Subpackaging device for biological flocculant production
Through the combination of the fine packaging mechanism and the rough packaging mechanism, the filling amount of flocculant materials is controlled by using hydraulic rods and spiral blades, which solves the problems of large weight deviation and low efficiency in the traditional packaging method, and achieves rapid and precise packaging of flocculant.
Patent Information
- Application Number
- CN202421833654.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The traditional flocculant aliquoting method has the problem of large weight deviation or low efficiency, and it is difficult to ensure the consistency and efficiency of filling weight at the same time.
Using a package device including a fine package mechanism and a rough package mechanism, the push plate is driven to extrude the material through a hydraulic rod, and the filling amount is accurately controlled by combining spiral blades and weighing sensors, and efficient package is achieved by combining with the transportation mechanism.
The rapid and precise filling of flocculant materials is achieved, ensuring the accuracy of filling weight and the improvement of packaging efficiency.
Smart Images

Figure CN223162024U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sewage treatment, in particular to a sub-packaging device for producing biological flocculants. Background Technique
[0002] Sewage treatment is a process of purifying sewage to meet the water quality requirements for discharging into a certain water body or for reuse. Sewage treatment is widely used in various fields such as construction, agriculture, transportation, energy, petrochemical, environmental protection, urban landscape, medical care, and catering, and is also increasingly entering the daily lives of ordinary people.
[0003] In the process of sewage treatment, biological flocculants are formulated into aqueous solutions and added to the wastewater to remove a large amount of suspended solids in the wastewater, thereby achieving the effect of water treatment. During the production process of the flocculant, it is necessary to sub-package the flocculant. The traditional filling method is to directly add materials into the barrel through equipment. To ensure consistent filling weight, a weighing unit is generally set at this time, and the discharge port is large, so the weight deviation of each filling barrel is large. If the discharge port is small, although the problem of large weight deviation can be solved, the filling efficiency is low. Therefore, a sub-packaging device for producing biological flocculants is proposed for the above problems. Content of the Utility Model
[0004] The purpose of the utility model is to provide a sub-packaging device for producing biological flocculants to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] As an optional solution of a sub-packaging device for producing biological flocculants of the utility model, wherein: a sub-packaging device for producing biological flocculants includes a support frame,
[0007] A roughly sub-packaging mechanism and a fine sub-packaging mechanism are installed on one side of the support frame and are distributed left and right. The outer sides of the roughly sub-packaging mechanism and the material conveying pipe are both communicated with a material conveying pipe for conveying materials;
[0008] A blocking component for blocking the discharge port of the roughly sub-packaging mechanism is also fixedly connected to one side of the support frame;
[0009] A transportation mechanism is arranged below the support frame;
[0010] The fine sub-packaging mechanism includes a first material hopper, a first motor and a rotating shaft. The bottom of the first material hopper is fixedly connected with a thin discharge nozzle, and the outer side of the thin discharge nozzle is fixedly connected with the support frame;
[0011] A first motor is fixedly connected inside the first hopper. The end of the main shaft of the first motor is fixedly connected with a rotating shaft, and evenly distributed spiral blades are fixedly connected to the outer side of the rotating shaft. The outer sides of the spiral blades are in close contact with the inner wall of the thin discharge nozzle. The outer side of the first hopper is communicated with a conveying pipe;
[0012] The rough packaging mechanism includes a rough hopper, a hydraulic rod and a push plate. The outer side of the rough hopper is fixedly connected to the support frame. A hydraulic rod is fixedly connected inside the rough hopper, and the free end of the hydraulic rod is fixedly connected with a push plate.
[0013] As an optional scheme of the packaging device for producing a biological flocculant according to the present invention, wherein: a vertically arranged blocking plate is fixedly connected to one side above the push plate.
[0014] In the process of sewage treatment, the biological flocculant is formulated into an aqueous solution and added to the wastewater to remove a large amount of suspended solids in the wastewater, so as to achieve the effect of water treatment. During the production process of the flocculant, it is necessary to package the flocculant. The traditional filling method is to directly add materials into the barrel through equipment. To ensure that the filling weight is consistent, a weighing unit is generally set at this time. However, the discharge port is large, and the weight deviation of each filling barrel is large at this time. If the discharge port is small, although the problem of large weight deviation can be solved, the filling efficiency is low. When in use, it is externally powered. This device is provided with a fine packaging mechanism and a rough packaging mechanism. The push plate inside the inner cavity of the rough hopper and the bottom of the rough hopper, the amount of flocculant material in this section is a fixed value. When packaging, by opening the blocking component, under the action of the hydraulic rod, the push plate is extruded to move downward, and at this time, a certain amount of flocculant material can be quickly extruded into the lower packaging barrel to achieve preliminary packaging. The fine packaging mechanism on one side can achieve fine feeding. At this time, not only the packaging efficiency is ensured, but also the filling weight of the flocculant material can be accurately ensured. During the fine feeding process, the inner feeding channel of the spiral blade is slender. The rotating shaft is driven to rotate by the first motor, and the rotating shaft drives the spiral blade to rotate, so that the flocculant can fall. And after the weighing sensor detects that the weight is appropriate, the rotating shaft stops rotating to complete the feeding work.
[0015] As an optional scheme of the packaging device for producing a biological flocculant according to the present invention, wherein: the blocking component includes a connecting plate, a support platform and a second motor. The top of the connecting plate is fixedly connected to the support frame. One side of the bottom of the connecting plate is fixedly connected with a support platform. A second motor is fixedly connected above the support platform. The end of the main shaft of the second motor is fixedly connected with a rotating plate, and a blocking plate is fixedly connected to one side of the rotating plate.
[0016] As an alternative solution of the sub-packaging device for producing a biological flocculant according to the present utility model, wherein: a rubber plate is fixedly connected above the plugging plate.
[0017] As an alternative solution of the sub-packaging device for producing a biological flocculant according to the present utility model, wherein: the rear side of the rubber plate is arranged as an inclined surface.
[0018] During the rough feeding process, the provided plugging plate and rubber plate can be located below the rough feeding hopper, thereby preventing the material from directly falling when it enters the rough feeding hopper. At this time, the approximate planning of the material weight can be realized, which is convenient for subsequent precise weighing and addition.
[0019] As an alternative solution of the sub-packaging device for producing a biological flocculant according to the present utility model, wherein: the transportation mechanism includes a base, a third motor and a threaded shaft. One end above the base is fixedly connected with a third motor, the end of the main shaft of the third motor is fixedly connected with a threaded shaft, and the other end of the threaded shaft is rotatably connected with the protruding part at one end of the base. A moving sleeve is spirally connected to the outside of the threaded shaft, a sliding table is fixedly connected above the moving sleeve, a weighing sensor is fixedly connected above the sliding table, and a limiting sleeve is fixedly connected to the upper end surface of the weighing sensor, and a sub-packaging barrel is arranged inside the limiting sleeve.
[0020] As an alternative solution of the sub-packaging device for producing a biological flocculant according to the present utility model, wherein: a guide rod is arranged on the front side of the threaded shaft, and both ends of the guide rod are fixedly connected with the protruding parts of the base, and the outside of the guide rod is slidably connected with the moving sleeve.
[0021] As an alternative solution of the sub-packaging device for producing a biological flocculant according to the present utility model, wherein: the number of the moving sleeves is four. Internal threads are arranged inside the two moving sleeves at the rear side, and the inside of the two moving sleeves at the front side is smooth.
[0022] During the actual use process, the provided third motor drives the threaded shaft to rotate, and the threaded shaft drives the moving sleeve to move, so that the sliding table can be moved, which is convenient for moving the sub-packaging barrel above the sliding table. At this time, it is convenient to sub-package the sub-packaging barrel, and the provided limiting sleeve can limit the sub-packaging barrel, and the weighing sensor can weigh the sub-packaging barrel.
[0023] Compared with the prior art, the beneficial effects of the present utility model are:
[0024] When the utility model is in use, the device is provided with a fine packaging mechanism and a rough packaging mechanism. The distance between the push plate in the inner cavity of the rough hopper and the bottom of the rough hopper is a fixed value for the flocculant material. During packaging, by opening the plugging component, the push plate is extruded to move downward under the action of the hydraulic rod. At this time, a certain amount of flocculant material can be quickly extruded into the lower packaging barrel below to achieve preliminary packaging. The fine packaging mechanism on one side can achieve fine feeding. At this time, not only the packaging efficiency is ensured, but also the filling weight of the flocculant material can be accurately ensured;
[0025] During the fine feeding process, the inner feeding channel of the spiral blade is slender. The first motor drives the rotating shaft to rotate, and the rotating shaft drives the spiral blade to rotate, so as to realize the falling of the flocculant. And after the weighing sensor detects that the weight is appropriate, the rotating shaft stops rotating to complete the feeding work;
[0026] During the rough feeding process, the plugging plate and the rubber plate provided can be located below the rough hopper, so as to avoid directly falling when the material enters the inner part of the rough hopper. At this time, the approximate planning of the material weight can be realized, which is convenient for subsequent fine weighing and adding;
[0027] In the actual use process, the third motor drives the threaded shaft to rotate, and the threaded shaft drives the moving sleeve to move, so that the sliding table can be moved, which is convenient for moving the packaging barrel above the sliding table. At this time, it is convenient to package the packaging barrel, and the limiting sleeve provided can limit the packaging barrel, and the weighing sensor can weigh the packaging barrel. Description of the Drawings
[0028] Figure 1 It is a schematic structural diagram of the transportation mechanism of the utility model;
[0029] Figure 2 It is a schematic structural diagram of the whole utility model;
[0030] Figure 3 It is a schematic structural diagram of the fine packaging mechanism of the utility model;
[0031] Figure 4 It is a schematic structural diagram of the rough packaging mechanism of the utility model;
[0032] Figure 5 It is a schematic structural diagram of the plugging component of the utility model;
[0033] Figure 6 It is a side view of the rubber plate of the utility model.
[0034] In the figure: 1, support frame; 2, fine packaging mechanism; 201, first material hopper; 202, first motor; 203, rotating shaft; 204, spiral blade; 205, thin feeding nozzle; 3, rough packaging mechanism; 301, rough feeding hopper; 302, hydraulic rod; 303, push plate; 304, blocking plate; 4, feeding pipe; 5, plugging component; 501, connecting plate; 502, support platform; 503, second motor; 504, rotating plate; 505, plugging plate; 506, rubber plate; 6, transportation mechanism; 601, base; 602, third motor; 603, threaded shaft; 604, guide rod; 605, sliding table; 606, weighing sensor; 607, limiting sleeve; 608, packaging barrel; 609, moving sleeve. Detailed implementation manners
[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0036] Embodiment 1
[0037] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The present invention provides a technical solution:
[0038] A packaging device for the production of biological flocculants, including a support frame 1,
[0039] On one side of the above-mentioned support frame 1, a rough packaging mechanism 3 and a fine packaging mechanism 2 are installed in a left-right distribution, and the outer sides of the above-mentioned rough packaging mechanism 3 and the feeding pipe 4 are both connected to a feeding pipe 4 for transporting materials;
[0040] On one side of the above-mentioned support frame 1, a plugging component 5 for plugging the feeding port of the rough packaging mechanism 3 is also fixedly connected;
[0041] Below the above-mentioned support frame 1, a transportation mechanism 6 is arranged;
[0042] The above-mentioned fine packaging mechanism 2 includes a first material hopper 201, a first motor 202 and a rotating shaft 203. The bottom of the above-mentioned first material hopper 201 is fixedly connected with a thin feeding nozzle 205, and the outer side of the above-mentioned thin feeding nozzle 205 is fixedly connected with the support frame 1;
[0043] A first motor 202 is fixedly connected inside the above-mentioned first hopper 201. The end of the main shaft of the first motor 202 is fixedly connected with a rotating shaft 203. A uniformly distributed spiral blade 204 is fixedly connected to the outer side of the rotating shaft 203. The outer side of the spiral blade 204 is in close contact with the inner wall of the thin discharging nozzle 205. The outer side of the first hopper 201 is communicated with the feeding pipe 4;
[0044] The above-mentioned rough packaging mechanism 3 includes a rough hopper 301, a hydraulic rod 302 and a push plate 303. The outer side of the rough hopper 301 is fixedly connected to the support frame 1. A hydraulic rod 302 is fixedly connected inside the rough hopper 301. The free end of the hydraulic rod 302 is fixedly connected with a push plate 303.
[0045] One side above the above-mentioned push plate 303 is fixedly connected with a vertically arranged baffle 304.
[0046] In the process of sewage treatment, the bioflocculant is formulated into an aqueous solution and added to the wastewater to remove a large amount of suspended solids in the wastewater, so as to achieve the effect of water treatment. During the production process of the flocculant, the flocculant needs to be packaged. The traditional filling method is to directly add materials into the barrel through equipment. To ensure that the filling weight is consistent, a weighing unit is generally set at this time. The discharging port is large, and the weight deviation of each filling barrel is large at this time. The discharging port is small. Although the problem of large weight deviation can be solved, the filling efficiency is low. When in use, it is externally powered. The device is provided with a fine packaging mechanism 2 and a rough packaging mechanism 3. The push plate 303 in the inner cavity of the rough hopper 301 and the bottom of the rough hopper 301, the flocculant material in this section of distance is a fixed value. When packaging, by opening the plugging component 5, under the action of the hydraulic rod 302, the push plate 303 is extruded to move downward. At this time, a certain amount of flocculant material can be quickly extruded into the inner part of the lower packaging barrel 608 to achieve pre-packaging. The fine packaging mechanism 2 on one side can achieve fine feeding. At this time, not only the packaging efficiency is ensured, but also the filling weight of the flocculant material can be accurately ensured. During the fine feeding process, the feeding channel inside the spiral blade 204 is slender. The first motor 202 drives the rotating shaft 203 to rotate, and the rotating shaft 203 drives the spiral blade 204 to rotate, so as to realize the falling of the flocculant. And after the weighing sensor 606 detects that the weight is appropriate, the rotating shaft 203 stops rotating to complete the feeding work;
[0047] In this embodiment, during the downward movement of the push plate 303, it drives the baffle 304 on one side to move, and the baffle 304 always blocks the connection between the feeding pipe 4 and the rough hopper 301 to prevent the flocculant material from continuously falling and being located above the push plate 303. One side of the feeding pipe 4 is externally connected with an automatic feeding device, which is an existing product, so no more details will be described here.
[0048] Example 2
[0049] This embodiment is an improvement on Embodiment 1. Please refer to Figure 5 , specifically, the above-mentioned plugging assembly 5 includes a connecting plate 501, a support platform 502 and a second motor 503. The top of the above-mentioned connecting plate 501 is fixedly connected to the support frame 1. One side of the bottom of the above-mentioned connecting plate 501 is fixedly connected to a support platform 502. A second motor 503 is fixedly connected above the above-mentioned support platform 502. The end of the main shaft of the above-mentioned second motor 503 is fixedly connected to a rotating plate 504, and a plugging plate 505 is fixedly connected to one side of the rotating plate 504.
[0050] A rubber plate 506 is fixedly connected above the above-mentioned plugging plate 505.
[0051] The rear side of the above-mentioned rubber plate 506 is arranged as an inclined surface.
[0052] During the rough blanking process, the provided plugging plate 505 and rubber plate 506 can be located below the rough blanking hopper 301, thereby preventing the material from falling directly when it enters the rough blanking hopper 301. At this time, the approximate planning of the material weight can be realized, which is convenient for subsequent fine weighing and adding;
[0053] In this embodiment, during the rough blanking process, the second motor 503 drives the rotating plate 504 to rotate. The rotating plate 504 drives the plugging plate 505 to rotate and separate from the discharge port of the rough blanking hopper 301. At this time, the smooth falling of the material can be ensured. And when plugging, one side of the rubber plate 506 is arranged obliquely. At this time, it can play a guiding role to ensure that the rubber plate 506 is in close contact with the discharge port of the rough blanking hopper 301 and prevent the material from spilling.
[0054] Example 3
[0055] This embodiment is an improvement on Embodiment 2. Please refer to Figure 1 , specifically, the above-mentioned transportation mechanism 6 includes a base 601, a third motor 602 and a threaded shaft 603. One end of the above-mentioned base 601 is fixedly connected with a third motor 602 above. The end of the main shaft of the above-mentioned third motor 602 is fixedly connected with a threaded shaft 603. The other end of the threaded shaft 603 is rotatably connected to the protruding part at one end of the base 601. A moving sleeve 609 is spirally connected to the outside of the above-mentioned threaded shaft 603. A sliding table 605 is fixedly connected above the above-mentioned moving sleeve 609. A weighing sensor 606 is fixedly connected above the above-mentioned sliding table 605. The upper end surface of the above-mentioned weighing sensor 606 is fixedly connected with a limiting sleeve 607, and a dispensing barrel 608 is arranged inside the limiting sleeve 607.
[0056] A guide rod 604 is provided on the front side of the above-mentioned threaded shaft 603, and both ends of the guide rod 604 are fixedly connected to the raised portions of the base 601. The outer side of the guide rod 604 is slidably connected to the moving sleeve 609.
[0057] The number of the above-mentioned moving sleeves 609 is four. Internal threads are provided on the inner sides of the two moving sleeves 609 at the rear side, and the interiors of the two moving sleeves 609 at the front side are smooth.
[0058] During actual use, the third motor 602 provided drives the threaded shaft 603 to rotate, and the threaded shaft 603 drives the moving sleeve 609 to move, so that the sliding table 605 can be moved, facilitating the movement of the dispensing barrel 608 above the sliding table 605. At this time, it is convenient to perform dispensing on the dispensing barrel 608. Moreover, the limiting sleeve 607 provided can limit the dispensing barrel 608, and the weighing sensor 606 can perform weighing processing on the dispensing barrel 608;
[0059] In this embodiment, the guide rod 604 provided cooperates with the moving sleeve 609 at the front side to guide the sliding table 605 above, ensuring the stable sliding of the sliding sleeve 605. The interior of the moving sleeve 609 at the front side is smooth, and thus it can slide stably with the guide rod 604.
[0060] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0061] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A dispensing device for producing a biological flocculant, characterized in that: It includes a support frame (1), On one side of the support frame (1), a roughly dispensing mechanism (3) and a fine dispensing mechanism (2) are installed and distributed left and right. The outer sides of the roughly dispensing mechanism (3) and the material conveying pipe (4) are both communicated with a material conveying pipe (4) for conveying materials; On one side of the support frame (1), a blocking component (5) for blocking the discharge port of the roughly dispensing mechanism (3) is also fixedly connected; Below the support frame (1), a transportation mechanism (6) is arranged; The fine dispensing mechanism (2) includes a first material hopper (201), a first motor (202) and a rotating shaft (203). The bottom of the first material hopper (201) is fixedly connected with a fine discharge nozzle (205), and the outer side of the fine discharge nozzle (205) is fixedly connected with the support frame (1); Inside the first material hopper (201), a first motor (202) is fixedly connected. The end of the main shaft of the first motor (202) is fixedly connected with a rotating shaft (203), and evenly distributed spiral blades (204) are fixedly connected to the outer side of the rotating shaft (203). The outer side of the spiral blades (204) is in close contact with the inner wall of the fine discharge nozzle (205). The outer side of the first material hopper (201) is communicated with the material conveying pipe (4); The roughly dispensing mechanism (3) includes a rough discharge hopper (301), a hydraulic rod (302) and a push plate (303). The outer side of the rough discharge hopper (301) is fixedly connected with the support frame (1). Inside the rough discharge hopper (301), a hydraulic rod (302) is fixedly connected, and the free end of the hydraulic rod (302) is fixedly connected with a push plate (303).
2. The dispensing device for producing a biological flocculant according to claim 1, characterized in that: On one side above the push plate (303), a vertically arranged blocking plate (304) is fixedly connected.
3. A dispensing device for producing a biological flocculant according to claim 1, characterized in that: The blocking component (5) includes a connecting plate (501), a support platform (502) and a second motor (503). The top of the connecting plate (501) is fixedly connected with the support frame (1). On one side of the bottom of the connecting plate (501), a support platform (502) is fixedly connected. Above the support platform (502), a second motor (503) is fixedly connected. The end of the main shaft of the second motor (503) is fixedly connected with a rotating plate (504), and on one side of the rotating plate (504), a blocking plate (505) is fixedly connected.
4. A dispensing device for producing a biological flocculant according to claim 3, characterized in that: Above the blocking plate (505), a rubber plate (506) is fixedly connected.
5. A dispensing device for producing a biological flocculant according to claim 4, characterized in that: The rear side of the rubber plate (506) is arranged as an inclined surface.
6. The dispensing device for producing a biological flocculant according to claim 1, characterized in that: The transport mechanism (6) includes a base (601), a third motor (602), and a threaded shaft (603). One end above the base (601) is fixedly connected to the third motor (602). The end of the main shaft of the third motor (602) is fixedly connected to the threaded shaft (603), and the other end of the threaded shaft (603) is rotatably connected to the protruding part at one end of the base (601). A moving sleeve (609) is helically connected to the outside of the threaded shaft (603). A sliding table (605) is fixedly connected above the moving sleeve (609). A weighing sensor (606) is fixedly connected above the sliding table (605), and a limiting sleeve (607) is fixedly connected to the upper end surface of the weighing sensor (606). A dispensing barrel (608) is arranged inside the limiting sleeve (607).
7. A dispensing device for producing a biological flocculant according to claim 6, characterized in that: A guide rod (604) is arranged on the front side of the threaded shaft (603), and both ends of the guide rod (604) are fixedly connected to the protruding parts of the base (601). The outside of the guide rod (604) is slidably connected to the moving sleeve (609).
8. A dispensing device for the production of a biological flocculant according to claim 6, characterized in that: The number of the moving sleeves (609) is four. Internal threads are arranged inside the two moving sleeves (609) at the rear side, and the interiors of the two moving sleeves (609) at the front side are smooth.