Assembling type prefabricated magnesium oxysulfate cement brick tire mold plate
By installing the connection mechanism and reinforcement mechanism on the prefabricated magnesium sulfide cement brick diaphragm plate, the problems of cumbersome and tilting of right-angle paperback in the prior art are solved, and convenient right-angle assembly and improvement of strength and waterproofness are achieved.
Patent Information
- Application Number
- CN202422285824.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing prefabricated modified magnesium sulfide cement brick diaphragm plates are cumbersome and easy to pour when installed in right angle paperboards, and the construction is restricted by the site and weather, making it difficult to carry out during the rainy season.
The assembled prefabricated magnesium sulfide cement brick diaphragm plate is used to install a connecting mechanism (right-angle cavity shell, insertion rod, locking bolt, threaded rod and thread sleeve combination) on the outer wall of the main and auxiliary magnesium sulfide cement brick diaphragm plate, and a set position hole is opened at the wall of the board, and right-angle splicing is achieved by using the connection between the threaded rod and the thread sleeve. At the same time, a reinforcement mechanism of glass fiber mesh cloth, modified magnesium sulfide cement foam layer and polymer cement-based waterproof layer is adhered to the board wall to increase strength and waterproofness.
Convenient right-angle assembly is achieved, the compressive resistance and water resistance of magnesium sulfhydryl cement brick diaphragm plates are enhanced, and the construction flexibility and weather resistance are improved.
Smart Images

Figure CN223214829U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cement brick membrane plates, in particular to an assembled prefabricated magnesium oxysulfate cement brick membrane plate. Background Art
[0002] Currently, during the construction of general housing buildings in the construction industry, conventional construction methods often use brick membranes as the formwork for the foundation. Brick membranes are constructed using standard bricks and cement mortar. However, this construction method requires that the excavation of the foundation beams be completed and that the site conditions are met before construction can begin. Due to site conditions, construction is difficult during the rainy season. After the brick membrane is constructed, it needs to be painted and, after achieving a certain initial strength, concrete pouring can begin.
[0003] When existing prefabricated modified magnesium oxysulfate cement brick membrane panels are installed flat at right angles, it is usually necessary to make a hole in the prefabricated modified magnesium oxysulfate cement brick membrane panel, then pass a rope through the hole, and then pass an external anchor bolt through the rope so that the rope can tighten the prefabricated modified magnesium oxysulfate cement brick membrane panel to achieve right-angle flat installation of the prefabricated modified magnesium oxysulfate cement brick membrane panel. This flat installation is relatively cumbersome, and when the rope is pulled, the prefabricated modified magnesium oxysulfate cement brick membrane panel is easy to fall over when the rope is in the un-phenylened state. To this end, we propose an assembled prefabricated magnesium oxysulfate cement brick membrane panel to facilitate right-angle flat installation of the prefabricated modified magnesium oxysulfate cement brick membrane panel. Utility Model Content
[0004] In view of the problems in the prior art, the utility model provides an assembled prefabricated magnesium oxysulfate cement brick membrane board.
[0005] The technical solution adopted by the utility model to solve its technical problems is an assembled prefabricated magnesium oxysulfate cement brick diaphragm plate, comprising a main magnesium oxysulfate cement brick diaphragm plate and a secondary magnesium oxysulfate cement brick diaphragm plate. A connecting mechanism is installed at the outer wall of the main magnesium oxysulfate cement brick diaphragm plate and the outer wall of the secondary magnesium oxysulfate cement brick diaphragm plate. The connecting mechanism is composed of a right-angle cavity shell, an insert rod, a locking bolt, a threaded rod and a threaded sleeve. The two ends of the right-angle cavity shell are plugged into the insert rod, and a group of locking bolts for squeezing the insert rod are threadedly connected at the outer wall of the right-angle cavity shell. A threaded rod is welded to one end of the insert rod, and a threaded sleeve is threadedly connected to the rod wall of the threaded rod. A group of the threaded rods respectively penetrate the plate wall of the main magnesium oxysulfate cement brick diaphragm plate and the plate wall of the secondary magnesium oxysulfate cement brick diaphragm plate.
[0006] By adopting the above technical scheme, when the main magnesium oxysulfate cement brick diaphragm plate and the auxiliary magnesium oxysulfate cement brick diaphragm plate are connected at right angles, since a connecting mechanism is installed on the outer wall of the main magnesium oxysulfate cement brick diaphragm plate and the outer wall of the auxiliary magnesium oxysulfate cement brick diaphragm plate, the connecting mechanism is composed of a right-angle cavity shell, a plug rod, a locking bolt, a threaded rod and a threaded sleeve. Since the plug rods are plugged into both ends of the right-angle cavity shell, after the personnel loosens the locking bolts, the plug rod moves in the right-angle cavity shell and adjusts the position of the plug rod in the right-angle cavity shell. After the personnel open positioning holes on the wall of the main magnesium oxysulfate cement brick diaphragm plate and the auxiliary magnesium oxysulfate cement brick diaphragm plate, the threaded rod is inserted into the positioning hole accordingly, so that the threaded sleeve is connected to the threaded rod, and the right-angle cavity shell is fixed, so that the main magnesium oxysulfate cement brick diaphragm plate and the auxiliary magnesium oxysulfate cement brick diaphragm plate can be spliced at right angles, which is convenient for personnel to install.
[0007] Specifically, it also includes a reinforcement mechanism, and the outer wall of the main magnesium oxysulfate cement brick membrane plate and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate are both installed with a reinforcement mechanism.
[0008] By adopting the above technical solution, the strength of the magnesium oxysulfate cement brick membrane plate can be increased through the reinforcement mechanism.
[0009] Specifically, the reinforcement mechanism is composed of a glass fiber mesh cloth, a modified magnesium oxysulfate cement foam layer and a polymer cement-based waterproof layer. The outer wall of the main magnesium oxysulfate cement brick membrane plate and the outer wall of the secondary magnesium oxysulfate cement brick membrane plate are both adhered with glass fiber mesh cloth, the outer wall of the glass fiber mesh cloth is sprayed with a modified magnesium oxysulfate cement foam layer, and the outer wall of the modified magnesium oxysulfate cement foam layer is sprayed with a polymer cement-based waterproof layer.
[0010] By adopting the above technical solution, when increasing the strength of the magnesium oxysulfate cement brick membrane board, a reinforcement mechanism is installed on the outer wall of the main magnesium oxysulfate cement brick membrane board and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board, and the reinforcement mechanism is composed of a glass fiber mesh cloth, a modified magnesium oxysulfate cement foam layer and a polymer cement-based waterproof layer. The outer wall of the main magnesium oxysulfate cement brick membrane board and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board are adhered with glass fiber mesh cloth. The glass fiber mesh cloth can increase the overall compressive resistance of the magnesium oxysulfate cement brick membrane board. The outer wall of the glass fiber mesh cloth is sprayed with a modified magnesium oxysulfate cement foam layer. The material of the modified magnesium oxysulfate cement foam layer is modified magnesium oxysulfate cement foam material. The modified magnesium oxysulfate cement foam material has good compression resistance, which increases the strength of the magnesium oxysulfate cement brick membrane board. Since the outer wall of the modified magnesium oxysulfate cement foam layer is sprayed with a polymer cement-based waterproof layer, the material of the polymer cement-based waterproof layer is polymer cement-based waterproof material. The polymer cement-based waterproof material has good waterproof properties and can improve the waterproof properties of the magnesium oxysulfate cement brick membrane board.
[0011] Specifically, the material of the polymer cement-based waterproof layer is a polymer cement-based waterproof material, and the material of the modified magnesium oxysulfate cement foaming layer is a modified magnesium oxysulfate cement foaming material.
[0012] By adopting the above technical solution, the waterproofness of the magnesium oxysulfate cement brick membrane board can be increased by the polymer cement-based waterproof material, and the modified magnesium oxysulfate cement foam material can increase the compressive strength of the magnesium oxysulfate cement brick membrane board.
[0013] Specifically, through holes are provided on the plate wall of the primary magnesium oxysulfate cement brick membrane plate and the plate wall of the secondary magnesium oxysulfate cement brick membrane plate.
[0014] By adopting the above technical solution, the external crane can be used to hoist the wall of the main magnesium oxysulfate cement brick membrane plate and the auxiliary magnesium oxysulfate cement brick membrane plate through the through hole.
[0015] Beneficial effects of the utility model:
[0016] (1) The utility model describes an assembled prefabricated magnesium oxysulfate cement brick membrane plate. When the main magnesium oxysulfate cement brick membrane plate and the auxiliary magnesium oxysulfate cement brick membrane plate are connected at right angles, a connecting mechanism is installed on the outer wall of the main magnesium oxysulfate cement brick membrane plate and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate. The connecting mechanism is composed of a right-angle cavity shell, an insert rod, a locking bolt, a threaded rod and a threaded sleeve. Since the insert rods are inserted into both ends of the right-angle cavity shell, after the personnel loosens the locking bolts and moves the insert rod in the right-angle cavity shell, the position of the insert rod in the right-angle cavity shell is adjusted. After the personnel open positioning holes on the plate walls of the main magnesium oxysulfate cement brick membrane plate and the auxiliary magnesium oxysulfate cement brick membrane plate, the threaded rod is inserted into the positioning holes accordingly, so that the threaded sleeve is connected to the threaded rod, and the right-angle cavity shell is fixed, so that the main magnesium oxysulfate cement brick membrane plate and the auxiliary magnesium oxysulfate cement brick membrane plate can be spliced at right angles, which is convenient for personnel to install.
[0017] (2) The utility model describes an assembled prefabricated magnesium oxysulfate cement brick membrane board. When increasing the strength of the magnesium oxysulfate cement brick membrane board, a reinforcement mechanism is installed on the outer wall of the main magnesium oxysulfate cement brick membrane board and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board. The reinforcement mechanism is composed of a glass fiber mesh cloth, a modified magnesium oxysulfate cement foaming layer and a polymer cement-based waterproof layer. The outer wall of the main magnesium oxysulfate cement brick membrane board and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board are adhered with glass fiber mesh cloth. The glass fiber mesh cloth can increase the integrity of the magnesium oxysulfate cement brick membrane board. The body has good compression resistance. Since the outer wall of the glass fiber mesh cloth is sprayed with a modified magnesium oxysulfate cement foam layer, the material of the modified magnesium oxysulfate cement foam layer is modified magnesium oxysulfate cement foam material, which has good compression resistance, it can increase the strength of the magnesium oxysulfate cement brick membrane board. Since the outer wall of the modified magnesium oxysulfate cement foam layer is sprayed with a polymer cement-based waterproof layer, the material of the polymer cement-based waterproof layer is polymer cement-based waterproof material, which has good waterproof properties and can improve the waterproof properties of the magnesium oxysulfate cement brick membrane board. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 It is the main figure of the utility model;
[0020] Figure 2 This is a schematic diagram of the connecting mechanism structure of the utility model;
[0021] Figure 3 This is a schematic diagram of the reinforcement mechanism structure of the present utility model;
[0022] In the figure: 1. Main magnesium oxysulfate cement brick membrane plate; 2. Connecting mechanism; 201. Right-angle cavity shell; 202. Insert rod; 203. Locking bolt; 204. Threaded rod; 205. Threaded sleeve; 3. Through hole; 4. Secondary magnesium oxysulfate cement brick membrane plate; 5. Reinforcement mechanism; 501. Glass fiber mesh cloth; 502. Modified magnesium oxysulfate cement foam layer; 503. Polymer cement-based waterproof layer. DETAILED DESCRIPTION
[0023] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0024] As an embodiment of the present invention, Figure 1 、 Figure 2 and Figure 3As shown, the utility model describes an assembled prefabricated magnesium oxysulfate cement brick membrane plate, comprising a main magnesium oxysulfate cement brick membrane plate 1 and a secondary magnesium oxysulfate cement brick membrane plate 4. A connecting mechanism 2 is installed at the outer wall of the main magnesium oxysulfate cement brick membrane plate 1 and the outer wall of the secondary magnesium oxysulfate cement brick membrane plate 4. The connecting mechanism 2 is composed of a right-angle cavity shell 201, an insert rod 202, a locking bolt 203, a threaded rod 204 and a threaded sleeve 205. The two ends of the right-angle cavity shell 201 are plugged with an insert rod 202, and a group of locking bolts 203 for squeezing the insert rod 202 are threadedly connected to the outer wall of the right-angle cavity shell 201. A threaded rod 204 is welded to one end of the insert rod 202, and a threaded sleeve 205 is threadedly connected to the rod wall of the threaded rod 204. A group of threaded rods 204 respectively penetrate the board wall of the main magnesium oxysulfate cement brick membrane plate 1 and the board wall of the secondary magnesium oxysulfate cement brick membrane plate 4.
[0025] During use, when the main magnesium oxysulfate cement brick diaphragm plate 1 and the auxiliary magnesium oxysulfate cement brick diaphragm plate 4 are connected at right angles, since the outer wall of the main magnesium oxysulfate cement brick diaphragm plate 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick diaphragm plate 4 are both installed with a connecting mechanism 2, the connecting mechanism 2 is composed of a right-angle cavity shell 201, a plug rod 202, a locking bolt 203, a threaded rod 204 and a threaded sleeve 205. Since the two ends of the right-angle cavity shell 201 are plugged with the plug rod 202, after the personnel loosens the locking bolt 203, the cavity shell 201 can be connected to the auxiliary magnesium oxysulfate cement brick diaphragm plate 4. After the insertion rod 202 moves in the right-angle cavity shell 201, the position of the insertion rod 202 in the right-angle cavity shell 201 is adjusted. After the personnel open positioning holes on the wall of the main magnesium oxysulfate cement brick membrane plate 1 and the auxiliary magnesium oxysulfate cement brick membrane plate 4, the threaded rod 204 is inserted into the positioning holes accordingly, so that the threaded sleeve 205 is connected to the threaded rod 204, and the right-angle cavity shell 201 is fixed, so that the main magnesium oxysulfate cement brick membrane plate 1 and the auxiliary magnesium oxysulfate cement brick membrane plate 4 can be spliced at a right angle, which is convenient for personnel to install.
[0026] like Figure 3 As shown, it also includes a reinforcement mechanism 5, and the outer wall of the main magnesium oxysulfate cement brick membrane plate 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate 4 are both installed with a reinforcement mechanism 5.
[0027] When in use, the reinforcement mechanism 5 can increase the strength of the magnesium oxysulfate cement brick membrane plate.
[0028] like Figure 1 and Figure 3As shown, the reinforcement mechanism 5 is composed of a glass fiber mesh cloth 501, a modified magnesium oxysulfate cement foam layer 502 and a polymer cement-based waterproof layer 503. The outer wall of the main magnesium oxysulfate cement brick membrane plate 1 and the outer wall of the secondary magnesium oxysulfate cement brick membrane plate 4 are both adhered with a glass fiber mesh cloth 501, the outer wall of the glass fiber mesh cloth 501 is sprayed with a modified magnesium oxysulfate cement foam layer 502, and the outer wall of the modified magnesium oxysulfate cement foam layer 502 is sprayed with a polymer cement-based waterproof layer 503.
[0029] When in use, when increasing the strength of the magnesium oxysulfate cement brick membrane board, since the outer wall of the main magnesium oxysulfate cement brick membrane board 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board 4 are both installed with a reinforcement mechanism 5, the reinforcement mechanism 5 is composed of a glass fiber mesh cloth 501, a modified magnesium oxysulfate cement foaming layer 502 and a polymer cement-based waterproof layer 503, the outer wall of the main magnesium oxysulfate cement brick membrane board 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane board 4 are both adhered with a glass fiber mesh cloth 501, and the glass fiber mesh cloth 501 can increase the overall compression resistance of the magnesium oxysulfate cement brick membrane board. The outer wall of the 3D mesh cloth 501 is sprayed with a modified magnesium oxysulfate cement foam layer 502. The material of the modified magnesium oxysulfate cement foam layer 502 is modified magnesium oxysulfate cement foam material. The modified magnesium oxysulfate cement foam material has good compression resistance, which can increase the strength of the magnesium oxysulfate cement brick membrane board. Since the outer wall of the modified magnesium oxysulfate cement foam layer 502 is sprayed with a polymer cement-based waterproof layer 503, the material of the polymer cement-based waterproof layer 503 is polymer cement-based waterproof material. The polymer cement-based waterproof material has good waterproof properties and can improve the waterproof properties of the magnesium oxysulfate cement brick membrane board.
[0030] like Figure 1 As shown, the material of the polymer cement-based waterproof layer 503 is polymer cement-based waterproof material, and the material of the modified magnesium oxysulfate cement foaming layer 502 is modified magnesium oxysulfate cement foaming material.
[0031] When in use, the polymer cement-based waterproof material can increase the waterproofness of the magnesium oxysulfate cement brick membrane board, and the modified magnesium oxysulfate cement foam material can increase the compressive strength of the magnesium oxysulfate cement brick membrane board.
[0032] like Figure 1 As shown, through holes 3 are provided on the wall of the main magnesium oxysulfate cement brick membrane plate 1 and the wall of the secondary magnesium oxysulfate cement brick membrane plate 4.
[0033] When in use, the through hole 3 facilitates an external crane to hoist the wall of the main magnesium oxysulfate cement brick membrane plate 1 and the auxiliary magnesium oxysulfate cement brick membrane plate 4.
[0034] When the utility model is in use, when the main magnesium oxysulfate cement brick diaphragm plate 1 and the auxiliary magnesium oxysulfate cement brick diaphragm plate 4 are connected at a right angle, since the outer wall of the main magnesium oxysulfate cement brick diaphragm plate 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick diaphragm plate 4 are both installed with a connecting mechanism 2, the connecting mechanism 2 is composed of a right-angle cavity shell 201, a plug rod 202, a locking bolt 203, a threaded rod 204 and a threaded sleeve 205. Since the plug rod 202 is plugged into both ends of the right-angle cavity shell 201, after the person loosens the locking bolt 203, the plug rod 202 is in the right angle. After moving in the right-angle cavity shell 201, adjust the position of the insertion rod 202 in the right-angle cavity shell 201, and after the personnel have opened positioning holes on the wall of the main magnesium oxysulfate cement brick fetal membrane plate 1 and the auxiliary magnesium oxysulfate cement brick fetal membrane plate 4, insert the threaded rod 204 into the positioning hole accordingly, so that the threaded sleeve 205 is connected with the threaded rod 204, and the right-angle cavity shell 201 is fixed, so that the main magnesium oxysulfate cement brick fetal membrane plate 1 and the auxiliary magnesium oxysulfate cement brick fetal membrane plate 4 can be spliced at a right angle, which is convenient for personnel to install. When increasing the strength of the magnesium oxysulfate cement brick fetal membrane plate, due to the main The outer wall of the magnesium oxysulfate cement brick membrane plate 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate 4 are both installed with a reinforcement mechanism 5, which is composed of a glass fiber mesh cloth 501, a modified magnesium oxysulfate cement foaming layer 502 and a polymer cement-based waterproof layer 503. The outer wall of the main magnesium oxysulfate cement brick membrane plate 1 and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate 4 are both adhered with a glass fiber mesh cloth 501. The glass fiber mesh cloth 501 can increase the overall compressive resistance of the magnesium oxysulfate cement brick membrane plate. It is coated with a modified magnesium oxysulfate cement foam layer 502. The material of the modified magnesium oxysulfate cement foam layer 502 is modified magnesium oxysulfate cement foam material. The modified magnesium oxysulfate cement foam material has good compression resistance, which can increase the strength of the magnesium oxysulfate cement brick membrane board. Since the outer wall of the modified magnesium oxysulfate cement foam layer 502 is sprayed with a polymer cement-based waterproof layer 503, the material of the polymer cement-based waterproof layer 503 is polymer cement-based waterproof material. The polymer cement-based waterproof material has good waterproof properties and can improve the waterproof properties of the magnesium oxysulfate cement brick membrane board.
[0035] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled prefabricated magnesium oxysulfate cement brick membrane board, characterized by: The invention comprises a main magnesium oxysulfate cement brick membrane plate (1) and a secondary magnesium oxysulfate cement brick membrane plate (4), wherein a connecting mechanism (2) is installed at the outer wall of the main magnesium oxysulfate cement brick membrane plate (1) and the outer wall of the secondary magnesium oxysulfate cement brick membrane plate (4), and the connecting mechanism (2) is composed of a right-angle cavity shell (201), an insert rod (202), a locking bolt (203), a threaded rod (204) and a threaded sleeve (205), and both ends of the right-angle cavity shell (201) are plugged into the connecting rod (204). A plug rod (202) is connected, and a group of locking bolts (203) for squeezing the plug rod (202) are threadedly connected at the outer wall of the right-angle cavity shell (201), and a threaded rod (204) is welded at one end of the plug rod (202), and a threaded sleeve (205) is threadedly connected at the rod wall of the threaded rod (204), and a group of the threaded rods (204) respectively penetrate the plate wall of the main magnesium oxysulfate cement brick diaphragm plate (1) and the plate wall of the auxiliary magnesium oxysulfate cement brick diaphragm plate (4).
2. The assembled prefabricated magnesium oxysulfate cement brick membrane board according to claim 1, characterized in that: It also includes a reinforcing mechanism (5), and the outer wall of the main magnesium oxysulfate cement brick membrane plate (1) and the outer wall of the auxiliary magnesium oxysulfate cement brick membrane plate (4) are both installed with the reinforcing mechanism (5).
3. The assembled prefabricated magnesium oxysulfate cement brick membrane board according to claim 2, characterized in that: The reinforcement mechanism (5) is composed of a glass fiber mesh cloth (501), a modified magnesium oxysulfate cement foaming layer (502) and a polymer cement-based waterproofing layer (503). The outer wall of the main magnesium oxysulfate cement brick membrane plate (1) and the outer wall of the secondary magnesium oxysulfate cement brick membrane plate (4) are both adhered with a glass fiber mesh cloth (501). The outer wall of the glass fiber mesh cloth (501) is sprayed with a modified magnesium oxysulfate cement foaming layer (502). The outer wall of the modified magnesium oxysulfate cement foaming layer (502) is sprayed with a polymer cement-based waterproofing layer (503).
4. The assembled prefabricated magnesium oxysulfate cement brick membrane board according to claim 3, characterized in that: The material of the polymer cement-based waterproof layer (503) is a polymer cement-based waterproof material, and the material of the modified magnesium oxysulfate cement foaming layer (502) is a modified magnesium oxysulfate cement foaming material.
5. The assembled prefabricated magnesium oxysulfate cement brick membrane board according to claim 1, characterized in that: Through holes (3) are provided on the plate wall of the main magnesium oxysulfate cement brick membrane plate (1) and the plate wall of the secondary magnesium oxysulfate cement brick membrane plate (4).