct according to claim 3, wherein the second connecting hole is formed in the wave crest pipe section or the wave trough pipe section, and the end of the second conductive member is connected to the second connecting hole after passing through the second metal tie.
5. The apparatus according to claim 1, wherein the first outer insulating sleeve and the first copper conducting tube are both in a tapered tubular shape, and a plurality of first strip-shaped grooves are vertically formed in an inner wall of the first outer insulating sleeve.
6. The apparatus for testing the quality of grout inside a post-tensioned pre-stressed duct of claim 1, wherein the first metal cable tie is provided with a wire positioning sleeve at the upper end thereof, and the first conductive assembly is provided at the lower end thereof with a wire positioning sleeve and the first metal cable tie.
7. The apparatus according to claim 3, wherein the second conductive assembly comprises a second outer insulating sleeve and a second conductive copper pipe, and the second conductive copper pipe is connected with a second conductive wire.
CN202020899347.5U 2020-05-25 2020-05-25 Post-tensioned prestressed duct internal slurry quality detection device Active CN212228795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020899347.5U CN212228795U (en) 2020-05-25 2020-05-25 Post-tensioned prestressed duct internal slurry quality detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020899347.5U CN212228795U (en) 2020-05-25 2020-05-25 Post-tensioned prestressed duct internal slurry quality detection device

Publications (1)

Publication Number Publication Date
CN212228795U true CN212228795U (en) 2020-12-25

Family

ID=73929321

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020899347.5U Active CN212228795U (en) 2020-05-25 2020-05-25 Post-tensioned prestressed duct internal slurry quality detection device

Country Status (1)

Country Link
CN (1) CN212228795U (en)

Similar Documents

Publication Publication Date Title
CN111665280A (en) Post-tensioned prestressed duct internal slurry quality detection device and detection method thereof
CN110779959A (en) Prestressed duct grouting compactness detection device and detection method
CN212228795U (en) Post-tensioned prestressed duct internal slurry quality detection device
CN201213075Y (en) Electric cable having real-time temperature measuring function
CN211602232U (en) Mass concrete temperature measuring device
CN110359501B (en) Stress measurement structure for steel strand at free section of anchor cable
CN214657002U (en) Automatic monitoring devices of prestressed anchorage cable multiple spot stress
CN201649139U (en) Cast-in-place pile loading test inner force testing device
CN208606799U (en) Multi-parameter monitoring devices for roadway surrounding rock
CN114922174B (en) Prestressed anchor cable for detecting underwater condensation hardening process of anchoring body and detection method
CN206399562U (en) A kind of stress detection device for building
CN209372285U (en) A kind of device measuring external prestressing steel strand wires Suo Li
CN112857615A (en) Large-volume concrete temperature measuring line burying device and construction method thereof
CN208283240U (en) A kind of device of non-destructive testing steel bar corrosion
CN210464438U (en) Double-prism lens device for measuring elevation and mileage of cable
CN205655948U (en) Contrast tunnel dynamometry lock foot anchor pipe test performance's device
CN111733787B (en) Method and system for detecting karst cave treatment effect in bridge pile foundation construction process
CN210294142U (en) Real-time continuous intelligent testing system for water content of roadbed
CN211553843U (en) Prestressed duct mud jacking compactness detection device
CN114396842A (en) Strain clamp crimping detection method
CN210086240U (en) PHC tubular pile convenient to long survey of worker's back stake
CN103199463A (en) Overhead conductor abutting-joint method
CN109038151A (en) Special line for passenger trains integrated ground Through ground wire construction
US20220341862A1 (en) System and method for continuously and intelligently measuring water content of subgrade in real time
CN209858079U (en) High-reliability multi-point thermometer

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant