Adjustable fry attaching device for oyster breeding

By using an attachment system with mounting bases and fixed columns in oyster farming ponds, combined with a bent plate and scraper structure, the problems of inconvenient assembly and cleaning of the attachment base are solved, enabling convenient release and efficient removal of oyster seedlings, and improving the operational efficiency of oyster farming.

CN223585053UActive Publication Date: 2025-11-25WEIHAI WANRUI AQUATIC PROD CO LTD
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Patent Information

Application Number
CN202423264879.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the current oyster farming process, the assembly and disassembly of the substrate are inconvenient, and the oysters are difficult to clean after they grow, which affects the growth and harvesting efficiency of oysters.

Method used

The attachment system, consisting of an installation base and a fixed column, combined with a bent attachment plate and a scraper, uses a threaded groove structure and a hole design to facilitate the placement of oyster seedlings and the removal of oysters during their growth period. The activated carbon base adsorbs impurities, and the scraper structure improves cleaning efficiency.

Benefits of technology

It enables convenient release of oyster seedlings and efficient oyster removal after oyster growth, reducing cleaning difficulties and improving the operational efficiency and survival rate of oyster farming.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of oyster cultivation, and discloses an adjustable fry attaching device for oyster cultivation, which comprises mounting bases, the mounting bases are equidistantly arranged and placed at the inner bottom of a culture pond, mounting insertion cylinders are fixedly arranged at the tops of the mounting bases at equal intervals, and the inner parts of the mounting insertion cylinders are of threaded groove structures; according to the novel oyster seed breeding device, by arranging the mounting bases and the fixing stand columns which are used for positioning, in the oyster seed breeding process, the closed inserting blocks are inserted into the connecting cavities, and the fixing stand columns are inserted into the connecting cavities, so that the oyster seed breeding efficiency is improved, and the oyster seed breeding efficiency is improved. The surface of the attachment plate becomes a whole, oyster seeds are prevented from being attached into the access cavity, due to the fact that the overall length of the closed insertion block is slightly larger than the inner length of the access cavity, the closed insertion block can be easily pulled out, and the whole device is very convenient to put and erect the seeds.
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Description

TECHNICAL FIELD

[0001] The utility model relates to oyster culture technical field especially uses adjustable device of attaching seedling of oyster culture. BACKGROUND

[0002] Oyster in the process of culture, the one side shell body of oyster is used for adsorption, and will not move, through the opening and closing of the shell body of the other side and eats etc., therefore, the attachment base influences the growth of oyster, the existing attachment base is troublesome when assembling, oyster grows and is attached on the base and is inconvenient to clean, therefore, an adjustable device of attaching seedling for oyster culture is provided. UTILITY MODEL CONTENTS

[0003] The utility model mainly solves the technical problem of above -mentioned prior art, provides an adjustable device of attaching seedling for oyster culture.

[0004] In order to realize above-mentioned purpose, the utility model discloses the following technical scheme, including installation base, the installation base equidistance arrangement places in the inside sinking of culture pond, the top fixed mounting of installation base is equidistance arrangement and is installed installation insert tube, the inside of installation insert tube is screw groove structure, inserts and is installed fixed stand in installation insert tube, two installation base between the setting of attached plate piece, the attached plate piece is the long board structure of middle segment bending, the upper and lower two side surfaces of attached plate piece are rough for oyster attachment, the two ends of the middle part of attached plate piece protrude outward, the upper and lower two side surfaces of the protruding part of the two ends of attached plate piece are all set up and are inserted into the isolating sleeve for separating space, the sleeve insertion hole is set up between the two same side butt joint slot, after the fixed stand is inserted into the sleeve insertion hole, one side of attached plate piece is fixed, the outside of attached plate piece is also provided with the material taking scraper.

[0005] Further, the overall length of the material taking scraper is adapted to the attached plate piece, and the upper and lower two side surfaces of the material taking scraper are respectively adapted to the lower side and the upper side of the attached plate piece.

[0006] Further, an access cavity is formed in the inside of the middle segment lower bending part of the attached plate piece, the inside of the access cavity is an arc surface structure, and a closed insertion block is inserted and installed in the inside of the access cavity.

[0007] Further, an access sliding block is fixedly installed on the upper and lower two side surfaces of the middle segment of the material taking scraper, the overall size of the access sliding block corresponds to the inside size of the access cavity, and the material taking scraper is clamped on the upper and lower two sides of the attached plate piece through the access sliding block.

[0008] Further, a stripping push plate is fixedly installed on the front and rear two side surfaces of the material taking scraper, the stripping push plate is a long block with an inside inverted triangular structure, and the stripping push plate is installed on the front and rear two sides of the material taking scraper to scrape off the attached oysters.

[0009] The utility model provides a adjustable device of affixing seedling for oyster culture has the following beneficial effects:

[0010] 1. A adjustable device of affixing seedling for oyster culture, by setting up for positioning installation base and fixed stand, the material quality of installation base can choose to use activated carbon to make, after installation base sinks in the inside of the breeding pond, can adsorb the impurity produced in the breeding process, after arranging and installing multiple installation bases in the inside of the breeding pond, two fixed stands are inserted into the sleeve socket opened in both ends of the adhering plate respectively, the adhering plate is erected between two adjacent installation bases through two fixed stands, after oyster seedling is put on the surface of adhering plate, in the process of oyster seedling growth, the closed plug is inserted into the inside of access cavity, the surface of adhering plate becomes integral, prevents oyster seedling from adhering into access cavity, because the overall length of closed plug is slightly longer than the inside length of access cavity, the closed plug can be easily pulled out, the whole device is very convenient when setting up.

[0011] 2. A adjustable device of affixing seedling for oyster culture, by setting up the material scraping blade of scraping oyster, the stripping push plate is installed on both sides of material scraping blade, access slider is fixedly installed on the middle of material scraping blade, when oyster on the outside of adhering plate grows up, the adhering plate is taken out, and the closed plug is pulled out from the inside of access cavity, then access slider on the surface of material scraping blade is aligned with the opening position of access cavity and is pushed in, the stripping push plate will be in contact with the surface of adhering plate, oyster is separated through the scraping of stripping push plate and adhering plate surface, the shape of material scraping blade is adapted to the upper and lower sides of adhering plate, and oyster adhered to the upper and lower sides of adhering plate can be removed using the material scraping blade, so that the problem that oyster is difficult to harvest after growth is greatly reduced, and the oyster stripping efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0012] The structure, proportion, size and the like shown in the specification are only used to cooperate with the content disclosed in the specification, to enable persons skilled in the art to understand and read, and do not define the limiting conditions that can be implemented by the utility model, so they do not have technical substantive significance.

[0013] Fig. 1 It is a whole device schematic view;

[0014] Fig. 2 It is a closed plug installation schematic view;

[0015] Fig. 3 It is a material scraping blade installation schematic view.

[0016] Legend:

[0017] 1, installation base; 2, installation plug; 3, fixed column; 4, isolation sleeve; 5, attached plate; 6, material scraping plate; 7, butt joint slot; 8, sleeve socket; 9, access cavity; 10, closed plug; 11, stripping push plate; 12, access slider. DETAILED DESCRIPTION

[0018] An adjustable device for oyster culture, as shown in Figs. 1 to 3 The installation base 1 can be made of activated carbon blocks that can adsorb impurities, and the installation base 1 is placed in the interior of the culture pond and is fixed to the bottom. The top of the installation base 1 is fixedly installed with installation plugs 2 arranged at equal intervals. The installation plugs 2 are internally provided with screw grooves, and the fixed columns 3 are inserted into the installation plugs 2. The two installation bases 1 are provided with attached plates 5. The attached plates 5 are long plate structures with a middle section bent. The upper and lower surfaces of the attached plates 5 are rough for oyster attachment. The middle part of the two ends of the attached plates 5 protrudes outward, and the upper and lower surfaces of the protruding part are provided with butt joint slots 7. The isolation sleeves 4 for separating space are inserted into the butt joint slots 7. The sleeve sockets 8 are arranged between the two butt joint slots 7 on the same side. The fixed columns 3 are inserted into the sleeve sockets 8 to fix one side of the attached plates 5. The material scraping plate 6 is further arranged on the outside of the attached plate 5.

[0019] The overall length of the material scraping plate 6 is adapted to the attached plate 5. The upper and lower surfaces of the material scraping plate 6 are respectively adapted to the lower surface and the upper surface of the attached plate 5. The access sliders 12 are fixedly installed on the upper and lower surfaces of the middle section of the material scraping plate 6. The overall size of the access sliders 12 corresponds to the internal size of the access cavity 9. The material scraping plate 6 is clamped on the upper and lower sides of the attached plate 5 through the access sliders 12. After the material scraping plate 6 is installed on the surface of the attached plate 5, the exposed access sliders 12 on the surface of the material scraping plate 6 can pull the entire material scraping plate 6 to slide on the surface of the attached plate 5. The stripping push plates 11 are fixedly installed on the front and rear surfaces of the material scraping plate 6. The stripping push plates 11 are long blocks with an inverted triangular structure. The oysters attached to the surface of the attached plate 5 are removed by the stripping push plates 11 during the sliding process of the material scraping plate 6.

[0020] The access cavity 9 is internally arranged in the middle section of the attached plate 5. The internal part of the access cavity 9 is provided with an arc surface structure. The closed plug 10 is inserted and installed in the internal part of the access cavity 9. During the oyster breeding period, the closed plug 10 is inserted into the internal part of the access cavity 9. After the closed plug 10 is inserted, the gap of the access cavity 9 is filled to prevent the oyster larvae from entering. After the closed plug 10 is extracted during the harvest period, the material scraping plate 6 is attached to the attached plate 5 and pushed to conveniently strip the oyster larvae.

[0021] Working principle of the utility model:

[0022] By setting up the installation base 1 with the fixed column 3 for positioning, the material of the installation base 1 can be made of activated carbon, which can adsorb impurities generated during the cultivation process after sinking in the inside of the cultivation pond. After arranging and installing multiple installation bases 1 in the inside of the cultivation pond, the two fixed columns 3 are respectively inserted into the sleeve insertion hole 8 opened at both ends of the attached plate 5, and the attached plate 5 is erected between the two adjacent installation bases 1 through the two fixed columns 3. After the oyster seed is put on the surface of the attached plate 5, the oyster seed can be grown. During the growth of the oyster seed, the closure plug 10 is inserted into the inside of the access cavity 9, so that the surface of the attached plate 5 becomes a whole, preventing the oyster seed from adhering to the access cavity 9. Since the overall length of the closure plug 10 is slightly longer than the internal length of the access cavity 9, the closure plug 10 can be easily pulled out. The whole device is very convenient when the seed is erected.

[0023] By setting up the material scraping blade 6 for scraping oysters, the stripping push plate 11 is installed on both sides of the material scraping blade 6, and the access sliding block 12 is fixedly installed on the middle of the material scraping blade 6. When the oysters outside the attached plate 5 grow up, the whole attached plate 5 is taken out, and the closure plug 10 is pulled out of the inside of the access cavity 9. Then the access sliding block 12 installed on the surface of the material scraping blade 6 is aligned with the opening position of the access cavity 9 and is pushed in. The stripping push plate 11 will be in contact with the surface of the attached plate 5. Through the scraping of the stripping push plate 11 and the surface of the attached plate 5, the oysters are separated. The shape of the material scraping blade 6 is adapted to the upper and lower sides of the attached plate 5, so that the oysters attached to the upper and lower sides of the attached plate 5 can be removed by the material scraping blade 6, greatly reducing the problem of difficult harvesting of oysters after growth, and improving the oyster stripping efficiency.

[0024] The basic principles and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples. The above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.

Claims

1. An adjustable seedling attachment device for oyster farming, comprising mounting bases (1), wherein the mounting bases (1) are equidistantly arranged and placed at the bottom of the farming pond, and equidistantly arranged mounting cylinders (2) are fixedly mounted on the top of the mounting bases (1), characterized in that: The interior of the mounting sleeve (2) has a threaded groove structure. A fixed column (3) is inserted into the mounting sleeve (2). An attachment plate (5) is provided between the two mounting bases (1). The attachment plate (5) is a long plate structure with a bent middle section. The upper and lower surfaces of the attachment plate (5) are rough for oyster attachment. The middle of both ends of the attachment plate (5) protrudes outward. The upper and lower surfaces of the protruding parts at both ends of the attachment plate (5) are provided with docking slots (7). An isolation sleeve (4) for separating the space is inserted into the docking slot (7). A fitting insertion hole (8) is provided between the two docking slots (7) on the same side. After the fixed column (3) is inserted into the fitting insertion hole (8), one side of the attachment plate (5) is fixed. A material scraper (6) is also provided on the outside of the attachment plate (5).

2. The adjustable seedling attachment device for oyster farming according to claim 1, characterized in that: The overall length of the scraper (6) is adapted to the attachment plate (5), and the upper and lower surfaces of the scraper (6) are respectively fitted to the lower and upper surfaces of the attachment plate (5).

3. The adjustable seedling attachment device for oyster farming according to claim 1, characterized in that: An access cavity (9) is provided inside the middle section of the attachment plate (5) at the downward bend. The inside of the access cavity (9) is an arc-shaped structure. A sealing plug (10) is inserted and installed inside the access cavity (9).

4. The adjustable seedling attachment device for oyster farming according to claim 1, characterized in that: The upper and lower surfaces of the middle section of the scraper (6) are fixedly installed with access sliders (12). The overall size of the access sliders (12) corresponds to the internal size of the access cavity (9). The scraper (6) is clamped to the upper and lower sides of the attachment plate (5) by the access sliders (12).

5. The adjustable seedling attachment device for oyster farming according to claim 1, characterized in that: Peeling pushers (11) are fixedly installed on both the front and rear surfaces of the scraper (6). The peeling pushers (11) are long blocks with an inverted triangular structure inside. The peeling pushers (11) are installed on the front and rear sides of the scraper (6) to scrape off the attached oysters.