Partition plate assembly for aerated concrete forming mold
By designing partition components for aerated concrete molds, the problem of inconsistent molding length caused by different customer needs is solved, efficient production without cutting is achieved, cost saving and production efficiency is improved.
Patent Information
- Application Number
- CN202511014069.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2025-09-02
AI Technical Summary
During the production process of aerated concrete blocks, different customer needs lead to inconsistent molding lengths, which require cutting and molding, resulting in waste of materials, cumbersome operation and low production efficiency.
A partition assembly for aerated concrete molding mold is designed, including a partition frame and a fixing mechanism. The partition frame is fixed in the mold through a fixing mechanism, and a block of required length is formed using the space in the length direction of the flat panel and the mold to avoid subsequent cutting.
Save production costs and improve production efficiency. The partition assembly is stably connected to the mold to prevent concrete leakage, avoid displacement, and improve overall production efficiency.
Smart Images

Figure CN120572609A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of aerated concrete production, in particular to a partition assembly for an aerated concrete forming mold. Background Art
[0002] In the production process of aerated concrete blocks, aerated concrete forming molds are required. The raw materials are injected into the molds and then transported to subsequent processes for processing.
[0003] Different customers have different requirements for the molding length of aerated concrete blocks. After processing, they are cut to obtain aerated concrete blocks of corresponding lengths, resulting in waste of raw materials and requiring additional cutting operations. Not only does it require cutting equipment, but the operation is also cumbersome, resulting in low efficiency of the overall aerated concrete block production process. Summary of the Invention
[0004] In order to solve the above technical problems, the present application provides a partition assembly for an aerated concrete forming mold.
[0005] The present application provides a partition assembly for an aerated concrete forming mold using the following technical solution: A partition assembly for an aerated concrete forming mold comprises a partition frame and a fixing mechanism. The partition frame is vertically arranged in the mold. A flat plate is fixed to one side of the partition frame in the thickness direction. The outer walls of the flat plate on both sides in the width direction contact the inner walls of the mold on both sides in the width direction. The bottom surface of the flat plate contacts the inner bottom wall of the mold. Concrete is formed between a side of the flat plate away from the partition frame and a side in the length direction of the mold. The fixing mechanism is provided on the other side of the partition frame in the thickness direction, and the fixing mechanism is used to fix the partition frame in the mold; Seal 1 is provided at both ends of the partition frame in the length direction, and seal 2 is provided on the bottom surface of the partition frame. The two ends of the partition frame in the length direction are sealed to the inner walls on both sides of the mold in the width direction through seal 1, and the bottom surface of the partition frame is sealed to the inner bottom wall of the mold through seal 2.
[0006] By adopting the above technical solution, the partition assembly is placed vertically into the mold and the partition frame is fixed in the mold through a fixing mechanism. Concrete blocks of the required length are formed through the space between the side of the plane plate away from the partition frame and the side in the length direction of the mold. No subsequent cutting is required, which saves production costs and improves production efficiency.
[0007] Preferably, the fixing mechanism includes a horizontally arranged fixing rod and a driving assembly for driving the fixing rod to slide along the width direction of the mold, the fixing rod being arranged at both ends of the partition frame, the driving assembly driving the fixing rods at both ends of the partition frame to slide in a direction toward or away from each other, and the driving assembly is located in the middle of the length direction of the partition frame; A grille is fixedly provided inside the partition frame, and a guide seat is provided on the side of the grille away from the flat plate. The guide seat is provided with a guide hole for the sliding of the fixing rod. The fixing rod passes through the guide hole. A rubber plate is provided at one end of the fixing rod close to the end in the length direction of the partition frame. The rubber plate is fixedly connected to the fixing rod through a connecting circular plate. The diameter of the connecting circular plate is larger than the diameter of the fixing rod. The fixing rod can slide until the rubber plate is tightly pressed against the inner walls on both sides of the mold in the width direction, and the fixing rod can also slide until the rubber plate is out of contact with the inner walls on both sides of the mold in the width direction.
[0008] By adopting the above technical solution, the fixing rod is first slid until the rubber plate is out of contact with the inner walls on both sides of the mold in the width direction. At this time, the partition assembly can be placed in the mold, and then the fixing rod is slid until the rubber plate is tightly pressed against the inner walls on both sides of the mold in the width direction, so that the partition assembly can be stably fixed to the mold.
[0009] Preferably, multiple fixing rods are provided at both ends of the partition frame, the multiple fixing rods at one end of the partition frame are arranged at intervals along the width direction of the partition frame, and all the fixing rods at one end of the partition frame move synchronously at the same time through the connecting plate.
[0010] By adopting the above technical solution, multiple fixing rods are arranged at intervals along the width direction of the partition frame, which improves the force uniformity of the partition frame and improves the connection stability between the partition frame and the inner wall of the mold.
[0011] Preferably, the driving assembly includes a connecting rod 1, a connecting rod 2 and a spring, the connecting rod 1 includes a rod body 1, a rod body 2 and a rod body 3, the rod body 1 and the rod body 3 are located at both ends of the rod body 2 and extend in opposite directions, the rod body 1 is parallel to the rod body 3, the connecting rod 2 is located in the middle of the length direction of the partition frame, one connecting plate corresponds to one connecting rod 1, the rod bodies 2 of the two connecting rods 1 are rotatably connected to the grille in the middle of the length direction of the partition frame through the same connecting shaft, the connecting rod 1 is located above the connecting rod 3, the rod body 1 is farther away from the corresponding connecting plate than the rod body 3, the end of the rod body 3 away from the rod body 2 is rotatably connected to the connecting rod 2, and the end of the connecting rod 2 away from the rod body 3 is rotatably connected to the middle of the length direction of the connecting plate; The spring is sleeved on the fixed rod, one end of the spring abuts against the guide seat, and the other end of the spring abuts against the connecting circular plate. The force exerted by the spring on the connecting circular plate causes the connecting circular plate to move in a direction away from the drive assembly. When the spring is in a natural state, the rubber plate extends outward from the outside of the seals at both ends of the partition frame in the length direction.
[0012] By adopting the above technical solution, before placing the partition assembly into the mold, a force is first applied to the rod body 1 of the connecting rod 1 to rotate the rod body 1 toward the direction close to the corresponding connecting plate, so that the connecting rod 2 moves with the connecting plate toward the middle of the length direction of the partition frame. At this time, the rubber plate moves to the inner side of the seal at both ends of the length direction of the partition frame, and the spring is compressed. After placing the partition assembly into the mold, the rod body 1 of the connecting rod 1 rotates in the direction away from the corresponding connecting plate. In order to restore the original length, the spring applies a force to the connecting circular plate to move the connecting circular plate in the direction away from the driving assembly, so that the connecting rod 2 moves with the connecting plate toward the end of the length direction of the partition frame until the rubber plate is pressed against the inner wall of the mold. The driving structure is simple and the driving force is stable.
[0013] Preferably, an auxiliary rod is provided at the top end of the rod body 1, the axis of the auxiliary rod is perpendicular to the plane where one side of the thickness direction of the rod body 1 is located, and the external force applies a force to the rod body 1 through the auxiliary rod.
[0014] By adopting the above technical solution, it is convenient for the staff to apply external force to the rod body.
[0015] Preferably, the sealing member 1 includes a mounting frame 1 and a sealing strip 1, the mounting frame 1 is C-shaped, the middle section of the mounting frame 1 is fixedly connected to the side walls at both ends of the partition frame in the length direction, the sealing strip 1 is fixed in the mounting frame 1 by a pressing plate 1, the sealing strip 1 is also C-shaped, the pressing plate 1 is tightly pressed against the middle section of the sealing strip 1, the pressing plate 1 is provided with a fixing screw 1, the fixing screw 1 passes through the pressing plate 1 and the sealing strip 1 and is threadedly connected to the mounting frame 1; Each end of the plane plate in the length direction is flush with the ends of the two mounting frames that are away from each other, and the two end sections of the sealing strip extend out of the mounting frame and are interference fit with the inner walls on both sides of the mold in the width direction.
[0016] Preferably, the second sealing member includes a second mounting frame and a second sealing strip, the second mounting frame is C-shaped, the middle section of the second mounting frame is fixedly connected to the bottom surface of the partition frame, the second mounting frame is U-shaped as a whole after being connected with the second mounting frame, the first sealing strip is U-shaped as a whole after being connected with the second sealing strip, the second sealing strip is fixed in the second mounting frame by a second pressing plate, the first sealing strip is also C-shaped, the second pressing plate is tightly pressed against the middle section of the second sealing strip, the second pressing plate is provided with a second fixing screw, the second fixing screw passes through the second pressing plate and the second sealing strip and is threadedly connected to the second mounting frame; The bottom surface of the flat plate is flush with the bottom surface of the second mounting frame, and both end sections of the second sealing strip extend out of the second mounting frame and are interference-fitted with the inner bottom wall of the mold.
[0017] By adopting the above technical solution, the connection sealing between the two ends of the partition frame in the length direction and the bottom surface of the partition frame and the inner wall of the mold is improved by setting the sealing member 1 and the sealing member 2, and the friction between the partition frame and the inner wall of the mold is improved by the sealing strip 1 and the sealing strip 2, thereby improving the stability of the fixation between the partition frame and the mold. When pouring concrete into the mold, it can not only prevent the concrete from leaking, but also the partition assembly can remain stable and avoid displacement when it is subjected to the force of concrete.
[0018] Preferably, the grille includes vertical plates and horizontal plates arranged crosswise, and the vertical plates are arranged in multiple pieces at equal distances along the length direction of the partition frame, and the two ends of the vertical plates are fixedly connected to the inner wall of the partition frame, and at least one vertical plate is located in the middle of the length direction of the partition frame; the horizontal plates are arranged in multiple pieces at intervals along the width direction of the partition frame, and the two ends of the horizontal plates are fixedly connected to the inner wall of the partition frame, and the horizontal plates are located at the top and bottom of the partition frame, and there are two horizontal plates at the top.
[0019] Preferably, each of the fixing rods corresponds to a guide seat and a limit seat, the guide seat and the limit seat are both fixed on the horizontal plate, a limit hole is provided on the limit seat, the limit seat is located at one end of the guide seat close to the drive assembly, the limit hole and the guide hole are coaxially arranged, and the end of the fixing rod close to the drive assembly passes through the limit hole and is slidably connected to the limit seat.
[0020] By adopting the above technical solution and through the cooperation between the limiting seat and the guide seat, the sliding stability of the fixed rod is improved.
[0021] Preferably, a protective cover is provided on one side of the partition frame having a fixing mechanism, and a connecting edge is provided on the peripheral side of the protective cover. The connecting edges at both ends of the protective cover in the length direction are fixed to the wall bodies at both ends of the partition frame in the length direction by connecting screws, the connecting edge at the bottom of the protective cover in the width direction is fixed to the wall body at the bottom of the partition frame in the width direction by connecting screws, the connecting edge at the top of the protective cover in the width direction is fixed to the higher one of the two upper cross bars by connecting screws, the top wall of the protective cover is provided with a make way opening 1 for the movement of the connecting rod 1, and the side walls at both ends of the protective cover in the length direction are provided with a make way opening 2 for the movement of the fixing rod.
[0022] By adopting the above technical solution, the provision of the protective cover protects the fixing mechanism, thereby improving the overall durability and aesthetics of the partition assembly.
[0023] In summary, this application includes at least one of the following beneficial technical effects: 1. By vertically placing the partition assembly into the mold and fixing the partition frame into the mold through a fixing mechanism, concrete blocks of the required length are formed in the space between the side of the flat plate away from the partition frame and the side of the mold in the longitudinal direction, without the need for subsequent cutting, thus saving production costs and improving production efficiency; 2. Before placing the partition assembly into the mold, first apply a force to the rod body 1 of the connecting rod 1 to rotate the rod body 1 in the direction close to the corresponding connecting plate, so that the connecting rod 2 moves with the connecting plate toward the middle of the length direction of the partition frame. At this time, the rubber plate moves to the inner side of the seal at both ends of the length direction of the partition frame, and the spring is compressed. After placing the partition assembly into the mold, the rod body 1 of the connecting rod 1 rotates in the direction away from the corresponding connecting plate. In order to restore the original length, the spring applies a force to the connecting circular plate to move the connecting circular plate in the direction away from the driving assembly, so that the connecting rod 2 moves with the connecting plate toward the end of the length direction of the partition frame until the rubber plate is tightly pressed against the inner wall of the mold. The structure of the driving assembly is simple and the driving force is stable. 3. By setting up seal 1 and seal 2, the connection sealing between the two ends of the partition frame in the length direction and the bottom surface of the partition frame and the inner wall of the mold is improved, and the friction between the partition frame and the inner wall of the mold is improved by sealing strip 1 and sealing strip 2, thereby improving the stability of the fixation between the partition frame and the mold. When pouring concrete into the mold, it can not only prevent the concrete from leaking, but also the partition assembly can remain stable and avoid displacement when it is subjected to the force of concrete. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic structural diagram used to illustrate the side of the partition assembly for an aerated concrete forming mold provided with a flat plate in an embodiment of the present application.
[0025] Figure 2This is a structural schematic diagram used to illustrate the side of the protective cover of the partition assembly for the aerated concrete forming mold in the embodiment of the present application.
[0026] Figure 3 This is a structural diagram for displaying the fixing mechanism after the protective cover is hidden in the embodiment of the present application.
[0027] Figure 4 This is a structural diagram for displaying the fixing mechanism after the protective cover and the partition frame are hidden in the embodiment of the present application.
[0028] Figure 5 It is used to show the Figure 3 Schematic diagram of the enlarged structure at point A in the middle.
[0029] Figure 6 It is a structural diagram for illustrating the drive assembly in an embodiment of the present application.
[0030] Figure 7 It is a structural schematic diagram used to illustrate seal 1 and seal 2 in the embodiment of the present application.
[0031] Explanation of reference numerals: 1, partition frame; 11, grille; 111, vertical plate; 112, horizontal plate; 2, fixing mechanism; 21, fixing rod; 211, connecting circular plate; 212, rubber plate; 22, driving assembly; 221, connecting rod 1; 2211, rod body 1; 2212, rod body 2; 22123, connecting shaft; 2213, rod body 3; 222, connecting rod 2; 223, spring; 224, auxiliary Auxiliary rod; 225, connecting plate; 3, flat plate; 4, guide seat; 41, guide hole; 5, limit seat; 51, limit hole; 6, seal one; 61, mounting frame one; 62, sealing strip one; 63, pressure plate one; 7, seal two; 71, mounting frame two; 72, sealing strip two; 73, pressure plate two; 8, protective cover; 81, connecting edge; 82, clearance opening one; 83, clearance opening two. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1-7 This application is described in further detail.
[0033] The embodiment of the present application discloses a partition assembly for an aerated concrete forming mold.
[0034] Reference Figure 1-7The partition assembly for the aerated concrete forming mold includes a partition frame 1 and a fixing mechanism 2. The partition frame 1 is vertically arranged in the mold. A flat plate 3 is fixed on one side of the partition frame 1 in the thickness direction. The outer walls on both sides of the flat plate 3 in the width direction are in contact with the inner walls on both sides of the mold in the width direction. The bottom surface of the flat plate 3 is in contact with the inner bottom wall of the mold. Concrete is formed between the side of the flat plate 3 away from the partition frame 1 and the side in the length direction of the mold.
[0035] The fixing mechanism 2 is provided on the other side of the partition frame 1 in the thickness direction, and is used to fix the partition frame 1 in the mold.
[0036] By placing the partition assembly vertically into the mold and fixing the partition frame 1 in the mold through the fixing mechanism 2, concrete blocks of the required length are formed through the space between the side of the flat plate 3 away from the partition frame 1 and the side in the length direction of the mold, without the need for subsequent cutting, saving production costs and improving production efficiency.
[0037] Reference Figure 3-6 The fixing mechanism 2 includes a horizontally arranged fixing rod 21 and a driving assembly 22 that drives the fixing rod 21 to slide along the width direction of the mold. The fixing rod 21 is arranged at both ends of the partition frame 1. The driving assembly 22 drives the fixing rods 21 at both ends of the partition frame 1 to slide toward or away from each other. The driving assembly 22 is located in the middle of the length direction of the partition frame 1. Multiple fixing rods 21 are arranged at each end of the partition frame 1. The multiple fixing rods 21 at one end of the partition frame 1 are arranged at intervals along the width direction of the partition frame 1. All the fixing rods 21 at one end of the partition frame 1 move simultaneously and synchronously through the connecting plate 225.
[0038] By means of a plurality of fixing rods 21 arranged at intervals along the width direction of the partition frame 1 , the force uniformity of the partition frame 1 is improved, and the connection stability between the partition frame 1 and the inner wall of the mold is improved.
[0039] Reference Figure 3A grille 11 is fixedly provided inside the partition frame 1. A guide seat 4 is provided on the side of the grille 11 away from the flat plate 3. A guide hole 41 is provided on the guide seat 4 for the sliding of the fixing rod 21. The fixing rod 21 passes through the guide hole 41. A rubber plate 212 is provided at one end of the fixing rod 21 near the end in the length direction of the partition frame 1. The rubber plate 212 is fixedly connected to the fixing rod 21 through a connecting circular plate 211. The diameter of the connecting circular plate 211 is larger than the diameter of the fixing rod 21. The fixing rod 21 can slide until the rubber plate 212 is tightly against the inner walls on both sides of the mold in the width direction. The fixing rod 21 can also slide until the rubber plate 212 is out of contact with the inner walls on both sides of the mold in the width direction. First, slide the fixing rod 21 until the rubber plate 212 is out of contact with the inner walls on both sides of the mold in the width direction. At this time, the partition assembly can be placed in the mold. Then, slide the fixing rod 21 until the rubber plate 212 is tightly against the inner walls on both sides of the mold in the width direction. This ensures that the partition assembly is stably fixed to the mold.
[0040] The grille 11 comprises cross-arranged vertical panels 111 and horizontal panels 112. Multiple vertical panels 111 are equidistantly spaced along the length of the partition frame 1. The ends of the vertical panels 111 are fixedly connected to the inner wall of the partition frame 1, and at least one vertical panel 111 is located in the middle of the length of the partition frame 1. Multiple horizontal panels 112 are spaced apart along the width of the partition frame 1. The ends of the horizontal panels 112 are fixedly connected to the inner wall of the partition frame 1. The horizontal panels 112 are located at the top and bottom of the partition frame 1, with two vertical panels 112 at the top.
[0041] Each fixing rod 21 corresponds to a guide seat 4 and a limit seat 5. Both the guide seat 4 and the limit seat 5 are fixed to the horizontal plate 112. The limit seat 5 has a limit hole 51. The limit seat 5 is located at the end of the guide seat 4 near the drive assembly 22. The limit hole 51 is coaxial with the guide hole 41. The end of the fixing rod 21 near the drive assembly 22 passes through the limit hole 51 and is slidably connected to the limit seat 5. The cooperation between the limit seat 5 and the guide seat 4 improves the sliding stability of the fixing rod 21.
[0042] Reference Figure 4-6The driving assembly 22 includes a connecting rod 1 221, a connecting rod 222 and a spring 223. The connecting rod 1 221 includes a rod body 1 2211, a rod body 2212 and a rod body 3 2213. The rod body 1 2211 and the rod body 3 2213 are located at both ends of the rod body 2212 and extend in opposite directions. The rod body 1 2211 is parallel to the rod body 3 2213. The connecting rod 222 is located in the middle of the length direction of the partition frame 1. A connecting plate 225 corresponds to a connecting rod 1 221. The two connecting rods 221 are connected to each other. Rod body 2212 of rod 1 221 is pivotally connected to grille 11 at the middle of the length of partition frame 1 via a common connecting shaft 22123. Rod 1 221 is located above connecting rod 3. Rod 1 2211 is further away from the corresponding connecting plate 225 than rod 3 2213. The end of rod 3 2213 away from rod 2 2212 is pivotally connected to connecting rod 2 222, while the end of connecting rod 2 222 away from rod 3 2213 is pivotally connected to the middle of the length of connecting plate 225. An auxiliary rod 224 is provided at the top of rod 1 2211. The axis of auxiliary rod 224 is perpendicular to the plane of one of the thickness-directed surfaces of rod 1 2211. External forces act on rod 1 2211 via auxiliary rod 224, making it easier for personnel to apply external forces to rod 1 2211.
[0043] The spring 223 is sleeved on the fixed rod 21, one end of the spring 223 abuts against the guide seat 4, and the other end of the spring 223 abuts against the connecting circular plate 211. The force exerted by the spring 223 on the connecting circular plate 211 causes the connecting circular plate 211 to move in a direction away from the driving assembly 22. When the spring 223 is in a natural state, the rubber plate 212 extends out of the outside of the seal at both ends of the length direction of the partition frame 1.
[0044] Before placing the partition assembly into the mold, a force is first applied to the rod body 1211 of the connecting rod 1 221 to rotate the rod body 1211 toward the direction close to the corresponding connecting plate 225, so that the connecting rod 222 moves the connecting plate 225 toward the middle of the length direction of the partition frame 1. At this time, the rubber plate 212 moves to the inner side of the seal at both ends of the length direction of the partition frame 1, and the spring 223 is compressed. After placing the partition assembly into the mold, the rod body 1211 of the connecting rod 1 221 rotates toward the direction away from the corresponding connecting plate 225. In order to restore the original length, the spring 223 applies a force to the connecting circular plate 211 to move the connecting circular plate 211 in the direction away from the driving assembly 22, so that the connecting rod 222 moves the connecting plate 225 toward the end of the length direction of the partition frame 1 until the rubber plate 212 is tightly pressed against the inner wall of the mold. The driving structure is simple and the driving force is stable.
[0045] Reference Figure 7, seals 6 are provided at both ends of the partition frame 1 in the length direction, and seals 7 are provided on the bottom surface of the partition frame 1. The two ends of the partition frame 1 in the length direction are sealedly connected to the inner walls on both sides of the mold in the width direction through seals 6, and the bottom surface of the partition frame 1 is sealedly connected to the inner bottom wall of the mold through seals 7.
[0046] Sealing element 6 comprises a mounting frame 61 and a sealing strip 62. Mounting frame 61 is C-shaped, with its middle section fixedly connected to the longitudinal sidewalls of partition frame 1. Sealing strip 62 is secured within mounting frame 61 via a pressure plate 63. Sealing strip 62 is also C-shaped, with pressure plate 63 pressing against the middle section of sealing strip 62. Pressure plate 63 is provided with a set screw 1, which passes through pressure plate 63 and sealing strip 62 before threading into mounting frame 61. Each longitudinal end of flat panel 3 is flush with the distal end of the two mounting frames 61. The end sections of sealing strip 62 extend outside mounting frame 61, forming an interference fit with the inner walls of the mold along its width.
[0047] The second seal 7 comprises a second mounting frame 71 and a second sealing strip 72. The second mounting frame 71 is C-shaped, with the middle section of the second mounting frame 71 fixedly connected to the bottom surface of the partition frame 1. The second mounting frame 71 and the second mounting frame 71 are connected to form a U-shape. The first sealing strip 62 and the second sealing strip 72 are connected to form a U-shape. The second sealing strip 72 is fixed to the second mounting frame 71 by a second pressure plate 73. The first sealing strip 62 is also C-shaped. The second pressure plate 73 is pressed against the middle section of the second sealing strip 72. The second pressure plate 73 is provided with a second fixing screw, which passes through the second pressure plate 73 and the second sealing strip 72 and is then threadedly connected to the second mounting frame 71. The bottom surface of the flat plate 3 is flush with the bottom surface of the second mounting frame 71. The two end sections of the second sealing strip 72 extend outside the second mounting frame 71 and have an interference fit with the inner bottom wall of the mold.
[0048] By setting up sealing member 1 6 and sealing member 2 7, the connection sealing performance between the two ends of the partition frame 1 in the length direction and the bottom surface of the partition frame 1 and the inner wall of the mold is improved, and the friction between the partition frame 1 and the inner wall of the mold is improved by sealing strip 1 62 and sealing strip 2 72, thereby improving the stability of the fixation between the partition frame 1 and the mold. When pouring concrete into the mold, it can not only prevent the concrete from leaking, but also the partition assembly can remain stable and avoid displacement when it is subjected to the force of concrete.
[0049] The two ends of the plane panel 3 in the length direction are fixedly connected to the mounting frame 1 61 , the bottom end of the plane panel 3 is fixedly connected to the mounting frame 2 71 , the top end of the plane panel 3 is fixedly connected to the horizontal plate 112 , and the middle part of the plane panel 3 is fixedly connected to the grille 11 .
[0050] Reference Figure 2A protective cover 8 is provided on one side of the partition frame 1 where the fixing mechanism 2 is provided. Connecting edges 81 are provided around the periphery of the protective cover 8. The connecting edges 81 at both ends of the protective cover 8 in the longitudinal direction are fixed to the walls of the partition frame 1 in the longitudinal direction by connecting screws. The connecting edge 81 at the bottom of the protective cover 8 in the width direction is fixed to the wall of the partition frame 1 in the width direction by connecting screws. The connecting edge 81 at the top of the protective cover 8 in the width direction is fixed to the uppermost of the two upper cross bars by connecting screws. A clearance opening 82 is provided in the top wall of the protective cover 8 for the movement of the connecting rod 221. The side walls at both ends of the protective cover 8 in the longitudinal direction are provided with clearance openings 83 for the movement of the fixing rod 21. The provision of the protective cover 8 protects the fixing mechanism 2, thereby improving the durability and aesthetics of the overall partition assembly.
[0051] The implementation principle of a partition assembly for an aerated concrete forming mold in the embodiment of the present application is as follows: Before placing the partition assembly into the mold, a force is first applied to the rod body 1 2211 of the connecting rod 1 221 to rotate the rod body 1 2211 toward the direction close to the corresponding connecting plate 225, so that the connecting rod 2 222 moves the connecting plate 225 toward the middle of the length direction of the partition frame 1. At this time, the rubber plate 212 moves to the inner side of the seal at both ends of the length direction of the partition frame 1, and the spring 223 is compressed. After placing the partition assembly into the mold, the rod body 1 2211 of the connecting rod 1 221 rotates toward the direction away from the corresponding connecting plate 225. In order to restore the original length, the spring 223 applies a force to the connecting circular plate 211 to move the connecting circular plate 211 in the direction away from the driving assembly 22, so that the connecting rod 222 moves the connecting plate 225 toward the end of the length direction of the partition frame 1 until the rubber plate 212 is tightly pressed against the inner wall of the mold, thereby achieving stable installation of the partition assembly.
[0052] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A partition assembly for an aerated concrete forming mold, characterized by: The invention comprises a partition frame (1) and a fixing mechanism (2), wherein the partition frame (1) is vertically arranged in a mold, a plane plate (3) is fixed on one side of the partition frame (1) in the thickness direction, the outer walls on both sides of the width direction of the plane plate (3) are in contact with the inner walls on both sides of the width direction of the mold, and the bottom surface of the plane plate (3) is in contact with the inner bottom wall of the mold, and concrete is formed between a side of the plane plate (3) away from the partition frame (1) and a side in the length direction of the mold; The fixing mechanism (2) is arranged on the other side of the partition frame (1) in the thickness direction, and the fixing mechanism (2) is used to fix the partition frame (1) in the mold; The two ends of the partition frame (1) in the longitudinal direction are provided with a seal member 1 (6), and the bottom surface of the partition frame (1) is provided with a seal member 2 (7). The two ends of the partition frame (1) in the longitudinal direction are sealed to the inner walls on both sides of the width direction of the mold through the seal member 1 (6), and the bottom surface of the partition frame (1) is sealed to the inner bottom wall of the mold through the seal member 2 (7).
2. The partition assembly for an aerated concrete forming mold according to claim 1, characterized in that: The fixing mechanism (2) comprises a horizontally arranged fixing rod (21) and a driving assembly (22) for driving the fixing rod (21) to slide along the width direction of the mold, wherein the fixing rod (21) is arranged at both ends of the partition frame (1), and the driving assembly (22) drives the fixing rods (21) at both ends of the partition frame (1) to slide in a direction toward or away from each other, and the driving assembly (22) is located in the middle of the partition frame (1) in the length direction; A grille (11) is fixedly provided inside the partition frame (1), and a guide seat (4) is provided on a side of the grille (11) away from the plane plate (3), and a guide hole (41) is provided on the guide seat (4) for the sliding of the fixing rod (21), and the fixing rod (21) passes through the guide hole (41). A rubber plate (212) is provided at one end of the fixing rod (21) close to the end in the length direction of the partition frame (1), and the rubber plate (212) is fixedly connected to the fixing rod (21) through a connecting circular plate (211), and the diameter of the connecting circular plate (211) is larger than the diameter of the fixing rod (21), and the fixing rod (21) can slide until the rubber plate (212) is pressed against the inner walls on both sides of the mold in the width direction, and the fixing rod (21) can also slide until the rubber plate (212) is out of contact with the inner walls on both sides of the mold in the width direction.
3. The partition assembly for an aerated concrete forming mold according to claim 2, characterized in that: A plurality of fixing rods (21) are respectively provided at both ends of the partition frame (1); the plurality of fixing rods (21) at one end of the partition frame (1) are arranged at intervals along the width direction of the partition frame (1); and all the fixing rods (21) at one end of the partition frame (1) move synchronously at the same time through the connecting plate (225).
4. The partition assembly for an aerated concrete forming mold according to claim 3, characterized in that: The driving assembly (22) includes a connecting rod 1 (221), a connecting rod 2 (222) and a spring (223); the connecting rod 1 (221) includes a rod body 1 (2211), a rod body 2 (2212) and a rod body 3 (2213); the rod body 1 (2211) and the rod body 3 (2213) are located at two ends of the rod body 2 (2212) and extend in opposite directions; the rod body 1 (2211) is parallel to the rod body 3 (2213); the connecting rod 2 (222) is located in the middle of the length direction of the partition frame (1); one connecting plate (225) corresponds to one connecting rod 1 (221); The rod bodies 2 (2212) of the two connecting rods 1 (221) are rotatably connected to the grille (11) in the middle of the length direction of the partition frame (1) through the same connecting shaft (22123); the connecting rod 1 (221) is located above the connecting rod 3; the rod body 1 (2211) is farther away from the corresponding connecting plate (225) than the rod body 3 (2213); the end of the rod body 3 (2213) away from the rod body 2 (2212) is rotatably connected to the connecting rod 2 (222); and the end of the connecting rod 2 (222) away from the rod body 3 (2213) is rotatably connected to the middle of the length direction of the connecting plate (225); The spring (223) is sleeved on the fixed rod (21), one end of the spring (223) is in contact with the guide seat (4), and the other end of the spring (223) is in contact with the connecting circular plate (211). The force applied by the spring (223) to the connecting circular plate (211) causes the connecting circular plate (211) to move in a direction away from the driving assembly (22). When the spring (223) is in a natural state, the rubber plate (212) extends outward from the seals at both ends of the partition frame (1) in the longitudinal direction.
5. The partition plate assembly for an aerated concrete forming mold according to claim 4, characterized in that: An auxiliary rod (224) is provided at the top end of the rod body (2211), and the axis of the auxiliary rod (224) is perpendicular to the plane where one side of the thickness direction of the rod body (2211) is located, and external force applies a force to the rod body (2211) through the auxiliary rod (224).
6. The partition plate assembly for an aerated concrete forming mold according to claim 1, characterized in that: The sealing member (6) includes a mounting frame (61) and a sealing strip (62), wherein the mounting frame (61) is C-shaped, and the middle section of the mounting frame (61) is fixedly connected to the side walls at both ends of the partition frame (1) in the longitudinal direction, and the sealing strip (62) is fixed in the mounting frame (61) through a pressing plate (63), and the sealing strip (62) is also C-shaped, and the pressing plate (63) is pressed tightly against the middle section of the sealing strip (62), and a fixing screw (63) is provided on the pressing plate (63), and the fixing screw (61) is threadedly connected to the mounting frame (61) after passing through the pressing plate (63) and the sealing strip (62); Each end of the plane plate (3) in the length direction is flush with the ends of the two mounting frames (61) that are away from each other, and the two end sections of the sealing strip (62) extend out of the mounting frame (61) and are interference-fitted with the inner walls on both sides of the mold in the width direction.
7. The partition plate assembly for an aerated concrete forming mold according to claim 1, characterized in that: The second sealing member (7) includes a second mounting frame (71) and a second sealing strip (72). The second mounting frame (71) is C-shaped. The middle section of the second mounting frame (71) is fixedly connected to the bottom surface of the partition frame (1). The second mounting frame (71) is U-shaped as a whole after being connected with the second mounting frame (71). The first sealing strip (62) is U-shaped as a whole after being connected with the second sealing strip (72). The second sealing strip (72) is fixed in the second mounting frame (71) by the second pressing plate (73). The first sealing strip (62) is also C-shaped. The second pressing plate (73) is pressed tightly against the middle section of the second sealing strip (72). The second pressing plate (73) is provided with a second fixing screw. The second fixing screw passes through the second pressing plate (73) and the second sealing strip (72) and is threadedly connected to the second mounting frame (71). The bottom surface of the flat plate (3) is flush with the bottom surface of the second mounting frame (71), and the two end sections of the second sealing strip (72) extend out of the second mounting frame (71) and are interference-fitted with the inner bottom wall of the mold.
8. The partition assembly for an aerated concrete forming mold according to claim 2, characterized in that: The grille (11) comprises vertical plates (111) and horizontal plates (112) arranged crosswise, wherein a plurality of vertical plates (111) are arranged at equal intervals along the length direction of the partition frame (1), and both ends of the vertical plates (111) are fixedly connected to the inner wall of the partition frame (1), and at least one vertical plate (111) is located in the middle of the length direction of the partition frame (1); and a plurality of horizontal plates (112) are arranged at intervals along the width direction of the partition frame (1), and both ends of the horizontal plates (112) are fixedly connected to the inner wall of the partition frame (1), and the horizontal plates (112) are located at the top and bottom of the partition frame (1), and there are two horizontal plates (112) at the top.
9. The partition plate assembly for an aerated concrete forming mold according to claim 8, characterized in that: Each of the fixing rods (21) corresponds to a guide seat (4) and a limit seat (5), and the guide seat (4) and the limit seat (5) are both fixed on the transverse plate (112). A limit hole (51) is provided on the limit seat (5), and the limit seat (5) is located at one end of the guide seat (4) close to the driving assembly (22). The limit hole (51) and the guide hole (41) are coaxially arranged, and one end of the fixing rod (21) close to the driving assembly (22) passes through the limit hole (51) and is slidably connected to the limit seat (5).
10. The partition plate assembly for an aerated concrete forming mold according to claim 1, wherein: The partition frame (1) is provided with a protective cover (8) on one side of the fixing mechanism (2), and the peripheral side of the protective cover (8) is provided with a connecting edge (81), and the connecting edges (81) at both ends of the protective cover (8) in the longitudinal direction are fixed to the wall bodies at both ends of the partition frame (1) in the longitudinal direction by connecting screws, and the connecting edge (81) at the bottom of the protective cover (8) in the width direction is fixed to the wall body at the bottom of the partition frame (1) in the width direction by connecting screws, and the connecting edge (81) at the top of the protective cover (8) in the width direction is fixed to the uppermost cross bar of the two upper cross bars by connecting screws, and the top wall of the protective cover (8) is provided with a clearance opening (82) for the movement of the connecting rod (221), and the side walls at both ends of the protective cover (8) in the longitudinal direction are provided with a clearance opening (83) for the movement of the fixing rod (21).