Producing and batching equipment for thermal insulation aerated block

By designing a batching equipment including batching tanks, mixing components and mixing components, the problems of low batching accuracy and uneven mixing in traditional equipment are solved, and efficient and uniform mixing of the aerated block raw materials and improving product quality are achieved.

CN119974246AInactive Publication Date: 2025-05-13KUITUN ZHONGCHUANG HUANNENG NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510279099.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional insulation gas filling block production batching equipment has problems such as low batching accuracy, uneven mixing, low degree of automation and low production efficiency, which affects the quality and performance of the product.

Method used

A batching equipment including a batching tank, agitating assembly and a mixing assembly is designed. The mixing assembly and agitating assembly are driven by a motor to rotate in the batching tank, and the efficient and uniform mixing of raw materials is achieved using a special spiral mixing paddle and a material sling.

Benefits of technology

It significantly improves the mixing uniformity of raw materials, ensures the uniformity of the performance of each part of the gas filling block, and improves the overall quality and production efficiency of the product.

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Abstract

The invention discloses thermal insulation aerated block production batching equipment, and relates to the technical field of building material production, the thermal insulation aerated block production batching equipment comprises a batching tank, the batching tank is used for containing thermal insulation aerated block raw materials, a base is fixedly mounted at the bottom of the batching tank, and injection ports are formed in the two sides of the top of the batching tank; an eduction tube is fixedly mounted on one side of the bottom of the batching tank; the stirring assembly is used for turning over precipitated raw materials at the bottom of the batching tank; the mixing assembly is used for uniformly mixing the raw materials in the batching tank, and a motor is fixedly mounted at the top of the mixing assembly. According to the batching equipment for production of the heat-insulating aerated blocks, the output end of the motor penetrates through the convex cavity and extends to the surface of the turntable, after a worker starts the motor, the motor drives the layering ring to rotate, and the layering ring sleeves the outer side of the turntable, so that raw materials are prevented from falling into the mixing assembly and being adhered to the axis of the mixing assembly through high-frequency stirring during raw material mixing; the service life of the paddle is influenced.
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Description

Technical Field

[0001] The invention relates to the technical field of building material production, in particular to a batching device for producing thermal insulation aerated blocks. Background Art

[0002] As a new type of building material, thermal insulation aerated blocks have many advantages such as light weight, good thermal insulation performance, and good sound absorption effect. They have been widely used in modern construction projects. The batching link in its production process is crucial and directly affects the quality and performance of the product.

[0003] Traditional batching equipment for the production of thermal insulation aerated blocks often has problems such as low batching accuracy, uneven mixing, low degree of automation and low production efficiency. For example, some equipment is easily disturbed by external factors when weighing raw materials, resulting in large weighing errors; during the raw material mixing process, due to the unreasonable design of the stirring device, various raw materials cannot be fully and evenly mixed, which in turn affects the thermal insulation performance and strength of the aerated blocks; and there are many manual operation links, which not only increases the labor intensity, but also easily affects the continuity and stability of production due to human errors. Summary of the invention

[0004] To achieve the above purpose, the present invention is implemented through the following technical solutions: a batching equipment for producing thermal insulation aerated blocks, comprising a batching tank, the batching tank is used to hold the raw materials of the thermal insulation aerated blocks, a base is fixedly installed at the bottom of the batching tank, injection ports are opened on both sides of the top of the batching tank, and a guide pipe is fixedly installed on one side of the bottom of the batching tank;

[0005] A stirring assembly, which is used to stir the precipitated raw materials at the bottom of the batching tank;

[0006] A mixing assembly, which is used to evenly mix the raw materials in the batching tank, a motor is fixedly mounted on the top of the mixing assembly, and a fixing frame is fixedly mounted on the outer surface of the motor;

[0007] A batching tank is fixedly mounted on the top of the base, the fixing frame is fixedly mounted on the top of the batching tank, the motor is fixedly mounted at the middle of the top of the batching tank through the fixing frame, the output end of the motor is fixedly connected to the mixing assembly, the mixing assembly is rotatably mounted inside the cavity of the batching tank through the output end of the motor, the stirring assembly is rotationally adapted to the mixing assembly, and the stirring assembly is rotatably mounted on the bottom of the batching tank through the mixing assembly. The design of the mixing assembly and the stirring assembly allows the raw materials to undergo various forms of stirring and mixing processes at different stages. The special spiral stirring paddle in the mixing assembly achieves preliminary uniform mixing, and the material throwing piece in the stirring assembly performs high-intensity final mixing on the raw materials precipitated at the bottom of the batching tank, which greatly improves the mixing uniformity of the raw materials, thereby ensuring the uniform performance of each part of the aerated block and improving the overall quality of the product.

[0008] The batching tank includes a stirring bottom chamber, a batching chamber is fixedly installed on the top of the stirring bottom chamber, and a friction strip is fixedly installed below the inner wall of the batching chamber, and the friction strip is distributed in a circular shape on the inner wall of the batching chamber. The staff injects the raw materials required for the thermal insulation aerated block into the batching tank through the injection port opened at the top of the batching tank, and the staff starts the motor so that the output end of the motor drives the mixing component to rotate in the batching tank to stir and mix the raw materials. When stirring the raw materials, the mixing component drives the stirring component to stir the raw materials deposited at the bottom of the batching tank to avoid the raw materials from settling at the bottom of the batching tank. After mixing, the raw materials are discharged along the outlet pipe, and the final mixed raw materials are transported to the aerated block forming process.

[0009] Preferably, a raised cavity is provided between the stirring bottom cavity and the base, the raised cavity is provided at the bottom of the stirring assembly, and the raised cavity is rotationally adapted to the stirring assembly. The adjusting frame drives the material-spinning member to slide inside the stirring bottom cavity to move the raw materials deposited at the bottom thereof, and the stirring bottom cavity is provided with an arc-shaped elastic material so that the raw materials after being mixed and agglomerated gather at the arc-shaped depression, thereby avoiding the dispersion and precipitation of the raw materials due to the relatively smooth bottom area of ​​the tank, resulting in a slow mixing efficiency of the raw materials.

[0010] Preferably, the mixing assembly includes a shaft, the top end of which is fixedly connected to the output end of the motor, and the surface of the shaft away from the motor is rotatably connected to a round cover, and the shaft passes through the round cover and extends to the inside of the stirring assembly. After the motor is started, the shaft is driven to rotate, so that the paddles rotate in the batching chamber, and three paddles are provided, and the three paddles are distributed at specific angles and shapes. The paddles on the driving guard of the motor cooperate with the stirring assembly to stir and mix the raw materials with high intensity.

[0011] Preferably, a connection seat is fixedly installed on the surface of the circular cover, and there are three connection seats. The three connection seats are distributed in a circular shape on the surface of the circular cover, and a protective piece is rotatably connected between the opposite surfaces of the connection seats. The surfaces of the connection seats are all covered with outer covers, and paddles are fixedly installed inside the connection seats. In order to facilitate the mixing of raw materials, the paddles are set to be flexible materials. When the raw materials required for the thermal insulation aerated block are stirred, as the raw materials are gradually mixed and condensed, the friction between the raw materials and the paddles gradually increases, causing the paddles to twist and deform under the influence of torque. In order to prevent the paddles from falling off due to excessive twisting at the connection between the paddles and the shaft, a circular cover, a connection seat and a protective piece are set at the connection between the paddles and the shaft.

[0012] Preferably, the protective member includes a circular shaft, a square plate is fixedly mounted on the outer surface of the circular shaft, three square plates are provided, and the three square plates are distributed in a circular shape on the surface of the circular shaft, a clamping sleeve is fixedly mounted on the top of the square plate, and the outer surface of the clamping sleeve away from the square plate is fixedly connected to the connecting seat.

[0013] Preferably, an extrusion groove is provided inside the shaft clamping sleeve, a concave-convex curved piece is provided on the surface of the shaft clamping sleeve away from the square plate, a sleeve shaft is clamped between the opposite surfaces of the shaft clamping sleeve, and the sleeve shaft is provided on the surface of the blade close to the round cover. The concave-convex curved piece fits on the outer surface of the blade, so when the blade and the raw material are stirred and twisted, the round shaft is driven to rotate in the round cover, and the sleeve shaft and the shaft clamping sleeve covering the outer layer of the blade are squeezed and deformed by the twisting of the blade, so that the extrusion groove provided in the shaft clamping sleeve is concave inward, so as to protect the blade.

[0014] Preferably, the stirring assembly includes a turntable, a connecting shaft is fixedly connected to the axis of the turntable, the turntable is fixedly mounted on the bottom end of the shaft, the outer surface of the turntable is sleeved with a layered ring, the outer surface below the layered ring is sleeved with an external ring, a sleeve block is fixedly mounted on the surface of the external ring, the sleeve blocks are evenly distributed on the surface of the external ring in a circular shape, an adjustment frame is installed at the bottom of the sleeve block, and a material throwing piece is fixedly mounted below the outer surface of the adjustment frame. The output end of the motor extends through the raised cavity to the surface of the turntable. After the staff starts the motor, the motor drives the layered ring to rotate. The layered ring is sleeved on the outside of the turntable to prevent the raw materials from falling into the mixing assembly during mixing, and the raw materials are adhered to the axis of the mixing assembly after high-frequency stirring, which affects the service life of the blades.

[0015] Preferably, the adjustment frame includes an external block, which is fixedly mounted at the lower edge of the outer surface of the sleeve block, a rotating frame is fixedly mounted below the external block, a swing rod is rotatably connected inside the rotating frame, a rotating rod is fixedly connected to the bottom of the swing rod, and frame plates are rotatably connected to both sides of the outer surface of the rotating rod, and the frame plates are rotatably connected to the bottom of the sleeve block. The motor drives the layering ring to rotate so that the adjustment frame is thrown outward by inertia, and the frame plate drives the material throwing piece and the swing rod to rotate on the surface of the rotating frame. Affected by the arc shape of the stirring bottom chamber, the material throwing piece and the inner wall of the stirring bottom chamber are squeezed to improve the flexibility of the adjustment frame when rotating.

[0016] Preferably, the material-rejecting part includes a card plate, which is fixedly mounted on both sides of the outer surface of the frame plate, and the surface of the card plate is fixedly connected with a connecting block, and two connecting blocks are provided, and the two connecting blocks are symmetrically arranged on the surface of the card plate, and the surface of the connecting block away from the card plate is fixedly connected with a round block.

[0017] Preferably, a semicircular lever is fixedly installed at the axis center of the outer surface of the round block through a short rod, and extension rods are fixedly connected at both ends of the semicircular lever. The extension rods are provided in two groups, and a cross plate is fixedly connected between the opposite surfaces of the two groups of extension rods, so the extension rods and the semicircular lever are symmetrically arranged with the cross plate as the center. The card plate is connected to the surface of the frame plate, and when the frame plate is thrown out, it drives the card plate and the components on its surface to rotate in the stirred bottom cavity. At this time, the semicircular lever and the stirred bottom cavity are squeezed and the raw materials are pushed to make the raw materials at the bottom of the stirred bottom cavity quickly mixed. The semicircular lever is set to an arc-shaped elastic material, and the spacing between each group of semicircular levers is large, which reduces the contact area between the raw materials during stirring and enhances the fluidity of the raw materials.

[0018] The present invention provides a batching equipment for producing thermal insulation aerated blocks. It has the following beneficial effects:

[0019] 1. The thermal insulation aerated block production batching equipment extends from the output end of the motor through the raised cavity to the surface of the turntable. After the staff starts the motor, the motor drives the stratification ring to rotate. The stratification ring sleeve is arranged on the outside of the turntable to prevent the raw materials from falling into the mixing component during mixing. After high-frequency stirring, the raw materials adhere to the axis of the mixing component, affecting the service life of the blades.

[0020] 2. The thermal insulation aerated block production batching equipment drives the material throwing piece to slide inside the mixing bottom chamber through the adjustment frame to stir the raw materials deposited at the bottom. The mixing bottom chamber is set to an arc-shaped elastic material so that the raw materials after mixing into agglomerates can gather in the arc-shaped depression to avoid the dispersion and precipitation of the raw materials due to the smooth bottom area of ​​the tank, resulting in slower raw material mixing efficiency.

[0021] 3. The thermal insulation aerated block production batching equipment sets the blades to be of flexible material to facilitate the stirring and mixing of raw materials. When the raw materials required for the thermal insulation aerated blocks are stirred, as the raw materials are gradually mixed and condensed, the friction between the raw materials and the blades gradually increases, causing the blades to twist and deform under the influence of torque. In order to prevent the blades from falling off due to excessive twisting at the connection between the blades and the shaft, a round cover, a connecting seat and a protective part are set at the connection between the blades and the shaft.

[0022] 4. The thermal insulation aerated block production batching equipment is connected to the surface of the frame plate through a clamping plate. When the frame plate is thrown out, the clamping plate and the components on its surface are driven to rotate in the stirred bottom cavity. At this time, the semicircular lever is squeezed with the stirred bottom cavity, and the raw materials are pushed to make the raw materials at the bottom of the stirred bottom cavity quickly mixed. The semicircular lever is set to an arc-shaped elastic material, and the spacing between each group of semicircular levers is large, which reduces the contact area with the raw materials during stirring and enhances the fluidity of the raw materials.

[0023] 5. The thermal insulation aerated block production batching equipment is fitted to the outer surface of the blade through the concave and convex bent pieces. Therefore, when the blade and the raw material are stirred and twisted, the round shaft is driven to rotate in the round cover, and the sleeve shaft and the clamping sleeve covering the outer layer of the blade are squeezed and deformed by the twisting of the blade, so that the extrusion groove opened in the clamping sleeve is concave inward, so as to achieve the effect of protecting the blade. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a schematic diagram of the external structure of a batching equipment for producing thermal insulation aerated blocks according to the present invention;

[0025] Figure 2 It is a schematic diagram of the internal structure of the batching tank of the present invention;

[0026] Figure 3 This is a schematic diagram of the cross-sectional structure of the batching tank of the present invention;

[0027] Figure 4 This is a schematic diagram of the connection structure between the stirring assembly and the motor of the present invention;

[0028] Figure 5 This is a schematic diagram of the cross-sectional structure of the stirring bottom chamber of the present invention;

[0029] Figure 6 It is a schematic diagram of the structure of the mixing assembly of the present invention;

[0030] Figure 7 It is a schematic diagram of the enlarged structure of the mixing assembly of the present invention;

[0031] Figure 8 It is a schematic diagram of the structure of the protective element of the present invention;

[0032] Fig. 9 This is a schematic diagram of the structure of the stirring assembly of the present invention;

[0033] Fig.10 This is a schematic diagram of the structure of the adjustment frame of the present invention;

[0034] Fig.11 This is a schematic diagram of the structure of the adjustment frame of the present invention from another angle;

[0035] Fig.12 It is a schematic diagram of the enlarged structure of the material throwing part of the present invention.

[0036] In the figure: 1, motor; 2, injection port; 3, batching tank; 31, batching cavity; 32, friction strip; 33, raised cavity; 34, stirring bottom cavity; 4, outlet pipe; 5, base; 6, mixing assembly; 61, paddle; 62, shaft; 63, round cover; 64, connecting seat; 65, protective part; 651, clamping sleeve; 652, round shaft; 653, sleeve shaft; 654, concave and convex curved piece; 655, square plate; 66, outer cover ; 7. Stirring assembly; 71. Layering ring; 72. Bushing block; 73. Turntable; 74. Connecting shaft; 75. External ring; 76. Adjusting frame; 761. External block; 762. Turntable; 763. Rocker rod; 764. Shelf plate; 765. Turning rod; 77. Material throwing piece; 771. Connecting block; 772. Round block; 773. Horizontal plate; 774. Extension rod; 775. Semicircular lever; 776. Card plate; 8. Fixed frame. DETAILED DESCRIPTION

[0037] The present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.

[0038] The first embodiment, as Figure 1 , Figure 2 , Figure 3 and Figure 5 As shown, the present invention provides a technical solution: a batching device for producing thermal insulation aerated blocks, comprising a batching tank 3, the batching tank 3 is used to hold the raw materials of the thermal insulation aerated blocks, a base 5 is fixedly installed at the bottom of the batching tank 3, injection ports 2 are opened on both sides of the top of the batching tank 3, and a guide pipe 4 is fixedly installed on one side of the bottom of the batching tank 3;

[0039] A stirring assembly 7, which is used to stir the precipitated raw materials at the bottom of the batching tank 3;

[0040] A mixing assembly 6, which is used to evenly mix the raw materials in the batching tank 3, a motor 1 is fixedly mounted on the top of the mixing assembly 6, and a fixing frame 8 is fixedly mounted on the outer surface of the motor 1;

[0041] The top of the base 5 is fixedly mounted with a batching tank 3, the fixing frame 8 is fixedly mounted on the top of the batching tank 3, the motor 1 is fixedly mounted at the middle of the top of the batching tank 3 through the fixing frame 8, the output end of the motor 1 is fixedly connected to the mixing component 6, the mixing component 6 is rotatably mounted inside the cavity of the batching tank 3 through the output end of the motor 1, the stirring component 7 is rotationally adapted to the mixing component 6, and the stirring component 7 is rotatably mounted at the bottom of the batching tank 3 through the mixing component 6. The design of the mixing component 6 and the stirring component 7 allows the raw materials to undergo various forms of stirring and mixing processes at different stages. The special spiral stirring paddle in the mixing component 6 achieves preliminary uniform mixing, and the material throwing component 77 in the stirring component 7 performs high-intensity final mixing on the raw materials precipitated at the bottom of the batching tank 3, which greatly improves the mixing uniformity of the raw materials, thereby ensuring the uniform performance of each part of the aerated block and improving the overall quality of the product.

[0042] The batching tank 3 includes a stirring bottom chamber 34, a batching chamber 31 is fixedly installed on the top of the stirring bottom chamber 34, and a friction strip 32 is fixedly installed below the inner wall of the batching chamber 31, and the friction strip 32 is distributed in a circular shape on the inner wall of the batching chamber 31. The staff injects the raw materials required for the thermal insulation aerated block into the batching tank 3 along the injection port 2 opened at the top of the batching tank 3, and the staff starts the motor 1 so that the output end of the motor 1 drives the mixing component 6 to rotate in the batching tank 3 to stir and mix the raw materials. When stirring the raw materials, the mixing component 6 drives the stirring component 7 to stir the raw materials deposited at the bottom of the batching tank 3 to prevent the raw materials from settling at the bottom of the batching tank 3. The raw materials after mixing are discharged along the outlet pipe 4, and the finally mixed and uniform raw materials are transported to the aerated block forming process.

[0043] A raised cavity 33 is provided between the stirring bottom cavity 34 and the base 5. The raised cavity 33 is provided at the bottom of the stirring assembly 7, and the raised cavity 33 is rotationally adapted to the stirring assembly 7. The adjusting frame 76 drives the material-spinning member 77 to slide inside the stirring bottom cavity 34 to move the raw materials deposited at the bottom thereof. The stirring bottom cavity 34 is provided with an arc-shaped elastic material so that the raw materials after being mixed and agglomerated gather at the arc-shaped depression, so as to avoid the raw materials being dispersed and precipitated due to the relatively smooth bottom area of ​​the tank, resulting in a slow raw material mixing efficiency.

[0044] The second embodiment is based on the first embodiment. Figure 4 , Figure 6 , Figure 7 and Figure 8As shown, the mixing assembly 6 includes a shaft 62, the top of which is fixedly connected to the output end of the motor 1, and a round cover 63 is rotatably connected to the surface of the shaft 62 at one end away from the motor 1, and the shaft 62 penetrates the round cover 63 and extends to the inside of the stirring assembly 7. After the motor 1 is started, the shaft 62 is driven to rotate, so that the paddle 61 rotates in the batching chamber 31, and three paddles 61 are provided, and the three paddles are distributed at specific angles and shapes. The paddles 61 on the driving guard of the motor 1 cooperate with the stirring assembly 7 to stir and mix the raw materials with high intensity.

[0045] The surface of the circular cover 63 is fixedly installed with a connection seat 64, and the connection seat 64 is provided with three. The three connection seats 64 are distributed in a circular shape on the surface of the circular cover 63. The opposite surfaces of the connection seat 64 are rotatably connected with a protective member 65. The surface of the connection seat 64 is sleeved with an outer cover 66, and the inside of the connection seat 64 is fixedly installed with a paddle 61. In order to facilitate the mixing of raw materials, the paddle 61 is set to a flexible material. When the raw materials required for the thermal insulation aerated block are stirred, as the raw materials are gradually mixed and condensed, the friction between the raw materials and the paddle 61 is gradually strengthened, so that the paddle 61 is twisted and deformed by the torque. In order to prevent the paddle 61 from falling off due to excessive twisting at the connection between the paddle 61 and the shaft 62, a circular cover 63, a connection seat 64 and a protective member 65 are provided at the connection between the paddle 61 and the shaft 62.

[0046] The protective member 65 includes a circular shaft 652, and a square plate 655 is fixedly installed on the outer surface of the circular shaft 652. There are three square plates 655, which are distributed in a circle on the surface of the circular shaft 652. A clamping sleeve 651 is fixedly installed on the top of the square plate 655. The outer surface of the clamping sleeve 651 away from the square plate 655 is fixedly connected to the connecting seat 64.

[0047] The clamping sleeve 651 has an extrusion groove inside, and the surface of the clamping sleeve 651 away from the square plate 655 is provided with a concave-convex curved piece 654, and a sleeve shaft 653 is clamped between the opposite surfaces of the clamping sleeve 651, and the sleeve shaft 653 is sleeved on the surface of the blade 61 close to the round cover 63. The concave-convex curved piece 654 fits the outer surface of the blade 61, so when the blade 61 and the raw material are stirred and twisted, the circular shaft 652 is driven to rotate in the round cover 63, and the sleeve shaft 653 and the clamping sleeve 651 wrapped on the outer layer of the blade 61 are squeezed and deformed by the twisting of the blade 61, so that the extrusion groove provided in the clamping sleeve 651 is concave inward, so as to protect the blade 61.

[0048] The third embodiment is based on the first and second embodiments. Figure 4 , Figure 5 , Figures 9 to 12As shown, the stirring assembly 7 includes a turntable 73, a connecting shaft 74 is fixedly connected to the axis of the turntable 73, the turntable 73 is fixedly mounted on the bottom end of the shaft 62, a layered ring 71 is sleeved on the outer surface of the turntable 73, an outer ring 75 is sleeved on the outer surface below the layered ring 71, a sleeve block 72 is fixedly mounted on the surface of the outer ring 75, the sleeve blocks 72 are evenly distributed on the surface of the outer ring 75 in a circular shape, an adjustment frame 76 is arranged at the bottom of the sleeve block 72, and a material throwing piece 77 is fixedly mounted below the outer surface of the adjustment frame 76. The output end of the motor 1 extends through the raised cavity 33 to the surface of the turntable 73. After the staff starts the motor 1, the motor 1 drives the layered ring 71 to rotate, and the layered ring 71 is sleeved on the outer side of the turntable 73 to prevent the raw materials from falling into the mixing assembly 6 when mixing the raw materials, and the raw materials are adhered to the axis of the mixing assembly 6 after high-frequency stirring, which affects the service life of the blade 61.

[0049] The adjustment frame 76 includes an external block 761, which is fixedly mounted at the lower edge of the outer surface of the sleeve block 72, and a rotating frame 762 is fixedly mounted below the external block 761. A swing rod 763 is rotatably connected to the inside of the rotating frame 762, and a rotating rod 765 is fixedly connected to the bottom of the swing rod 763. The outer surfaces of the rotating rod 765 are rotatably connected to the frame plates 764 on both sides, and the frame plates 764 are rotatably connected to the bottom of the sleeve block 72. The motor 1 drives the layering ring 71 to rotate so that the adjustment frame 76 is thrown outward by inertia, and the frame plates 764 drive the material throwing piece 77 and the swing rod 763 to rotate on the surface of the rotating frame 762. Affected by the arc shape of the stirring bottom chamber 34, the material throwing piece 77 and the inner wall of the stirring bottom chamber 34 are squeezed to improve the flexibility of the adjustment frame 76 when rotating.

[0050] The material rejection piece 77 includes a clamping plate 776, and the clamping plate 776 is fixedly installed on both sides of the outer surface of the frame plate 764. The surface of the clamping plate 776 is fixedly connected with a connecting block 771. There are two connecting blocks 771, and the two connecting blocks 771 are symmetrically arranged on the surface of the clamping plate 776. The surface of the connecting block 771 away from the clamping plate 776 is fixedly connected with a round block 772.

[0051] A semicircular lever 775 is fixedly installed at the axis center of the outer surface of the circular block 772 through a short rod. The two ends of the semicircular lever 775 are fixedly connected with extension rods 774. The extension rods 774 are provided in two groups. A horizontal plate 773 is fixedly connected between the opposite surfaces of the two groups of extension rods 774, so the extension rods 774 and the semicircular lever 775 are symmetrically arranged with the horizontal plate 773 as the center. The clamping plate 776 is connected to the surface of the frame plate 764. When the frame plate 764 is thrown out, the clamping plate 776 and the components on the surface are driven to rotate in the stirred bottom cavity 34. At this time, the semicircular lever 775 is squeezed with the stirred bottom cavity 34 and pushes the raw materials to make the raw materials at the bottom of the stirred bottom cavity 34 quickly mixed. The semicircular lever 775 is set to an arc-shaped elastic material, and the spacing between each group of semicircular levers 775 is large, which reduces the contact area between the raw materials during stirring and enhances the fluidity of the raw materials.

[0052] When in use, the staff injects the raw materials required for the thermal insulation aerated block into the batching tank 3 along the injection port 2 opened at the top of the batching tank 3, and the staff starts the motor 1, so that the output end of the motor 1 drives the mixing component 6 to rotate in the batching tank 3 to stir and mix the raw materials. When stirring the raw materials, the mixing component 6 drives the stirring component 7 to stir the raw materials deposited at the bottom of the batching tank 3 to avoid the raw materials from settling at the bottom of the batching tank 3. The raw materials after mixing are discharged along the outlet pipe 4, and the finally mixed and uniform raw materials are transported to the aerated block forming process.

[0053] The output end of the motor 1 extends through the raised cavity 33 to the surface of the turntable 73. After the staff starts the motor 1, the motor 1 drives the layering ring 71 to rotate. The layering ring 71 is sleeved on the outside of the turntable 73 to prevent the raw materials from falling into the mixing component 6 during mixing, and the raw materials are adhered to the axis of the mixing component 6 after high-frequency stirring, which affects the service life of the blade 61.

[0054] The adjusting frame 76 drives the material throwing member 77 to slide inside the stirring bottom chamber 34 to stir the raw materials deposited at the bottom thereof. The stirring bottom chamber 34 is configured to be an arc-shaped elastic material so that the raw materials after being mixed and agglomerated can gather in the arc-shaped depression to avoid the raw materials being dispersed and precipitated due to the relatively smooth bottom area of ​​the tank, resulting in slower raw material mixing efficiency.

[0055] After the motor 1 is started, it drives the shaft 62 to rotate, so that the paddle 61 rotates in the batching chamber 31, and three paddles 61 are provided, and the three paddles are distributed at specific angles and shapes. The paddles 61 on the driving guard of the motor 1 cooperate with the stirring assembly 7 to stir and mix the raw materials with high intensity.

[0056] To facilitate the stirring and mixing of raw materials, the paddle 61 is set to be made of a flexible material. When the raw materials required for the thermal insulation aeration block are stirred, as the raw materials are gradually mixed and condensed, the friction between the raw materials and the paddle 61 gradually increases, causing the paddle 61 to be twisted and deformed under the influence of torque. In order to prevent the paddle 61 from falling off due to excessive twisting at the connection between the paddle 61 and the shaft 62, a round cover 63, a connecting seat 64 and a protective member 65 are provided at the connection between the paddle 61 and the shaft 62.

[0057] The concave-convex curved piece 654 is fitted to the outer surface of the paddle 61, so when the paddle 61 is stirred and twisted with the raw material, the circular shaft 652 is driven to rotate in the circular cover 63, and the sleeve shaft 653 and the clamping sleeve 651 covering the outer layer of the paddle 61 are deformed by the extrusion formed by the twisting of the paddle 61, so that the extrusion groove opened in the clamping sleeve 651 is concave inward, so as to achieve the purpose of protecting the paddle 61.

[0058] The output end of the motor 1 extends through the raised cavity 33 to the surface of the turntable 73. After the staff starts the motor 1, the motor 1 drives the layering ring 71 to rotate. The layering ring 71 is sleeved on the outside of the turntable 73 to prevent the raw materials from falling into the mixing component 6 during mixing, and the raw materials are adhered to the axis of the mixing component 6 after high-frequency stirring, which affects the service life of the blade 61.

[0059] The motor 1 drives the stratification ring 71 to rotate so that the adjustment frame 76 is thrown outward by inertia, and the frame plate 764 drives the material throwing piece 77 and the rocker arm 763 to rotate on the surface of the rotating frame 762. Affected by the arc shape of the stirring bottom chamber 34, the material throwing piece 77 and the inner wall of the stirring bottom chamber 34 are squeezed to improve the flexibility of the adjustment frame 76 during rotation.

[0060] The card plate 776 is connected to the surface of the frame plate 764. When the frame plate 764 is thrown out, it drives the card plate 776 and the components on its surface to rotate in the stirred bottom cavity 34. At this time, the semicircular lever 775 is squeezed with the stirred bottom cavity 34 and pushes the raw materials to quickly mix the raw materials at the bottom of the stirred bottom cavity 34. The semicircular lever 775 is set to an arc-shaped elastic material, and the spacing between each group of semicircular levers 775 is large, which reduces the contact area with the raw materials during stirring and enhances the fluidity of the raw materials.

[0061] Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without creative work should fall within the scope of protection of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention are implemented according to the conventional means in the field unless otherwise specified and limited.

Claims

1. A batching equipment for producing thermal insulation aerated blocks, characterized in that: include: A batching tank (3), the batching tank (3) is used to contain the raw materials of the heat-insulating aerated block, a base (5) is fixedly installed at the bottom of the batching tank (3), injection ports (2) are opened on both sides of the top of the batching tank (3), and a guide pipe (4) is fixedly installed on one side of the bottom of the batching tank (3); A stirring assembly (7), the stirring assembly (7) is used to stir the precipitated raw materials at the bottom of the batching tank (3); A mixing assembly (6), the mixing assembly (6) being used for uniformly mixing the raw materials in the batching tank (3), a motor (1) being fixedly mounted on the top of the mixing assembly (6), and a fixing frame (8) being fixedly mounted on the outer surface of the motor (1); A batching tank (3) is fixedly mounted on the top of the base (5); the fixing frame (8) is fixedly mounted on the top of the batching tank (3); the motor (1) is fixedly mounted at the middle of the top of the batching tank (3) through the fixing frame (8); the output end of the motor (1) is fixedly connected to the mixing assembly (6); the mixing assembly (6) is rotatably mounted inside the cavity of the batching tank (3) through the output end of the motor (1); the stirring assembly (7) is rotationally matched with the mixing assembly (6), and the stirring assembly (7) is rotatably mounted on the bottom of the batching tank (3) through the mixing assembly (6); The batching tank (3) comprises a stirring bottom chamber (34), a batching chamber (31) is fixedly mounted on the top of the stirring bottom chamber (34), a friction strip (32) is fixedly mounted below the inner wall of the batching chamber (31), and the friction strip (32) is distributed in a circular shape on the inner wall of the batching chamber (31).

2. The thermal insulation aerated block production batching equipment according to claim 1 is characterized by: A convex cavity (33) is provided between the stirring bottom cavity (34) and the base (5); the convex cavity (33) is provided at the bottom of the stirring component (7), and the convex cavity (33) is rotationally adapted to the stirring component (7).

3. The thermal insulation aerated block production batching equipment according to claim 1 is characterized by: The mixing assembly (6) comprises a shaft (62), the top end of the shaft (62) being fixedly connected to the output end of the motor (1), the surface of the end of the shaft (62) away from the motor (1) being rotatably connected to a round cover (63), and the shaft (62) passes through the round cover (63) and extends to the interior of the stirring assembly (7).

4. The thermal insulation aerated block production batching equipment according to claim 3 is characterized by: A connecting seat (64) is fixedly installed on the surface of the circular cover (63), and three connecting seats (64) are provided. The three connecting seats (64) are distributed in a circular shape on the surface of the circular cover (63), and a protective member (65) is rotatably connected between the opposite surfaces of the connecting seats (64). The surfaces of the connecting seats (64) are all sleeved with an outer cover (66), and a paddle (61) is fixedly installed inside the connecting seat (64).

5. The thermal insulation aerated block production batching equipment according to claim 4, characterized in that: The protective member (65) comprises a circular shaft (652), a square plate (655) being fixedly mounted on the outer surface of the circular shaft (652), three square plates (655) being provided, and the three square plates (655) being distributed in a circular shape on the surface of the circular shaft (652), a shaft clamping sleeve (651) being fixedly mounted on the top of the square plate (655), and the outer surface of the shaft clamping sleeve (651) on a side away from the square plate (655) being fixedly connected to the connecting seat (64).

6. The thermal insulation aerated block production batching equipment according to claim 5, characterized in that: An extrusion groove is provided inside the shaft clamping sleeve (651), a concave-convex curved piece (654) is provided on the surface of the shaft clamping sleeve (651) away from the square plate (655), a sleeve shaft (653) is clamped between opposite surfaces of the shaft clamping sleeve (651), and the sleeve shaft (653) is sleeved on the surface of the blade (61) on the side close to the round cover (63).

7. The thermal insulation aerated block production batching equipment according to claim 1, characterized in that: The stirring assembly (7) comprises a turntable (73), the axis of which is fixedly connected to a connecting shaft (74), the turntable (73) being fixedly mounted on the bottom end of the shaft (62), the outer surface of the turntable (73) being sleeved with a layered ring (71), the outer surface below the layered ring (71) being sleeved with an external connecting ring (75), a sleeve block (72) being fixedly mounted on the surface of the external connecting ring (75), the sleeve blocks (72) being uniformly distributed on the surface of the external connecting ring (75) in a circular shape, an adjusting frame (76) being mounted on the bottom of the sleeve block (72), and a material throwing piece (77) being fixedly mounted below the outer surface of the adjusting frame (76).

8. The thermal insulation aerated block production batching equipment according to claim 7, characterized in that: The adjustment frame (76) comprises an external block (761), wherein the external block (761) is fixedly mounted at the lower edge of the outer surface of the sleeve block (72), a rotating frame (762) is fixedly mounted below the external block (761), a swing rod (763) is rotatably connected inside the rotating frame (762), a rotating rod (765) is fixedly connected at the bottom of the swing rod (763), and frame plates (764) are rotatably connected at both sides of the outer surface of the rotating rod (765), and the frame plates (764) are rotatably connected to the bottom of the sleeve block (72).

9. The thermal insulation aerated block production batching equipment according to claim 8, characterized in that: The material-removing member (77) comprises a card plate (776), wherein the card plate (776) is fixedly mounted on both sides of the outer surface of the frame plate (764), and a connecting block (771) is fixedly connected to the surface of the card plate (776). Two connecting blocks (771) are provided, and the two connecting blocks (771) are symmetrically arranged on the surface of the card plate (776), and a round block (772) is fixedly connected to the surface of the connecting block (771) away from the card plate (776).

10. The thermal insulation aerated block production batching equipment according to claim 9, characterized in that: A semicircular lever (775) is fixedly mounted at the axis center of the outer surface of the round block (772) via a short rod, and extension rods (774) are fixedly connected at both ends of the semicircular lever (775). Two groups of extension rods (774) are provided, and a horizontal plate (773) is fixedly connected between the opposite surfaces of the two groups of extension rods (774), so that the extension rods (774) and the semicircular lever (775) are symmetrically arranged with the horizontal plate (773) as the center.