CN215395900U - A framed for producing air entrainment brick - Google Patents

A framed for producing air entrainment brick Download PDF

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Publication number
CN215395900U
CN215395900U CN202121568089.3U CN202121568089U CN215395900U CN 215395900 U CN215395900 U CN 215395900U CN 202121568089 U CN202121568089 U CN 202121568089U CN 215395900 U CN215395900 U CN 215395900U
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CN
China
Prior art keywords
mold frame
shaped baffles
framed
baffles
guide
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Expired - Fee Related
Application number
CN202121568089.3U
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Chinese (zh)
Inventor
刘仁江
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Guizhou Sanjiang Environmental Protection Building Materials Co ltd
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Guizhou Sanjiang Environmental Protection Building Materials Co ltd
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Priority to CN202121568089.3U priority Critical patent/CN215395900U/en
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Publication of CN215395900U publication Critical patent/CN215395900U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model relates to the technical field of aerated brick production, in particular to a mold frame for producing aerated bricks. The utility model provides a framed for producing aerated brick, includes framed body and bottom plate, framed body passes through installation component and bottom plate installation, be provided with the control box on the framed body. The utility model has the beneficial effects that: this a framed for producing air entrainment brick, during the not unidimensional air entrainment brick of this needs processing of framed, through the transmission, make each second T type baffle be close to or keep away from the motion each other along with the motion of two first T type baffles in step, be close to or keep away from the motion each other through between each second T type baffle and two first T type baffles, adjust the space in each operation chamber, make the not unidimensional air entrainment brick can be pour to the inside of framed body, the practicality of framed has been improved.

Description

A framed for producing air entrainment brick
Technical Field
The utility model relates to the technical field of aerated brick production, in particular to a mold frame for producing aerated bricks.
Background
The aerated concrete block is a novel wall material prepared by using stone powder, cement and lime as main raw materials through the steps of raw material preparation, casting, cutting and forming and high-pressure steam curing. The light material is mainly applied to non-bearing wall masonry and frame structure filling, and is a light material which is popularized and applied in the fields of national ministry of construction and national science commission key industry and civilian use.
In the process of machining and producing the aerated bricks, the aerated bricks are cast through the mold frame, but the sealing plates inside the existing template are directly fixed inside the mold frame, so that the distance between the operation cavities cannot be adjusted, the mold frame is further difficult to cast and machine the aerated bricks with different sizes, and the practicability of the mold frame is reduced.
SUMMERY OF THE UTILITY MODEL
Aiming at the technical problems in the prior art, the utility model provides a mold frame for producing aerated bricks to solve the problems that the distance between operation cavities cannot be adjusted and the mold frame is difficult to pour and process aerated bricks with different sizes and the practicability of the mold frame is reduced because the sealing plate in the existing template is directly fixed in the mold frame.
The technical scheme for solving the technical problems is as follows: a mold frame for producing aerated bricks comprises a mold frame body and a bottom plate, wherein the mold frame body is installed on the bottom plate through an installation assembly, an operation box is arranged on the mold frame body, the interior of the mold frame body is divided into a plurality of operation cavities through two first T-shaped baffles and a plurality of second T-shaped baffles, a plurality of feeding pipes are installed on the mold frame body, each feeding pipe is respectively communicated with each operation cavity, a driving mechanism for adjusting the distance between the two first T-shaped baffles and the plurality of second T-shaped baffles is arranged on the operation box, a guide assembly and a transmission mechanism for guiding the movement of the two first T-shaped baffles and the plurality of second T-shaped baffles are arranged on the operation box, and a plugging assembly is arranged on each operation cavity;
actuating mechanism is including fixing the thread bush on two first T type baffles, two thread bush threaded engagement is connected with the lead screw, and is respectively seted up the circular slot on the second T type baffle, the lead screw runs through each circular slot setting, the lead screw rotates to be connected in the inside of control box, it is connected with the runner to rotate on the lateral wall of control box, the runner is fixed mutually with the one end of lead screw.
The utility model has the beneficial effects that:
1) this a framed for producing air entrainment brick, at the in-process of air entrainment brick processing production, through each installation round pin slip on each mounting hole, make the quick separation between bottom plate and the framed body, form the installation mechanism between bottom plate and the framed body, be convenient for take out the air entrainment brick after pouring each operation intracavity portion from the inside of framed body, the further processing operation of air entrainment brick on the framed body of being convenient for.
2) This a framed for producing air entrainment brick, when the framed body need process not unidimensional air entrainment brick, through the transmission, make each second T type baffle be close to each other or keep away from the motion each other along with the motion of two first T type baffles in step, be close to each other or keep away from the motion each other through between each second T type baffle and two first T type baffles, adjust the space in each operation chamber, make the inside of framed body can pour not unidimensional air entrainment brick, the practicality of framed has been improved.
On the basis of the technical scheme, the utility model can be further improved as follows.
Further, the guide assembly comprises guide grooves formed in the two first T-shaped baffles and the plurality of second T-shaped baffles, each guide groove is connected with a guide rod in a sliding mode, and the guide rods are fixed inside the operation box.
The beneficial effect who adopts above-mentioned further scheme is, through the setting of each guide way and guide bar, leads two first T type baffles and the motion of a plurality of second T type baffles.
Furthermore, drive mechanism is including rotating the first transfer line of connection on two first T type baffles and a plurality of second T type baffles, adjacent two the one end of first transfer line is rotated and is connected, rotate on two relative inner walls of control box and be connected with the second transfer line, two the one end of second transfer line is rotated with the one end of adjacent first transfer line and is connected.
The beneficial effect of adopting above-mentioned further scheme is that, at the in-process of two first T type baffles motion, drive each first transfer line and rotate, under the drive action of each first transfer line and two second transfer lines, form the connecting rod transmission mechanism, make each second T type baffle along with the motion synchronization of two first T type baffles carry out the motion of being close to each other or keeping away from each other.
Furthermore, the plugging assembly comprises fixed plates fixed on the inner wall of the operation cavity, each fixed plate is provided with a square groove, each square groove is connected with a sliding plate in a sliding manner, and the other end of each sliding plate is fixed with the inner wall of the operation cavity where the sliding plate is located.
The beneficial effect who adopts above-mentioned further scheme is that, at the in-process of operation chamber adjustment, the sliding plate slides on square groove, makes fixed plate and sliding plate be located the inside of operation chamber all the time and carries out the shutoff to the aerated brick solution of pouring into.
Further, the thread directions of the two thread sleeves are opposite.
The beneficial effect who adopts above-mentioned further scheme is that, through the thread bush that two screw threads revolve to opposite setting, when lead screw and two thread bushes intermeshing transmission, make two first T type baffles keep away from each other or be close to the motion each other.
Further, the mounting assembly comprises a plurality of mounting holes formed in the lower end face of the die frame body, a plurality of mounting pins are fixed on the bottom plate, and the mounting holes are respectively matched with the mounting pins.
The beneficial effect of adopting above-mentioned further scheme is that, can form the installation mechanism between bottom plate and the framed body, be convenient for take out the air entrainment brick after pouring each operation intracavity portion from the inside of framed body, the processing operation of air entrainment brick on the framed body of further being convenient for.
Furthermore, a rotating pin is fixed on the side wall of the rotating wheel, and an anti-skid bulge is arranged on the side wall of the rotating pin.
Adopt above-mentioned further scheme's beneficial effect be, through the setting of anti-skidding arch, improve frictional force, the rotation operation of the rotating pin of being convenient for.
Further, a smooth film is arranged on the side wall of the guide rod.
Adopt above-mentioned further scheme's beneficial effect is, through smooth film, reduce frictional force, the direction of the guide bar of being convenient for more slides.
Drawings
FIG. 1 is a schematic view of the overall configuration of the present invention;
FIG. 2 is a schematic view of the drive mechanism of the present invention;
FIG. 3 is a schematic view of a plugging assembly of the present invention;
fig. 4 is a schematic structural view of the mounting assembly of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a mold frame body; 2. an operation box; 3. a first T-shaped baffle; 4. a second T-shaped gear; 5. A feed pipe; 601. a threaded sleeve; 602. a screw rod; 603. a circular groove; 604. a rotating wheel; 605. a rotation pin; 701. a guide groove; 702. a guide bar; 801. a first drive lever; 802. a second transmission rod; 901. a fixing plate; 902. a slot; 903. a sliding plate; 10. a base plate; 1101. mounting holes; 1102. and (6) installing a pin.
Detailed Description
The principles and features of this invention are described below in conjunction with the following drawings, which are set forth by way of illustration only and are not intended to limit the scope of the utility model.
The aerated brick is poured by stirring the slurry, cement, calcium lime, gypsum and aluminium powder suspension injected into a tank body according to a certain proportion, mixing them uniformly, fully reacting, and injecting the mixed slurry into a mould frame in time. The mold frame is a main matched device in the production of aerated bricks. Pouring the uniformly stirred raw materials into a mould through a casting machine, and allowing the gas to stand still. After curing, the die frame is removed, and the blank can be cut.
Can be simultaneously to the operation of pouring of a plurality of air entrainment bricks on being convenient for a framed, often set up a plurality of baffles on the framed and cut apart into a plurality of operation chambeies with the inside of framed, but current baffle is the inside of snap-on at the framed, the unable adjustment of interval between each baffle, the unable adjustment of area that causes the operation intracavity portion to pour, make framed be difficult to pour out not unidimensional air entrainment brick, the practicality has been reduced, to this utility model discloses the people provide a framed for producing air entrainment brick and solve above-mentioned problem.
The present invention provides the following preferred embodiments
As shown in fig. 1, 2 and 3, a mold frame for producing aerated bricks comprises a mold frame body 1 and a bottom plate 10, the mould frame body 1 is installed with the bottom plate 10 through an installation component, the mould frame body 1 is provided with an operation box 2, the interior of the die frame body 1 is divided into a plurality of operation cavities by two first T-shaped baffles 3 and a plurality of second T-shaped baffles 4, a plurality of feeding pipes 5 are arranged on the die frame body 1, each feeding pipe 5 is respectively communicated with each operation cavity, the operating box 2 is provided with a driving mechanism for adjusting the distance between the two first T-shaped baffles 3 and the plurality of second T-shaped baffles 4, the operating box 2 is provided with a guide assembly and a transmission mechanism for guiding the movement of the two first T-shaped baffles 3 and the plurality of second T-shaped baffles 4, and each operating cavity is provided with a plugging assembly;
actuating mechanism is including fixing the thread bush 601 on two first T type baffles 3, two thread engagement is connected with lead screw 602 on the thread bush 601, and is individual circular slot 603 has been seted up on the second T type baffle 4, lead screw 602 runs through each circular slot 603 and sets up, lead screw 602 rotates the inside of connecting at control box 2, it is connected with runner 604 to rotate on the lateral wall of control box 2, runner 604 is fixed mutually with the one end of lead screw 602.
In the present embodiment, as shown in fig. 2 and 3, in order to guide the movement of the two first T-shaped baffles 3 and the plurality of second T-shaped baffles 4 by the arrangement of the guide grooves 701 and the guide rods 702, the guide assembly includes the guide grooves 701 formed in the two first T-shaped baffles 3 and the plurality of second T-shaped baffles 4, the guide rods 702 are slidably connected to the guide grooves 701, and the guide rods 702 are fixed inside the operation box 2.
In this embodiment, as shown in fig. 2 and fig. 3, in the process of moving two first T-shaped baffles 3, each first transmission rod 801 is driven to rotate, and under the transmission action of each first transmission rod 801 and two second transmission rods 802, a link transmission mechanism is formed, so that each second T-shaped baffle 4 moves close to or away from each other along with the movement of the two first T-shaped baffles 3, the transmission mechanism includes the first transmission rods 801 rotatably connected to the two first T-shaped baffles 3 and the multiple second T-shaped baffles 4, one end of each adjacent first transmission rod 801 is rotatably connected, the two inner walls opposite to the operation box 2 are rotatably connected with the second transmission rods 802, and one end of each two second transmission rods 802 is rotatably connected with one end of each adjacent first transmission rod 801.
In this embodiment, as shown in fig. 3, in the process of adjusting the operation cavity, the sliding plates 903 slide on the square grooves 902, so that the fixing plates 901 and the sliding plates 903 are always located inside the operation cavity and block the poured aerated brick solution, the blocking assembly includes fixing plates 901 fixed on the inner wall of the operation cavity, square grooves 902 are formed in each fixing plate 901, the sliding plates 903 are slidably connected to each square groove 902, and the other ends of the sliding plates 903 are fixed to the inner wall of the operation cavity where the sliding plates 903 are located.
In this embodiment, as shown in fig. 2 and fig. 3, when the screw 602 and the two thread sleeves 601 are engaged with each other for transmission, the two first T-shaped baffles 3 move away from or close to each other, and the thread directions of the two thread sleeves 601 are opposite.
In this embodiment, as shown in fig. 4, an installation mechanism between the bottom plate 10 and the mold frame body 1 may be formed, so as to facilitate taking out the air-added bricks poured in the operation cavities from the interior of the mold frame body 1, and further facilitate processing operations of the air-added bricks on the mold frame body 1, the installation assembly includes a plurality of installation holes 1101 formed in the lower end surface of the mold frame body 1, a plurality of installation pins 1102 are fixed on the bottom plate 10, and each installation hole 1101 is respectively matched with each installation pin 1102.
In this embodiment, as shown in fig. 2, the friction is increased by the arrangement of the anti-slip protrusions, so as to facilitate the rotation operation of the rotation pin 605, the rotation pin 605 is fixed on the side wall of the rotating wheel 604, and the anti-slip protrusions are arranged on the side wall of the rotation pin 605.
In this embodiment, as shown in fig. 2 and fig. 3, the friction force is reduced by the smooth film, so as to facilitate the guiding and sliding of the guiding rod 702, and the smooth film is disposed on the side wall of the guiding rod 702.
The specific working process of the utility model is as follows:
firstly, in the process of processing and producing aerated bricks, a bottom plate 10 is placed on the ground, a mold frame body 1 moves towards the bottom plate 10, installation of the bottom plate 10 and the mold frame body 1 is completed by enabling each installation pin 1102 to respectively slide on each installation hole 1101 and enabling the mold frame body 1 to abut against the bottom plate 10, after installation is completed, pouring solution of the aerated bricks is conveyed to each operation cavity in the mold frame body 1 through each feeding pipe 5, after pouring is completed, the bottom plate 10 is quickly separated from the mold frame body 1 through sliding of each installation pin 1102 on each installation hole 1101, an installation mechanism between the bottom plate 10 and the mold frame body 1 is formed, the aerated bricks after pouring in each operation cavity are conveniently taken out from the interior of the mold frame body 1, and further processing operation of the aerated bricks on the mold frame body 1 is facilitated;
then, when the mold frame body 1 needs to process air-added bricks with different sizes, the rotating wheel 604 is driven to rotate by the rotating pin 605, the screw rod 602 is driven to rotate by the rotation of the rotating wheel 604, under the guiding action of the mutually meshed transmission between the screw rod 602 and the two threaded sleeves 601 and the guiding action of the guide rod 702 and the guide groove 701 on the first T-shaped baffle 3 and the second T-shaped baffle 4, the two first T-shaped baffles 3 move close to or away from each other in the mold frame body 1 due to the opposite rotation directions of the threads between the two threaded sleeves 601, the two first transmission rods 801 are driven to rotate in the moving process of the two first T-shaped baffles 3, and under the transmission action of the first transmission rods 801 and the two second transmission rods 802, a link transmission mechanism is formed, so that the second T-shaped baffles 4 move close to or away from each other synchronously along with the movement of the two first T-shaped baffles 3, the space of each operation cavity is adjusted through the mutual approaching or mutual distancing movement between each second T-shaped baffle 4 and each first T-shaped baffle 3, so that aerated bricks with different sizes can be poured in the die frame body 1, and the practicability of the die frame is improved;
finally, in the process of adjusting the operation cavity, the sliding plate 903 slides on the square groove 902, so that the fixing plate 901 and the sliding plate 903 are always positioned in the operation cavity and block the poured aerated brick solution, and the phenomenon that bubbles exist in the aerated brick due to lack of extrusion in each operation cavity after pouring is avoided, and the processing quality is reduced.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (8)

1. A mold frame for producing aerated bricks comprises a mold frame body (1) and a bottom plate (10), and is characterized in that the mold frame body (1) is installed with the bottom plate (10) through an installation assembly, an operation box (2) is arranged on the mold frame body (1), the interior of the mold frame body (1) is divided into a plurality of operation cavities through two first T-shaped baffles (3) and a plurality of second T-shaped baffles (4), a plurality of feeding pipes (5) are arranged on the mold frame body (1), each feeding pipe (5) is respectively communicated with each operation cavity, a driving mechanism for adjusting the distance between the two first T-shaped baffles (3) and the plurality of second T-shaped baffles (4) is arranged on the operation box (2), and a guide assembly and a transmission mechanism for guiding the movement of the two first T-shaped baffles (3) and the plurality of second T-shaped baffles (4) are arranged on the operation box (2), each operation cavity is provided with a plugging component;
actuating mechanism is including fixing thread bush (601) on two first T type baffles (3), two thread engagement is connected with lead screw (602) on thread bush (601), each round slot (603) have been seted up on second T type baffle (4), lead screw (602) run through each round slot (603) and set up, lead screw (602) are rotated and are connected the inside at control box (2), it is connected with runner (604) to rotate on the lateral wall of control box (2), runner (604) are fixed mutually with the one end of lead screw (602).
2. The mold frame for producing air-added bricks according to claim 1, wherein the guide assembly comprises guide grooves (701) formed on two first T-shaped baffles (3) and a plurality of second T-shaped baffles (4), each guide groove (701) is slidably connected with a guide rod (702), and the guide rods (702) are fixed inside the operation box (2).
3. The mold frame for producing aerated bricks according to claim 1, wherein the transmission mechanism comprises a first transmission rod (801) rotatably connected to two first T-shaped baffles (3) and a plurality of second T-shaped baffles (4), one end of each of the adjacent first transmission rods (801) is rotatably connected, the two opposite inner walls of the operation box (2) are rotatably connected with a second transmission rod (802), and one end of each of the two second transmission rods (802) is rotatably connected with one end of the adjacent first transmission rod (801).
4. The mold frame for producing aerated bricks according to claim 1, wherein the blocking assembly comprises fixing plates (901) fixed on the inner wall of the operation cavity, each fixing plate (901) is provided with a square groove (902), each square groove (902) is connected with a sliding plate (903) in a sliding manner, and the other end of each sliding plate (903) is fixed with the inner wall of the operation cavity.
5. The mould frame for producing aerated concrete blocks according to claim 1, wherein the thread directions of the two thread sleeves (601) are opposite.
6. The framework for producing air-added bricks according to claim 1, wherein the mounting assembly comprises a plurality of mounting holes (1101) arranged on the lower end surface of the framework body (1), a plurality of mounting pins (1102) are fixed on the bottom plate (10), and each mounting hole (1101) is matched with each mounting pin (1102).
7. The mold frame for producing aerated bricks according to claim 1, wherein a rotating pin (605) is fixed on the side wall of the rotating wheel (604), and an anti-slip bulge is arranged on the side wall of the rotating pin (605).
8. The mold frame for producing air-added bricks according to claim 2, wherein the side walls of the guide bars (702) are provided with a smooth film.
CN202121568089.3U 2021-07-12 2021-07-12 A framed for producing air entrainment brick Expired - Fee Related CN215395900U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121568089.3U CN215395900U (en) 2021-07-12 2021-07-12 A framed for producing air entrainment brick

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121568089.3U CN215395900U (en) 2021-07-12 2021-07-12 A framed for producing air entrainment brick

Publications (1)

Publication Number Publication Date
CN215395900U true CN215395900U (en) 2022-01-04

Family

ID=79648346

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121568089.3U Expired - Fee Related CN215395900U (en) 2021-07-12 2021-07-12 A framed for producing air entrainment brick

Country Status (1)

Country Link
CN (1) CN215395900U (en)

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Granted publication date: 20220104