CN115053860B - Golden soft-shelled turtle constant temperature control breeding device - Google Patents

Golden soft-shelled turtle constant temperature control breeding device Download PDF

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Publication number
CN115053860B
CN115053860B CN202210721638.9A CN202210721638A CN115053860B CN 115053860 B CN115053860 B CN 115053860B CN 202210721638 A CN202210721638 A CN 202210721638A CN 115053860 B CN115053860 B CN 115053860B
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plate
connecting frame
sliding
frame
grid
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CN115053860A (en
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柯国华
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Jiujiang Xingxiang Aquaculture Co ltd
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Jiujiang Xingxiang Aquaculture Co ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K67/00Rearing or breeding animals, not otherwise provided for; New or modified breeds of animals
    • A01K67/02Breeding vertebrates
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K63/00Receptacles for live fish, e.g. aquaria; Terraria
    • A01K63/003Aquaria; Terraria
    • A01K63/006Accessories for aquaria or terraria
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K63/00Receptacles for live fish, e.g. aquaria; Terraria
    • A01K63/06Arrangements for heating or lighting in, or attached to, receptacles for live fish
    • A01K63/065Heating or cooling devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Animal Behavior & Ethology (AREA)
  • Zoology (AREA)
  • Housing For Livestock And Birds (AREA)
  • Farming Of Fish And Shellfish (AREA)

Abstract

The invention relates to a turtle breeding device, in particular to a golden turtle constant temperature control breeding device. The golden turtle constant temperature control breeding device can monitor the temperature in real time, and is convenient to control the temperature to be at the optimal growth temperature of the turtles. The invention is realized by the following technical approaches: the utility model provides a gold soft-shelled turtle thermostatic control breeding device, is including connecting frame, display, shielding plate etc. and connect frame left part and install the display that can show the temperature in the frame of connection, connect frame upper portion rear side rotation type and be connected with the shielding plate. The temperature in the connection frame can be displayed under the effect of the display, so that the temperature can be monitored by the staff in real time, and the temperature in the connection frame can be controlled in a proper interval by the staff.

Description

Golden soft-shelled turtle constant temperature control breeding device
Technical Field
The invention relates to a turtle breeding device, in particular to a golden turtle constant temperature control breeding device.
Background
The soft-shelled turtle is rich in various nutritional components such as protein, inorganic salt, vitamin A, vitamin B1, vitamin B2, nicotinic acid, carbohydrate, fat and the like, so that the soft-shelled turtle is usually cultivated manually for eating, and the temperature is required to be controlled at a proper water temperature when the soft-shelled turtle is cultivated, so that the soft-shelled turtle can grow normally.
Patent publication No. CN107691373A discloses a turtle farm, which comprises a cultivation pond, a sedimentation pond, an oxygenation pond and a disinfection pond, wherein the sedimentation pond is communicated with a water outlet of the cultivation pond, the oxygenation pond is communicated with the sedimentation pond, the disinfection pond is communicated with the oxygenation pond, and one end of the disinfection pond is provided with a water outlet; the bottom of the culture pond and the bottom of the sedimentation pond are inclined planes, the water outlet is arranged at one end of the lower part of the bottom of the culture pond, the water inlet is arranged at one end of the upper part of the bottom of the culture pond, the sediment outlet is arranged at one end of the lower part of the bottom of the sedimentation pond, each communication part, the water outlet, the water inlet, the purified water outlet and the water outlet are provided with gate valves, the device can facilitate the impurity treatment and discharge during the turtle cultivation, but the device can not monitor the water temperature well, and thus the temperature control is difficult to be at the optimum growth temperature of the turtle.
In view of the above technical problems, it is necessary to design a golden turtle thermostatic control cultivation device capable of monitoring temperature in real time and facilitating temperature control at the optimal growth temperature of turtles.
Disclosure of Invention
In order to overcome the defect that the existing turtle farms cannot monitor the water temperature well, so that the temperature is difficult to control at the optimal growth temperature of the turtles, the golden turtle constant-temperature control cultivation device capable of monitoring the temperature in real time and controlling the temperature at the optimal growth temperature of the turtles is provided.
The invention is realized by the following technical approaches: the utility model provides a gold soft-shelled turtle thermostatic control breeding device, including connecting frame, display and shielding plate, connect frame left part and install the display that can show the temperature in the connection frame, connect frame upper portion rear side rotation type and be connected with the shielding plate, still including net ventilation mechanism and shading mechanism, be equipped with on the shielding plate and be convenient for carry out radiating net ventilation mechanism, be equipped with in the connection frame and cover the shading mechanism that goes out the cool department.
More preferably, the grid ventilation mechanism comprises a grid plate, a first connecting pipe, a first rotating plate, a first concave-convex plate, a baffle and a first torsion spring, wherein the grid plate is connected to the shielding plate in a bilateral symmetry rotating mode, the first connecting pipes are all installed on the outer sides of the grid plate, the first rotating plate is connected to the first connecting pipes in a rotating mode, the first torsion spring is connected between the first rotating plate and the adjacent first connecting pipes, the baffle is installed in the middle of the rear portion of the shielding plate, the first concave-convex plate is installed on the outer sides of the rear portion of the grid plate, and the first concave-convex plate is clamped with the adjacent first rotating plate.
More preferably, the shading mechanism comprises a connecting frame, elastic cloth, a connecting plate, sliding blocks, a first sleeve plate, a locking plate and a first spring, wherein the first sleeve plate is arranged on the left upper side of the inner rear wall of the connecting frame, the locking plate is connected with the first sleeve plate in a sliding mode, the first spring is connected between the locking plate and the first sleeve plate, the connecting plates are symmetrically arranged on the front and rear sides of the inner upper portion of the connecting frame, the sliding blocks are connected between the connecting plates, the connecting frame is arranged on the left side of the inner upper portion of the connecting frame, the elastic cloth capable of covering a shade position is wound in the connecting frame, and the elastic cloth is connected with the sliding blocks.
More preferably, the sliding block further comprises a handle, and the front end of the sliding block is provided with the handle.
More preferably, the grid stabilizing device further comprises a grid stabilizing mechanism capable of improving stability of the grid plate, the grid stabilizing mechanism comprises guide rods, sliding plates and second springs, four guide rods are arranged in the middle of the front portion of the shielding plate, the sliding plates capable of clamping the grid plate are connected between the guide rods in a sliding mode, the second springs are connected between the sliding plates and the guide rods, the sliding plates are connected with the shielding plate in a sliding mode, and the sliding plates are in contact with the grid plate.
More preferably, the automatic spring device further comprises an automatic spring mechanism capable of automatically retracting the elastic cloth, the automatic spring mechanism comprises a second sleeve plate, a sliding rod, a pushing rod and a third spring, the second sleeve plate is connected to the upper side of the inner rear wall of the connecting outer frame, the sliding rod capable of enabling the locking plate to loosen the sliding block is connected to the second sleeve plate in a sliding mode, the third spring is connected between the sliding rod and the second sleeve plate, the sliding rod is in contact with the locking plate, and the pushing rod is installed at the top of the sliding rod.
More preferably, the air-cooling device further comprises an air-cooling mechanism capable of discharging hot air, the air-cooling mechanism comprises a temperature device, an air cylinder, rollers, a connecting frame, a communicating pipe, an extrusion rod, a pull rope and a fourth spring, the air cylinder is installed in the middle of the upper part of the right wall in the connecting frame, the connecting frame is installed on the front side of the upper part of the right wall in the connecting frame, the communicating pipe is installed on the rear side of the upper part of the connecting frame, the temperature device is installed on the right part of the connecting frame, the rollers are installed on the front side of the upper part of the right wall in the connecting frame, the rollers are located on the rear side of the connecting frame, the middle part of the connecting frame is slidably connected with the extrusion rod capable of pushing out the hot air, the fourth spring is connected between the extrusion rod and the connecting frame, the pull rope is wound on the rollers, and the extrusion rod is slidably connected with the communicating pipe.
More preferably, the device further comprises a blowdown and heat dissipation mechanism capable of discharging sundries, the blowdown and heat dissipation mechanism comprises a second concave-convex plate, a scraping plate, a second connecting pipe, a second rotating plate and a second torsion spring, the second concave-convex plate is installed in the middle of the lower portion of the front wall of the connecting frame, the scraping plate capable of pushing out the sundries is connected to the lower portion of the connecting frame in a sliding mode, the second connecting pipe is installed in the middle of the front portion of the scraping plate, the second rotating plate is connected to the second connecting pipe in a rotating mode, the second torsion spring is connected between the second rotating plate and the second connecting pipe, and the second rotating plate is clamped with the second connecting pipe.
The invention has the following advantages: 1. the temperature in the connection frame can be displayed under the effect of the display, so that the temperature can be monitored by the staff in real time, and the temperature in the connection frame can be controlled in a proper interval by the staff.
2. Under the action of the elastic cloth, the connecting outer frame can be provided with a shade place when sunlight exists, so that the cultivated soft-shelled turtle is prevented from being directly exposed to the sunlight when the cultivated soft-shelled turtle does not want to be sunned.
3. The grid plate can be clamped through the sliding plate, so that the grid plate can not automatically rotate to reset after being opened, and the stability of the grid plate is improved.
4. After the temperature in the connecting outer frame rises, the air cylinder automatically works so that the cover plate upwards rotates and does not cover the connecting outer frame, and therefore the connecting outer frame can be cooled more easily.
5. The extrusion rod moves upwards to push out part of hot air in the connecting outer frame, so that the temperature in the connecting outer frame can be reduced more quickly.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view showing a structure of the connecting frame, display and cover plate of the present invention.
Fig. 3 is a schematic perspective view of a mesh ventilation mechanism according to the present invention.
Fig. 4 is a schematic perspective view of a first partial cross-section of the mesh ventilation mechanism of the present invention.
Fig. 5 is a schematic view of a second partially cut-away perspective of the mesh ventilation mechanism of the present invention.
Fig. 6 is a schematic perspective view of a shading mechanism according to the present invention.
Fig. 7 is a schematic perspective view of a first part of a shading mechanism according to the present invention.
Fig. 8 is a schematic perspective view of a second part of the shading mechanism of the present invention.
Fig. 9 is a schematic perspective view of a grid stabilization mechanism according to the present invention.
Fig. 10 is a schematic cross-sectional perspective view of the grid stabilization mechanism of the present invention.
Fig. 11 is a schematic view of a first perspective structure of the automatic pop-up mechanism of the present invention.
Fig. 12 is a schematic view of a second perspective structure of the automatic pop-up mechanism of the present invention.
Fig. 13 is a schematic perspective view of an exhaust heat dissipation mechanism according to the present invention.
Fig. 14 is a schematic cross-sectional perspective view of an exhaust heat dissipation mechanism according to the present invention.
Fig. 15 is a schematic partial perspective view of an exhaust heat dissipation mechanism according to the present invention.
Fig. 16 is a schematic perspective view of a blowdown and heat dissipation mechanism of the present invention.
Fig. 17 is a schematic cross-sectional perspective view of a blowdown and heat dissipation mechanism of the present invention.
Reference numerals illustrate: 1: connecting the outer frame, 101: display, 2: cover plate, 3: grid ventilation mechanism, 31: grid plate, 32: first connecting tube, 33: first rotating plate, 34: first concave-convex plate, 35: baffle, 36: first torsion spring, 4: shading mechanism, 41: connection frame, 411: stretch cloth, 42: connection plate, 43: slider, 44: first set of plates, 45: locking plate, 46: first spring, 5: grid stabilization mechanism, 51: guide bar, 52: slide plate, 53: second spring, 6: automatic ejection mechanism, 61: second set of plates, 62: slide bar, 63: push rod, 64: third spring, 7: exhaust heat dissipation mechanism, 71: temperature, 72: cylinder, 73: roller, 74: a connection rack, 704: communicating tube, 75: extrusion rod, 76: pull rope, 77: fourth spring, 8: blowdown heat dissipation mechanism, 81: second concave-convex plate, 82: squeegee, 83: second connection tube, 84: second rotation plate, 85: second torsion spring, 9: a handle.
Detailed Description
Embodiments of the present invention will be described below with reference to the drawings.
Example 1
The utility model provides a gold soft-shelled turtle thermostatic control breeding device, refer to the fig. 1 and the fig. 2 shows, including connecting frame 1, display 101, shielding plate 2, net ventilative mechanism 3 and shading mechanism 4, connect frame 1 left portion rigid coupling has display 101, display 101 can show the temperature in connecting frame 1, connect frame 1 upper portion rear side rotation type and be connected with shielding plate 2, be equipped with net ventilative mechanism 3 on the shielding plate 2, net ventilative mechanism 3 can be convenient for dispel the heat, be equipped with shading mechanism 4 in connecting frame 1, shading mechanism 4 can cover out the cool department.
Referring to fig. 3-5, the grid ventilation mechanism 3 includes a grid plate 31, a first connecting pipe 32, a first rotating plate 33, a first concave-convex plate 34, a baffle 35 and a first torsion spring 36, the grid plate 31 is rotationally connected on the shielding plate 2 in a bilateral symmetry manner, the first connecting pipe 32 is fixedly connected on the outer side of the grid plate 31, the first rotating plate 33 is rotationally connected on the first connecting pipe 32, the first torsion spring 36 is connected between the first rotating plate 33 and the adjacent first connecting pipe 32, the baffle 35 is fixedly connected in the middle of the rear part of the shielding plate 2, the first concave-convex plate 34 is fixedly connected on the outer side of the rear part of the grid plate 31, and the first concave-convex plate 34 is clamped with the adjacent first rotating plate 33.
Referring to fig. 6-8, the light shielding mechanism 4 includes a connection frame 41, elastic cloth 411, a connection plate 42, a sliding block 43, a first sleeve plate 44, a locking plate 45 and a first spring 46, wherein the first sleeve plate 44 is fixedly connected to the left upper side of the rear wall in the connection frame 1, the locking plate 45 is slidably connected to the first sleeve plate 44, the first spring 46 is connected between the locking plate 45 and the first sleeve plate 44, the connection plate 42 is fixedly connected to the front and rear sides of the upper portion in the connection frame 1, the sliding block 43 is slidably connected between the connection plates 42, the connection frame 41 is fixedly connected to the left side of the upper portion in the connection frame 1, the elastic cloth 411 is wound around the connection frame 41, and the elastic cloth 411 can cover a cool place, and the elastic cloth 411 is connected to the sliding block 43.
Referring to fig. 7, the sliding block 43 further includes a handle 9, and the handle 9 is fixedly attached to the front end of the sliding block 43.
When the turtle breeding device is used, the cover plate 2 is covered on the connecting frame 1, the worker can rotate the cover plate 2 without covering the connecting frame 1, then the breeding liquid, the feed and the turtle are put into the connecting frame 1, the turtle breeding can be carried out, then the cover plate 2 is rotated to be covered on the connecting frame 1, the temperature in the connecting frame 1 can be displayed through the display 101 during breeding, air can circulate in the connecting frame 1 through the grid plate 31, sunlight can irradiate the connecting frame 1 through the grid plate 31, when the worker wants to permeate more air, the worker can rotate the first rotating plate 33 without being blocked by the first concave-convex plate 34, the first torsion spring 36 deforms, then the grid plate 31 can be rotated inwards to enable the grid plate 31 to rotate into a vertical shape, the grid plate 31 rotates to drive the first connecting pipe 32, the first rotating plate 33 and the first torsion spring 36 to rotate, the baffle 35 can limit the maximum rotating stroke of the grid plate 31, so that the grid plate 31 can be kept vertical, the first rotating plate 33 is loosened, the first rotating plate 33 is rotated to reset under the action of the first torsion spring 36, the grid plate 31 rotates to be vertical and is not covered above the connecting outer frame 1, so that the opening of the connecting outer frame 1 is large, a larger space is available for air circulation, a worker can pull the sliding block 43 to move rightwards through the handle 9, the sliding block 43 moves rightwards to pull out the elastic cloth 411, the elastic cloth 411 can cover the upper left part of the connecting outer frame 1, the sliding block 43 moves rightwards to be contacted with the locking plate 45 and then moves continuously, the locking plate 45 moves upwards, the first spring 46 is compressed, when the sliding plate 52 moves rightwards to the position beyond the locking plate 45, the locking plate 45 moves downwards to clamp the sliding block 43 under the action of the first spring 46, the left part in the connecting frame 1 is covered by the elastic cloth 411, so that sunlight cannot radiate, when the soft-shelled turtle is cultivated, the soft-shelled turtle does not want to be directly irradiated by sunlight and can move to the lower part of the elastic cloth 411, when the display 101 shows that the temperature in the connecting frame 1 exceeds the proper cultivation temperature, a worker can conduct cooling treatment, so that the temperature of the connecting frame 1 can be constant, when the display 101 shows that the temperature in the connecting frame 1 is recovered to be normal, the temperature can be reduced, when the display 101 does not use the device any more, the locking plate 45 can be pulled upwards to loosen the sliding block 43, the first spring 46 is compressed, the elastic cloth 411 automatically contracts to reset and drives the sliding block 43 to move leftwards to reset, the first rotating plate 33 is rotated again, the first torsion spring 36 is deformed, the first torsion spring 31 is reset, the first connecting tube 32 is rotated to reset by the first torsion spring 36, the first torsion spring 33 is released, when the first torsion spring 33 is rotated, when the first torsion spring 36 is reset, the first rotating plate 33 is required to rotate, when the first rotating plate 33 is not to be connected with the first rotating frame 1, the first rotating frame 1 is required to be taken out, the first rotating frame 1 is taken out, when the first rotating frame 1 is not required to be connected with the soft-shelled turtle is rotated, and the first rotating frame 1 is required to be taken out.
Example 2
On the basis of embodiment 1, referring to fig. 1, 9 and 10, the device further comprises a grid stabilizing mechanism 5, the grid stabilizing mechanism 5 can improve stability of the grid plate 31, the grid stabilizing mechanism 5 comprises guide rods 51, sliding plates 52 and second springs 53, four guide rods 51 are fixedly connected in the middle of the front portion of the shielding plate 2, sliding plates 52 are connected between the guide rods 51 in a sliding mode, the sliding plates 52 can clamp the grid plate 31, second springs 53 are connected between the sliding plates 52 and the guide rods 51, the sliding plates 52 are connected with the shielding plate 2 in a sliding mode, and the sliding plates 52 are in contact with the grid plate 31.
The second spring 53 is stretched at the beginning, the sliding plate 52 is not propped against when the grid plate 31 rotates to be vertical, the sliding plate 52 moves backwards under the action of the second spring 53, the sliding plate 52 moves upwards to prop against the grid plate 31, the grid plate 31 cannot rotate and reset, the situation that the grid plate 31 can rotate and reset due to gravity can be avoided, when a worker rotates and resets the grid plate 31, the grid plate 31 rotates to be in contact with the sliding plate 52 and then continues to rotate, the sliding plate 52 moves forwards, and the second spring 53 is stretched.
Referring to fig. 1, 11 and 12, the automatic ejection mechanism 6 is further included, the automatic ejection mechanism 6 can enable the elastic cloth 411 to automatically retract, the automatic ejection mechanism 6 includes a second sleeve plate 61, a sliding rod 62, a pushing rod 63 and a third spring 64, the second sleeve plate 61 is connected to the upper side of the inner rear wall of the outer frame 1, the sliding rod 62 is connected to the second sleeve plate 61 in a sliding manner, the sliding rod 62 can enable the locking plate 45 to release the sliding block 43, the third spring 64 is connected between the sliding rod 62 and the second sleeve plate 61, the sliding rod 62 is in contact with the locking plate 45, and the pushing rod 63 is fixedly connected to the top of the sliding rod 62.
The push rod 63 is pushed against by the cover plate 2 at first, the third spring 64 is stretched, the push rod 63 is not pushed against when the cover plate 2 rotates upwards, the push rod 63 and the sliding rod 62 move upwards under the action of the third spring 64, the sliding rod 62 moves upwards to drive the locking plate 45 to move upwards, the elastic cloth 411 can be automatically retracted after being pulled out, when the cover plate 2 rotates downwards to reset, the push rod 63 moves downwards to drive the sliding rod 62 to move downwards, the third spring 64 is stretched, the sliding rod 62 moves downwards to not push against the locking plate 45 any more, and the locking plate 45 automatically moves downwards to reset.
Referring to fig. 1, 13, 14 and 15, the air-cooling device 7 is further included, the air-cooling device 7 can exhaust hot air, the air-cooling device 7 includes a temperature device 71, an air cylinder 72, a roller 73, a connecting frame 74, a communicating pipe 704, an extrusion rod 75, a pull rope 76 and a fourth spring 77, the air cylinder 72 is fixedly connected in the middle of the upper portion of the right wall in the connecting frame 1, the connecting frame 74 is fixedly connected with the front side of the upper portion of the right wall in the connecting frame 1, the communicating pipe 704 is fixedly connected with the rear side of the upper portion of the connecting frame 74, the temperature device 71 is fixedly connected with the roller 73 in the front side of the upper portion of the right wall in the connecting frame 1, the roller 73 is located at the rear side of the connecting frame 74, the extrusion rod 75 is slidably connected with the middle of the connecting frame 74, the extrusion rod 75 and the connecting frame 74 are connected with the fourth spring 77, the pull rope 76 is connected between the extrusion rod 75 and the cover plate 2, the pull rope 76 is wound on the roller 73, and the extrusion rod 75 is slidably connected with the communicating pipe 704.
When the temperature in the connecting frame 1 reaches a certain degree, the temperature detector 71 detects that the temperature reaches a preset value and then controls the extension of the air cylinder 72 telescopic rod, the extension of the air cylinder 72 telescopic rod drives the covering plate 2 to rotate upwards, the covering plate 2 rotates upwards to pull the extrusion rod 75 to move upwards through the pull rope 76, the fourth spring 77 is stretched, the extrusion rod 75 moves upwards to push out hot air in the connecting frame 1 through the communicating pipe 704, so that the connecting frame 1 can be cooled more quickly, the covering plate 2 automatically rotates upwards to cover the connecting frame 1 when the temperature rises, the connecting frame 1 is further convenient to dissipate heat, the air cylinder 72 telescopic rod is controlled to be shortened when the temperature detector 71 detects that the temperature reaches the preset value, the air cylinder 72 telescopic rod is shortened and does not support the covering plate 2 any more, and therefore the covering plate 2 automatically rotates to reset under the action of gravity, the covering plate 2 rotates to reset to release the pull rope 76, and the extrusion rod 75 moves downwards to reset under the action of the fourth spring 77.
Referring to fig. 1, 16 and 17, the device further comprises a blowdown and heat dissipation mechanism 8, the blowdown and heat dissipation mechanism 8 can discharge sundries, the blowdown and heat dissipation mechanism 8 comprises a second concave-convex plate 81, a scraping plate 82, a second connecting pipe 83, a second rotating plate 84 and a second torsion spring 85, the middle of the lower portion of the front wall of the connecting frame 1 is fixedly connected with the second concave-convex plate 81, the lower portion of the connecting frame 1 is slidably connected with the scraping plate 82, the scraping plate 82 can push out sundries, the middle of the front portion of the scraping plate 82 is fixedly connected with the second connecting pipe 83, the second rotating plate 84 is rotatably connected to the second connecting pipe 83, the second torsion spring 85 is connected between the second rotating plate 84 and the second connecting pipe 83, and the second rotating plate 84 is clamped with the second connecting pipe 83.
When breeding, the staff can also regularly rotate the second rotor plate 84 and not blocked by the second concave-convex plate 81, the second torsion spring 85 deforms, then the second rotor plate 84 is pulled to drive the scraping plate 82 and the second connecting pipe 83 to move forwards, the scraping plate 82 can push out sundries such as soft-shelled turtle excrement and feed in the connecting frame 1, the effect of accumulation on breeding and heat dissipation can be avoided, then the second rotor plate 84 is pushed to drive the scraping plate 82 and the second connecting pipe 83 to move backwards to reset, the second rotor plate 84 is loosened, and the second rotor plate 84 rotates to reset and is clamped into the second concave-convex plate 81 under the action of the second torsion spring 85.
While the present disclosure has been shown and described with reference to certain exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. The scope of the disclosure should, therefore, not be limited to the above-described embodiments, but should be determined not only by the following claims, but also by the equivalents of the following claims.

Claims (6)

1. The utility model provides a gold soft-shelled turtle thermostatic control breeding device, including connecting frame (1), display (101) and shielding plate (2), connect frame (1) left part and install display (101) that can show the temperature in connecting frame (1), connect frame (1) upper portion rear side rotation type and be connected with shielding plate (2), characterized by still including net ventilation mechanism (3) and shielding mechanism (4), be equipped with on shielding plate (2) and be convenient for carry out radiating net ventilation mechanism (3), be equipped with in connecting frame (1) and cover out shade department's shielding mechanism (4);
the grid ventilation mechanism (3) comprises a grid plate (31), first connecting pipes (32), first rotating plates (33), first concave-convex plates (34), baffle plates (35) and first torsion springs (36), wherein the grid plate (31) is rotationally connected on the shielding plate (2) in a bilateral symmetry manner, the first connecting pipes (32) are respectively installed on the outer sides of the grid plate (31), the first rotating plates (33) are respectively rotationally connected on the first connecting pipes (32), the first torsion springs (36) are respectively connected between the first rotating plates (33) and the adjacent first connecting pipes (32), the baffle plates (35) are respectively installed in the middle of the rear parts of the shielding plate (2), the first concave-convex plates (34) are respectively installed on the outer sides of the rear parts of the grid plate (31), and the first concave-convex plates (34) are respectively clamped with the adjacent first rotating plates (33);
the novel hot air extrusion device comprises a connecting frame (1), and is characterized by further comprising an exhaust heat dissipation mechanism (7) capable of exhausting hot air, wherein the exhaust heat dissipation mechanism (7) comprises a temperature device (71), an air cylinder (72), a roller (73), a connecting frame (74), a communicating pipe (704), an extrusion rod (75), a pull rope (76) and a fourth spring (77), the air cylinder (72) is arranged in the middle of the upper part of the right wall in the connecting frame (1), the connecting frame (74) is arranged on the front side of the upper part of the right wall in the connecting frame (1), the communicating pipe (704) is arranged on the right part of the connecting frame (1), the roller (73) is positioned on the rear side of the connecting frame (74), the extrusion rod (75) capable of pushing out the hot air is connected in a sliding mode in the middle of the connecting frame (74), the fourth spring (77) is connected between the extrusion rod (75) and the connecting frame (74), the pull rope (76) is connected between the extrusion rod (75) and the cover plate (2), the pull rope (76) is wound on the roller (73), and the roller (73) is connected with the communicating pipe (704) in a sliding mode.
2. The device for the thermostatic control cultivation of golden soft-shelled turtles according to claim 1 is characterized in that the shading mechanism (4) comprises a connecting frame (41), elastic cloth (411), a connecting plate (42), a sliding block (43), a first sleeve plate (44), a locking plate (45) and a first spring (46), the first sleeve plate (44) is arranged on the left upper side of the inner rear wall of the connecting frame (1), the locking plate (45) is connected onto the first sleeve plate (44) in a sliding mode, the first spring (46) is connected between the locking plate (45) and the first sleeve plate (44), the connecting plate (42) is symmetrically arranged on the front and rear of the inner upper portion of the connecting frame (1), the sliding block (43) is connected between the connecting plate (42), the connecting frame (41) is arranged on the left side of the inner upper portion of the connecting frame (1), the elastic cloth (411) capable of covering a shade place is wound in the connecting frame (41), and the elastic cloth (411) is connected with the sliding block (43).
3. A thermostatic control cultivation device for golden soft-shelled turtles according to claim 2, further comprising a handle (9), and the front end of the sliding block (43) is provided with the handle (9).
4. A device for the thermostatic control of golden soft-shelled turtle according to claim 3, further comprising a grid stabilizing mechanism (5) for improving the stability of the grid plate (31), wherein the grid stabilizing mechanism (5) comprises guide rods (51), sliding plates (52) and second springs (53), four guide rods (51) are arranged in the middle of the front part of the shielding plate (2), the sliding plates (52) capable of clamping the grid plate (31) are connected between the guide rods (51) in a sliding manner, the second springs (53) are connected between the sliding plates (52) and the guide rods (51), the sliding plates (52) are connected with the shielding plate (2) in a sliding manner, and the sliding plates (52) are in contact with the grid plate (31).
5. The device for the thermostatic control cultivation of golden soft-shelled turtles according to claim 4, further comprising an automatic ejection mechanism (6) capable of automatically retracting the elastic cloth (411), wherein the automatic ejection mechanism (6) comprises a second sleeve plate (61), a sliding rod (62), a pushing rod (63) and a third spring (64), the second sleeve plate (61) is connected to the upper side of the inner rear wall of the connecting outer frame (1), the sliding rod (62) capable of enabling the locking plate (45) to release the sliding block (43) is connected to the second sleeve plate (61) in a sliding mode, the third spring (64) is connected between the sliding rod (62) and the second sleeve plate (61), the sliding rod (62) is in contact with the locking plate (45), and the pushing rod (63) is arranged at the top of the sliding rod (62).
6. The device for cultivating the golden soft-shelled turtle under the constant temperature control according to claim 5 is characterized by further comprising a pollution discharge and heat dissipation mechanism (8) capable of discharging sundries, wherein the pollution discharge and heat dissipation mechanism (8) comprises a second concave-convex plate (81), a scraping plate (82), a second connecting pipe (83), a second rotating plate (84) and a second torsion spring (85), the second concave-convex plate (81) is installed in the middle of the lower part of the front wall of the connecting frame (1), the scraping plate (82) capable of pushing out the sundries is slidably connected to the lower part of the connecting frame (1), the second connecting pipe (83) is installed in the middle of the front part of the scraping plate (82), the second rotating plate (84) is rotatably connected to the second connecting pipe (83), the second torsion spring (85) is connected between the second rotating plate (84) and the second connecting pipe (83), and the second rotating plate (84) is clamped with the second connecting pipe (83).
CN202210721638.9A 2022-06-24 2022-06-24 Golden soft-shelled turtle constant temperature control breeding device Active CN115053860B (en)

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