A cleaning and scraping device for bottom-attached organisms in an octopus breeding pond

CN224819213UActive Publication Date: 2026-10-09GENGHAI MUYANG (HAINAN) INVESTMENT CO LTD
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Patent Information

Application Number
CN202522330715.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-10-09
Estimated Expiration
2035-11-03

AI Technical Summary

Technical Problem

[0002]东风螺具有凉血止血,养阴润燥的功效,其螺肉丰腴细腻,味道鲜美,它富含蛋白质、维生素和人体必需的氨基酸和微量元素,是典型的高蛋白、低脂肪、高钙质的天然动物性保健食品,人工培育东风螺时,育苗池因为东风螺生长活动产生的排泄物、饲料残渣等,会导致育苗池的水质营养较高,进而池底会生长一些附着生物,还有污泥等堆积,为此,就需要一种东风螺育苗池底附着生物清理刮擦装置

Benefits of technology

本实用新型通过设置的行走组件、收集组件和抽水组件,可以实现通过两个行走组件的协同工作,可以实现座体在育苗池底部直行和转向,进而使得座体能够在整个育苗池底部移动,以保证本装置的清理范围,通过抽水组件和收集组件,可以将清理过程中产生的污水抽出,并且进行收集,可以避免清理后一段时间的沉淀,污泥重新落回育苗池底部,进而降低了清理频率,还可以将育苗池底部的水泵送至育苗池顶部,以实现池底氧含量低的水流动至育苗池顶部,而育苗池顶部含氧量高的水下沉至池底,以保证东风螺苗的正常生长。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of archachatina, specifically is a kind of archachatina fry pond bottom attached organism cleaning scraping device, comprising: seat, the cavity is opened in the seat, the accommodating groove is opened in the seat bottom;Two walking components, two the walking components are set on the two side walls of seat;Scrape off component, the scrape off component is set in accommodating groove;Cleaning component, the cleaning component rotation is set on the inner wall of accommodating groove, the utility model can be extracted by water pumping component and collection component, and the sewage generated in cleaning process can be extracted, and collection can be carried out, the sediment of a period of time after cleaning can be avoided, sludge falls back to fry pond bottom again, to reduce the cleaning frequency further, water in fry pond bottom can also be pumped to fry pond top, to realize that the water flow with low oxygen content in pond bottom flows to fry pond top, and the water with high oxygen content in fry pond top sinks to pond bottom, to ensure the normal growth of archachatina fry.
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Description

Technical Field

[0001] This utility model relates to the field of East Wind Snail farming technology, specifically a device for cleaning and scraping off attached organisms at the bottom of an East Wind Snail nursery pond. Background Technology

[0002] The East Wind Snail (Triplophysa pulcherrima) has the effects of cooling the blood and stopping bleeding, nourishing yin and moisturizing dryness. Its snail meat is plump and delicate, with a delicious taste. It is rich in protein, vitamins, essential amino acids and trace elements, and is a typical high-protein, low-fat, high-calcium natural animal health food. When artificially cultivating East Wind Snails, the excrement and feed residue produced by the snails' growth and activities in the nursery pond will lead to high nutrient levels in the water, resulting in the growth of some attached organisms and the accumulation of sludge at the bottom of the pond. Therefore, a scraping device for cleaning attached organisms at the bottom of the East Wind Snail nursery pond is needed. In existing technologies, most cleaning devices require human intervention. Some use high-end equipment, which only requires control of the equipment to clean the bottom of the pond. Lower-end equipment requires manual entry into the seedling pond and the assistance of the cleaning equipment to complete the bottom cleaning. Both types of equipment have low levels of automation and often require a long preparation time when cleaning is needed. Utility Model Content

[0003] The purpose of this utility model is to provide a biological cleaning and scraping device for the bottom of a snail seedling pond, so as to solve the problems mentioned in the background art.

[0004] The technical solution of this utility model is: a biological cleaning and scraping device for the bottom of a snail seedling pond, comprising: The seat body has a cavity inside and a receiving groove at the bottom. Two walking components are disposed on two side walls of the seat body; A scraping assembly disposed within a receiving groove; A cleaning component is rotatably mounted on the inner wall of a receiving groove, and the cleaning component is connected to two traveling components; A water pumping assembly is disposed on the top of the base body and is connected to the receiving tank; A collection component, which is connected to a pumping component, is used to collect sludge.

[0005] Preferably, the walking component includes: A driving wheel and a driven wheel, both of which are rotatably mounted on the side wall of the seat body; Tracks, which are fitted onto the drive wheel and the driven wheel.

[0006] Preferably, the walking component further includes: Multiple support wheels are rotatably mounted on the side wall of the seat, and each support wheel abuts against the track.

[0007] Preferably, the walking component further includes: The motor is fixed inside the cavity, and the output shaft and drive wheel of the motor are fixed.

[0008] Preferably, the cleaning component includes: The first rotating shaft and the second rotating shaft are rotatably mounted on the inner wall of the receiving groove. The end of the first rotating shaft is fixed to one of the support wheels on one side of the seat, and the end of the second rotating shaft is fixed to one of the support wheels on the other side of the seat. Two brush rollers are respectively fixedly sleeved on the first rotating shaft and the second rotating shaft.

[0009] Preferably, the scraping assembly includes: A scraper, which is fixed at an angle to the inner wall of the receiving groove.

[0010] Preferably, the pumping assembly includes: A pump box, which is fixed to the top of the base, and a sludge pump is installed inside the pump box; The first pipe body is installed at the output port of the sludge pump; The second pipe is installed at the inlet of the sludge pump and penetrates the inner wall of the top of the receiving tank.

[0011] Preferably, the collection component includes: A collection box, wherein a filter screen is fixed at the bottom of the collection box, and a first tube penetrates the top of the filter screen, and the first tube and the filter screen are fixed together; Multiple buoys, all of which are fixed to the side wall of the collection box.

[0012] Preferred options also include: Four fixing rods, all of which are fixed to the top of the filter screen; The photovoltaic panel is fixed to four fixing rods; A battery box is fixed to the top of the base, and a photovoltaic energy storage mechanism is installed inside the battery box.

[0013] This utility model provides an improved biological cleaning and scraping device for the bottom of a snail seedling pond, which has the following improvements and advantages compared with the prior art: This invention, through the inclusion of a walking component, a collecting component, and a pumping component, enables the seat to move straight and turn at the bottom of the seedling pond through the coordinated operation of the two walking components. This allows the seat to move throughout the entire bottom of the seedling pond, ensuring the cleaning range of the device. The pumping and collecting components extract and collect the wastewater generated during the cleaning process, preventing sedimentation and sludge from falling back to the bottom of the seedling pond after cleaning, thus reducing the cleaning frequency. The device also pumps water from the bottom of the seedling pond to the top, allowing water with low oxygen content at the bottom to flow to the top, while water with high oxygen content at the top sinks to the bottom, ensuring the normal growth of the snail seedlings. Attached Figure Description

[0014] The present invention will be further explained below with reference to the accompanying drawings and embodiments: Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a schematic diagram of the collection box and filter structure of this utility model; Figure 3 This is a schematic diagram of the scraper and brush roller structure of this utility model; Figure 4 This is a schematic diagram of the structure of the brush roller, the first rotating shaft, the second rotating shaft, and the support wheel of this utility model; Figure 5 This is a cross-sectional structural diagram of the base of this utility model.

[0015] Explanation of reference numerals in the attached figures: 1. Base; 2. Battery box; 3. Pump box; 4. First tube; 5. Drive wheel; 6. Support wheel; 7. Track; 8. Collection box; 9. Float; 10. Fixing rod; 11. Photovoltaic panel; 12. Scraper; 13. First shaft; 14. Second shaft; 15. Second tube; 16. Motor; 17. Driven wheel; 18. Filter screen; 19. Brush roller. Detailed Implementation

[0016] The present invention will now be described in detail, and the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present invention.

[0017] This utility model provides an improved biological cleaning and scraping device for the bottom of a snail nursery pond. The technical solution of this utility model is as follows: like Figures 1-5As shown, a biological cleaning and scraping device for the bottom of a snail nursery pond includes: The seat 1 has a cavity inside and a receiving groove at the bottom. Two walking components are mounted on the two side walls of the base 1; Scraping assembly, the scraping assembly is disposed in the receiving groove; The cleaning component is rotatably mounted on the inner wall of the receiving tank, and is connected to two traveling components; A water pumping assembly is located on the top of the base 1, and the water pumping assembly is connected to the receiving tank. The collection component is connected to the pumping component and is used to collect sludge.

[0018] Through the coordinated operation of the two walking components, the base 1 can move straight and turn at the bottom of the seedling pond, thus enabling the base 1 to move throughout the bottom of the seedling pond to ensure the cleaning range of the device. Through the water pumping and collecting components, the sewage generated during the cleaning process can be pumped out and collected, which can avoid sedimentation after a period of time after cleaning and sludge falling back to the bottom of the seedling pond, thereby reducing the cleaning frequency. It can also pump water from the bottom of the seedling pond to the top of the seedling pond, so that the water with low oxygen content at the bottom of the pond flows to the top of the seedling pond, while the water with high oxygen content at the top of the seedling pond sinks to the bottom of the pond, thus ensuring the normal growth of the snail seedlings.

[0019] Furthermore, the walking components include: The driving wheel 5 and the driven wheel 17 are both rotatably mounted on the side wall of the base 1; Track 7 is mounted on drive wheel 5 and driven wheel 17.

[0020] Furthermore, the walking components also include: Multiple support wheels 6 are rotatably mounted on the side wall of the base 1, and each support wheel 6 abuts against the track 7.

[0021] Furthermore, the walking components also include: Motor 16 is fixed inside the cavity, and the output shaft of motor 16 and drive wheel 5 are fixed.

[0022] Furthermore, the cleanup components include: The first rotating shaft 13 and the second rotating shaft 14 are both rotatably mounted on the inner wall of the receiving groove. The end of the first rotating shaft 13 is fixed to one of the support wheels 6 on one side of the seat body 1, and the end of the second rotating shaft 14 is fixed to one of the support wheels 6 on the other side of the seat body 1. Two brush rollers 19 are fixedly sleeved on the first rotating shaft 13 and the second rotating shaft 14, respectively.

[0023] During the rotation of the support wheel 6, the first rotating shaft 13 and the second rotating shaft 14 drive the two brush rollers 19 to rotate, and the rotating brush rollers 19 are used to clean the bottom of the seedling pond.

[0024] Furthermore, the scraping component includes: Scraper 12 is fixed at an angle to the inner wall of the receiving groove.

[0025] Furthermore, the pumping assembly includes: Pump box 3 is fixed to the top of the base 1, and a sludge pump is installed inside the pump box 3. First pipe body 4, the first pipe body 4 is installed at the output port of the sludge pump; The second pipe body 15 is installed at the inlet of the sludge pump and penetrates the inner wall of the top of the receiving tank.

[0026] Furthermore, the collection components include: Collection box 8, with filter screen 18 fixed at the bottom of collection box 8, and first tube 4 penetrating through the top of filter screen 18, the first tube 4 and filter screen 18 are fixed together; Multiple floats 9 are fixed to the side wall of the collection box 8.

[0027] By using the float 9, the collection boxes 8 can all float on the water surface. Through the connection of the first tube 4, the collection boxes 8 can be moved by dripping water through the first tube 4 when the seat 1 moves, thereby reducing the amount of materials used such as pipes and cables.

[0028] Furthermore, it also includes: Four fixing rods 10 are fixed to the top of the filter screen 18; Photovoltaic panel 11, which is fixed to four fixing rods 10; Battery box 2 is fixed to the top of base 1, and a photovoltaic energy storage mechanism is installed inside battery box 2.

[0029] The photovoltaic energy storage mechanism includes a photovoltaic controller, an energy storage converter, a battery pack, etc., and is designed to store the electrical energy generated by the photovoltaic panel 11 so as to achieve energy storage in the non-working state and realize fully automated cleaning work.

[0030] Specifically, the working principle is as follows: When in use, the switch of motor 16 can be turned on to drive the drive wheel 5 to rotate. With the help of the track 7, driven wheel 17 and multiple support wheels 6, the seat 1 can move on the bottom of the seedling pond. When one motor 16 is working and the other motor 16 stops working, the seat 1 turns towards the non-working motor 16 during the walking process, and then the seat 1 can move to various places at the bottom of the seedling pool by controlling the two motors 16. As the seat 1 moves, the scraper 12 in an inclined state can scoop up the impurities at the bottom of the seedling pond. As the support wheel 6 rotates, the first rotating shaft 13 and the second rotating shaft 14 drive the two brush rollers 19 to rotate. The rotating brush rollers 19 are used to clean the bottom of the seedling pond. During the cleaning process, the sludge pump is switched on. When the sludge pump is working, the water in the receiving tank is pumped out through the second pipe 15, so that the sewage and sludge in the cleaning process are pumped into the first pipe 4 and output from the top of the first pipe 4. After the sewage and sludge enter the collection box 8 through the first pipe 4, they are filtered by the filter screen 18, thus achieving the collection of sludge.

[0031] It is worth noting that the power components described in this application, such as the motor 16 and the sludge pump, are all controlled by an automated system to achieve automated cleaning operations. Since the automation used in this application is simple and common and belongs to mature prior art, it will not be described in detail.

Claims

1. A scraping device for cleaning and removing attached organisms at the bottom of a snail breeding pond, characterized in that, include: The seat (1) has a cavity inside and a receiving groove at the bottom. Two walking components are disposed on two side walls of the seat (1); A scraping assembly disposed within a receiving groove; A cleaning component is rotatably mounted on the inner wall of a receiving groove, and the cleaning component is connected to two traveling components; A water pumping assembly is disposed on the top of the base (1) and is connected to the receiving tank; A collection component, which is connected to a pumping component, is used to collect sludge.

2. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 1, characterized in that, The walking component includes: The driving wheel (5) and the driven wheel (17) are rotatably mounted on the side wall of the seat (1); Track (7), which is fitted on the drive wheel (5) and the driven wheel (17).

3. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 2, characterized in that, The walking component also includes: Multiple support wheels (6) are rotatably mounted on the side wall of the seat (1), and each support wheel (6) abuts against the track (7).

4. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 2, characterized in that, The walking component also includes: The motor (16) is fixed in the cavity, and the output shaft and the drive wheel (5) of the motor (16) are fixed.

5. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 3, characterized in that, The cleaning component includes: The first rotating shaft (13) and the second rotating shaft (14) are rotatably mounted on the inner wall of the receiving groove. The end of the first rotating shaft (13) is fixed to one of the support wheels (6) on one side of the seat (1), and the end of the second rotating shaft (14) is fixed to one of the support wheels (6) on the other side of the seat (1). Two brush rollers (19) are fixedly sleeved on the first rotating shaft (13) and the second rotating shaft (14), respectively.

6. The device for cleaning and scraping the attached organisms at the bottom of a snail nursery pond according to claim 1, characterized in that, The scraping assembly includes: Scraper (12), which is obliquely fixed on the inner wall of the receiving groove.

7. The device for cleaning and scraping the attached organisms at the bottom of a snail nursery pond according to claim 1, characterized in that, The pumping assembly includes: Pump box (3), the pump box (3) is fixed on the top of the base (1), and a sludge pump is installed inside the pump box (3); The first pipe body (4) is installed at the output port of the sludge pump; The second pipe (15) is installed at the inlet of the sludge pump and penetrates the inner wall of the top of the receiving tank.

8. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 7, characterized in that, The collection component includes: A collection box (8) is provided, with a filter screen (18) fixed at the bottom and a first tube (4) passing through the top of the filter screen (18). The first tube (4) and the filter screen (18) are fixed together. Multiple pontoons (9) are fixed to the side wall of the collection box (8).

9. The device for cleaning and scraping the bottom of a snail seedling pond according to claim 8, characterized in that, Also includes: Four fixing rods (10) are fixed to the top of the filter screen (18); A photovoltaic panel (11) is fixed to four fixing rods (10); Battery box (2), the battery box (2) is fixed on the top of the base (1), and a photovoltaic energy storage mechanism is provided inside the battery box (2).