Building construction mortar layering degree detection device

By designing a modular mortar layering detection device, the problems of existing devices being unable to adjust height and being inconvenient to carry have been solved. This has enabled flexible adjustment and portability of the measuring cylinder, and improved the accuracy and applicability of the test data.

CN223727820UActive Publication Date: 2025-12-26CHUZHOU HUANYU CONSTR ENG CO LTD
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Patent Information

Application Number
CN202423297353.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-26
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing mortar stratification testing devices cannot adjust the height and size of the measuring cylinder, resulting in insufficient testing flexibility and applicability, and are not convenient to carry.

Method used

A testing device comprising a splicing tube and a test tube was designed. The adjustable height and splicing of the measuring tube are achieved through rotational and threaded connections. The device is equipped with an observation window, sealing strip, and rope to ensure portability and testing accuracy.

Benefits of technology

It enables flexible adjustment of the measuring cylinder, improves the accuracy and portability of test data, adapts to different testing needs, and reduces the space occupied by the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building construction, and discloses a building construction mortar layering degree detection device which comprises a splicing pipe, the top and the bottom of the splicing pipe are rotationally connected with test pipes through rotating shafts, and the two sides of one end, close to the splicing pipe, of each test pipe are fixedly connected with U-shaped forks. According to the building construction mortar layering degree detection device, a splicing pipe and a test pipe are rotatably spliced, so that the splicing pipe and the test pipe can be folded and stored when not used, the occupied space is reduced, a worker can carry the device more conveniently, and the splicing pipe and the test pipe can be rotatably spliced and fixed according to the needs of the worker; the height of the splicing pipe is extended, the mortar storage amount of the splicing pipe is increased, the thickness of mortar is increased, splicing use of different mortar thickness tests is achieved, deeper layering degree detection tests can be conducted, the accuracy of detection data is improved, and an effective mortar layering degree detection means is provided for building construction.
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Description

Technical Field

[0001] This utility model relates to the field of building construction technology, and in particular to a device for detecting the segregation degree of building construction mortar. Background Technology

[0002] Mortar segregation testing is an important quality control method in building construction. Mortar segregation is an indicator of the water retention of cement mortar. Before cement mortar is poured into the segregation tester, the consistency of the mortar is measured. By testing the segregation of the mortar, the uniformity and stability of the mortar can be evaluated, thereby ensuring the construction quality.

[0003] Existing mortar stratification testing devices are typically fixed-height measuring cylinders. When conducting stratification tests on mortar, the height of the measuring cylinder and the depth of mortar filling cannot be adjusted according to testing requirements. This results in a fixed upper limit for the test data of the measuring cylinder, limiting the flexibility and applicability of the test. At the same time, the fixed size of the measuring cylinder cannot be folded to shorten its height, resulting in a long and bulky measuring cylinder that is inconvenient to carry and transport. Utility Model Content

[0004] The technical problem to be solved by this utility model is that the existing technology has the disadvantages of being unable to be adjusted and spliced, and being inconvenient to carry. To this end, we propose a mortar layering detection device for building construction.

[0005] To achieve the above objectives, this application adopts the following technical solution: a building construction mortar segregation detection device, comprising a splicing pipe, wherein a test tube is rotatably connected to the top and bottom of the splicing pipe via a rotating shaft, and a U-shaped fork is fixedly connected to both sides of the test tube near one end of the splicing pipe. Two rotating rods are fixedly connected to the top and bottom of the splicing pipe, and a rotating shell is rotatably connected to the surface of the rotating rod. A threaded hole is opened on the top of the rotating shell, and an adjusting rod is threadedly connected to the inner wall of the threaded hole. A compression knob is fixedly connected to the top of the adjusting rod.

[0006] Preferably, both the splicing tube and the test tube have an elongated groove on one side, and an observation window is fixedly connected to the inner wall of the elongated groove. The observation window is made of tempered glass.

[0007] Preferably, grooves are provided at both ends of the splicing tube, and a sealing strip is fixedly connected to the side of the test tube near the splicing tube, with the surface of the sealing strip abutting against the inner wall of the groove.

[0008] Preferably, a rope is fixedly connected to the top of the squeeze knob, and the other end of the rope is fixedly connected to one side of the rotating shell.

[0009] Preferably, the surface of the adjusting rod is slidably connected to the inner wall of the U-shaped fork, and the cross-section of the adjusting rod is a U-shaped structure.

[0010] Preferably, the bottom of the test tube is fixedly connected with a collection shell, and one side of the test tube is fixedly connected with a level.

[0011] The technical effects and advantages of the present application are as follows:

[0012] In the present application, the splicing pipe and the test tube are connected by rotation, so that the splicing pipe and the test tube can be folded and stored when not in use, reducing the occupied space and being more convenient for the staff to carry. The splicing pipe and the test tube can be rotated and spliced and fixed according to the needs of the staff, so that the height of the splicing pipe is extended, the mortar storage capacity of the splicing pipe is increased, the thickness of the mortar is increased, the splicing use of different mortar thicknesses is realized, deeper layer degree test can be performed, the accuracy of the detection data is improved, and an effective mortar layer degree detection means is provided for building construction. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a front view structural schematic diagram of the present application;

[0014] Figure 2 It is a vertical cross-section structural sectional view of the present application;

[0015] Figure 3 It is a Figure 2 structure enlarged view of A in the present application;

[0016] Figure 4 It is a Figure 2 structure enlarged view of B in the present application.

[0017] Legend: 1, splicing pipe; 2, test tube; 3, U-shaped fork; 4, rotating rod; 5, rotating shell; 6, threaded hole; 7, adjusting rod; 8, extrusion knob; 9, long groove; 10, observation window; 11, groove; 12, sealing strip; 13, rope; 14, collection shell; 15, level. DETAILED DESCRIPTION

[0018] The present application will be further described in detail in combination with the drawings and preferred embodiments. These drawings are all simplified schematic diagrams, and only illustrate the basic structure of the present application in a schematic manner, so that only the structures related to the present application are shown.

[0019] Refer to Figure 1 - Figure 3The utility model provides a technical scheme: a building construction mortar layered degree detection device, including splicing pipe 1, the top and bottom of splicing pipe 1 are all connected with test pipe 2 through pivot rotation, the both sides of test pipe 2 close to splicing pipe 1 one end are all fixedly connected with U-shaped fork 3, the top and bottom of splicing pipe 1 are all fixedly connected with two rotating rods 4, the surface of rotating rod 4 is connected with rotating shell 5, the top of rotating shell 5 is provided with screw hole 6, the inner wall of screw hole 6 is connected with adjusting rod 7 in screw thread, the top of adjusting rod 7 is fixedly connected with extrusion knob 8, through the rotation connection of splicing pipe 1 and test pipe 2, after test pipe 2 at the bottom is placed on the ground, staff can rotate splicing pipe 1 to its top, then adjusting rod 7 is inserted into U-shaped fork 3 and is screwed into the inside of screw hole 6, so that extrusion knob 8 gradually moves up and is close to U-shaped fork 3, forms extrusion force to U-shaped fork 3, makes splicing pipe 1 and test pipe 2 closely adhere to, at the same time, splicing pipe 1 and test pipe 2 are restrained and can not rotate any more, at this time, splicing pipe 1 is placed on the top of test pipe 2, and the other test pipe 2 is rotated to the top of splicing pipe 1 and is operated above, so that splicing pipe 1 and test pipe 2 are spliced and lengthened and hold more mortar, can adjust the height of test pipe 2 according to test demand, so that the layered degree of mortar is deeper, when testing, the layered data of mortar can be measured more accurately, and the device can be spliced and folded, so it is more convenient to carry and place, provides effective mortar layered degree detection means for building construction.

[0020] Referring to Figure 2 With Figure 3 As shown in the embodiment, the long groove 9 is formed in one side of the splicing pipe 1 and the test pipe 2, the inner wall of the long groove 9 is fixedly connected with the observation window 10, the observation window 10 is made of tempered glass material, through the design of the tempered glass material of the observation window 10, the staff can directly observe the mortar test situation inside the splicing pipe 1 and the test pipe 2 through the observation window 10, ensure the transparency and intuitiveness of the test process, more convenient for staff to observe and record test data in real time, in addition, the surface of the observation window 10 is treated specially, has good anti-scratching performance, can effectively prevent abrasion and pollution in the construction site, ensure the clarity of observation.

[0021] Referring to Figure 2 With Figure 4 As shown in the embodiment, the recess 11 is formed in both ends of the splicing pipe 1, the sealing strip 12 is fixedly connected with the side of the test pipe 2 close to the splicing pipe 1, the surface of the sealing strip 12 abuts with the inner wall of the recess 11, when the splicing pipe 1 and the test pipe 2 are spliced, the sealing strip 12 will move into the inner wall of the recess 11 with the test pipe 2, through the rubber material of the sealing strip 12, when the splicing pipe 1 and the test pipe 2 are closely attached, the sealing strip 12 is deformed by compression force, is closely attached in the inner wall of the recess 11, fills the gap between the splicing pipe 1 and the test pipe 2, improves the sealing performance after the splicing pipe 1 and the test pipe 2 are spliced.

[0022] Referring to Figure 2 With Figure 3 As shown in the embodiment: the top of the extrusion knob 8 is fixedly connected with a rope 13, the other end of the rope 13 is fixedly connected with one side of the rotating shell 5, the extrusion knob 8 and the rotating shell 5 are connected through the arranged rope 13, so that after the adjusting rod 7 is separated from the inside of the threaded hole 6, the extrusion knob 8 is hung on one side of the rotating shell 5 by the restraint of the rope 13, effectively preventing the extrusion knob 8 from falling and being lost after being separated from the adjusting rod 7.

[0023] Referring to Figure 2 With Figure 3 As shown in the embodiment: the surface of the adjusting rod 7 is in sliding connection with the inner wall of the U-shaped fork 3, the cross section of the adjusting rod 7 is in U-shaped structure, the adjusting rod 7 is placed in the threaded hole 6, and the test tube 2 is rotated and spliced with the pipe 1 through the rotating connection of the rotating shell 5 and the rotating rod 4, so that the adjusting rod 7 can be directly rotated and driven by the rotating shell 5 to slide along the inner wall of the U-shaped fork 3 through the opening of the U-shaped fork 3, so that the adjusting rod 7 is placed in the inner wall of the U-shaped fork 3, thereby eliminating the docking step of the threaded hole 6 and the adjusting rod 7, and more convenient for workers to splice and use the device.

[0024] Referring to Figure 1 With Figure 2 As shown in the embodiment: the bottom of the test tube 2 is fixedly connected with a collection shell 14, and one side of the test tube 2 is fixedly connected with a level 15, so that the worker can observe the level 15 to adjust the horizontal position of the test tube 2 to keep it horizontally placed, prevent the test tube 2 from being inclined after being placed to affect the mortar detection data, and at the same time, the collection shell 14 is arranged to collect the mortar spilled during the test, effectively preventing the mortar from polluting the ground.

[0025] Working principle: through the splicing pipe 1 and test pipe 2 rotating connection, so that the bottom test pipe 2 is placed on the ground, the staff can rotate the splicing pipe 1 to its top, then the adjusting rod 7 is inserted into the U-shaped fork 3 and screwed into the threaded hole 6, so that the extrusion knob 8 gradually moves up to close to the U-shaped fork 3, forming extrusion force on the U-shaped fork 3, so that the splicing pipe 1 and test pipe 2 are tightly fitted and cannot rotate, at this time the splicing pipe 1 is placed on the top of the test pipe 2, and the other test pipe 2 is rotated to the top of the splicing pipe 1 and the above operation is carried out, so that the splicing pipe 1 and test pipe 2 are spliced and lengthened to hold more mortar. The height of the test pipe 2 can be adjusted according to the test requirements, so that the mortar layer is deeper, and the layered data of the mortar can be measured more accurately during the test. The device can be spliced and folded for convenient carrying and placement, providing an effective mortar layered detection means for building construction. The tempered glass material of the observation window 10 allows the staff to directly observe the mortar test inside the splicing pipe 1 and test pipe 2 through the observation window 10, ensuring the transparency and intuitiveness of the test process, and facilitating the staff to observe and record the test data in real time. In addition, the surface of the observation window 10 is specially treated and has good anti-scratch performance, which can effectively prevent wear and tear and pollution on the construction site, ensuring the clarity of observation. When the splicing pipe 1 and test pipe 2 are spliced, the sealing strip 12 will move into the inner wall of the groove 11 along with the test pipe 2. The rubber material of the sealing strip 12 allows it to deform under compression when the splicing pipe 1 and test pipe 2 are tightly fitted, tightly fitting in the inner wall of the groove 11, filling the gap between the splicing pipe 1 and test pipe 2, and improving the sealing performance of the splicing pipe 1 and test pipe 2 after splicing. The rope 13 is connected to the extrusion knob 8 and the rotating shell 5, so that when the adjusting rod 7 is separated from the threaded hole 6, the extrusion knob 8 is suspended on one side of the rotating shell 5 by the rope 13, effectively preventing the extrusion knob 8 from falling and being lost after separating from the adjusting rod 7. The rotating connection between the rotating shell 5 and the rotating rod 4 allows the adjusting rod 7 to be placed in the threaded hole 6 when the splicing pipe 1 and test pipe 2 are rotated and spliced. Through the opening of the U-shaped fork 3, the rotating shell 5 can be directly rotated to drive the adjusting rod 7 to slide along the inner wall of the U-shaped fork 3, so that the adjusting rod 7 is placed in the inner wall of the U-shaped fork 3, thereby eliminating the need for the threaded hole 6 and the adjusting rod 7 to be connected, making it easier for the staff to use the device. The spirit level 15 allows the staff to observe the horizontal position of the test pipe 2 and keep it level, preventing the test pipe 2 from tilting and affecting the mortar test data. The collection shell 14 is provided to collect the spilled mortar during the test, effectively preventing the mortar from spilling and polluting the ground.

[0026] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. A device for detecting the degree of stratification of a construction mortar, comprising a splicing pipe (1), characterized in that: The top and bottom of the spliced pipe (1) are rotationally connected with test pipes (2) through rotating shafts, the two sides of the test pipe (2) close to one end of the spliced pipe (1) are fixedly connected with U-shaped forks (3), the top and bottom of the spliced pipe (1) are fixedly connected with two rotating rods (4), the surface of the rotating rod (4) is rotationally connected with a rotating shell (5), the top of the rotating shell (5) is provided with a threaded hole (6), the inner wall of the threaded hole (6) is threadedly connected with an adjusting rod (7), and the top of the adjusting rod (7) is fixedly connected with a squeezing knob (8).

2. The construction mortar layered degree detection device according to claim 1, characterized in that: The spliced pipe (1) and one side of the test pipe (2) are both provided with long grooves (9), and the inner wall of the long groove (9) is fixedly connected with an observation window (10), which is made of tempered glass.

3. The device for detecting the layered degree of construction mortar according to claim 1, characterized in that: The two ends of the spliced pipe (1) are both provided with grooves (11), and the side of the test pipe (2) close to the spliced pipe (1) is fixedly connected with a sealing strip (12), and the surface of the sealing strip (12) is in abutment with the inner wall of the groove (11).

4. The device for detecting the layered degree of construction mortar according to claim 1, characterized in that: The top of the squeezing knob (8) is fixedly connected with a rope (13), and the other end of the rope (13) is fixedly connected with one side of the rotating shell (5).

5. The device for detecting the layered degree of construction mortar according to claim 1, characterized in that: The surface of the adjusting rod (7) is slidingly connected with the inner wall of the U-shaped fork (3), and the cross section of the adjusting rod (7) is a U-shaped structure.

6. The device for detecting the layered degree of construction mortar according to claim 1, characterized in that: The bottom of the test pipe (2) is fixedly connected with a collecting shell (14), and one side of the test pipe (2) is fixedly connected with a level (15).