Poultry hatching constant-temperature regulation and control box

By introducing alarm and temperature control devices into the poultry incubation thermostat, the problems of water level and temperature instability were solved, ensuring the stability of the incubation environment and the success rate of hatching.

CN223941280UActive Publication Date: 2026-02-24GUANGDONG GUANGXIN AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520741720.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-02-24
Estimated Expiration
2035-04-18

AI Technical Summary

Technical Problem

Existing poultry incubators with constant temperature control require manual monitoring of the water level in the tank periodically. Failure to replenish water in time may lead to insufficient humidity, affecting the hatching rate. Furthermore, the large difference between the water temperature and the ambient temperature inside the incubator can cause local temperature and humidity fluctuations, which also affect the hatching effect.

Method used

An alarm device and a temperature control device are used. The alarm device monitors the water level through a float and a squeezing rod and automatically triggers a water replenishment prompt. The temperature control device maintains a stable water temperature through a temperature sensor and a heating rod to ensure a suitable incubation environment.

Benefits of technology

It enables real-time monitoring and automatic adjustment of water level and temperature, preventing water shortage and temperature and humidity fluctuations, and improving hatching success rate and environmental stability.

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Abstract

The utility model discloses a poultry incubation constant-temperature regulation and control box, which belongs to the technical field of poultry incubation and comprises an incubation box, a cover plate is rotatably connected to the front side of the incubation box, a water tank is fixedly connected to the back side of the incubation box, a water inlet is arranged on the water tank, and an alarm device for monitoring water quantity in the water tank is fixedly connected in the water tank. The back face of the water tank is fixedly connected with a constant temperature device used for monitoring and heating water in the water tank. According to the utility model, when the water volume of the water tank is gradually reduced, the floating block moves along with the descending of the water level to drive the extrusion rod to slide in the sliding chute, when the water level is lowered to a preset low position, the extrusion rod moves to the triggering position of the pressing type alarm to trigger the pressing type alarm to give a water replenishing prompt to remind an operator to add water in time, and after the water replenishing is completed, the water level rises; the floating block drives the extrusion rod to be far away from the trigger point, and the pressing type alarm resets and stops alarming, so that the water level of the water tank is monitored in real time, and water shortage is effectively prevented.
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Description

Technical Field

[0001] This utility model belongs to the field of poultry incubation technology, and in particular relates to a poultry incubation constant temperature control box. Background Technology

[0002] The poultry incubator is a device specifically designed for the incubation of poultry such as chickens, ducks, and geese. It features constant temperature control, humidity regulation, automatic egg turning, and ventilation. It can simulate the natural incubation environment of the mother poultry, providing stable and safe conditions for embryo development. This device is widely used in farms and home incubation, effectively improving the hatching success rate and breeding efficiency.

[0003] In practical use, existing technologies typically require manual monitoring of the water level in the tank periodically. Failure to replenish water in time can lead to insufficient humidity inside the tank, affecting normal embryo development and reducing the hatching rate. Furthermore, a significant difference between the water temperature and the ambient temperature inside the incubator can cause localized temperature and humidity fluctuations, disrupting the stability of the incubation environment and impacting the overall hatching outcome.

[0004] Based on this, this utility model designs a poultry incubation temperature control box to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to address the problems in existing technologies where, during practical use, it is usually necessary to manually monitor the water level in the tank periodically. If water is not replenished in time, insufficient humidity inside the tank may occur, affecting normal embryo development and reducing the hatching rate. Furthermore, a significant difference between the water temperature and the ambient temperature inside the incubator may cause localized temperature and humidity fluctuations, thus interfering with the stability of the incubation environment and affecting the overall hatching effect. Therefore, this invention proposes a poultry incubator with a constant temperature control system.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A poultry incubation temperature control box includes an incubator, a cover plate rotatably connected to the front of the incubator, a water tank fixedly connected to the back of the incubator, a water inlet on the water tank, an alarm device for monitoring the water level in the water tank fixedly connected inside the water tank, and a temperature control device for monitoring and heating the water level in the water tank fixedly connected to the back of the water tank.

[0008] As a further description of the above technical solution:

[0009] The alarm device includes a frame, a sliding rod, and a push-button alarm. The frame is fixedly connected inside the water tank, and a sliding groove is provided inside the frame. The sliding rod is fixedly connected inside the water tank, and a float is provided outside the sliding rod. A pressing rod is fixedly connected outside the float and is engaged in the sliding groove. The push-button alarm is fixedly connected to the back of the water tank.

[0010] As a further description of the above technical solution:

[0011] The float and the slide rod form a sliding connection.

[0012] As a further description of the above technical solution:

[0013] The pressing end of the press-type alarm is connected through the water tank and the frame, and is located in the sliding groove.

[0014] As a further description of the above technical solution:

[0015] The width of the extrusion rod is slightly smaller than the width of the slide groove, and the extrusion rod and the slide groove form a sliding connection.

[0016] As a further description of the above technical solution:

[0017] The constant temperature device includes a controller, a temperature sensor, and a heating base. The controller is fixedly connected to the back of the water tank, the temperature sensor is fixedly connected to the back of the water tank, and the heating base is connected through the water tank. A heating rod is fixedly connected to the outside of the heating base inside the water tank.

[0018] As a further description of the above technical solution:

[0019] The controller is electrically connected to the temperature sensor and the heating base.

[0020] As a further description of the above technical solution:

[0021] The monitoring end of the temperature sensor is connected through the water tank.

[0022] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:

[0023] 1. In this utility model, when the water level in the tank gradually decreases, the float moves with the drop in water level, causing the squeezing rod to slide in the groove. When the water level drops to the preset low level, the squeezing rod moves to the trigger position of the push-button alarm, triggering the push-button alarm to issue a water replenishment reminder, reminding the operator to add water in time. After the water replenishment is completed, the water level rises, the float moves the squeezing rod away from the trigger point, the push-button alarm resets and stops alarming, thereby realizing real-time monitoring of the water level in the tank and effectively preventing water shortage.

[0024] 2. In this utility model, when the temperature sensor detects that the water temperature in the tank is lower than the preset threshold, the controller automatically starts the heating base to heat the heating rod. The heating rod heats the water until the water temperature reaches the preset temperature. Then the controller turns off the heating base to stop heating, so as to ensure that the water temperature is maintained within a suitable range and to ensure the stability of the incubation environment. Attached Figure Description

[0025] Figure 1 This is a three-dimensional structural diagram of a poultry incubation temperature control box proposed in this utility model;

[0026] Figure 2 This is a three-dimensional structural diagram of an alarm device for a poultry incubation temperature control box proposed in this utility model;

[0027] Figure 3 This is a three-dimensional cross-sectional structural diagram of the water tank of a poultry incubation thermostat proposed in this utility model.

[0028] Figure 4 This utility model proposes a poultry incubation temperature control box. Figure 3 An enlarged structural diagram of part A in the middle.

[0029] Legend:

[0030] 1. Incubator; 2. Cover; 3. Water tank; 4. Water inlet; 5. Alarm device; 51. Frame; 52. Slide rail; 53. Slide bar; 54. Float; 55. Squeeze bar; 56. Press-type alarm; 6. Temperature control device; 61. Controller; 62. Temperature sensor; 63. Heating base; 64. Heating rod. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0032] Please see Figures 1-4 ,

[0033] First embodiment:

[0034] This utility model provides a technical solution: a poultry incubation constant temperature control box, including an incubation box 1, a cover plate 2 rotatably connected to the front of the incubation box 1, a water tank 3 fixedly connected to the back of the incubation box 1, a water inlet 4 provided on the water tank 3, an alarm device 5 for monitoring the water level in the water tank 3 fixedly connected inside the water tank 3, and a constant temperature device 6 for monitoring and heating the water content in the water tank 3 fixedly connected to the back of the water tank 3.

[0035] Specifically, such as Figures 2-4 As shown, the alarm device 5 includes a frame 51, a slide bar 53, and a push-button alarm 56. The frame 51 is fixedly connected to the water tank 3. A slide groove 52 is provided inside the frame 51. The slide bar 53 is fixedly connected to the water tank 3. A float 54 is fitted over the slide bar 53. A pressing rod 55 is fixedly connected to the float 54. The pressing rod 55 and the float 54 are fixedly connected to each other to ensure that the pressing rod 55 can respond synchronously to the floating change of the float 54 when the water level changes. This avoids alarm triggering delay or false alarm caused by loose connection and enhances the response consistency and stability of the water level monitoring system.

[0036] The squeezing rod 55 is locked in the slide groove 52. The width of the squeezing rod 55 is slightly smaller than the width of the slide groove 52. The two form a precise sliding connection, which allows the squeezing rod 55 to move smoothly in the slide groove 52 under the influence of water level changes, effectively avoiding jamming and improving the sensitivity and stability of water level monitoring.

[0037] The push-button alarm 56 is fixedly connected to the back of the water tank 3. The float 54 and the slide bar 53 form a sliding connection. The float 54 is connected to the slide bar 53 by sliding, so that it can float up and down with the water level, while maintaining stable operation in the vertical direction, ensuring that the squeeze rod 55 can be accurately pushed to the trigger point of the push-button alarm 56, thereby improving the accuracy of the alarm system.

[0038] The pressing end of the push-button alarm 56 is connected through the water tank 3 and the frame 51, and is located in the slide groove 52. The width of the pressing rod 55 is slightly smaller than the width of the slide groove 52, and the pressing rod 55 and the slide groove 52 form a sliding connection.

[0039] During operation, as the water level in water tank 3 gradually decreases, the float 54 moves with the drop in water level, causing the squeezing rod 55 to slide in the chute 52. When the water level drops to the preset low level, the squeezing rod 55 moves to the trigger position of the push-button alarm 56, triggering the push-button alarm 56 to issue a water replenishment reminder, reminding the operator to add water in time. After water replenishment is completed, the water level rises, the float 54 moves the squeezing rod 55 away from the trigger point, and the push-button alarm 56 resets and stops alarming, thereby realizing real-time monitoring of the water level in water tank 3 and effectively preventing water shortage.

[0040] Second embodiment:

[0041] Specifically, such as Figures 2-3 As shown, the constant temperature device 6 includes a controller 61, a temperature sensor 62, and a heating base 63. The controller 61 is fixedly connected to the back of the water tank 3, the temperature sensor 62 is fixedly connected to the back of the water tank 3, and the heating base 63 is connected through the water tank 3. A heating rod 64 is fixedly connected to the outside of the heating base 63 inside the water tank 3. The controller 61 is electrically connected to the temperature sensor 62 and the heating base 63. The controller 61 is electrically connected to the heating base 63, which can realize automatic start and stop control of the heating base 63, so that the heating process has intelligent response capability, avoids energy waste or excessive water temperature caused by long-term heating, and improves the safety and energy saving of the system operation.

[0042] The monitoring end of the temperature sensor 62 is connected through the water tank 3, and the heating rod 64 is firmly fixed to the outside of the heating base 63 to ensure that the heat can be efficiently and evenly conducted to the water during operation. At the same time, the heating rod 64 is in a stable position to avoid displacement during operation from affecting the heating effect, thereby improving thermal efficiency and temperature control accuracy.

[0043] During operation, when the temperature sensor 62 detects that the water temperature in the water tank 3 is lower than the preset threshold, the controller 61 automatically starts the heating base 63 to heat the heating rod 64. The heating rod 64 heats the water until the water temperature reaches the preset temperature. Then, the controller 61 turns off the heating base 63 to stop heating, so as to ensure that the water temperature is maintained within a suitable range and to ensure the stability of the incubation environment.

[0044] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A poultry incubation temperature control box, comprising an incubator (1), characterized in that, The incubator (1) is rotatably connected to a cover plate (2), and the back of the incubator (1) is fixedly connected to a water tank (3). The water tank (3) is provided with a water inlet (4). An alarm device (5) for monitoring the water volume in the water tank (3) is fixedly connected inside the water tank (3). A constant temperature device (6) for monitoring and heating the water content in the water tank (3) is fixedly connected to the back of the water tank (3).

2. The poultry incubation temperature control box according to claim 1, characterized in that, The alarm device (5) includes a frame (51), a slide bar (53), and a push-button alarm (56). The frame (51) is fixedly connected inside the water tank (3). A slide groove (52) is provided inside the frame (51). The slide bar (53) is fixedly connected inside the water tank (3). A float (54) is provided outside the slide bar (53). A pressing rod (55) is fixedly connected outside the float (54). The pressing rod (55) is engaged in the slide groove (52). The push-button alarm (56) is fixedly connected to the back of the water tank (3).

3. A poultry incubation temperature control box according to claim 2, characterized in that, The float (54) and the slide bar (53) form a sliding connection.

4. A poultry incubation temperature control box according to claim 2, characterized in that, The pressing end of the press-type alarm (56) is connected through the water tank (3) and the frame (51), and is located in the slide groove (52).

5. A poultry incubation temperature control box according to claim 2, characterized in that, The width of the extrusion rod (55) is slightly smaller than the width of the groove (52), and the extrusion rod (55) and the groove (52) form a sliding connection.

6. A poultry incubation temperature control box according to claim 1, characterized in that, The constant temperature device (6) includes a controller (61), a temperature sensor (62), and a heating base (63). The controller (61) is fixedly connected to the back of the water tank (3). The temperature sensor (62) is fixedly connected to the back of the water tank (3). The heating base (63) is connected through the water tank (3). A heating rod (64) is fixedly connected to the outside of the heating base (63) inside the water tank (3).

7. A poultry incubation temperature control box according to claim 6, characterized in that, The controller (61) is electrically connected to the temperature sensor (62) and the heating base (63).

8. A poultry incubation temperature control box according to claim 7, characterized in that, The monitoring end of the temperature sensor (62) is connected through the water tank (3).