Reinforcement unit and sewage treatment equipment
By designing the reinforcement unit of the hollow reinforcement frame and pull rod in the treatment unit of the sewage treatment equipment, the problem of poor reinforcement effect of traditional sewage treatment equipment is solved, and efficient reinforcement and purification treatment of large-scale sewage treatment equipment is achieved, simplifying the construction process and reducing costs.
Patent Information
- Application Number
- CN202410690743.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-22
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2042-08-22
AI Technical Summary
The reinforcement method of traditional sewage treatment equipment cannot effectively solve the load problem of large sewage treatment equipment, and the module sizes of prefabricated equipment are inconsistent, resulting in unfavorable modular production.
A reinforcement unit is designed, including a hollow reinforcement frame and a plurality of pull rods. By providing a reinforcement unit in the hexagonal mold cavity, the pulling stability of the processing unit is increased to form a reliable reinforcement structure. The treatment unit adopts prefabricated and post-assembly methods to connect through water pipes to achieve sewage purification and treatment.
It effectively increases the load capacity of the treatment unit, meets the needs of large-scale sewage treatment, simplifies the construction process, shortens the construction cycle, reduces the construction cost, and improves the safety and stability of the treatment unit.
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Figure CN118495619B_ABST
Abstract
Description
[0001] This application is a divisional application. The application number of the original application is: 202211009876.3, the application date is August 22, 2022, and the name of the invention is “A large-scale sewage treatment device”. Technical Field
[0002] The invention belongs to the technical field of sewage treatment, and in particular relates to a reinforcement unit and sewage treatment equipment. Background Art
[0003] Wastewater treatment mainly uses physical, chemical and biological methods to react and eliminate pollutants in water. Wastewater treatment is widely used in various fields such as construction, agriculture, transportation, energy, petrochemicals, environmental protection, urban landscape, medical care, catering, etc.
[0004] In the related art, most traditional sewage treatment equipment is reinforced with a single concrete, but this reinforcement method can only solve the reinforcement of small sewage treatment equipment. For large sewage treatment equipment with a large load, the reinforcement effect of concrete is minimal. On the other hand, in order to facilitate transportation, some sewage treatment equipment is configured as prefabricated type and can be assembled at the construction site. However, the sizes of the modules of the prefabricated sewage treatment equipment are inconsistent and are all non-standard production, which is not conducive to modular production. Summary of the invention
[0005] The object of the present invention is to provide a reinforcement unit and sewage treatment equipment to solve at least one of the above technical problems.
[0006] In order to achieve the above-mentioned invention object, the technical solution adopted by the present invention is as follows:
[0007] A reinforcement unit and sewage treatment equipment of the present invention, the sewage treatment equipment comprises:
[0008] A plurality of processing units, each of which is a hexagonal ring structure, and the plurality of processing units form a honeycomb structure. The various processing units are interconnected through water pipes, and adjacent sides of two adjacent processing units share a same first connecting column. The processing units include six side panel modules, and the six side panel modules are detachably surrounded by the first connecting column to form a hexagonal mold cavity with open tops and bottoms. Each of the side panel modules includes at least two enclosures and at least one second connecting column, and adjacent sides of two adjacent enclosures are connected by the second connecting column. A reinforcement unit is provided in the hexagonal mold cavity, and the reinforcement unit includes a hollow reinforcement frame, and a plurality of pulling rods are evenly connected to the outer peripheral side of the reinforcement frame, and each of the pulling rods is connected to the second connecting column at one end away from the reinforcement frame.
[0009] Preferably, the second connecting column includes a first vertical plate extending vertically and a second vertical plate connected to the first vertical plate, the first vertical plate and the second vertical plate are in a T-shaped structure, and the second vertical plate is located on the inner side of the hexagonal mold cavity, and a first flange plate for connecting to the enclosure is provided at each longitudinal end of the first vertical plate, and a second flange plate is provided at the longitudinal end of the second vertical plate away from the first vertical plate, and the end of the pulling rod away from the reinforcement frame is connected to the second flange plate.
[0010] Preferably, the two first flange plates are each provided with a plurality of first connection holes for connecting to the enclosure, and the second flange plate is provided with a plurality of second connection holes for connecting to the pulling rod, and guide flanges bent toward the same side of the second flange plate are respectively provided at both longitudinal ends of the second flange plate.
[0011] Preferably, a first reinforcing plate is connected between the first vertical plate and the two second flange plates, and a second reinforcing plate is connected between the second vertical plate and the first flange plate and the second flange plate.
[0012] Preferably, the reinforcement frame includes six brackets and six third connecting columns, the six brackets are enclosed by the third connecting columns to form a hexagonal ring structure, the central axis of the reinforcement frame is consistent with the central axis of the hexagonal mold cavity, the adjacent ends of two adjacent brackets are connected by a third connecting column, and the pulling rod is connected to the third connecting column at one end close to the reinforcement frame.
[0013] Preferably, at least two reinforcement units are provided, and the at least two reinforcement units are arranged in an upper and lower interval in the hexagonal mold cavity, and the central axis of the reinforcement frames of the at least two reinforcement units is consistent with the central axis of the hexagonal mold cavity.
[0014] Preferably, the third connecting column includes a top plate and a bottom plate, three third vertical plates are arranged between the top plate and the bottom plate, the first longitudinal ends of the three third vertical plates are connected, the three third vertical plates are arranged at equal angles with the connected end as the center, the second longitudinal end of each of the third vertical plates is provided with a third flange plate, the lateral ends of the third flange plate are respectively connected to the top plate and the bottom plate, and the bracket is connected to the third flange plate.
[0015] More preferably, the enclosure includes a corrugated plate, and a fourth flange plate is provided on each of the four sides of the corrugated plate, the fourth flange plate is connected to the first flange plate, and a first sealing gasket is provided between the fourth flange plate and the first flange plate; the first connecting column is provided with three fifth flange plates, the fifth flange plate is connected to the fourth flange plate, and a second sealing gasket is provided between the fifth flange plate and the fourth flange plate.
[0016] Preferably, a first shielding flange bent toward the same side of the first flange plate for shielding the first sealing gasket is provided at each of the longitudinal ends of the first flange plate, and a second shielding flange bent toward the same side of the fifth flange plate for shielding the second sealing gasket is provided at each of the longitudinal ends of the fifth flange plate.
[0017] Preferably, the corrugated plate includes a first corrugated plate, a second corrugated plate and a third corrugated plate connected in sequence from bottom to top, the thickness of the first corrugated plate is greater than the thickness of the second corrugated plate, and the thickness of the second corrugated plate is greater than the thickness of the third corrugated plate.
[0018] Beneficial effects:
[0019] (1) The treatment units of the present invention can be prefabricated in advance, and the various treatment units are connected through water pipes to achieve the flow of sewage between the various treatment units, thereby achieving the purpose of purifying the sewage. The structure is simple and easy to use. It is constructed by prefabrication and later assembly, which can effectively shorten the construction period of the sewage treatment pool, simplify the construction process, reduce labor intensity, and reduce construction costs. It has the characteristics of off-site processing, easy transportation, short construction time, and reusability.
[0020] (2) The side panel module of the present invention includes at least two enclosures, which can increase the load capacity of the treatment unit and meet the needs of large-scale sewage treatment.
[0021] (3) The multiple processing units of the present invention are all hexagonal structures, which facilitates the assembly between units. Each unit is assembled through a first connecting column, which is convenient for installation, has no space waste, and has high space utilization.
[0022] (4) The present invention designs a reinforcement unit in the hexagonal mold cavity. The hollow reinforcement frame does not affect the installation of the processing equipment in the hexagonal mold cavity. A plurality of pulling rods connected to the processing unit are evenly arranged on the outer peripheral side of the reinforcement frame to increase the pulling stability, thereby forming a reliable reinforcement structure. The design of the reinforcement unit not only increases the supporting load of the processing unit to prevent the processing unit from breaking during the later maintenance of the processing unit, but also can provide stable support, thereby effectively realizing the reinforcement of the processing unit and improving the safety and stability of the processing unit. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 A schematic diagram of a treatment unit of a large-scale sewage treatment device provided by the present invention;
[0024] Figure 2 A schematic diagram of a large-scale sewage treatment device provided by the present invention in which multiple treatment units are combined into a honeycomb shape;
[0025] Figure 3A top view of a large-scale sewage treatment device provided by the present invention in which multiple treatment units are combined into a honeycomb shape;
[0026] Figure 4 A top view of a treatment unit of a large-scale sewage treatment device provided by the present invention;
[0027] Figure 5 An assembly diagram of a side plate module and a first connecting column of a large-scale sewage treatment device provided by the present invention;
[0028] Figure 6 for Figure 5 A partial enlarged view of the middle A;
[0029] Figure 7 for Figure 5 A partial enlarged view of point B in the middle;
[0030] Figure 8 A schematic diagram of a second connecting column of a large-scale sewage treatment device provided by the present invention;
[0031] Fig. 9 A cross-sectional view of a second connecting column of a large-scale sewage treatment device provided by the present invention;
[0032] Fig.10 A schematic diagram of a reinforcement unit of a large-scale sewage treatment device provided by the present invention;
[0033] Fig.11 A schematic diagram of a third connecting column of a large-scale sewage treatment device provided by the present invention;
[0034] Fig.12 A cross-sectional view of a third connecting column of a large-scale sewage treatment device provided by the present invention.
[0035] Reference numerals
[0036] 1-processing unit; 11-side panel module; 110-enclosure; 1101-corrugated plate; 1102-fourth flange plate; 1103-first sealing gasket; 1104-second sealing gasket; 111-second connecting column; 1110-first vertical plate; 1111-second vertical plate; 1112-first flange plate; 11120-first shielding flange; 11121-first connecting hole; 1113-second flange plate; 11130 -guide flange; 11131-second connecting hole; 1114-first reinforcing plate; 1115-second reinforcing plate; 12-first connecting column; 120-fifth flange plate; 1201-second shielding flange; 2-reinforcement unit; 21-reinforcement frame; 210-bracket; 211-third connecting column; 2110-top plate; 2111-bottom plate; 2112-third vertical plate; 2113-third flange plate; 22-pulling rod. DETAILED DESCRIPTION
[0037] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific implementation methods of the present invention will be described below with reference to the accompanying drawings. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings and other implementation methods can be obtained based on these drawings without creative work.
[0038] The technical solution of the present invention is described in detail below with specific embodiments.
[0039] Please also read Figures 1 to 12 The present invention provides a reinforcement unit and sewage treatment equipment. The sewage treatment equipment provided by the present invention includes a plurality of treatment units 1, each of which is a hexagonal ring structure, and the plurality of treatment units 1 form a honeycomb structure. The various treatment units 1 are connected through a water pipe, and the adjacent sides of two adjacent treatment units 1 share the same first connecting column 12. The treatment unit 1 includes six side panel modules 11, and the six side panel modules 11 are detachably surrounded by the first connecting column 12 to form a hexagonal mold cavity with open top and bottom. Each of the side panel modules 11 includes at least two enclosures 110 and at least one second connecting column 111, and the adjacent sides of two adjacent enclosures 110 are connected by the second connecting column 111; a reinforcement unit 2 is arranged in the hexagonal mold cavity, and the reinforcement unit 2 includes a reinforcement frame 21, and a plurality of pulling rods 22 are connected to the outer side of the reinforcement frame 21, and the end of each pulling rod 22 away from the reinforcement frame 21 is connected to the second connecting column 111.
[0040] In the present invention, the treatment unit 1 can be prefabricated in advance, and each treatment unit 1 is connected through a water pipe to realize the flow of sewage between each treatment unit 1, so as to achieve the purpose of purifying sewage. The structure is simple and easy to use. It is constructed by prefabrication and later assembly, which can effectively shorten the construction period of the sewage treatment pool, simplify the construction process, reduce labor intensity, and reduce construction costs. It has the characteristics of off-site processing, easy transportation, short construction time, and reusability. The side panel module 11 includes at least two enclosures 110, which can increase the load capacity of the treatment unit 1 and meet the needs of large-scale sewage treatment.
[0041] The multiple processing units 1 are all hexagonal structures, which is convenient for assembly between units. Each unit is assembled through the first connecting column 12, which is convenient to install, without space waste, and has high space utilization. By designing the reinforcement unit 2 in the hexagonal mold cavity, the hollow reinforcement frame 21 does not affect the installation of the processing equipment in the hexagonal mold cavity, and by evenly arranging multiple pulling rods 22 connected to the processing unit 1 on the outer peripheral side of the reinforcement frame 21, the pulling stability is increased, thereby forming a reliable reinforcement structure; the design of the reinforcement unit 2 not only increases the supporting load of the processing unit 1 during the later maintenance of the processing unit 1 to prevent the processing unit 1 from breaking, but also can provide stable support, effectively realize the reinforcement of the processing unit 1, and improve the safety and stability of the processing unit 1.
[0042] Preferably, the second connecting column 111 includes a vertically extending first vertical plate 1110 and a second vertical plate 1111 connected to the first vertical plate 1110, the first vertical plate 1110 and the second vertical plate 1111 are in a T-shaped structure, and the second vertical plate 1111 is located on the inner side of the hexagonal mold cavity, and a first flange plate 1112 for connecting with the enclosure 110 is provided at each longitudinal end of the first vertical plate 1110, a second flange plate 1113 is provided at the longitudinal end of the second vertical plate 1111 away from the first vertical plate 1110, and the end of the pulling rod 22 away from the reinforcement frame 21 is connected to the second flange plate 1113.
[0043] In the present invention, the first vertical plate 1110 and the second vertical plate 1111 are in a T-shaped structure, which increases the stability of the support of the second connecting column 111. The adjacent edges of the two adjacent enclosures 110 are connected to the first flange plate 1112, which is convenient for assembly and can increase the reliability of the connection. The pulling rod 22 is connected to the second flange plate 1113 of the second connecting column 111, which is not only convenient for assembly but also can achieve stable pulling of the side panel module, further improving the reinforcement effect of the processing unit 1.
[0044] Preferably, the two first flange plates 1112 are each provided with a plurality of first connecting holes 11121 for connecting to the enclosure 110, and the second flange plate 1113 is provided with a plurality of second connecting holes 11131 for connecting to the pulling rod 22, and guide flanges 11130 bent toward the same side of the second flange plate 1113 are respectively provided at both longitudinal ends of the second flange plate 1113.
[0045] In the present invention, the first flange plate 1112 and the enclosure 110 are connected by fasteners, and the pulling rod 22 and the second flange plate 1113 are also connected by fasteners. The first connecting hole 11121 and the second connecting hole 11131 are pre-designed to facilitate subsequent assembly and improve assembly efficiency. The fasteners are preferably screws or bolts. The setting of the guide flange 11130 facilitates the rapid installation of the pulling rod 22 with the second flange plate 1113, playing a guiding and limiting role.
[0046] Preferably, a first reinforcing plate 1114 is connected between the first vertical plate 1110 and the two second flange plates 1113 , and a second reinforcing plate 1115 is connected between the second vertical plate 1111 and the first flange plate 1112 and the second flange plate 1113 .
[0047] In the present invention, the first reinforcing plate 1114 and the second reinforcing plate 1115 are provided to improve the overall strength of the second connecting column 111 and achieve stable support.
[0048] Preferably, the reinforcement frame 21 includes six brackets 210 and six third connecting columns 211. The six brackets 210 are enclosed by the third connecting columns 211 to form a hexagonal ring structure. The central axis of the reinforcement frame 21 is consistent with the central axis of the hexagonal mold cavity. The adjacent ends of two adjacent brackets 210 are connected by a third connecting column 211, and the pulling rod 22 is connected to the third connecting column 211 at one end close to the reinforcement frame 21.
[0049] In the present invention, the reinforcement frame 21 is designed as a hexagonal ring structure, and the hexagonal ring structure is designed with six pulling rods 22, which further improves the pulling stability and reliability of the reinforcement unit 2. The adjacent ends of two adjacent brackets 210 and the pulling rods 22 are connected together through a third connecting column 211, which ensures reliable and stable connection compared to the traditional slot assembly.
[0050] Preferably, at least two reinforcement units 2 are provided, and the at least two reinforcement units 2 are arranged in an upper and lower interval in the hexagonal mold cavity, and the central axis of the reinforcement frame 21 of the at least two reinforcement units 2 is consistent with the central axis of the hexagonal mold cavity.
[0051] In the present invention, since the height of the processing unit 1 is relatively high, the safety and stability of the processing unit 1 are further improved by arranging at least two reinforcement units 2 in the vertical direction within the hexagonal mold cavity; the central axis of the reinforcement frame 21 of at least two reinforcement units 2 is consistent with the central axis of the hexagonal mold cavity, thereby ensuring that the layout within the hexagonal mold cavity is neat and does not affect the arrangement of the processing equipment within the cavity.
[0052] Preferably, the third connecting column 211 includes a top plate 2110 and a bottom plate 2111, three third vertical plates 2112 are arranged between the top plate 2110 and the bottom plate 2111, the first longitudinal ends of the three third vertical plates 2112 are connected, the three third vertical plates 2112 are arranged at equal angles with one connected end as the center, and the second longitudinal end of each of the third vertical plates 2112 is provided with a third flange plate 2113, the lateral ends of the third flange plate 2113 are respectively connected to the top plate 2110 and the bottom plate 2111, and the bracket 210 is connected to the third flange plate 2113.
[0053] In the present invention, the angle formed between two adjacent third vertical plates 2112 is 120 degrees, which can improve the stability of the third connecting column 211; the bracket 210 and the third flange plate 2113 are connected by fasteners, wherein both ends of the bracket 210 and the third flange plate 2113 are provided with mounting holes for fasteners to pass through, which can improve assembly efficiency.
[0054] Preferably, the enclosure 110 includes a corrugated plate 1101, and a fourth flange plate 1102 is respectively provided on the four sides of the corrugated plate 1101, and the fourth flange plate 1102 is connected to the first flange plate 1112, and a first sealing gasket 1103 is provided between the fourth flange plate 1102 and the first flange plate 1112; the first connecting column 12 is provided with three fifth flange plates 120, and the fifth flange plate 120 is connected to the fourth flange plate 1102, and a second sealing gasket 1104 is provided between the fifth flange plate 120 and the fourth flange plate 1102.
[0055] In the present invention, a first sealing gasket 1103 is provided between the fourth flange plate 1102 and the first flange plate 1112, and a second sealing gasket 1104 is provided between the fifth flange plate 120 and the fourth flange plate 1102, so that the sealing performance of the connection can be improved compared with the existing connection method; in addition, the fourth flange plate 1102 and the first flange plate 1112, as well as the fifth flange plate 120 and the fourth flange plate 1102 are connected by fasteners.
[0056] Preferably, a first shielding flange 11120 bent toward the same side of the first flange plate 1112 and used for shielding the first sealing gasket 1103 is provided at each longitudinal end of the first flange plate 1112, and a second shielding flange 1201 bent toward the same side of the fifth flange plate 120 and used for shielding the second sealing gasket 1104 is provided at each longitudinal end of the fifth flange plate 120.
[0057] In the present invention, the first sealing pad 1103 and the second sealing pad 1104 are both made of rubber material. By providing the first shielding flange 11120 and the second shielding flange 1201, the first sealing pad 1103 and the second sealing pad 1104 can be shielded from the sun, thereby improving the service life of the first sealing pad 1103 and the second sealing pad 1104.
[0058] Preferably, the corrugated plate 1101 includes a first corrugated plate, a second corrugated plate and a third corrugated plate connected in sequence from bottom to top, the thickness of the first corrugated plate is greater than the thickness of the second corrugated plate, and the thickness of the second corrugated plate is greater than the thickness of the third corrugated plate.
[0059] In the present invention, since the height of the processing unit 1 is very high, the enclosure 110 is provided with three corrugated plates 1101 of different thicknesses so that the corrugated plates 1101 have different strengths at different heights. The thickness of the first corrugated plate at the bottom is the largest and has the greatest strength, and can withstand a greater load pressure, thereby further improving the safety of the processing unit 1. Compared with the traditional method of increasing the thickness of the entire corrugated plate 1101, the enclosure 110 has a lighter weight and a longer service life.
[0060] The above is a detailed description of an embodiment of a reinforcement unit and sewage treatment equipment provided by the present invention. Specific examples are used herein to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only used to help understand the core idea of the present invention. It should be pointed out that for ordinary technicians in this technical field, without departing from the principles of the present invention, the present invention can also be improved and modified in a number of ways, and these improvements and modifications also fall within the scope of protection of the claims of the present invention.
Claims
1. A sewage treatment equipment, characterized in that: Reinforcement unit, the reinforcement unit includes: A reinforcement frame, the reinforcement frame is configured as a regular hexagon; Pulling rods, six of which are configured and all are fixedly connected to the reinforcement frame; One end of the pulling rod away from the reinforcement frame is used to connect the side panel module; The reinforcement frame includes six brackets and six third connecting columns; The adjacent ends of any two adjacent brackets and the pulling rod are connected via the third connecting column; The third connecting column includes a top plate and a bottom plate, and a plurality of third vertical plates are arranged between the top plate and the bottom plate; One side of each third vertical plate is integrated and fixedly connected together, and the side of the integrated connection is defined as the central axis. Each third vertical plate is arranged with equal angles around the central axis; It also includes a processing unit, and the reinforcement unit is arranged in a regular polygonal processing unit mold cavity; There are multiple processing units, each of which is configured as a regular hexagon, and the multiple processing units form a honeycomb structure. The processing units are connected through water pipes. The processing units include a first connecting column, and the adjacent parts of two adjacent processing units share the same first connecting column; The processing unit includes six side panel modules, which are detachably surrounded by the first connecting column to form a hexagonal mold cavity with open top and bottom, each side panel module includes at least two enclosures and at least one second connecting column, and adjacent parts of two adjacent enclosures are connected by the second connecting column; The second connecting column includes a vertically extending first vertical plate and a second vertical plate connected to the first vertical plate, the first vertical plate is perpendicular to the second vertical plate, the first vertical plate and the second vertical plate are in a T-shaped structure, and the second vertical plate is located in the mold cavity of the processing unit.
2. A sewage treatment equipment according to claim 1, characterized in that: A third flange plate is disposed at one end of each of the third vertical plates away from the central axis, and two ends of the third flange plate along the axial direction parallel to the central axis are fixedly connected to the top plate and the bottom plate respectively.
3. A sewage treatment equipment according to claim 2, characterized in that: The bracket is connected to the third flange plate via a fastener, and both ends of the bracket and the third flange plate are provided with mounting holes for the fasteners to pass through.
4. A sewage treatment equipment according to claim 1, characterized in that: A first flange plate for connecting to the enclosure is provided at each of the longitudinal ends of the first vertical plate, a second flange plate is provided at the longitudinal end of the second vertical plate away from the first vertical plate, and the end of the pulling rod of the reinforcement unit away from the reinforcement frame is connected to the second flange plate.
5. A sewage treatment equipment according to claim 4, characterized in that: A first reinforcing plate is connected between the first vertical plate and the two second flange plates, and a second reinforcing plate is connected between the second vertical plate and the first flange plate and the second flange plate.
Citation Information
Patent Citations
Assembly type sewage treatment tank
CN210855342U
Sewage treatment equipment
CN216808163U