Concrete constant-temperature water curing device

By designing matrix-distributed notches and stirring water sources in the concrete constant temperature water curing device, the problem of slow water temperature rise is solved, and fast constant temperature is achieved to ensure effective curing of concrete parts.

CN222972434UActive Publication Date: 2025-06-13GUANGZHOU CONCRETE CO LTD
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Patent Information

Application Number
CN202421594425.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-06-13
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

During the heating process of existing concrete constant temperature water curing devices, the temperature of the water source is slower, which affects the curing effect of concrete parts.

Method used

A concrete constant temperature water curing device is designed, including multiple matrix-distributed notches. Each notch is equipped with heating parts and heat conductors. The top wall rotating member in the notch drives the diverter plate to stir the water source through the belt, so that the water around the heating parts is fully in contact with the cold water, and quickly reaches a constant temperature state.

Benefits of technology

By agitating the water source and using heat conductors, the constant temperature speed of water can be significantly accelerated and the concrete parts can be effectively cured.

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Abstract

The utility model relates to the technical field of concrete, and discloses a concrete constant-temperature water curing device which comprises a curing box, a plurality of notches distributed in a matrix mode are formed in the front face of the curing box, heating pieces are installed on the inner walls of the multiple notches, and the inner top walls of the multiple notches are each provided with a set of rotating pieces in a rotating mode; a belt is in transmission connection between each group of rotating parts, a plurality of splitter plates are fixedly connected to the outer surfaces of the plurality of belts, and heat conduction parts are mounted on the inner walls of the plurality of notches. According to the concrete constant-temperature water curing device, water in the groove opening can be stirred by installing the multiple splitter plates, hot water around the heating piece makes full contact with cold water, and then the water in the groove opening can rapidly reach the constant-temperature state; and the temperature of a water source in the notch can be monitored through cooperation of a temperature sensor, and the maintenance water in the notch can be cooled by installing a heat conduction piece, so that constant-temperature treatment can be conveniently carried out on the maintenance water.
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Description

Technical Field

[0001] This application relates to the technical field of concrete, and specifically relates to a constant-temperature water curing device for concrete. Background Technique

[0002] Concrete refers to the general term for engineering composite materials in which aggregate is cemented into a whole by cementitious materials. Usually, the term concrete refers to cement concrete, which uses cement as the cementitious material, sand and stone as aggregate; and is mixed with water (which may contain admixtures and additives) in a certain proportion and stirred. It is also called ordinary concrete and is widely used in civil engineering.

[0003] The existing patent (publication number: CN214187725U) discloses a new type of constant-temperature water curing box device. There is an object cylinder inside the curing box. The outer side of the curing box is fixedly connected with a heat insulation layer. One inner surface of one side of the curing box is rotatably connected with a water level alarm. A thermometer is fixedly connected to the inner side of the curing box below the water level alarm. One inner surface of the other side of the curing box is rotatably connected with a stirring rod. A nozzle is arranged at the bottom of the heat insulation cover. A heating pipe is fixedly connected to the bottom of the curing box. Connect the power supply, inject water into the curing box, start the heating plate and the stirring rod, and pay attention to the temperature in degrees Celsius shown by the thermometer until the water temperature slowly rises to the required temperature. Add the concrete to be cured into the object cylinder, cover the heat insulation cover and let it stand for curing. If the humidity meter indicates that the humidity in the object cylinder is too low, connect the water pipe to spray water mist. When the box is working, turn on the fan to help cool the inside and extend the service life of the device.

[0004] When the above document uses the heating pipe to raise the temperature of the water level, the water source in contact with the heating pipe will heat up first. Since the water source is in a static state inside the curing box and the heat transfer of temperature is slow, it will affect the constant-temperature speed of the water and easily affect the curing of concrete parts. Utility Model Content

[0005] In view of the deficiencies of the prior art, this application provides a constant-temperature water curing device for concrete, which has the advantages of rapid constant temperature and solves the problems raised in the background technique.

[0006] To achieve the above object, this application provides the following technical solution: A constant-temperature water curing device for concrete includes a curing box. A plurality of slot openings distributed in a matrix are provided on the front surface of the curing box. Heating elements are installed on the inner walls of the plurality of slot openings. Two rotating members are rotatably connected to the inner top walls of the plurality of slot openings. A belt is connected in transmission between each group of rotating members. A plurality of flow dividing plates are fixedly connected to the outer surfaces of the plurality of belts. Heat conducting members are installed on the inner walls of the plurality of slot openings.

[0007] Through the above solution, installing the heat conducting member can conduct out the heat of the curing water in the slot opening to avoid the temperature of the curing water in the slot opening being too high.

[0008] Furthermore, support frames are placed inside multiple said notches, and concrete members are placed on the upper surfaces of multiple said support frames.

[0009] Through the above solution, installing the support frame can support the concrete member, increasing the contact area between the concrete member and the water source.

[0010] Furthermore, waterproof motors are installed on the inner top walls of multiple said notches, and multiple rotating members located in the front are fixedly connected to the output ends of the waterproof motors closest to them.

[0011] Through the above solution, setting the waterproof motor can drive the rotating member in the front to rotate, and through the cooperation of the two rotating members, a plurality of flow dividing plates can be driven by a belt to stir the curing water in the notch, accelerating the transfer speed of the water in the notch and enabling the temperature of the curing water in the notch to be kept balanced.

[0012] Furthermore, sealing covers are hinged to the inner walls of multiple said notches, and multiple said sealing covers are distributed at equal distances.

[0013] Through the above solution, installing the sealing cover can seal the notch, preventing the curing water in the notch from leaking.

[0014] Furthermore, two cabinet doors are hinged to the front of the curing box, and observation glasses are installed on the fronts of the two cabinet doors.

[0015] Through the above solution, installing the observation glass can facilitate the observation of the situation inside the curing box, and the cooperation with the cabinet door can improve the sealing performance of the curing box.

[0016] Furthermore, a water inlet pipe is installed on the upper surface of the curing box, the water inlet pipe is communicated with multiple notches, and the water inlet pipe is in an L shape.

[0017] Through the above solution, installing the water inlet pipe can facilitate the perfusion of curing water into multiple notches, and at the same time, the curing water in the notch can be discharged through the water inlet pipe.

[0018] Furthermore, a cavity is formed inside the curing box, a cooling pipe is installed on the inner wall of the cavity, multiple said heat conducting members are in contact with the cooling pipe, and the left end of the cooling pipe is fixedly communicated with the output end of an external water pump.

[0019] Through the above solution, installing the cooling pipe can transfer the temperature of the curing water in the notch in cooperation with the heat conducting member, and can cool down the curing water in the notch.

[0020] Furthermore, temperature sensors are installed inside multiple said notches, and a valve is installed at the rear end of the water inlet pipe.

[0021] Through the above solution, installing a valve can seal the water inlet pipe to prevent the curing water in the notch from leaking. By installing a temperature sensor, the temperature in the notch can be monitored, facilitating the constant temperature treatment of the temperature in the notch.

[0022] Compared with the prior art, the technical solution of this application has the following beneficial effects:

[0023] For this concrete constant temperature curing device, by installing multiple flow dividing plates, the water in the notch can be agitated, enabling the relatively hot water around the heating element to come into full contact with the cold water. As a result, the water in the notch can quickly reach a constant temperature state, and the temperature of the water source in the notch can be monitored through the cooperation of the temperature sensor. By installing a heat conducting member, the curing water in the notch can be cooled, facilitating its constant temperature treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a sectional view of the overall structure of this application Figure 1 ;

[0025] Figure 2 It is a sectional view of the overall structure of this application Figure 2 ;

[0026] Figure 3 It is a sectional view of the overall structure of this application Figure 3 ;

[0027] Figure 4 It is a schematic diagram of the belt structure of this application;

[0028] Figure 5 It is a schematic diagram of the overall structure of this application.

[0029] In the figure:

[0030] 1. Curing box; 2. Notch; 3. Heating element; 4. Rotating member; 5. Belt; 6. Flow dividing plate; 7. Heat conducting member; 8. Support frame; 9. Concrete member; 10. Waterproof motor; 11. Sealing cover; 12. Box door; 13. Observation glass; 14. Water inlet pipe; 15. Cavity; 16. Cooling pipe; 17. Temperature sensor; 18. Valve. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] Next, the technical solutions in the embodiments of this application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of this application.

[0032] Please refer to Figure 1 、 Figure 2and Figure 4 In this embodiment, a constant-temperature curing device for concrete includes a curing box 1. A plurality of notches 2 distributed in a matrix are formed in the front surface of the curing box 1. Heating elements 3 are installed on the inner walls of the plurality of notches 2. A set of rotating members 4 are rotatably installed on the inner top walls of the plurality of notches 2. A belt 5 is drivingly connected between each set of rotating members 4. A plurality of flow dividing plates 6 are fixedly connected to the outer surfaces of the plurality of belts 5. By installing the plurality of flow dividing plates 6, the water in the notch 2 can be agitated, so that the relatively hot water around the heating element 3 can fully contact the cold water. Furthermore, the water in the notch 2 can quickly reach a constant-temperature state, and the temperature of the water source in the notch 2 can be monitored through the cooperation of the temperature sensor 17. By installing the heat conducting member 7, the curing water in the notch 2 can be cooled, which is convenient for its constant-temperature treatment. The heat conducting members 7 are installed on the inner walls of the plurality of notches 2.

[0033] Please refer to Figure 1 、 Figure 2 and Figure 4 Inside the plurality of notches 2, support frames 8 are placed. Concrete members 9 are placed on the upper surfaces of the plurality of support frames 8. Installing the support frames 8 can support the concrete members 9 and increase the contact area between the concrete members 9 and the water source. Waterproof motors 10 are installed on the inner top walls of the plurality of notches 2. The plurality of rotating members 4 located in the front are fixedly connected to the output ends of the waterproof motors 10 close to them. Setting the waterproof motors 10 can drive the front rotating members 4 to rotate, and through the cooperation of the two rotating members 4, the plurality of flow dividing plates 6 can be driven by the belt 5 to agitate the curing water in the notch 2, accelerating the heat transfer speed in the notch 2 and keeping the temperature of the curing water in the notch 2 balanced. Sealing covers 11 are hinged to the inner walls of the plurality of notches 2. The plurality of sealing covers 11 are equally spaced. Installing the sealing covers 11 can close the notch 2 and prevent the curing water in the notch 2 from leaking.

[0034] Please refer to Figure 5 Two box doors 12 are hinged to the front surface of the curing box 1. Observation glasses 13 are installed on the front surfaces of the two box doors 12. Installing the observation glasses 13 can facilitate the observation of the situation inside the curing box 1, and in cooperation with the box doors 12, can improve the sealing performance of the curing box 1.

[0035] Please refer to Figure 1 、 Figure 2 and Figure 3A water inlet pipe 14 is installed on the upper surface of the curing box 1. The water inlet pipe 14 is connected to the multiple slots 2. The water inlet pipe 14 is L-shaped. The installation of the water inlet pipe 14 can facilitate the injection of curing water into the multiple slots 2, and the curing water in the slots 2 can be discharged through the water inlet pipe 14. A cavity 15 is opened inside the curing box 1. A cooling pipe 16 is installed on the inner wall of the cavity 15. Multiple heat-conducting members 7 are in contact with the cooling pipe 16. The left end of the cooling pipe 16 is fixedly connected to the output end of the external water pump. The cooling pipe 16 is installed. The tube 16 can cooperate with the heat conductor 7 to transmit the temperature of the curing water in the slot 2, and can cool the curing water in the slot 2. Temperature sensors 17 are installed inside the multiple slots 2, and a valve 18 is installed at the rear end of the water inlet pipe 14. The valve 18 can be installed to close the water inlet pipe 14 to prevent the curing water in the slot 2 from leaking. By installing the temperature sensor 17, the temperature in the slot 2 can be monitored, which is convenient for constant temperature treatment of the temperature in the slot 2.

[0036] A concrete constant temperature water curing device in this embodiment can stir the water in the slot 2 by installing multiple diverter plates 6, so that the hotter water around the heating element 3 is in full contact with the cold water, so that the water in the slot 2 can quickly reach a constant temperature state, and the temperature of the water source in the slot 2 can be monitored by the cooperation of the temperature sensor 17. The curing water in the slot 2 can be cooled by installing the heat conductor 7, so as to facilitate constant temperature treatment thereof.

[0037] The working principle of the above embodiment is as follows: first, the concrete member 9 is placed on the support frame 8, and the slot 2 is sealed by the sealing cover 11. After the concrete member 9 is placed, curing water is poured into the multiple slots 2 through the water inlet pipe 14. After the curing water in the multiple slots 2 is poured, the heating member 3 generates heat to heat the curing water in the slots 2. At this time, the waterproof motor 10 starts and drives the front rotating member 4 to rotate. The front rotating member 4 can drive the driving belt 5 during the rotation process so that the multiple diverter plates 6 can The curing water in the slot 2 is stirred so that the hotter water around the heating element 3 is in full contact with the cold water, so that the water in the slot 2 can quickly reach a constant temperature state, and the temperature of the water source in the slot 2 can be monitored by the cooperation of the temperature sensor 17. When the temperature in the slot 2 is high, the external water pump starts and draws the external water source to circulate in the cooling pipe 16, and takes away the heat on the heat conductor 7, so that the temperature in the slot 2 can be reduced to a balanced level, which is convenient for curing the concrete member 9 in the slot 2.

[0038] It should be noted that, in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variation thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.

[0039] Although the embodiments of the present application have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A concrete constant temperature water curing device, comprising a curing box (1), characterized in that: The front of the curing box (1) is provided with a plurality of slots (2) distributed in a matrix pattern, the inner walls of the plurality of slots (2) are all equipped with heating elements (3), the inner top walls of the plurality of slots (2) are each equipped with a group of rotating elements (4) by rotating two of them, a belt (5) is connected between each group of rotating elements (4), the outer surfaces of the plurality of belts (5) are all fixedly connected with a plurality of flow dividers (6), and the inner walls of the plurality of slots (2) are all equipped with heat conducting elements (7).

2. A concrete constant temperature water curing device according to claim 1, characterized in that: Support frames (8) are placed inside the plurality of slots (2), and concrete pieces (9) are placed on the upper surfaces of the plurality of support frames (8).

3. A concrete constant temperature water curing device according to claim 1, characterized in that: The inner top walls of the plurality of notches (2) are all mounted with waterproof motors (10), and the plurality of rotating parts (4) located in the front are all fixedly connected to the output ends of the waterproof motors (10) adjacent thereto.

4. A concrete constant temperature water curing device according to claim 1, characterized in that: The inner walls of the plurality of notches (2) are all hingedly connected with sealing covers (11), and the plurality of sealing covers (11) are distributed at equal distances.

5. A concrete constant temperature water curing device according to claim 1, characterized in that: The front of the curing box (1) is hinged with two box doors (12), and the front of the two box doors (12) are both equipped with observation glasses (13).

6. A concrete constant temperature water curing device according to claim 1, characterized in that: A water inlet pipe (14) is installed on the upper surface of the curing box (1), the water inlet pipe (14) is connected to a plurality of notches (2), and the water inlet pipe (14) is L-shaped.

7. The constant temperature water curing device for concrete according to claim 1, characterized in that: A cavity (15) is provided inside the curing box (1), a cooling pipe (16) is installed on the inner wall of the cavity (15), the plurality of heat conducting members (7) are in contact with the cooling pipe (16), and the left end of the cooling pipe (16) is fixedly connected to the output end of an external water pump.

8. The device for curing concrete with constant temperature water according to claim 6, characterized in that: Temperature sensors (17) are installed inside each of the plurality of notches (2), and a valve (18) is installed at the rear end of the water inlet pipe (14).

Citation Information

Patent Citations

  • Concrete constant-temperature water tank curing device

    CN214187725U