Constant-temperature hatching device for ostrich eggs
By designing a constant-temperature incubation device for ostrich eggs, using humidity and temperature sensors for monitoring, and combining a misting humidifier and heat dissipation components, the problem of unstable temperature and humidity control in ostrich egg incubation devices was solved, improving incubation efficiency and equipment flexibility.
Patent Information
- Application Number
- CN202520454401.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Existing ostrich egg incubation equipment has shortcomings in temperature and humidity control, temperature response, and equipment flexibility, resulting in an unstable incubation environment and low incubation efficiency.
An ostrich egg constant temperature incubation device was designed, comprising an incubator, a heat dissipation component, and an incubation component. The device uses a humidity sensor, a temperature sensor, and a monitoring instrument for environmental monitoring. It uses a misting humidifier and a heat lamp to regulate humidity and temperature, and the heat dissipation component rapidly cools down the eggs at high temperatures. The heat dissipation component includes a trapdoor and a rope retractor to achieve rapid heat dissipation.
It achieves precise temperature and humidity control of the incubation environment, improves incubation efficiency, prevents incubation failure caused by excessive temperature, and enhances the flexibility and stability of the equipment.
Smart Images

Figure CN223885984U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of incubation devices, specifically relating to a constant temperature incubation device for ostrich eggs. Background Technology
[0002] In nature, female ostriches incubate their eggs by using their body temperature and periodically turning the eggs over. Although this method is primitive, it preserves the genetic diversity and adaptive characteristics of the ostrich population. With the development of ostrich farming, artificial incubation technology has gradually matured. Artificial incubation devices can simulate the conditions of natural incubation, providing a more stable and controllable incubation environment for ostrich eggs.
[0003] In the existing technology, ostrich egg incubation devices have many shortcomings in terms of temperature and humidity control, temperature response, incubation efficiency and equipment flexibility. Specifically, the original incubation devices often cannot accurately control temperature and humidity, resulting in an unstable incubation environment. In hot weather, the temperature inside the incubation box may be too high, and the heat dissipation mechanism is not fast and effective enough, which can easily lead to ostrich egg incubation failure. At the same time, low incubation efficiency and inflexible equipment structure are also problems to be solved.
[0004] Therefore, a constant temperature incubation device for ostrich eggs is proposed, which has an incubation structure and an induction heat dissipation structure. It can automatically and quickly dissipate heat and cool down when the weather is too hot, thus solving the problems of insufficient temperature control and incubation efficiency in the existing ostrich egg incubation devices. Utility Model Content
[0005] In order to overcome the shortcomings of existing ostrich egg incubation devices in terms of temperature control and incubation efficiency, a constant temperature incubation device for ostrich eggs is proposed.
[0006] The technical solution of this utility model is as follows: a constant temperature incubation device for ostrich eggs, including an incubation box; it also includes a heat dissipation component and an incubation component. The incubation box is equipped with an incubation component, which includes a fixing plate, a limiting slide rail, a placement plate, an ostrich egg placement belt, connecting columns, a collection box, a misting humidifier, and a heat lamp. Two fixing plates are provided at the lower end of the inner wall of the incubation box. Two limiting slide rails are respectively provided at the ends of the two fixing plates that are close to each other. A placement plate is slidably arranged on the relatively parallel limiting slide rails on the two fixing plates. Four connecting columns are fixedly connected to the lower end of the placement plate. A collection box is fixedly connected to the lower end of the four connecting columns. Four ostrich egg placement belts are provided on the placement plate. Two misting humidifiers and a heat lamp are respectively fixedly connected to the ends of the two fixing plates that are close to each other.
[0007] Preferably, the incubator has a front-flipping door that rotates at the front, with two monitoring windows at the front end of the door, and a heat dissipation component installed on the door.
[0008] Preferably, the heat dissipation assembly includes a first groove, a trapdoor, a rope rewinder, and a limiting plate; the first groove is provided through both the front and rear ends of the front-flipping door, and the trapdoor is rotatably mounted on the first groove.
[0009] Preferably, the rear end of the front-flipping door is fixedly connected to two rope retractors, the retracted ends of which are connected to the rear end of the trapdoor, and a limit plate is fixedly connected to the upper end of the inner wall of the first groove.
[0010] Preferably, a rear cover is fixed to the right end of the incubator, and ventilation slots are opened through the left and right ends of the rear cover. Dustproof nets are installed on the ventilation slots. A motor is fixed to the left end of the rear cover, and a fan blade is fixed to the left end of the motor's output shaft.
[0011] Preferably, a heating element is fixed to the left end of the back cover, and the motor is located inside the heating element.
[0012] Preferably, a humidity sensor and a temperature sensor are installed on the upper part of the inner wall of the incubator.
[0013] Preferably, a monitoring device is fixedly connected to the rear end of the incubator. The monitoring device is electrically connected to the humidity sensor and the fan blades, and the monitoring device is electrically connected to two rope retractors.
[0014] The beneficial effects of this utility model are as follows: By placing ostrich eggs in the ostrich egg placement belt, and then humidifying the incubator by turning on the atomizing humidifier, the humidity inside the incubator can be regulated by a humidity sensor. After turning on the heating lamp and heating element, the motor drives the fan blades to transfer heat to the ostrich eggs. The temperature inside the incubator can be kept constant by a temperature sensor. Temperature and humidity information are displayed by a monitor. When the weather is too hot and the temperature inside the incubator is too high, the heat dissipation component quickly cools down the incubator. By closing the rope retractor, the trapdoor flips downward under its own weight. Then, the motor power is increased, and the fan blades quickly expel the hot air inside the incubator, thereby preventing the temperature from getting too high and causing the ostrich eggs to fail to hatch. After the temperature is controlled, by opening the two rope retractors, the rear end of the trapdoor is pulled together with the front end of the limiting plate by the rope retractor, thereby causing the first groove to be completely closed. Attached Figure Description
[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of the ostrich egg constant temperature incubation device of this utility model.
[0016] Figure 2 The diagram shows a three-dimensional structural schematic of the heat dissipation structure of the ostrich egg constant temperature incubation device of this utility model.
[0017] Figure 3This invention relates to a constant-temperature incubation device for ostrich eggs. Figure 2 A schematic diagram of the partial three-dimensional structure at point A;
[0018] Figure 4 The diagram shown is a three-dimensional structural schematic of the incubation components of the ostrich egg constant temperature incubation device of this utility model.
[0019] Figure 5 The diagram shows a three-dimensional structural schematic of the ventilation structure of the ostrich egg constant temperature incubation device of this utility model.
[0020] The labels in the attached diagram are as follows: 1. Incubator; 101. Fixing plate; 102. Limiting slide rail; 103. Placement plate; 104. Ostrich egg placement belt; 105. Connecting column; 106. Collection box; 107. Atomizing humidifier; 108. Heat lamp; 2. Front flip door; 3. Rear cover; 4. Heating element; 5. Ventilation slot; 6. Dustproof net; 7. Motor; 8. Fan blade; 9. Humidity sensor; 10. Temperature sensor; 11. Monitoring instrument; 12. First tank; 13. Trap door; 14. Rope reel; 15. Limiting plate; 16. Monitoring window. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-5This utility model provides an embodiment of an ostrich egg constant temperature incubation device, including an incubation box 1; it also includes a heat dissipation component and an incubation component. The incubation component is provided on the incubation box 1. The incubation component includes a fixing plate 101, a limiting slide rail 102, a placement plate 103, an ostrich egg placement belt 104, connecting columns 105, a collection box 106, a misting humidifier 107, and a heat lamp 108. Two fixing plates 101 are provided at the lower end of the inner wall of the incubation box 1. Two limiting slide rails 102 are respectively provided at the ends of the two fixing plates 101 that are close to each other. The placement plate 103 is slidably arranged on the relatively parallel limiting slide rails 102 on the two fixing plates 101. Four connecting columns 105 are fixedly connected to the lower end of the placement plate 103. The collection box 106 is fixedly connected to the lower end of the four connecting columns 105. Four ostrich egg placement straps 104 are provided on the placement plate 103. Two atomizing humidifiers 107 and a heat lamp 108 are fixed to the two fixed plates 101 at their close ends. The ostrich eggs are placed in the ostrich egg placement straps 104, and then the atomizing humidifiers 107 are turned on to humidify the incubator 1. The humidity in the incubator 1 can be adjusted by using a humidity sensor 9. After the heat lamp 108 is turned on and the heating element 4 is turned on, the fan blades 8 driven by the motor 7 are rotated to transfer heat to the ostrich eggs. The temperature in the incubator 1 can be kept constant by using a temperature sensor 10. The temperature and humidity information are displayed by a monitor 11. When the weather is too hot and the temperature in the incubator 1 is too high, the heat dissipation components will quickly cool down the incubator 1.
[0023] Please see Figures 1-3In this embodiment, the front end of the incubator 1 is rotatably equipped with a front-flipping door 2. Two monitoring windows 16 are provided on the front end of the front-flipping door 2. A heat dissipation assembly is provided on the front-flipping door 2. The monitoring windows 16 on the front-flipping door 2 allow monitoring of the conditions inside the incubator 1. The heat dissipation assembly includes a first groove 12, a trapdoor 13, a rope retractor 14, and a limiting plate 15. The front-flipping door 2 has a first groove 12 extending through both its front and rear ends. A trapdoor 13 is rotatably mounted on the first groove 12. Two rope retractors 14 are fixedly connected to the rear end of the front-flipping door 2. The retracted ends of the rope retractors 14 are connected to the rear end of the trapdoor 13. A limiting plate 15 is fixedly connected to the upper end of the inner wall of the first groove 12. By closing the rope retractors 14, the trapdoor 13 is forced downwards by its own weight. The incubator is flipped over, and then the power of motor 7 is increased. The hot air inside the incubator 1 is quickly expelled by the rotation of fan blade 8 to prevent the temperature from getting too high and causing the ostrich eggs to fail to hatch. After the temperature is controlled, the two rope retractors 14 are opened. The trapdoor 13 is pulled by the rope retractors 14 to make the rear end of the trapdoor 13 fit with the front end of the limiting plate 15, thereby causing the first trough 12 to be completely closed. A humidity sensor 9 and a temperature sensor 10 are installed on the upper end of the inner wall of the incubator 1. The humidity sensor 9 and the temperature sensor 10 are used to monitor and control the temperature and humidity inside the incubator 1. A monitoring instrument 11 is fixedly connected to the rear end of the incubator 1. The monitoring instrument 11 is electrically connected to the humidity sensor 9 and fan blade 8. The monitoring instrument 11 is also electrically connected to the two rope retractors 14.
[0024] Please see Figure 1 and Figure 5 In this embodiment, a rear cover 3 is fixedly connected to the right end of the incubator 1. Ventilation slots 5 are provided through the left and right ends of the rear cover 3. A dustproof net 6 is provided on the ventilation slots 5. A motor 7 is fixedly connected to the left end of the rear cover 3. A fan blade 8 is fixedly connected to the left end of the output shaft of the motor 7. A heating tube 4 is fixedly connected to the left end of the rear cover 3. The motor 7 is located inside the heating tube 4. During use, the motor 7 is turned on at low power, and the motor 7 drives the fan blade 8 to rotate, thereby ensuring the airflow in the incubator 1. The heating tube 4 on the incubator 1 facilitates the secondary adjustment of the temperature in the incubator 1.
[0025] In use, ostrich eggs are placed in the ostrich egg placement belt 104, and then the atomizing humidifier 107 is turned on to humidify the incubator 1. The humidity sensor 9 regulates the air humidity inside the incubator 1. After the heating lamp 108 and heating element 4 are turned on, the motor 7 drives the fan blades 8 to rotate, transferring heat to the ostrich eggs. The temperature sensor 10 maintains a constant temperature inside the incubator 1. Temperature and humidity information are displayed on the monitor 11. When the weather is too hot and the temperature inside the incubator 1 becomes too high, the rope retractor 14 is closed, allowing the trapdoor 13 to be controlled by the windshield. The ostrich eggs are flipped downwards due to gravity, and then the power of motor 7 is increased. The hot air inside the incubator 1 is quickly expelled by the rotation of fan blade 8, thus preventing the temperature from getting too high and causing the ostrich eggs to fail to hatch. After the temperature is controlled, the two rope retractors 14 are opened, and the trapdoor 13 is pulled by the rope retractors 14 to make the rear end of the trapdoor 13 fit with the front end of the limiting plate 15, thus causing the first trough 12 to be completely closed. The dustproof net 6 on the ventilation slot 5 can ensure that dust does not enter the incubator 1 during the air circulation. The situation inside the incubator 1 can be monitored through the monitoring window 16.
Claims
1. An ostrich egg constant temperature incubation device, comprising an incubator (1); characterized in that: It also includes a heat dissipation component and an incubation component. The incubation box (1) is equipped with an incubation component, which includes a fixing plate (101), a limiting slide rail (102), a placement plate (103), an ostrich egg placement belt (104), a connecting column (105), a collection box (106), a misting humidifier (107), and a heat lamp (108). The lower end of the inner wall of the incubation box (1) is provided with two fixing plates (101), and two limiting slide rails are respectively provided at the ends of the two fixing plates (101) that are close to each other. 102) A placement plate (103) is slidably mounted on the parallel limiting slide rails (102) on the two fixed plates (101). Four connecting posts (105) are fixedly connected to the lower end of the placement plate (103). A collection box (106) is fixedly connected to the lower end of the four connecting posts (105). Four ostrich egg placement straps (104) are provided on the placement plate (103). Two atomizing humidifiers (107) and a heat lamp (108) are fixedly connected to the ends of the two fixed plates (101) that are close to each other.
2. The ostrich egg constant temperature incubation device according to claim 1, characterized in that: The incubator (1) has a front-flipping door (2) at the front end, and two monitoring windows (16) are provided on the front end of the front-flipping door (2). A heat dissipation component is provided on the front-flipping door (2).
3. The ostrich egg constant temperature incubation device according to claim 2, characterized in that: The heat dissipation assembly includes a first groove (12), a trapdoor (13), a rope rewinder (14), and a limiting plate (15); the front flip door (2) has the first groove (12) through it at both ends, and the trapdoor (13) is rotatably mounted on the first groove (12).
4. The ostrich egg constant temperature incubation device according to claim 2, characterized in that: Two rope retractors (14) are fixedly connected to the rear end of the front flip door (2). The retracted end of the rope retractor (14) is connected to the rear end of the trapdoor (13). A limit plate (15) is fixedly connected to the upper end of the inner wall of the first groove (12).
5. The ostrich egg constant temperature incubation device according to claim 1, characterized in that: The right end of the incubator (1) is fixed with a rear cover (3), and ventilation slots (5) are opened through the left and right ends of the rear cover (3). A dustproof net (6) is installed on the ventilation slots (5). The left end of the rear cover (3) is fixed with a motor (7), and the left end of the output shaft of the motor (7) is fixed with a fan blade (8).
6. The ostrich egg constant temperature incubation device according to claim 5, characterized in that: A heating element (4) is fixed to the left end of the back cover (3), and the motor (7) is located inside the heating element (4).
7. The ostrich egg constant temperature incubation device according to claim 1, characterized in that: A humidity sensor (9) and a temperature sensor (10) are installed on the upper part of the inner wall of the incubator (1).
8. The ostrich egg constant temperature incubation device according to claim 1, characterized in that: A monitoring instrument (11) is fixedly connected to the rear end of the incubator (1). The monitoring instrument (11) is electrically connected to the humidity sensor (9) and the fan blade (8). The monitoring instrument (11) is also electrically connected to two rope retractors (14).