Temperature control type hatching tray based on pigeon breeding

By introducing heat transfer pipe and rotary casing structure into the pigeon hatching tray, automatic flip and uniform heating are achieved, which solves the problems of uneven heating and low manual flip efficiency of existing hatching trays, and improves the incubation efficiency.

CN223053686UActive Publication Date: 2025-07-04FUPING SELENIUM PIGEON IND CO LTD
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Patent Information

Application Number
CN202421979704.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-07-04
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The existing pigeon hatching tray has a simple structure and cannot achieve uniform heating. It requires manual flip of pigeon eggs, which has low hatching efficiency.

Method used

A temperature-controlled incubation tray is designed, using a heat transfer tube and a rotary casing structure, which is heated and automatically flipped through hot water circulation to achieve uniform heating and automatic flip.

Benefits of technology

The uniform heating and automatic flip of pigeon eggs in the hatching tray is achieved, which improves the hatching efficiency and reduces manual operation.

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Abstract

The temperature control type hatching tray based on pigeon breeding comprises a square-frame-shaped tray body, the bottom of the tray body is of a closed structure, the top of the tray body is of an open structure, and a tray cover matched with an upper opening of the tray body is arranged on the upper opening of the tray body; a plurality of heat transfer pipes are evenly arranged in the tray body at intervals, one ends of the heat transfer pipes extend to the outside of the tray body and jointly communicate with a water supply pipe, and the water supply pipe communicates with a water heater of a circulating water system. The other ends of the plurality of heat transfer pipes respectively extend to the outer part of the disc body and are jointly communicated with a water return pipe; the water return pipe is communicated with a water return pool of a circulating water system; the peripheral wall of each heat transfer pipe is rotationally sleeved with a rotating sleeve. The goose egg hatching device can meet the temperature condition of simulated hatching, and can automatically turn over pigeon eggs, so that the pigeon eggs are uniformly heated in the hatching tray, and goose egg hatching is facilitated.
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Description

Technical Field

[0001] The utility model relates to the field of pigeon breeding, in particular to a temperature-controlled hatching tray based on pigeon breeding. Background Technique

[0002] At the present stage, pigeon breeding has entered the stage of batch development, and artificial incubation has been a mature technology applied in the field of pigeon breeding. By means of artificial bionics to imitate the incubation of female poultry, the incubation efficiency can be effectively improved. The hatching tray is an important auxiliary tool applied in the process of artificial incubation. By placing pigeon eggs on the hatching tray and supplemented with heating means, the purpose of bionic incubation of pigeons can be achieved. However, the hatching trays applied in pigeon breeding at the present stage are generally of simple fixed structures, unable to uniformly heat the pigeon eggs, which is not conducive to the incubation of pigeon eggs. It is necessary to manually turn the pigeon eggs on the hatching tray, with low efficiency. Therefore, a temperature-controlled hatching tray based on pigeon breeding is developed. Content of the Utility Model

[0003] The purpose of the utility model is to provide a temperature-controlled hatching tray based on pigeon breeding to solve the technical problems mentioned in the above background technique.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme:

[0005] A temperature-controlled hatching tray based on pigeon breeding of the utility model includes a square frame-shaped tray body. The bottom of the tray body is a closed structure, and the top is an open structure. And a tray cover adapted to it is arranged at the upper opening of the tray body; a plurality of heat transfer tubes are evenly spaced inside the tray body. One ends of the plurality of heat transfer tubes respectively extend to the outside of the tray body and are commonly connected to a water supply pipe, and the water supply pipe is connected to a water heater of a circulating water system. The other ends of the plurality of heat transfer tubes respectively extend to the outside of the tray body and are commonly connected to a water return pipe, and the water return pipe is connected to a water return pool of the circulating water system; rotating sleeves are respectively rotatably sleeved on the outer peripheral walls of the heat transfer tubes. Two ends of each rotating sleeve respectively extend to the outside of the tray body and are respectively rotatably matched with the side wall of the tray body through bearings; a motor for driving the plurality of rotating sleeves to rotate synchronously is arranged outside the tray body.

[0006] Further, a heat insulation layer is arranged on the outer wall of the tray body.

[0007] Further, one ends of the plurality of heat transfer tubes are commonly connected to one side of a water inlet adapter pipe, and the middle of the other side of the water inlet adapter pipe is connected to the water supply pipe; the other ends of the plurality of heat transfer tubes are commonly connected to one side of a water outlet adapter pipe, and the middle of the other side of the water outlet adapter pipe is connected to the water return pipe.

[0008] Furthermore, limit rings are fixedly arranged at the positions of both ends of each of the heat transfer tubes close to their corresponding rotating sleeves.

[0009] Furthermore, a driving pulley is fixedly arranged on the driving shaft of the motor. Double-groove pulleys are sleeved on one ends of the rotating sleeves close to the driving pulley. The driving pulley and the double-groove pulley close to it, and between every two adjacent double-groove pulleys are connected by transmission belts respectively.

[0010] Compared with the prior art, the beneficial technical effects of the present utility model are as follows:

[0011] The present utility model heats the pigeon eggs between adjacent rotating sleeves by the heat of the hot water flowing through each heat transfer tube in the form of heat transfer, so as to meet the temperature conditions for simulation incubation. And the present utility model can drive each rotating sleeve to rotate synchronously through the motor, so as to realize the automatic turning of the pigeon eggs placed between two adjacent rotating sleeves, make the pigeon eggs receive heat evenly in the incubation tray, facilitate the incubation of pigeon eggs, and there is no need to manually turn the pigeon eggs, thus improving the incubation efficiency. Description of the Drawings

[0012] The present utility model will be further described below with reference to the drawings.

[0013] Figure 1 It is the top view of the tray body of the present utility model;

[0014] Figure 2 It is the sectional structural schematic diagram of the present utility model;

[0015] Description of the reference numerals: 1, tray body; 2, heat insulation layer; 3, tray cover; 4, heat transfer tube; 5, water supply pipe; 6, inlet adapter; 7, return water pipe; 8, outlet adapter; 9, rotating sleeve; 10, limit ring; 11, motor; 12, driving pulley; 13, double-groove pulley; 14, transmission belt. Detailed Embodiment

[0016] As Figure 1 - Figure 2 shown, a temperature-controlled incubation tray based on pigeon breeding includes a square tray body 1. The bottom of the tray body 1 is a closed structure, and the top is an open structure. A heat insulation layer 2 is arranged on the outer wall of the tray body 1, and a tray cover 3 adapted to it is installed at the upper opening of the tray body 1. A plurality of heat transfer tubes 4 are evenly spaced inside the tray body 1.

[0017] One end of each of the plurality of heat transfer tubes 4 extends to the outside of the disc body 1 and is commonly connected to a water supply pipe 5. Specifically: One end of each of the plurality of heat transfer tubes 4 is commonly connected to one side of an inlet water adapter tube 6, the middle of the other side of the inlet water adapter tube 6 is connected to one end of the water supply pipe 5, and the other end of the water supply pipe 5 is connected to the water outlet end of a water heater of a circulating water system located outside the disc body.

[0018] The other ends of the plurality of heat transfer tubes 4 extend to the outside of the disc body 1 and are commonly connected to a return water pipe 7. Specifically: The other ends of the plurality of heat transfer tubes 4 are commonly connected to one side of an outlet water adapter tube 8, the middle of the other side of the outlet water adapter tube 8 is connected to one end of the return water pipe 7, and the other end of the return water pipe 7 is connected to a return water pool of the circulating water system.

[0019] The circulating water system in this embodiment includes a temperature-adjustable water heater. The return water pool is connected to the water inlet end of the water heater through a corresponding connecting pipeline, and a circulating pump is installed on the connecting pipeline. The hot water generated by the water heater enters each heat transfer tube through the water supply pipe, then flows back to the return water pool through the return water pipe, and the cold water flowing back from the return water pool is supplied to the water heater through the corresponding pipeline, thereby forming a water-heat circulation water path.

[0020] A rotating sleeve 9 is rotatably sleeved on the outer peripheral wall of each heat transfer tube 4. Both ends of each rotating sleeve 9 extend to the outside of the disc body 1 and are respectively rotationally matched with the side wall of the disc body 1 through bearings. In addition, a limiting ring 10 is fixedly arranged at a position near both ends of each heat transfer tube 4 corresponding to its rotating sleeve 9.

[0021] A motor 11 for driving the plurality of rotating sleeves 9 to rotate synchronously is installed outside the disc body 1. In this embodiment, a driving pulley 12 is fixedly installed on the driving shaft of the motor 11. A double-groove pulley 13 is fixedly sleeved on one end of each rotating sleeve 9 close to the driving pulley 12. The driving pulley 12 and the double-groove pulley 13 close to it, and between each adjacent two double-groove pulleys 13 are respectively connected by a transmission belt 14.

[0022] The working principle of the present utility model is as follows: The pigeon eggs are placed between two adjacent rotating sleeves in the disc body. The hot water produced by the water heater enters each heat transfer tube through the water supply pipe, and the heat of the hot water flowing through each heat transfer tube heats the pigeon eggs by means of heat transfer, thereby meeting the temperature conditions for simulation incubation. And the present utility model can drive each rotating sleeve to rotate synchronously through the motor, so as to realize the automatic turning of the pigeon eggs placed between two adjacent rotating sleeves, make the pigeon eggs receive uniform heat in the hatching tray, be beneficial to the hatching of pigeon eggs, and there is no need to manually turn the pigeon eggs, improving the hatching efficiency.

[0023] The embodiments described above are only descriptions of the preferred embodiments of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope determined by the claims of the present invention.

Claims

1. A temperature-controlled hatching tray based on pigeon breeding, characterized in that: It includes a box-shaped disk body. The bottom of the disk body is a closed structure, and the top is an open structure. And a disk cover adapted to it is arranged at the upper opening of the disk body. A plurality of heat transfer tubes are evenly spaced inside the disk body. One ends of the plurality of heat transfer tubes respectively extend to the outside of the disk body and are jointly connected to a water supply pipe, and the water supply pipe is connected to a water heater in a circulating water system. The other ends of the plurality of heat transfer tubes respectively extend to the outside of the disk body and are jointly connected to a water return pipe, and the water return pipe is connected to a water return pool in the circulating water system. Rotating sleeves are respectively rotatably sleeved on the outer peripheral walls of the heat transfer tubes. Both ends of each rotating sleeve respectively extend to the outside of the disk body and are respectively rotationally matched with the side wall of the disk body through bearings. A motor for driving the plurality of rotating sleeves to rotate synchronously is arranged outside the disk body.

2. The temperature-controlled hatching tray based on pigeon breeding according to claim 1, wherein: A heat insulation layer is arranged on the outer wall of the disk body.

3. The temperature-controlled hatching tray based on pigeon breeding according to claim 1, wherein: One ends of the plurality of heat transfer tubes are jointly connected to one side of an inlet adapter pipe, and the middle of the other side of the inlet adapter pipe is connected to the water supply pipe. The other ends of the plurality of heat transfer tubes are jointly connected to one side of an outlet adapter pipe, and the middle of the other side of the outlet adapter pipe is connected to the water return pipe.

4. The temperature-controlled hatching tray based on pigeon breeding according to claim 1, wherein: Limit rings are respectively fixedly arranged at positions of each heat transfer tube close to both ends of its corresponding rotating sleeve.

5. The temperature-controlled hatching tray based on pigeon breeding according to claim 1, wherein: A driving pulley is fixedly arranged on the driving shaft of the motor. Double-groove pulleys are respectively sleeved on one ends of each rotating sleeve close to the driving pulley. The driving pulley and the double-groove pulley it is close to, and between each adjacent two double-groove pulleys are respectively connected by transmission belts.