CN219748429U - Cement test block curing box - Google Patents

Cement test block curing box Download PDF

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Publication number
CN219748429U
CN219748429U CN202320640196.5U CN202320640196U CN219748429U CN 219748429 U CN219748429 U CN 219748429U CN 202320640196 U CN202320640196 U CN 202320640196U CN 219748429 U CN219748429 U CN 219748429U
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Prior art keywords
curing box
curing
box body
box
fixedly connected
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CN202320640196.5U
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Chinese (zh)
Inventor
宋康宁
马玉芹
宋相金
刘相霞
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Yanjin Jianye Cement Manufacturing Co ltd
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Yanjin Jianye Cement Manufacturing Co ltd
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Abstract

The utility model relates to a cement test block curing box which comprises a curing box body, a controller, a temperature adjusting device and a humidity adjusting device, wherein the controller is respectively and electrically connected with the temperature adjusting device and the humidity adjusting device, the front surface of the curing box body is opened, a plurality of branch pipes are arranged in the middle position in the curing box body, two sides of each branch pipe are fixedly connected with a plurality of supporting beams, a storage frame is slidably connected between each supporting beam and the inner wall of the curing box body, the plurality of storage frames divide the curing box body into a plurality of curing chambers with front surface openings, chamber doors are hinged at the front surface opening positions of the curing chambers, and positioning bolts are connected between the chamber doors and the supporting beams in a threaded manner; each storage frame comprises two sliding beams which are respectively in sliding connection with the supporting beam and the inner wall of the curing box body, and a plurality of storage rods are fixedly connected between the two sliding beams of each storage frame; the reliability of the test data can also be improved.

Description

Cement test block curing box
Technical Field
The utility model belongs to the technical field of cement curing equipment, and particularly relates to a cement test block curing box.
Background
At present, in the process of producing cement blocks, certain cement blocks in the same batch are generally required to be marked to form cement test blocks, and the cement test blocks are cured under the proper temperature and humidity conditions so as to test the strength of the cement blocks which can be achieved after curing for different time periods; in the prior art, the cement test blocks are usually put into a cement test block curing box for curing, and in order to enable the curing box to simultaneously contain a plurality of cement test blocks, a plurality of partition boards are fixedly connected in the curing box to divide the curing box into a plurality of curing areas, but in the use process, the position of the partition boards is fixed, so that the cement test blocks close to the inside of the curing box are inconvenient to take and place; secondly, when the cement test block is placed on the partition board, the bottom surface of the cement test block is completely shielded and cannot be exposed in the curing box, so that different curing conditions of each surface of the cement test block can be caused, the reliability of test data can be influenced, and therefore, the defects and the shortcomings still exist in the prior art.
Disclosure of Invention
The utility model aims to provide a cement test block curing box for solving the problems in the background technology.
In order to solve the problems, the utility model adopts the following technical scheme:
the utility model provides a cement test block curing box, includes the vertical curing box that sets up and have cavity structure, install controller, temperature regulation apparatus and humidity regulation apparatus on the curing box, the controller is connected with temperature regulation apparatus, humidity regulation apparatus electricity respectively, the front opening of curing box, and the intermediate position in the curing box installs the branch pipe that a plurality of vertical relative distributions and interval set up, the both sides of a plurality of branch pipes are all fixedly connected with a plurality of supporting beams that set up horizontally along the pipe length direction of branch pipe, all sliding connection has the thing frame of putting of horizontal distribution between the inner wall of every supporting beam and curing box, a plurality of thing frame separates the curing box in into a plurality of front open-ended curing chamber, the front open position of curing chamber all articulates there is the room door, all threaded connection has positioning bolt between room door and the supporting beam;
every puts thing frame all includes the smooth roof beam that two levels set up relatively, the smooth roof beam respectively with the inner wall sliding connection of supporting beam, curing box, and all fixedly connected with a plurality of thing poles of putting that set up along the long equidistance distribution of the roof beam length of smooth roof beam and interval between two smooth roof beams of every putting thing frame.
Further, the first sliding grooves horizontally penetrating through the supporting beams are formed in the side faces, far away from one side of the branch pipes, of the supporting beams, the second sliding grooves which are equal to the first sliding grooves in number and opposite in position are formed in the inner wall of the curing box body, one ends, close to the front faces of the curing box bodies, of the second sliding grooves are flush with the front faces of the curing box bodies, the sliding beams are respectively located in the first sliding grooves and the second sliding grooves, and a plurality of pulleys which are in butt joint with the groove walls of the first sliding grooves and the groove walls of the second sliding grooves are respectively connected to the bottom faces of the sliding beams in a rotating mode.
Further, temperature regulating device includes temperature sensor and the air-blower and the heating cabinet that are linked together, the heating cabinet is installed on the outer top surface of curing box, installs a plurality of electrical heating piece in the heating cabinet, the controller is connected with temperature sensor, air-blower, electrical heating piece electricity respectively, temperature sensor installs in the curing box, branch pipe bottom all with the interior bottom surface fixed connection of curing box, all communicate with the heating cabinet after the branch pipe top passes the curing box, still all offered a plurality of bleeder vent on the branch pipe.
Further, humidity control device includes humidity transducer and two water tanks that have the water inlet, and two water tank symmetric distributions are in the both sides of curing box, all fixed intercommunication has the water pipe on every water tank, all installs the water pump on every water pipe, and still all fixed intercommunication has a plurality of shunt tubes on every water pipe, the one end that the water pipe was kept away from to the shunt tube is located the top of curing chamber respectively, and the equal fixedly connected with flow distribution disc of this end of water distribution tube, and all fixed intercommunication has a plurality of spray nozzle on every flow distribution disc, the controller is connected with humidity transducer, water pump electricity respectively, humidity transducer installs in curing box.
Further, the both sides of the interior bottom surface of maintenance box are the inclined plane that the slope set up, and one side that the maintenance box intermediate position was kept away from to the inclined plane is higher than the opposite side of inclined plane, and the intermediate position fixedly connected with vertical cross-section of the external bottom surface of maintenance box is the mount of U type, sliding connection has top surface open-ended album liquid box in the mount, the positive fixedly connected with second handle of album liquid box, album liquid box communicates with the maintenance box through the album liquid hole of vertically seting up on the bottom surface of maintenance box.
Further, the front of each chamber door is fixedly connected with a first handle, and the non-hinged side of each chamber door is provided with a sealing strip.
Furthermore, universal wheels with self-locking function are arranged at four corners of the outer bottom surface of the curing box body.
By adopting the technical scheme, the utility model has the beneficial effects that:
according to the utility model, the controller, the temperature adjusting device and the humidity adjusting device are arranged on the curing box body, so that the temperature and the humidity in the curing box body can be automatically adjusted, and the cement test block is ensured to be maintained under proper temperature and humidity conditions; secondly, the inside of the curing box body can be divided into a plurality of curing chambers by arranging a plurality of object placing frames in the curing box body, so that a plurality of cement test blocks can be simultaneously contained in the curing box body, and the object placing frames are in sliding connection in the curing box body, so that the cement test blocks close to the inside of the curing box body can be conveniently taken and placed; finally, the object placing frame is arranged to be the sliding beam and the object placing rod, so that the bottom surface of the cement test block is not completely shielded after the cement test block is placed on the object placing frame, and the reliability of test data can be improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of FIG. 1 with a partial enlargement at A;
FIG. 3 is a schematic view of the structure of FIG. 1 with a partial enlargement at B;
fig. 4 is a schematic structural view of a part of the device in the present utility model.
FIG. 5 is a second schematic diagram of the structure of the present utility model.
Reference numerals: 1. a storage frame; 11. a slide beam; 12. a storage rod; 13. a pulley; 2. a branch pipe; 21. ventilation holes; 3. a support beam; 31. a first chute; 4. a curing box body; 41. a curing room; 42. a chamber door; 43. positioning bolts; 44. a second chute; 45. a liquid collecting hole; 46. a first handle; 47. a sealing strip; 5. a temperature adjusting device; 51. a temperature sensor; 52. a blower; 53. a heating box; 54. an electric heating plate; 6. a humidity adjusting device; 61. a humidity sensor; 62. a water tank; 63. a water main; 64. a water pump; 65. a water diversion pipe; 66. a diverter tray; 67. a spray nozzle; 7. a controller; 8. a fixing frame; 9. a liquid collecting box; 91. a second handle; 10. and a universal wheel.
Detailed Description
In order to make the objects, technical solutions and advantageous effects of the present utility model more apparent, embodiments of the present utility model will be described in further detail below with reference to the accompanying drawings.
As shown in fig. 1 to 5, the utility model provides a cement test block curing box, which comprises a curing box body 4 which is vertically arranged and has a cavity structure, wherein a controller 7, a temperature adjusting device 5 and a humidity adjusting device 6 are arranged on the curing box body 4, the controller 7 is respectively electrically connected with the temperature adjusting device 5 and the humidity adjusting device 6, the temperature adjusting device 5 is specifically used for automatically adjusting the temperature in the curing box body 4, and the humidity adjusting device 6 is used for automatically adjusting the humidity in the curing box body 4, so that the cement test block can be maintained under proper temperature and humidity conditions; secondly, the front surface of the curing box body 4 is opened, a plurality of branch pipes 2 which are vertically and oppositely distributed and are arranged at intervals are arranged in the middle position in the curing box body 4, a plurality of horizontally arranged supporting beams 3 are fixedly connected to the two sides of the plurality of branch pipes 2 along the pipe length direction of the branch pipes 2, a horizontally distributed storage frame 1 is slidably connected between each supporting beam 3 and the inner wall of the curing box body 4, namely the storage frame 1 is detachable in the curing box body 4; the plurality of object placing frames 1 divide the inside of the curing box body 4 into a plurality of curing chambers 41 with front openings, so that a plurality of cement test blocks can be simultaneously contained in the curing box body 4, and the object placing frames 1 are in sliding connection in the curing box body 4, thereby being convenient for taking and placing the cement test blocks close to the inside of the curing box; the front opening positions of the curing chambers 41 are hinged with chamber doors 42, positioning bolts 43 are connected between the chamber doors 42 and the supporting beams 3 in a threaded manner, specifically, the heads of the positioning bolts 43 are positioned outside the chamber doors 42, when the chamber doors 42 are closed, the screw ends of the positioning bolts 43 penetrate through the chamber doors 42 and are connected with the supporting beams 3 in a threaded manner, and the heads of the positioning bolts 43 are abutted with the chamber doors 42, so that the object placing frame 1 can be fixed in the curing box 4; finally, every puts thing frame 1 all includes the smooth roof beam 11 that two levels set up relatively, smooth roof beam 11 respectively with supporting beam 3, the inner wall sliding connection of curing box 4, and all fixedly connected with a plurality of thing poles 12 of putting that set up along the equidistant distribution of the roof beam length direction of smooth roof beam 11 and interval between two smooth roof beams 11 of every put thing frame 1, put the cement test block on putting thing frame 1 like this, can not shelter from the bottom surface of cement test block completely to can improve the reliability of inspection data.
The concrete mode of sliding connection of the storage frame 1 with the inner walls of the supporting beam 3 and the curing box body 4 is as follows: as shown in fig. 1, fig. 2 and fig. 4, the side surface of the support beam 3 far away from the branch pipe 2 is provided with first sliding grooves 31 penetrating through the support beam 3 horizontally, the inner wall of the curing box 4 is provided with second sliding grooves 44 which are equal to the first sliding grooves 31 in number and opposite in position, one end of the second sliding grooves 44 close to the front of the curing box 4 is flush with the front of the curing box 4, the sliding beams 11 are respectively located in the first sliding grooves 31 and the second sliding grooves 44, the bottom surfaces of the sliding beams 11 are respectively connected with a plurality of pulleys 13 which are in contact with the groove walls of the first sliding grooves 31 and the groove walls of the second sliding grooves 44 in a rotating manner, and in particular, the pulleys 13 can facilitate drawing the storage frame 1 in the curing box 4.
The specific structure of the temperature adjusting device 5 and how to adjust the temperature in the curing box 4 are as follows: as shown in fig. 1, 3 and 5, the temperature adjusting device 5 comprises a temperature sensor 51, a blower 52 and a heating box 53, wherein the blower 52 is communicated with the temperature sensor 51, the heating box 53 is arranged on the outer top surface of the curing box 4, a plurality of electric heating plates 54 are arranged in the heating box 53, the controller 7 is respectively and electrically connected with the temperature sensor 51, the blower 52 and the electric heating plates 54, the temperature sensor 51 is arranged in the curing box 4, the bottom ends of the branch pipes 2 are fixedly connected with the inner bottom surface of the curing box 4, the top ends of the branch pipes 2 are communicated with the heating box 53 after passing through the curing box 4, a plurality of ventilation holes 21 are formed in the branch pipes 2, the ventilation holes 21 are communicated with the inside of each curing chamber 41 and the branch pipes 2, specifically, when the temperature sensor 51 detects that the temperature in the curing box 4 is lower due to heat dissipation, the controller 7 controls the electric heating plates 54 to heat, after a period of heating, the controller 7 controls the blower 52 to transmit the heat in the heating box 53 into the branch pipes 2, and finally the cement blocks are output to the curing box 41 through the ventilation holes 21, and the cement blocks can be properly cured under proper temperature conditions when the curing conditions are guaranteed; in addition, since the ventilation holes 21 communicate the respective curing chambers 41 with the branch pipes 2, and air can be circulated between the respective curing chambers 41, the inside of the respective curing chambers 41 can be kept at the same temperature.
The specific structure of the humidity control apparatus 6 and how to control the humidity in the curing box 4 are as follows: as shown in fig. 1 and 5, the humidity adjusting device 6 includes a humidity sensor 61 and two water tanks 62 with water inlets, the two water tanks 62 are symmetrically distributed at two sides of the curing box 4, each water tank 62 is fixedly connected with a water main 63, each water main 63 is provided with a water pump 64, each water main 63 is fixedly connected with a plurality of water diversion pipes 65, one ends of the water diversion pipes 65 far away from the water main 63 are respectively located at the top of the curing chamber 41, the ends of the water diversion pipes 65 are respectively fixedly connected with a diversion disk 66, each diversion disk 66 is fixedly connected with a plurality of spray nozzles 67, the controller 7 is respectively electrically connected with the humidity sensor 61 and the water pump 64, the humidity sensor 61 is installed in the curing box 4, specifically, when the humidity sensor 61 detects that the humidity in the curing box 4 is lower, the controller 7 starts the water pump 64, then the water in the water tanks 62 passes through a final spray channel formed by the water main 63, the water pump 64, the water diversion pipes 65 and the water diversion disk 66, and the water diversion disk 67 are respectively connected with the water spray nozzles 67, and the humidity in a proper form of curing box 4 can be adjusted; in addition, since the plurality of spray nozzles 67 are provided in each of the curing chambers 41 and the curing chambers 41 can be circulated, the inside of each of the curing chambers 41 can be kept at the same humidity.
Since the spray nozzle 67 sprays water in a mist form and then drops the water on the inner bottom surface of the curing box 4, the water dropped on the inner bottom surface of the curing box 4 needs to be collected, therefore, as shown in fig. 1 and 5, both sides of the inner bottom surface of the curing box 4 are inclined planes which are inclined, and one side of the inclined plane away from the middle position of the curing box 4 is higher than the other side of the inclined plane, so that the water can flow to the middle position of the curing box 4 conveniently; the middle position of the outer bottom surface of the maintenance box body 4 is fixedly connected with a fixing frame 8 with a U-shaped vertical section, a liquid collecting box 9 with an opening on the top surface is connected in a sliding manner in the fixing frame 8, namely the liquid collecting box 9 is detachable in the fixing frame 8; the front surface of the liquid collecting box 9 is fixedly connected with a second handle 91, and the second handle 91 can facilitate drawing the liquid collecting box 9 on the fixing frame 8; the liquid collecting box 9 is communicated with the curing box 4 through a liquid collecting hole 45 vertically formed on the bottom surface of the curing box 4, specifically, when in use, water dropping on the inner bottom surface of the curing box 4 flows into the liquid collecting box 9 through the liquid collecting hole 45, so that water dropping on the inner bottom surface of the curing box 4 can be conveniently collected; in addition, when the liquid collecting box 9 is full of water, the liquid collecting box 9 can be removed from the fixing frame 8 and then the water can be poured out.
Further, as shown in fig. 5, a first handle 46 is fixedly connected to the front surface of each door 42, and the first handle 46 can facilitate opening and closing of the doors 42; and the non-hinged side of each door 42 is provided with a sealing strip 47, the sealing strips 47 being used to prevent a substantial outward dissipation of heat and moisture in the curing box 4.
In order to facilitate the movement of the entire position of the cement block curing box, as shown in fig. 1 and 5, universal wheels 10 with self-locking function are mounted at four corners of the outer bottom surface of the curing box 4.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which are all within the scope of the claimed utility model. The scope of the utility model is defined by the appended claims and equivalents.

Claims (7)

1. The utility model provides a cement test block curing box, includes vertical setting and has the curing box body of cavity structure, install controller, temperature regulating device and humidity control device on the curing box body, the controller is connected its characterized in that with temperature regulating device, humidity control device electricity respectively: the front opening of the curing box body, a plurality of vertically and oppositely distributed branch pipes which are arranged at intervals are arranged in the middle position in the curing box body, a plurality of horizontally arranged supporting beams are fixedly connected to the two sides of the plurality of branch pipes along the length direction of the branch pipes, a horizontally distributed object placing frame is connected between each supporting beam and the inner wall of the curing box body in a sliding mode, the plurality of object placing frames divide the curing box body into a plurality of curing chambers with front openings, chamber doors are hinged to the front opening positions of the curing chambers, and positioning bolts are connected between the chamber doors and the supporting beams in a threaded mode;
every puts thing frame all includes the smooth roof beam that two levels set up relatively, the smooth roof beam respectively with the inner wall sliding connection of supporting beam, curing box, and all fixedly connected with a plurality of thing poles of putting that set up along the long equidistance distribution of the roof beam length of smooth roof beam and interval between two smooth roof beams of every putting thing frame.
2. A cement specimen curing box as claimed in claim 1, wherein: the supporting beam is kept away from the first spout of horizontal run-through supporting beam has all been seted up on the side of branch pipe one side, set up on the inner wall of curing box and equal and the relative second spout of position with first spout quantity, the positive one end of second spout being close to curing box flushes with the front of curing box, the smooth roof beam is located first spout and second spout respectively, and rotates the pulley of being connected with a plurality of and cell wall, the cell wall looks butt of second spout on the bottom surface of smooth roof beam respectively.
3. A cement specimen curing box as claimed in claim 1, wherein: the temperature regulating device comprises a temperature sensor and a blower and a heating box which are communicated, wherein the heating box is arranged on the outer top surface of the curing box body, a plurality of electric heating plates are arranged in the heating box, the controller is respectively electrically connected with the temperature sensor, the blower and the electric heating plates, the temperature sensor is arranged in the curing box body, the bottom ends of the branch pipes are fixedly connected with the inner bottom surface of the curing box body, the top ends of the branch pipes are communicated with the heating box body after passing through the curing box body, and a plurality of air holes are formed in the branch pipes.
4. A cement specimen curing box as claimed in claim 1, wherein: humidity control device includes humidity transducer and two water tanks that have the water inlet, and two water tank symmetric distributions are in the both sides of curing box, all fixed intercommunication has the water main on every water tank, all installs the water pump on every water main, and still all fixed intercommunication has a plurality of distributive pipe on every water main, the one end that the water main was kept away from to the distributive pipe is located the top of curing chamber respectively, and the equal fixedly connected with flow distribution disc of this end of distributive pipe, all fixed intercommunication has a plurality of spray nozzle on every flow distribution disc, the controller is connected with humidity transducer, water pump electricity respectively, humidity transducer installs in curing box.
5. A cement specimen curing box as defined in claim 4, wherein: the both sides of the internal bottom surface of maintenance box are the inclined plane that the slope set up, and one side that the maintenance box intermediate position was kept away from to the inclined plane is higher than the opposite side of inclined plane, and the intermediate position fixedly connected with vertical cross-section of the external bottom surface of maintenance box is the mount of U type, sliding connection has top surface open-ended album liquid box in the mount, the positive fixedly connected with second handle of album liquid box, album liquid box is through the album liquid hole of vertically seting up on the bottom surface of maintenance box and the maintenance box is linked together.
6. A cement specimen curing box as claimed in claim 1, wherein: the front of every room door all fixedly connected with first handle, and the un-articulated side of every room door all is provided with the sealing strip.
7. A cement specimen curing box as claimed in claim 1, wherein: the four corners of the outer bottom surface of the curing box body are provided with universal wheels with self-locking function.
CN202320640196.5U 2023-03-28 2023-03-28 Cement test block curing box Active CN219748429U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320640196.5U CN219748429U (en) 2023-03-28 2023-03-28 Cement test block curing box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320640196.5U CN219748429U (en) 2023-03-28 2023-03-28 Cement test block curing box

Publications (1)

Publication Number Publication Date
CN219748429U true CN219748429U (en) 2023-09-26

Family

ID=88070499

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320640196.5U Active CN219748429U (en) 2023-03-28 2023-03-28 Cement test block curing box

Country Status (1)

Country Link
CN (1) CN219748429U (en)

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