Newborn calf nursing compartment

By installing heating and heat-insulating substrates and heat radiation devices in the nursery of newborn calves, combined with an automatic control system, the problem of small coverage area for warmth in newborn calves has been solved, achieving all-round warmth and environmental regulation, and promoting the healthy growth of newborn calves.

CN223844617UActive Publication Date: 2026-01-30NINGXIA CHUANGYAOXIN TECH CO LTD
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Patent Information

Application Number
CN202422731557.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-10
Publication Date
2026-01-30
Estimated Expiration
2034-11-10

AI Technical Summary

Technical Problem

Existing technologies have limited coverage for warming newborn calves, failing to provide comprehensive warmth and resulting in uneven warmth distribution, which is detrimental to their growth and development.

Method used

Design a newborn calf nursery, which includes a heating and insulation substrate and a heat radiation irradiation device. The heating and insulation substrate is for the newborn calf to lie on, and the heat radiation irradiation device irradiates from the bottom up. Combined with ventilation, humidification and sterilization functions, the environmental parameters are automatically adjusted by a controller to maintain a suitable temperature and humidity.

Benefits of technology

It achieves comprehensive warmth of the newborn calf's body surface, maintains an appropriate body temperature, and helps the newborn calf grow and develop healthily.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223844617U_ABST
Patent Text Reader

Abstract

The utility model provides a newborn calf nursing compartment which comprises a nursing compartment body provided with a compartment door, a heating and heat preservation base plate arranged at the bottom in the nursing compartment body and used for newborn calves to lie down, and a heat radiation irradiation device arranged at the top in the nursing compartment body. The heat radiation irradiation device directly faces the bottom in the nursing compartment body to irradiate and warm the upper surface of the body of the newborn calf lying on the heating and heat preservation base plate, the irradiation coverage range of the heat radiation irradiation device is large, and the upper surface of the body of the newborn calf can be irradiated in a full range. The heating and heat preservation base plate and the heating and heat preservation base plate form up-down all-around temperature increasing and heat preservation, so that the body surface of the newborn calf is uniformly heated, the proper body temperature of the newborn calf is favorably maintained, and the growth and development of the newborn calf are facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of newborn calf heat preservation technology, specifically to a newborn calf nursery. Background Technology

[0002] In northern regions during winter, outdoor temperatures are low. Newborn calves are weak and their thermoregulation mechanisms are not yet fully developed, requiring warming facilities to support their growth and development. Currently, the commonly used warming facilities are independent insulated sheds, with heating blankets laid at the bottom or radiators installed on the walls. However, since newborn calves lie in the sheds, most of their upper body surface remains exposed. Heating blankets can only provide localized warmth to the bottom of the calf's body, and radiators can only provide localized warmth to one side of the calf's body. They cannot provide comprehensive warmth to the exposed surface of the calf, resulting in limited and uneven warmth coverage, which is detrimental to the growth and development of newborn calves. Utility Model Content

[0003] In view of this, it is necessary to provide a newborn calf nursery to solve the technical problems of the existing technology, which has a small coverage area for keeping newborn calves warm and cannot keep them warm in an all-round way.

[0004] The technical solution adopted by this utility model to solve its technical problem is:

[0005] A newborn calf nursery includes a nursery body with a door, a heating and insulation substrate at the bottom of the nursery body for the newborn calf to lie on, and a heat radiation irradiation device at the top of the nursery body. The heat radiation irradiation device is directed towards the bottom of the nursery body to irradiate the upper surface of the newborn calf lying on the heating and insulation substrate to warm it.

[0006] Preferably, the nursery body has ventilation openings on its side walls, and ventilation fans are installed on the ventilation openings to ventilate the nursery body.

[0007] Preferably, the nursery body is also equipped with a humidifier to regulate the humidity inside the nursery body.

[0008] Preferably, the incubator body is also equipped with a sterilization device.

[0009] Preferably, the nursery body is also equipped with an infrared thermometer for monitoring the body temperature of newborn calves and a video input device for capturing the condition of newborn calves.

[0010] Preferably, a weighing sensor is provided at the lower end of the heating and heat preservation substrate.

[0011] Preferably, the side wall and the door of the incubator body are made of transparent material.

[0012] Preferably, the side wall of the incubator body is further provided with a ventilation window, the ventilation window is close to the bottom of the incubator body, and an openable and closable sealing plate is arranged on the ventilation window.

[0013] Preferably, the incubator for newborn calves further comprises an output controller, a room temperature sensor and a humidity sensor are further arranged in the incubator body, the heating and heat preservation substrate, the heat radiation irradiation device, the air exchange fan, the humidifier, the room temperature sensor and the humidity sensor are electrically connected with the output controller, the room temperature sensor and the humidity sensor detect the room temperature and humidity in the incubator body, and transmit the room temperature and humidity signals to the output controller, and the output controller controls the opening and closing of the heating and heat preservation substrate, the heat radiation device, the air exchange fan and the humidifier according to the corresponding room temperature signal value and humidity signal value.

[0014] Preferably, the incubator for newborn calves further comprises a data collector and a field total controller, the data collector is electrically connected with the field total controller, the field total controller is electrically connected with the output controller, the room temperature sensor, the humidity sensor, the weighing sensor, the infrared temperature measuring instrument and the video input device are electrically connected with the data collector, the data collector receives the signals transmitted by the infrared temperature measuring instrument, the video input device, the weighing sensor, the humidity sensor and the room temperature sensor, and transmits the received signals to the field total controller, the field total controller receives the signals of the data collector, obtains the state, body temperature and body weight of the newborn calf in the incubator body, and the room temperature and humidity data of the incubator body according to the received signals, and sends control instructions to the output controller according to the room temperature and humidity data of the incubator body, and controls the opening and closing of the heating and heat preservation substrate, the heat radiation device, the air exchange fan and the humidifier through the output controller, so as to control the room temperature and humidity of the incubator body, and controls the air exchange fan and the sterilization device to open regularly through the output controller, so as to ventilate and sterilize the incubator body.

[0015] From the above technical solution, it can be seen that the incubator for newborn calves provided by the present application is provided with a heating and heat preservation substrate for the newborn calf to lie on at the bottom of the incubator body, and a heat radiation irradiation device is arranged at the top of the incubator body, the heat radiation irradiation device irradiates in the direction of the bottom of the incubator body, and irradiates the upper surface of the body of the newborn calf lying on the heating and heat preservation substrate, the heat radiation irradiation device has a large irradiation coverage range, can irradiate the upper surface of the body of the newborn calf in a full range, and forms a full range heating and heat preservation from top to bottom with the heating and heat preservation substrate, so that the body surface of the newborn calf is uniformly heated, which helps to maintain the appropriate body temperature of the newborn calf and is beneficial to the growth and development of the newborn calf. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a perspective view of the utility model.

[0017] Figure 2 It is a front view of the utility model.

[0018] Figure 3 It is a side view of the utility model.

[0019] Figure 4 It is a perspective view of the utility model in the state of the compartment door being opened.

[0020] Figure 5 It is Figure 2 It is a sectional view along A-A.

[0021] Figure 6 It is Figure 3 It is a sectional view along B-B.

[0022] Figure 7 It is a functional module diagram of the utility model.

[0023] In the figure: the incubation compartment body 10, the compartment door 11, the heating and heat preservation base plate 20, the heat radiation irradiation device 30, the air exchange fan 40, the humidifier 50, the sterilization device 60, the infrared thermometer 70, the video input device 80, the ventilation window 12, the sealing plate 13, the weighing sensor 14, the room temperature sensor 15, the humidity sensor 16, the support cross beam 17, the support plate 18, the output controller 90, the data collector 91, the field total controller 92. DETAILED DESCRIPTION

[0024] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiments, obviously, the drawings in the following description are some embodiments of the utility model, and for the ordinary skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.

[0025] Please refer to Figures 1 to 4The utility model embodiment provides a kind of newborn calf rearing compartment, including the rearing compartment body 10 being provided with compartment door 11, the bottom of rearing compartment body 10 being provided with the heating heat preservation base plate 20 for newborn calf to lie and the top of rearing compartment body 10 being provided with heat radiation irradiation device 30, rearing compartment body 10 is rectangular compartment, compartment door 11 is arranged in one side of rearing compartment body 10, can be opened and closed, for newborn calf and feeding staff access, it is convenient for feeding staff to carry out colostrum feeding, cleaning and other maintenance work.Heating heat preservation base plate 20 is a kind of carbon fiber electric heating plate, parallelly laid in rearing compartment body 10, for newborn calf to lie, and the lower surface of newborn calf body is heated and warmed, the heat radiation irradiation device 30 is opposite the bottom direction in rearing compartment body 10 and irradiates, and heat radiation irradiation device 30 is a kind of infrared bulb, the temperature in illumination area is raised by the heat radiation of infrared bulb, to irradiate and warm the upper surface of the body of newborn calf lying on heating heat preservation base plate 20, and infrared bulb irradiation coverage is large, can carry out full range irradiation to the upper surface of newborn calf body, and make the body of newborn calf be heated evenly, maintain appropriate body temperature, conducive to the growth and development of newborn calf.

[0026] Please continue to see Figure 1 Or Figure 4 Further, the upper end of the side wall of the rearing compartment body 10 is provided with a ventilation opening communicating with the external environment, and a ventilation fan 40 is arranged on the ventilation opening to ventilate the rearing compartment body 10.

[0027] Please see Figure 4 Further, a humidifier 50 is further arranged in the rearing compartment body 10 to regulate the humidity in the rearing compartment body 10.

[0028] Please see Figure 5 Further, a sterilization device 60 is further arranged in the rearing compartment body 10, and the sterilization device 60 is an ultraviolet sterilization lamp or a plasma air sterilizer, which can be used for sterilization and disinfection in the rearing compartment body 10.

[0029] Please see Figures 4 to 6Further, a support beam 17 is arranged in parallel on the bottom of the incubator compartment body 10, a load cell 14 is arranged on the upper end of the support beam 17, a support plate 18 for bearing the heat-generating heat preservation substrate 20 is arranged in parallel on the upper end of the load cell 14, the load cell 14 is evenly distributed on the four corners of the support plate 18, the support plate 18 is supported in parallel by the load cell 14, the heat-generating heat preservation substrate 20 for lying of the newborn calf is arranged in parallel on the upper surface of the support plate 18, the load cell 14 is electrically connected with the external load cell transmitter, when the newborn calf lies on the heat-generating heat preservation substrate 20, an external force is applied to the load cell 14 under the action of the downward pressure. Under the action of this external force, the sensitive element inside the load cell 14 will deform, causing a change in its resistance value. The external load cell transmitter detects the resistance change and converts it into an electric signal proportional to the size of the external force. After processing, the electric signal can display the weight of the measured object in digital form, so that the feeding staff can obtain and master the weight information of the newborn calf in time.

[0030] Please continue to see Figure 4 Further, the incubator compartment body 10 is also provided with an infrared thermometer 70 for monitoring the body temperature of the newborn calf and a video input device 80 for shooting the state of the newborn calf. The infrared thermometer 70 can measure the body temperature of the newborn calf, and the video input device 80 is a monitoring camera, which can be remotely observed by the staff through communication connection with the external video monitoring device.

[0031] Further, the side wall and the door 11 of the incubator compartment body 10 are made of transparent glass or transparent acrylic plate material, so that the feeding staff can observe the state of the newborn calf in the incubator compartment body 10.

[0032] Please see again Figure 1 and Figure 4 Further, the side wall of the incubator compartment body 10 is also provided with a ventilation window 12, which is close to the bottom of the incubator compartment body 10, and a seal plate 13 that can be opened or closed is arranged on the ventilation window 12. In cold winter, the seal plate 13 on the ventilation window 12 can be manually closed to improve the airtightness of the incubator compartment body 10, and when the temperature is high in summer, the seal plate 13 on the ventilation window 12 can be manually opened according to the needs to improve the air circulation efficiency of the incubator compartment body 10.

[0033] Please see Figure 7Further, the new-born calf incubation compartment is further provided with an output controller 90, and a room temperature sensor 15 and a humidity sensor 16 are arranged in the incubation compartment body 10, the heating and heat-insulating substrate 20, the heat radiation irradiation device 30, the air exchange fan 40, the humidifier 50, the sterilization device 60, the room temperature sensor 15 and the humidity sensor 16 are electrically connected with the output controller 90, the room temperature sensor 15 is used for monitoring the room temperature in the incubation compartment body 10, the humidity sensor 16 is used for monitoring the humidity in the incubation compartment body 10, the room temperature sensor 15 and the humidity sensor 16 respectively transmit the detected room temperature signal and humidity signal to the output controller 90, the output controller 90 controls the opening and closing of the heating and heat-insulating substrate 20, the heat radiation device and the humidifier 50 according to the corresponding control of the received room temperature signal value and humidity signal value, and controls the air exchange fan 40 and the sterilization device 60 to be started at a fixed time through the output controller 90, so as to ventilate and sterilize the air in the incubation compartment body 10.

[0034] Specifically, the output controller 90 is preset with a temperature value and a humidity value, after the output controller 90 receives the room temperature signal transmitted by the room temperature sensor 15, the room temperature signal is converted into a corresponding temperature value, and the temperature value is compared with the preset temperature value in the output controller 90, when the room temperature in the incubation compartment body 10 is lower than the lower limit of the temperature value set by the output controller 90, the output controller 90 controls the heating and heat-insulating substrate 20 and the heat radiation device to be started, and controls the opening power of the heat radiation device according to the temperature value, when the room temperature in the incubation compartment body 10 is higher than the upper limit of the temperature value set by the output controller 90, the output controller 90 controls the heating and heat-insulating substrate 20 and the heat radiation irradiation device 30 to stop working. After the output controller 90 receives the humidity signal transmitted by the humidity sensor 16, the humidity signal is converted into a corresponding humidity value, and the humidity value is compared with the preset humidity value in the output controller 90, when the humidity in the incubation compartment body 10 is lower than the lower limit of the humidity value set by the output controller 90, the output controller 90 controls the humidifier 50 to be started, so as to humidify the air in the incubation compartment body 10.

[0035] The output controller 90 can automatically control the heating and heat-insulating substrate 20, the heat radiation irradiation device 30 and the humidifier 50 to work, so that the room temperature and humidity in the incubation compartment body 10 are kept in a constant state, and the output controller 90 controls the air exchange fan 40 and the sterilization device 60 to be started at a fixed time, so as to ventilate and sterilize the air in the incubation compartment body 10, and create a comfortable environment for the new-born calf.

[0036] The output controller 90 can also be a temperature and humidity controller, which receives the detection signals of the room temperature sensor 15 and the humidity sensor 16, and controls the operation of the heating and insulation substrate 20, the heat radiation device 30 and the humidifier 50 according to the signal values of the room temperature sensor 15 and the humidity sensor 16.

[0037] Please refer to Figure 7 Further, the new-born calf incubator further comprises a data collector and a field controller, the data collector is electrically connected with the field controller, the field controller is electrically connected with the output controller 90, the room temperature sensor 15, the humidity sensor 16, the weighing sensor 14, the infrared temperature measuring instrument 70 and the video input device 80 are electrically connected with the data collector, the data collector receives the signals transmitted by the infrared temperature measuring instrument 70, the video input device 80, the weighing sensor 14, the humidity sensor 16 and the room temperature sensor 15, and transmits the received signals to the field controller, the field controller receives the signals of the data collector, obtains the state, the body temperature and the body weight of the new-born calf in the incubator body 10, and the room temperature and the humidity data of the incubator body 10, and sends control instructions to the output controller 90 according to the room temperature and the humidity data of the incubator body 10, controls the opening or closing of the heating and insulation substrate 20, the heat radiation device and the humidifier 50 through the output controller 90, so as to regulate the room temperature and the humidity of the incubator body 10, and controls the timing opening of the air exchanger 40 and the sterilization device 60 through the output controller 90, so as to ventilate and sterilize the incubator body 10, and provide a comfortable and safe environment for the new-born calf, and ensure the healthy growth and development of the new-born calf.

[0038] The above only discloses the preferred embodiments of the present application, and of course cannot limit the scope of the present application, and those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the present application still belong to the scope of the present application.

Claims

1. A neonatal calf rearing crate characterised in that: The application relates to a calf rearing compartment, which comprises a calf rearing compartment body provided with a door, a heat-generating heat preservation substrate arranged at the bottom of the calf rearing compartment body for a newborn calf to lie on, and a heat radiation irradiation device arranged at the top of the calf rearing compartment body and irradiating in the direction of the bottom of the calf rearing compartment body to irradiate the upper surface of the body of the newborn calf lying on the heat-generating heat preservation substrate.

2. The neonatal calf rearing crate of claim 1, wherein: A ventilation fan is arranged on the ventilation opening of the side wall of the calf rearing compartment body to ventilate the calf rearing compartment body.

3. The neonatal calf rearing crate of claim 2, wherein: A humidifier is arranged in the calf rearing compartment body to control the humidity in the calf rearing compartment body.

4. The neonatal calf rearing crate of claim 3, wherein: A sterilization device is arranged in the calf rearing compartment body.

5. The neonatal calf rearing crate of claim 4, wherein: An infrared temperature measuring instrument for monitoring the body temperature of the newborn calf and a video input device for shooting the state of the newborn calf are arranged in the calf rearing compartment body.

6. The neonatal calf rearing crate of claim 4, wherein: A weighing sensor is arranged at the lower end of the heat-generating heat preservation substrate.

7. The neonatal calf rearing crate of claim 6, wherein: The side wall and the door of the calf rearing compartment body are made of transparent materials.

8. The neonatal calf rearing crate of claim 7, wherein: A ventilation window is arranged on the side wall of the calf rearing compartment body, the ventilation window is close to the bottom of the calf rearing compartment body, and a sealable and closable sealing plate is arranged on the ventilation window.

9. The neonatal calf rearing crate of claim 6, wherein: An output controller is arranged in the calf rearing compartment body, a room temperature sensor and a humidity sensor are arranged in the calf rearing compartment body, the heat-generating heat preservation substrate, the heat radiation irradiation device, the ventilation fan, the humidifier, the room temperature sensor and the humidity sensor are electrically connected with the output controller, the room temperature sensor and the humidity sensor detect the room temperature and the humidity in the calf rearing compartment body, and the room temperature and the humidity signals are transmitted to the output controller, and the output controller controls the opening and closing of the heat-generating heat preservation substrate, the heat radiation device, the ventilation fan and the humidifier according to the corresponding room temperature signal value and humidity signal value.

10. The neonatal calf rearing crate of claim 9, wherein: A data collector and a field general controller are arranged, the data collector is electrically connected with the field general controller, the field general controller is electrically connected with the output controller, the room temperature sensor, the humidity sensor, the weighing sensor, the infrared temperature measuring instrument and the video input device are electrically connected with the data collector, the data collector receives the signals transmitted by the infrared temperature measuring instrument, the video input device, the weighing sensor, the humidity sensor and the room temperature sensor, and transmits the received signals to the field general controller, the field general controller receives the signals of the data collector, obtains the state, the body temperature and the body weight of the newborn calf in the calf rearing compartment body and the room temperature and humidity data of the calf rearing compartment body according to the received signals, sends control instructions to the output controller according to the room temperature and humidity data of the calf rearing compartment body, controls the opening and closing of the heat-generating heat preservation substrate, the heat radiation device, the ventilation fan and the humidifier through the output controller to control the room temperature and humidity of the calf rearing compartment body, and controls the ventilation fan and the sterilization device to be opened at regular time intervals through the output controller to ventilate and sterilize the calf rearing compartment body.