Convenient and accurate auxiliary measuring device for concrete carbonization depth
By setting up a dust cover and a vacuum cleaner on the drill bit, combined with a reactant nozzle and a telescopic ruler, the dust pollution problem is solved, and convenient and accurate measurement of the carbonization depth of concrete is achieved.
Patent Information
- Application Number
- CN202422021013.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing concrete carbonization depth detection device is prone to flying around during the drilling process, causing contamination of other components and affecting the accuracy of measurement.
A device including a drill bit, a vacuum cleaner assembly, a reactant storage box and a measuring assembly is designed. A dustproof cover is provided on the drill bit, and the vacuum cleaner cleans up the dust. The reactant is sprayed into the hole through the nozzle, and the carbonization depth is measured using a telescopic ruler.
Effectively prevent dust pollution, improve the accuracy and convenience of measurement, and ensure the accuracy of measurement results.
Smart Images

Figure CN223078322U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of detection equipment, in particular to a convenient, accurate and auxiliary measuring device for the carbonation depth of concrete. Background Technique
[0002] The concrete carbonation depth detection device is an auxiliary device used in construction engineering to detect the concrete carbonation depth. The concrete at the place to be detected is drilled through a drill, then a reactant is sprayed into the hole, and finally the carbonation depth is measured through a measuring instrument, so as to detect the concrete carbonation situation. A concrete carbonation depth automatic detection device recorded in the patent with the patent publication number CN214408977U drills holes on the concrete surface through a drill bit, and at the same time starts a blower to blow away the dust and debris in the hole, then sprays the reactant into the hole through a water pump, and finally measures it through tools such as calipers. However, when the blower cleans the dust generated during drilling, the dust will fly randomly, easily contaminating other components, resulting in dust pollution.
[0003] Based on this, a convenient, accurate and auxiliary measuring device for the carbonation depth of concrete is now provided, which can eliminate the drawbacks of the existing device. Content of the Utility Model
[0004] The purpose of the utility model is to provide a convenient, accurate and auxiliary measuring device for the carbonation depth of concrete to solve the problems in the background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A convenient, accurate and auxiliary measuring device for the carbonation depth of concrete includes a machine box, a drill bit, a handle, and a control console. The drill bit is provided at the bottom end of the machine box, the handle is provided at the top end of the machine box, the control console is provided on the right side of the top end of the machine box, a dust suction component is provided on the upper right side of the machine box, a reactant storage box is provided on the upper left side of the machine box, and a measuring component is provided on the left side of the bottom end of the machine box.
[0007] On the basis of the above technical solutions, the utility model also provides the following optional technical solutions:
[0008] In an optional solution: The dust suction component includes a dust suction machine, a dust suction pipe, and a dust-proof cover. The dust suction machine is provided on the upper right side of the machine box, the dust-proof cover is provided on the drill bit, and the lower end of the dust suction pipe is connected to the right side of the dust-proof cover in a through manner, and the upper end is connected to the dust suction machine.
[0009] In an alternative embodiment: A lid is provided at the upper end of the reagent storage box. A clamping ring is provided on the front side of the machine box of the reagent storage box. A spray pipe is provided on one side of the lid at the top of the reagent storage box. The lower end of the spray pipe extends into the reagent storage box. The upper end of the spray pipe is connected to a reagent spray head, and the spray pipe is clamped in the clamping ring.
[0010] In an alternative embodiment: The measuring assembly includes a ruler box, a telescopic ruler, a marking needle head, and a pulling block. The ruler box is provided at the bottom end of the machine box on the left side of the drill bit. The telescopic ruler is provided in the ruler box. A pulling block is provided at the bottom end on one side of the 0 scale line of the telescopic ruler. The pulling block is located on the surface of the ruler box. A marking needle head is provided at the 0 scale line of the telescopic ruler.
[0011] In an alternative embodiment: An extrusion handle is provided at the reagent spray head. The extrusion handle includes a piston column, a pressing plate, a fixing plate, and an elastic airbag. There are two upper and lower fixing plates. The lower fixing plate is provided on the reagent spray head, and the upper fixing plate is provided on the spray pipe. There are also two upper and lower pressing plates. The two pressing plates are provided on the corresponding two fixing plates. A groove for the lower pressing plate to move upward is provided on the lower fixing plate. A piston column is provided between the two pressing plates. An elastic airbag is provided inside the top end of the piston column. An air outlet is provided on one side of the elastic airbag at the upper pressing plate.
[0012] In an alternative embodiment: The control console is electrically connected to the machine box and the dust collector.
[0013] In an alternative embodiment: The upper pressing plate of the extrusion handle is connected in a through manner to the corresponding upper fixing plate and the air hole of the elastic airbag, and the upper fixing plate is connected in a through manner to the spray pipe.
[0014] In an alternative embodiment: A liquid level window is provided on the left surface of the reagent storage box. The liquid level window is a piece of glass.
[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0016] The present utility model contacts a specified position through the drill bit, drives the drill bit to drill holes by starting the motor. At this time, the dust-proof cover on the drill bit will prevent dust from flying everywhere. At the same time, the dust collector is started. The dust collector removes the dust generated during drilling in the dust-proof cover through the dust suction pipe. Then, the reagent is sprayed into the hole through the reagent spray head. Finally, the telescopic ruler is used for measurement. The precise scale of the telescopic ruler can make the measurement more accurate. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of the present utility model.
[0018] Figure 2 is a schematic structural diagram of the reagent storage box of the present utility model.
[0019] Figure 3 This is a schematic structural diagram of the measurement component of the present utility model.
[0020] Figure 4 This is a schematic structural diagram of the extrusion handle of the present utility model.
[0021] Annotation of reference numerals in the drawings: 100 machine box, 101 drill bit, 102 handle, 103 control console, 200 reagent storage box, 201 reagent spray head, 202 spray pipe, 203 clamping ring, 204 liquid level window, 205 box cover, 300 dust suction component, 301 dust suction machine, 302 dust suction pipe, 303 dust-proof cover, 400 measurement component, 401 ruler box, 402 telescopic ruler, 403 marking needle, 404 pulling block, 500 extrusion handle, 501 piston column, 502 pressing plate, 503 fixing plate, 504 elastic airbag. Specific implementation manners
[0022] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the drawings and embodiments.
[0023] In one embodiment, as Figures 1-4 shown, a convenient and accurate auxiliary measuring device for the carbonation depth of concrete includes a machine box 100, a drill bit 101, a handle 102, and a control console 103. The drill bit 101 is provided at the bottom end of the machine box 100, the handle 102 is provided at the top end of the machine box 100, the control console 103 is provided on the right side of the top end of the machine box 100, a dust suction component 300 is provided on the upper right side of the machine box 100, a reagent storage box 200 is provided on the upper left side of the machine box 100, and a measurement component 400 is provided on the left side of the bottom end of the machine box 100;
[0024] During use, the device can be moved to the place to be detected through the handle 102, and then the drill bit 101 is aligned with the punching position for punching. The control console 103 can control the machine box 100 and the dust suction component 300. At the same time, a reagent is stored in the reagent storage box 200, and the measurement component 400 can accurately measure the carbonation degree of the concrete.
[0025] The dust suction component 300 includes a dust suction machine 301, a dust suction pipe 302, and a dust-proof cover 303. The dust suction machine 301 is provided on the upper right side of the machine box 100, the dust-proof cover 303 is provided on the drill bit 101, the lower end of the dust suction pipe 302 is connected to the right side of the dust-proof cover 303 in a penetrating manner, and the upper end is connected to the dust suction machine 301;
[0026] During use, when the machine box 100 drives the drill bit 101 to rotate for drilling, the dust cover 303 on the drill bit 101 can prevent dust and debris from flying around. At the same time, the dust collector 301 is started. When the dust collector 301 operates, the dust suction pipe 302 will clean the dust inside the dust cover 303, thereby preventing the dust from flying around and contaminating other components, resulting in dust pollution.
[0027] A box cover 205 is provided at the upper end of the reactant storage box 200. A clamping ring 203 is provided on the machine box 100 on one side of the front of the reactant storage box 200. A spray pipe 202 is provided on one side of the box cover 205 at the top end of the reactant storage box 200. The lower end of the spray pipe 202 extends into the reactant storage box 200. The upper end of the spray pipe 202 is connected to a reactant spray head 201. The spray pipe 202 is clamped in the clamping ring 203.
[0028] During use, the box cover 205 can be opened to add reactants into the reactant storage box 200. Then, the spray pipe 202 is removed from the clamping ring 203 and dragged to the drilled hole. The reactant is sprayed into the hole through the reactant spray head 201. After spraying, the spray pipe 202 is re-clamped into the clamping ring 203 to complete the fixation of the spray pipe 202.
[0029] The measuring component 400 includes a ruler box 401, a retractable ruler 402, a marking needle head 403, and a pulling block 404. The ruler box 401 is provided at the bottom end of the machine box 100 on the left side of the drill bit 101. The retractable ruler 402 is provided in the ruler box 401. A pulling block 404 is provided at the bottom end of the 0 scale line side of the retractable ruler 402. The pulling block 404 is located on the surface of the ruler box 401. A marking needle head 403 is provided at the 0 scale line of the retractable ruler 402.
[0030] During use, by pulling the pulling block 404, the retractable ruler 402 is taken out of the ruler box 401. Then, the marking needle head 403 is aligned with the reaction position, and the scale of the retractable ruler 402 is read to complete the measurement of the concrete carbonation degree. After measurement, the pulling block 404 is slowly released to reset the retractable ruler 402, and the pulling block 404 will stop at the bottom surface of the ruler box 401 to prevent the retractable ruler 402 from completely entering the ruler box 401 and affecting the next use.
[0031] At the reagent spray head 201, there is a squeezing handle 500. The squeezing handle 500 includes a piston column 501, a pressing plate 502, a fixing plate 503, and an elastic airbag 504. There are two upper and lower fixing plates 503. The lower fixing plate is arranged on the reagent spray head 201, and the upper fixing plate is arranged on the spray pipe 202. There are also two upper and lower pressing plates 502. The two pressing plates 502 are arranged on the corresponding two fixing plates 503. And there is a groove on the lower fixing plate 503 for the lower pressing plate 502 to move upward. There is a piston column 501 between the two pressing plates 502. Inside the top end of the piston column 501, there is an elastic airbag 504. The elastic airbag 504 has an air outlet on one side of the upper pressing plate 502.
[0032] During use, by pressing the pressing plate 502, the lower pressing plate 502 moves upward in the groove on the lower fixing plate 503, causing the piston column 501 between the two pressing plates 502 to be compressed upward accordingly, thereby compressing the elastic airbag 504 inside the top end of the piston column 501, making the air hole on one side of the elastic airbag 504 discharge air, so that a pressure difference is generated in the spray pipe 202, and the reagent can be sprayed out from the reagent spray head 201. Then release the pressing plate 502, and under the action of the elastic airbag 504 and the piston column 501, the pressing plate 502 will reset.
[0033] The control console 103 is electrically connected to the machine box 100 and the dust collector 301.
[0034] During use, the control console 103 can directly control the switch of the drill bit 101 by the machine box 100 and the switch of the dust collector 301, making the operation of the device more simple and convenient.
[0035] The upper pressing plate 502 of the squeezing handle 500 is connected in a through manner to the corresponding upper fixing plate 503 and the air hole of the elastic airbag 504. The upper fixing plate 503 is connected in a through manner to the spray pipe 202.
[0036] During use, when the pressing plate 502 is squeezed, gas will be generated and introduced into the spray pipe 202 through the pressing plate 502 and the fixing plate 503, creating a pressure difference, so that the reagent can be sprayed out from the reagent storage box 200 through the spray pipe 202 from the reagent spray head 201.
[0037] On the left surface of the reagent storage box 200, there is a liquid level window 204, and the liquid level window 204 is a piece of glass.
[0038] During use, through the liquid level window 204 on the surface of the reagent storage box 200, the inventory of the reagent in the reagent storage box 200 can be visually seen, which is convenient for replenishing the reagent.
[0039] The working principle of the utility model is as follows: during use, the device is lifted to the designated position to be detected, the drill bit 101 is aligned with the drilling position, the motor in the machine box 100 is started through the console 103, the motor drives the drill bit 101 to rotate for drilling, and at the same time, the dust collector 301 is started through the console 103. After the dust collector 301 operates, the dust generated during drilling in the dust-proof cover 303 is cleaned through the dust suction pipe 302. Then, the spray pipe 202 is taken out from the clamping ring 203, the reactant spray head 201 is aligned with the hole, the extrusion handle 500 is pressed, so that the piston column 501 between the two pressure plates 502 is compressed, thereby compressing the elastic airbag 504 at the bottom end of the piston column 501. The air holes on the side of the elastic airbag 504 close to the upper pressure plate will generate gas, which reaches the spray pipe 202 through the upper pressure plate and the upper fixing block, causing a short-term air pressure difference, so that the reactant is sprayed into the hole. Finally, the pulling block 404 at the bottom end of the retractable ruler 402 is pulled, so that the marking needle head 403 is aligned with the reaction position in the hole, and then the carbonation degree of the concrete is measured through the scale on the retractable ruler 402.
[0040] The above is only the specific implementation manner of this application, but the protection scope of this application is not limited thereto. Any person skilled in the art within the technical scope disclosed in this application can easily think of changes or substitutions, which should all be covered within the protection scope of this application. Therefore, the protection scope of this application should be subject to the protection scope of the claims.
Claims
1. A convenient and accurate auxiliary measuring device for concrete carbonation depth, comprising a machine box (100), a drill bit (101), a handle (102) and a control console (103). The drill bit (101) is provided at the bottom end of the machine box (100), the handle (102) is provided at the top end of the machine box (100), and the control console (103) is provided on the right side of the top end of the machine box (100), characterized in that, On the upper right side of the machine box (100), there is a dust suction component (300). On the upper left side of the machine box (100), there is a reactant storage box (200). On the left side of the bottom end of the machine box (100), there is a measurement component (400).
2. The convenient and accurate auxiliary measuring device for the carbonation depth of concrete according to claim 1, characterized in that The dust suction component (300) includes a dust suction machine (301), a dust suction pipe (302), and a dust-proof cover (303). The dust suction machine (301) is installed on the upper right side of the machine box (100). The dust-proof cover (303) is installed on the drill bit (101). The lower end of the dust suction pipe (302) is connected to the right side of the dust-proof cover (303) in a through manner, and the upper end is connected to the dust suction machine (301).
3. The convenient and accurate auxiliary measuring device for concrete carbonation depth according to claim 1, characterized in that, On the upper end of the reactant storage box (200), there is a box cover (205). On one side of the front surface of the reactant storage box (200) on the machine box (100), there is a clamping ring (203). On one side of the box cover (205) at the top end of the reactant storage box (200), there is a spray pipe (202). The lower end of the spray pipe (202) extends into the reactant storage box (200). The upper end of the spray pipe (202) is connected to a reactant spray head (201). The spray pipe (202) is clamped in the clamping ring (203).
4. A convenient and accurate auxiliary measuring device for the carbonation depth of concrete according to claim 1, characterized in that, The measurement component (400) includes a ruler box (401), a telescopic ruler (402), a marking needle head (403), and a pulling block (404). The ruler box (401) is installed on the left side of the drill bit (101) at the bottom end of the machine box (100). The telescopic ruler (402) is installed in the ruler box (401). On the bottom end of one side of the 0 scale line of the telescopic ruler (402), there is a pulling block (404). The pulling block (404) is located on the surface of the ruler box (401). At the 0 scale line of the telescopic ruler (402), there is a marking needle head (403).
5. The convenient and accurate auxiliary measuring device for concrete carbonation depth according to claim 3, characterized in that, At the reactant spray head (201), there is a squeezing handle (500). The squeezing handle (500) includes a piston column (501), a pressing plate (502), a fixing plate (503), and an elastic airbag (504). There are two upper and lower fixing plates (503). The lower fixing plate (503) is installed on the reactant spray head (201). The upper fixing plate (503) is installed on the spray pipe (202). There are also two upper and lower pressing plates (502). The two pressing plates (502) are installed on the corresponding two fixing plates (503). And on the lower fixing plate (503), there is a groove for the lower pressing plate (502) to move upward. Between the two pressing plates (502), there is a piston column (501). Inside the top end of the piston column (501), there is an elastic airbag (504). The elastic airbag (504) has an air outlet on one side of the upper pressing plate (502).
6. The convenient and accurate auxiliary measuring device for the carbonation depth of concrete according to claim 1, characterized in that, The control console (103) is electrically connected to the machine box (100) and the dust suction machine (301).
7. An auxiliary device for conveniently and accurately measuring the carbonation depth of concrete according to claim 5, characterized in that, The upper pressing plate (502) of the squeezing handle (500) is connected to the air hole of the corresponding upper fixing plate (503) and the elastic airbag (504) in a through manner. The upper fixing plate (503) is connected to the spray pipe (202) in a through manner.
8. The convenient and accurate auxiliary measuring device for concrete carbonation depth according to claim 3, characterized in that, On the left surface of the reactant storage box (200), there is a liquid level window (204). The liquid level window (204) is a piece of glass.
Citation Information
Patent Citations
Concrete carbonization depth automatic detection device
CN214408977U