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Face brick bonding strength on-site checking device for building supervision

A technology of bonding strength and veneer bricks, applied in the direction of using mechanical devices, measuring devices, instruments, etc., can solve the problems of laborious and time-consuming monitoring process, high precision requirements, etc., to achieve a simple structure, increase the bonding area, and reduce the difficulty of marking Effect

Inactive Publication Date: 2021-08-31
丁先喜
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Due to the existence of enclosures in the actual application of the above-mentioned technical solutions, the precision requirements for cutting the sample block are high; In the online process, other tools are needed, resulting in laborious and time-consuming monitoring process

Method used

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  • Face brick bonding strength on-site checking device for building supervision
  • Face brick bonding strength on-site checking device for building supervision
  • Face brick bonding strength on-site checking device for building supervision

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] see Figure 1-5 As shown, a device for inspecting the bonding strength of decorative bricks for construction supervision includes an inspection main body 1 for providing a pull-out force, and a bonding assembly 2 for bonding to a main body 4 of decorative bricks.

[0031] The bonding assembly 2 includes a bonding block 21, a first corner block 22, and a second corner block 23; Bonded on the surface of the sample block 3; the main body of the decorative tile 4 is bonded to the surface of the substrate 6; both the first corner block 22 and the second corner block 23 are right-angled, and the first corner block 22 and the second corner block 23 are closely bonded Around the block 21, the first corner block 22 and the second corner block 23 can be inserted in the cutting slit 5; after the first corner block 22 and the second corner block 23 are inserted in the cutting slit 5, the sample block 3 is also surrounded. in it.

[0032]The first corner block 22 and the second co...

Embodiment 2

[0038] see Figure 1-5 , the difference between Embodiment 2 and Embodiment 1 is that on the basis of retaining Embodiment 1, the bonding block 21 is provided with an inwardly recessed corner near the border of the first corner block 22 and the second corner block 23 A chute 25; the first corner block 22 and the second corner block 23 are correspondingly provided with a slider 26 that can slide in the chute 25; the setting of the chute 25 and the slider 26 can be the first corner block 22 and the second corner block The movement of the two corner blocks 23 along the thickness direction of the bonding block 21 plays a guiding role; the chute 25 is in the shape of a dovetail groove, so that the slider 26 can move away from or move towards the bottom of the chute 25, the first connecting plate 221, the second The connecting plates 231 can slide along the axial direction of the connecting shaft 211, so there is a certain gap between the first connecting plate 221 and the radial di...

Embodiment 3

[0040] see Figure 1-5 The difference between the third embodiment and the second embodiment is that on the basis of retaining the first embodiment, the support frame 15 includes two legs 151 and a beam 152 connecting the two legs 151 as a whole; Anti-slip suction cups 153 are provided at the ends of the legs 151 to prevent the support frame 15 from slipping during operation, which may affect the accuracy of bond strength monitoring.

[0041] The working process of the present invention is: scribe: unscrew the locking piece 24 that is positioned at the second connecting plate 231 away from the first connecting plate 221 side, make the end of the second corner block 23 and the bonding surface of the bonding block 21 flush; cut along the gap between two adjacent veneer panels, insert the first corner block 22 into the cutting gap 5 of the two adjacent veneer panels, and at this time the second corner block 23 is against the main surface of the veneer panel, Scribe along the per...

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PUM

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Abstract

The invention discloses a face brick bonding strength on-site checking device for building supervision. The face brick bonding strength on-site checking device comprises a checking main body and a bonding assembly, wherein the bonding assembly comprises a bonding block, a first corner block and a second corner block, the first corner block and the second corner block surround the outer side of the bonding block and can be inserted into a cutting gap, the first corner block and the second corner block can intermittently translate back and forth along the thickness direction of the bonding block, the second corner block can independently move relative to the bonding block, during scribing, the first corner block is inserted into the cutting gap between two adjacent face bricks, the second corner block abuts against the surface of a face brick main body, a connecting shaft is arranged on the bonding back face of the bonding block, and the first corner block and the second corner block can be limited to the locking position of a connecting shaft through a locking piece. According to the invention, the first corner block and the second corner block are arranged, so that the scribing difficulty can be reduced and the scribing precision can be improved during scribing; and in the bonding process, the bonding area of the sample blocks can be increased, and the bonding force is improved, so that the reliability of bonding strength monitoring is improved.

Description

technical field [0001] The invention relates to the technical field of engineering supervision, in particular to a device for checking the bond strength of decorative bricks used in construction supervision. Background technique [0002] With the development of the economy, the level of interior and exterior decoration of buildings has gradually improved. The decorative bricks on the building walls are not only beautiful and tidy, but also easy to clean; but if the construction party uses unqualified materials or irregular operations during the construction process , there will be a situation where the facing brick is not firmly bonded to the wall, and the facing brick that is not firmly bonded will loosen after a short period of use, and it is easy to fall off and cause a safety accident that injures people. "Construction Engineering Safety Production Management Regulations "Article 14 points out that if the project supervision unit finds hidden dangers of safety accidents ...

Claims

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Application Information

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IPC IPC(8): G01N19/04
CPCG01N19/04
Inventor 丁先喜
Owner 丁先喜