Cub heat preservation lamp for livestock breeding

Through the design of the driving mechanism and heat reflector, the problem of uneven heat insulating lamps in traditional pups is solved, and the uniform heat distribution and temperature stability in the insulating box are achieved, improving the comfort and safety of pups.

CN223080153UActive Publication Date: 2025-07-08QINGDAO JIDIAO PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202421702828.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-07-08
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

Traditional puppy insulation lamps have the problem of uneven heat distribution, which leads to inconsistent temperatures, affecting the comfort of puppy and increasing safety risks.

Method used

A young insulation lamp including a driving mechanism and a heat reflector plate is designed. The driving mechanism drives the rotation shaft and the beam to rotate, so that the insulation lamp body is evenly distributed, and the heat reflector plate designed obliquely downward reflects the heat to the bottom of the insulation box, combining the conductive slip ring to solve the power supply problem during the rotation process.

Benefits of technology

The uniform distribution of heat in the insulated box is achieved, the stability and energy efficiency of temperature are improved, the risk of cubs squeeze and trampling each other is reduced, and the comfort and safety of cubs are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The cub heat preservation lamp comprises a base used for being fixedly installed on a ceiling, a lamp holder is fixedly arranged at the lower end of the base through a vertical rod, a rotating shaft is rotationally arranged at the bottom of the lamp holder, a cross beam is fixedly arranged at the lower end of the rotating shaft, and a plurality of heat preservation lamp bodies distributed at equal intervals are fixedly arranged at the bottom of the cross beam. A conductive sliding ring is fixedly arranged at the upper end of the lamp holder, cavities allowing wires to penetrate through are formed in the rotating shaft and the cross beam, the conductive sliding ring is connected with the heat preservation lamp body through the wires, and a driving mechanism for driving the rotating shaft to rotate is arranged between the bottom of the lamp holder and the outer portion of the rotating shaft in a matched mode. The driving mechanism is designed, the rotating shaft and the cross beam are driven to rotate slowly, heat generated by the lamp holder is evenly dispersed to all positions of the heat preservation box, and therefore the heat preservation effect is improved. And the problem of non-uniform heat distribution caused by the fixed position of a traditional heat preservation lamp is effectively avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of heat preservation lamp devices, in particular to a cub heat preservation lamp for livestock breeding. Background Technique

[0002] In livestock breeding, especially during the breeding process of cubs, heat preservation lamps are widely used to ensure that cubs can grow healthily in a suitable temperature environment. The main function of the cub heat preservation lamp is to provide sufficient heat to maintain the environmental temperature required by the cubs, thereby promoting their growth and development. However, the existing cub heat preservation lamps have some significant deficiencies in practical applications.

[0003] Traditional cub heat preservation lamps can generally be divided into two categories: heat preservation lamps with a single lamp head and multiple lamp groups arranged fixedly. Although these two designs can provide the necessary heat to a certain extent, they both have some problems that cannot be ignored. Specifically, the heat preservation lamp with a single lamp head can only provide heat in the area where the lamp head is located. Its heat diffuses outward from the lamp head, forming a heat circle with the temperature decreasing from the center to the outside. In this case, the area closer to the lamp head has a higher temperature, while the area farther from the lamp head has a lower temperature. This non-uniform heat distribution leads to inconsistent temperatures in the heat preservation environment. Cubs in the incubator will find their positions according to the temperature, usually gathering in the areas with higher temperatures.

[0004] Similarly, although the design of multiple lamp heads or lamp groups can improve this problem to a certain extent, there are still defects in non-uniform heat distribution. The lamp heads of traditional lamp groups are usually arranged fixedly, and the heat still diffuses from each lamp head to the surrounding areas. This method cannot effectively achieve uniform heat distribution, and it is easy to cause problems such as too high or too low temperature in local areas.

[0005] Due to the temperature-seeking nature of cubs, they will naturally gather in the areas with higher temperatures. This non-uniform temperature distribution not only affects the comfort of cubs but also may cause cubs to squeeze each other to obtain higher temperatures, increasing the risk of safety hazards such as trampling and suffocation. Content of the Utility Model

[0006] (I) Technical Problem

[0007] The utility model provides a cub heat preservation lamp for livestock breeding, aiming to solve the problem of non-uniform heat distribution existing in traditional cub heat preservation lamps in practical applications.

[0008] (II) Technical Content

[0009] To solve the above technical problems, the technical solution of the present utility model is as follows: A cub warming lamp for livestock breeding, comprising a base for fixedly installing with the ceiling, a lamp holder is fixedly provided at the lower end of the base through a vertical rod, a rotating shaft is rotatably provided at the bottom of the lamp holder, a cross beam is fixedly provided at the lower end of the rotating shaft, a plurality of warming lamp bodies are fixedly provided at equal intervals at the bottom of the cross beam, a conductive slip ring is fixedly provided at the upper end of the lamp holder, cavities for wires to pass through are provided inside both the rotating shaft and the cross beam, the conductive slip ring and the warming lamp bodies are connected by wires, a driving mechanism for driving the rotation of the rotating shaft is provided in a matching manner between the bottom of the lamp holder and the outside of the rotating shaft, and heat reflecting plates inclined downward are fixedly provided on both the front and rear sides of the cross beam.

[0010] Further, the driving mechanism includes a motor fixedly provided at the bottom of the lamp holder, a driving gear is fixedly provided on the driving shaft of the motor, a driven gear is fixedly sleeved on the rotating shaft, and the driving gear meshes with the driven gear.

[0011] Further, the heat reflecting plate includes a base plate, a reflecting layer is fixedly provided on the inner side surface of the base plate, and a heat insulating layer is fixedly provided on the outer side surface of the base plate.

[0012] Further, a plurality of cross beams with uniform intervals are fixedly provided at the lower end of the rotating shaft; a plurality of warming lamp bodies are fixedly provided at equal intervals at the bottom of each cross beam, a conductive slip ring is fixedly provided at the upper end of the lamp holder, cavities for wires to pass through are provided inside both the rotating shaft and each cross beam, the conductive slip ring and the warming lamp bodies are connected by wires, a driving mechanism for driving the rotation of the rotating shaft is provided in a matching manner between the bottom of the lamp holder and the outside of the rotating shaft, and heat reflecting plates inclined downward are fixedly provided on both the front and rear sides of the cross beam.

[0013] Further, the base plate is made of a metal plate.

[0014] Further, the reflecting layer is made of an aluminum foil layer.

[0015] Further, the heat insulating layer is made of a fiberglass cloth.

[0016] (III) Technical effects

[0017] The advantages of the present utility model compared with the prior art are as follows: A driving mechanism is designed, which drives the rotating shaft and the cross beam to rotate slowly, enabling the heat preservation lamp body to rotate on the lamp holder. This design can evenly disperse the heat generated by the lamp head to various positions of the incubator, effectively avoiding the problem of uneven heat distribution caused by the fixed position of the traditional heat preservation lamp; Two heat reflection plates with a downward inclination design are introduced, which are located on the front and rear sides of the cross beam. These heat reflection plates can effectively gather and reflect the heat generated by the heat preservation lamp to the bottom of the incubator, improving the heat preservation effect, making the temperature inside the box more stable. The design of the heat reflection plates not only optimizes the utilization of heat but also effectively reduces the upward dissipation and loss of heat through the reflection plates through the heat insulation layer, further improving the energy efficiency; By applying a conductive slip ring, the problem of wire winding caused by the rotation of the heat preservation lamp body is successfully solved. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional structural schematic diagram of a cub for heat preservation lamp used in livestock breeding of the present utility model Figure 1 。

[0019] Figure 2 is a three-dimensional structural schematic diagram of a cub for heat preservation lamp used in livestock breeding of the present utility model Figure 2 。

[0020] Figure 3 is a front view structural schematic diagram of a cub for heat preservation lamp used in livestock breeding of the present utility model.

[0021] Figure 4 is a left view structural schematic diagram of a cub for heat preservation lamp used in livestock breeding of the present utility model.

[0022] Figure 5 is a hierarchical structural schematic diagram of the heat reflection plate of a cub for heat preservation lamp used in livestock breeding of the present utility model.

[0023] As shown in the figure: 1. Base; 2. Vertical rod; 3. Lamp holder; 4. Rotating shaft; 5. Cross beam; 6. Heat preservation lamp body; 7. Conductive slip ring; 8. Heat reflection plate; 9. Motor; 10. Driving gear; 11. Driven gear; 12. Base plate; 13. Reflection layer; 14. Heat insulation layer. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", "center", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation structure and operation, so it should not be construed as a limitation to the present utility model.

[0025] In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "provided with", "installed", "connected", "connected" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection, it can be a mechanical connection, it can be an electrical connection, it can be a direct connection, it can be indirectly connected through an intermediate medium, and it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0026] The utility model is further described in detail below in conjunction with the accompanying drawings.

[0027] Combined with Figure 1 To Attachment Figure 5 A cub heat preservation lamp for animal husbandry comprises a base 1 for fixing to a ceiling, a lamp holder 3 is fixedly arranged at the lower end of the base 1 through a vertical pole 2, a rotating shaft 4 is rotatably arranged at the bottom of the lamp holder 3, a crossbeam 5 is fixedly arranged at the lower end of the rotating shaft 4, a plurality of heat preservation lamp bodies 6 distributed at equal distances are fixedly arranged at the bottom of the crossbeam 5, a conductive slip ring 7 is fixedly arranged at the upper end of the lamp holder 3, cavities for wires to pass through are arranged inside the rotating shaft 4 and the crossbeam 5, the conductive slip ring 7 and the heat preservation lamp body 6 are connected with a wire, a driving mechanism for driving the rotating shaft 4 to rotate is matched between the bottom of the lamp holder 3 and the outside of the rotating shaft 4, and heat reflecting plates 8 arranged to be tilted downward are fixedly arranged on the front and rear sides of the crossbeam 5.

[0028] Reference Figure 2 The driving mechanism includes a motor 9 fixedly arranged at the bottom of the lamp holder 3, a driving gear 10 is fixedly arranged on the driving shaft of the motor 9, a driven gear 11 is fixedly sleeved on the rotating shaft 4, and the driving gear 10 is meshed with the driven gear 11.

[0029] A plurality of cross beams 5 with uniform spacing are fixedly arranged at the lower end of the rotating shaft 4; a plurality of heat preservation lamp bodies 6 distributed at equal distances are fixedly arranged at the bottom of each cross beam 5, a conductive slip ring 7 is fixedly arranged at the upper end of the lamp holder 3, a cavity for the wire to pass through is arranged inside the rotating shaft 4 and each cross beam 5, the conductive slip ring 7 and the heat preservation lamp body 6 are connected by a wire, a driving mechanism for driving the rotating shaft 4 to rotate is matched between the bottom of the lamp holder 3 and the outside of the rotating shaft 4, and heat reflection plates 8 arranged to be inclined downward are fixedly arranged on the front and rear sides of the cross beam 5.

[0030] Reference Figure 5 The heat reflection plate 8 includes a base plate 12, a reflection layer 13 is fixedly provided on the inner side of the base plate 12, and a heat insulation layer 14 is fixedly provided on the outer side of the base plate 12. The base plate 12 is made of a metal plate, the reflection layer 13 is made of an aluminum foil layer, and the heat insulation layer 14 is made of glass fiber cloth.

[0031] The base plate 12 is made of a metal plate, serving as the structural support for the heat reflection plate to ensure the overall stability and durability. The reflection layer 13 is an aluminum foil layer fixed inside the base plate. Its main function is to reflect the heat generated by the heat preservation lamp. The aluminum foil layer has good reflection performance, which can effectively reflect the heat to the bottom of the incubator, increasing the heat utilization efficiency. The heat insulation layer 14 is made of fiberglass cloth fixed on the base plate, mainly used to isolate the heat transfer between the base plate and the surrounding environment. The fiberglass cloth has good heat insulation performance, which can reduce the heat dissipation and loss upward through the base plate, effectively improving the heat preservation effect.

[0032] The specific working principle of the present utility model: Before the present utility model is used, first use bolts to fix the base 1 on the ceiling or the top plate of the cub incubator, connect to an external power source, and start the motor 9. The rotation of the motor causes the driving gear 10 on the drive shaft to start rotating. The rotation of the driving gear 10 drives the driven gear 11, thereby driving the rotation of the rotating shaft 4. The rotation of the rotating shaft 4 causes the cross beam 5 fixed thereto to start rotating slowly. A plurality of heat preservation lamp bodies 6 fixed to the bottom of the cross beam 5 change their positions as the cross beam rotates. Due to the rotation of the cross beam 5, the lamp heads of the heat preservation lamp bodies 6 are no longer fixed in one position but rotate within a certain range, and the heat is thus evenly dispersed into the incubator. The heat reflection plates 8 inclined obliquely downward and fixed on both the front and rear sides of the cross beam 5 reflect the heat generated by the heat preservation lamp bodies to the bottom of the incubator, further improving the heat preservation effect and energy efficiency. The conductive slip ring 7 fixed to the upper end of the lamp holder 3 is connected to the heat preservation lamp body 6 through a wire, ensuring that even during the rotation process, the lamp can still be continuously powered, avoiding the problems of wire entanglement and power supply interruption.

[0033] The above describes the present utility model and its implementation manners. This description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and, without departing from the creative purpose of the present utility model, design similar structural manners and embodiments to this technical solution without creative efforts, they shall fall within the protection scope of the present utility model.

Claims

1. A cub animal warming lamp for livestock farming, comprising a base (1) for fixedly installing with a ceiling, and a lamp holder (3) is fixedly provided at the lower end of the base (1) through a vertical rod (2), and it is characterized in that: A rotating shaft (4) is provided at the bottom of the lamp holder (3) in a rotatable manner. A cross beam (5) is fixedly provided at the lower end of the rotating shaft (4). A plurality of heat preservation lamp bodies (6) evenly distributed at equal intervals are fixedly provided at the bottom of the cross beam (5). A conductive slip ring (7) is fixedly provided at the upper end of the lamp holder (3). Cavities for wires to pass through are provided inside both the rotating shaft (4) and the cross beam (5). The conductive slip ring (7) and the heat preservation lamp bodies (6) are connected by wires. A driving mechanism for driving the rotation of the rotating shaft (4) is provided in a matching manner between the bottom of the lamp holder (3) and the outside of the rotating shaft (4). Heat reflection plates (8) inclined downward are fixedly provided on both the front and rear side surfaces of the cross beam (5).

2. The cub warming lamp for livestock breeding according to claim 1, characterized in that: The driving mechanism includes a motor (9) fixedly provided at the bottom of the lamp holder (3). A driving gear (10) is fixedly provided on the driving shaft of the motor (9). A driven gear (11) is fixedly sleeved on the rotating shaft (4). The driving gear (10) meshes with the driven gear (11).

3. The cub warming lamp for livestock breeding according to claim 1, characterized in that: The heat reflection plate (8) includes a base plate (12). A reflection layer (13) is fixedly provided on the inner side surface of the base plate (12). A heat insulation layer (14) is fixedly provided on the outer side surface of the base plate (12).

4. The cub warming lamp for livestock breeding according to any one of claims 1-3, characterized in that: A plurality of cross beams (5) with evenly spaced intervals are fixedly provided at the lower end of the rotating shaft (4); a plurality of heat preservation lamp bodies (6) evenly distributed at equal intervals are fixedly provided at the bottom of each cross beam (5). A conductive slip ring (7) is fixedly provided at the upper end of the lamp holder (3). Cavities for wires to pass through are provided inside both the rotating shaft (4) and each cross beam (5). The conductive slip ring (7) and the heat preservation lamp bodies (6) are connected by wires. A driving mechanism for driving the rotation of the rotating shaft (4) is provided in a matching manner between the bottom of the lamp holder (3) and the outside of the rotating shaft (4). Heat reflection plates (8) inclined downward are fixedly provided on both the front and rear side surfaces of the cross beam (5).

5. The cub warming lamp for livestock breeding according to claim 3, characterized in that: The base plate (12) is made of a metal plate.

6. The cub warming lamp for livestock breeding according to claim 3, characterized in that: The reflection layer (13) is made of an aluminum foil layer.

7. The cub warming lamp for livestock breeding according to claim 3, characterized in that: The heat insulation layer (14) is made of a fiberglass cloth.