Water adding structure of incubator

By installing a float and indicator structure in the incubator's water tank, the problem of difficulty in observing the water level in the tank is solved, enabling accurate control of the water volume and preventing overflow.

CN223568410UActive Publication Date: 2025-11-21YUYAO LIANXIANGJIA DAILY NECESSITIES CO LTD
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Patent Information

Application Number
CN202423120726.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-21
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The existing incubator water tank makes it difficult to accurately observe the water level, leading to overfilling and water overflow.

Method used

A float and a marker structure are installed inside the water supply pipe. As the water level rises, the float pushes the marker up the water supply pipe. The marker serves as a reference to control the amount of water added, thus preventing overflow.

Benefits of technology

With the float and indicator structure, users can accurately control the water level, avoid overfilling, and ensure that the water level in the tank is lower than the evaporation port end face to prevent overflow.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223568410U_ABST
Patent Text Reader

Abstract

The water adding structure comprises a main machine body and a water tank arranged in the main machine body, the water tank comprises a tank body and a water adding pipe arranged on the upper end face of the tank body in a vertical extending mode, the water adding pipe is communicated with the tank body through a communication opening, and a volatilization opening is formed in the upper end face of the tank body; the water tank assembly further comprises a floating ball arranged in the tank body and a marker post which is movably arranged in the water adding pipe, the lower end of the marker post is placed on the floating ball, and a restraining channel used for containing the floating ball and restraining the floating ball to move up and down is formed in the position, corresponding to the lower portion of the communicating opening, in the tank body. The water adding device is simple and reasonable in structure, when water is added into the water tank, the floating ball can float upwards along with the water level under the constraint of the constraint channel, and meanwhile, the marker post placed on the floating ball can move upwards along with the floating ball, so that a user can conveniently control water adding according to the position of the marker post, the water level in the tank body is lower than the volatilization opening, and the volatilization effect is improved. And overflow caused by excessive water adding is effectively avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hatching equipment technical field, especially a kind of water adding structure of egg incubator. BACKGROUND

[0002] With the development of industrialization, artificial incubation has been a relatively mature technology. Artificial simulation mother bird incubation is a kind of bionical incubation egg method, which can improve the number and hatching rate of incubation. In order to improve the hatching rate, the eggs need to be turned over in time during the incubation process, so as to keep the temperature uniform and prevent the embryo from adhering to the shell membrane. This makes the blood vessel area and allantoic villus membrane grow normally in the early, middle and late stages of embryo development, so that the egg white can smoothly enter the amniotic fluid for embryo absorption. Turning over the eggs can also slow down the loss of water, so that the embryo can be in a humid environment and successfully peck and hatch, and obtain fresh air.

[0003] The existing egg incubator generally has a water tank for providing water to ensure a humid incubation environment. Due to the structural limitations of the egg incubator, the existing water tank generally includes a tank body and a water adding pipe arranged on the upper end face of the tank body. The upper end face of the tank body is constructed with a volatilization port. However, since the water adding pipe has a relatively long length and its water adding end face is much higher than the end face of the volatilization port, and the long water adding pipe makes it difficult for the user to observe the water level in the tank body. Therefore, it is easy to cause the user to add too much water, so that the water in the tank body overflows from the volatilization port, which has room for improvement. SUMMARY

[0004] The utility model is to overcome the defects in the prior art, and provides a water adding structure of egg incubator, which has a simple and reasonable structure. The flagpole in the water adding pipe is placed on the floating ball in the tank body. As the water level in the tank body rises during the water adding process, the floating ball will rise under the action of buoyancy to push the flagpole upwards along the water adding pipe. Therefore, the user can use the flagpole as a reference to control the water adding by observing the position of the flagpole, which can effectively prevent the water from being added too much.

[0005] To achieve the above-mentioned purpose, the utility model provides a water adding structure of egg incubator, which comprises a main body and a water tank assembly arranged in the main body. The water tank assembly comprises a tank body and a water adding pipe vertically arranged on the upper end face of the tank body. The water adding pipe is communicated with the tank body through a communication port. The upper end face of the tank body is constructed with a volatilization port.

[0006] The water tank assembly further comprises a floating ball arranged in the tank body and a flagpole movably arranged in the water adding pipe, with its lower end part placed on the floating ball. The tank body is constructed with a constraint channel below the communication port for accommodating the floating ball and restricting the upward and downward movement of the floating ball.

[0007] Further, the diameter of the floating ball is greater than the diameter of the communication port.

[0008] Further, the constraint channel comprises at least three constraint columns arranged on the bottom wall and / or the top wall of the box body in a circumferential interval, and the distance between two adjacent constraint columns is less than the diameter of the floating ball.

[0009] Further, the outer circumferential wall of the marker post is arranged with constraint ribs in a circumferential interval, and a water inlet channel is formed between two adjacent constraint ribs.

[0010] Further, the lower end surface of the marker post is a spherical surface structure matched with the floating ball.

[0011] Further, when the floating ball blocks the communication port, the upper end surface of the marker post is flush with the upper end surface of the water filling pipe or the upper end surface of the marker post is slightly lower than the upper end surface of the water filling pipe.

[0012] Compared with the prior art, the utility model discloses simple and reasonable structure, through the marker post in the water filling pipe rests on the floating ball in the box body, so in the water filling process along with the water level of the box body, the floating ball will rise to push the marker post and move upwards along the water filling pipe under the action of buoyancy, so the user can take the marker post as the reference to control the water filling by observing the marker post position, so that the water level in the box body is lower than the end surface of the volatile port, thereby avoiding the overflow caused by excessive water filling. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a three-dimensional structure schematic view of the egg incubator of the utility model;

[0014] Figure 2 It is a structure schematic view of the egg incubator after partly hiding;

[0015] Figure 3 It is a sectional structure schematic view of the water tank assembly Figure 1

[0016] Figure 4 It is a sectional structure schematic view of the water tank assembly Figure 2

[0017] The following reference signs are marked on the drawings in combination with the drawings:

[0018] 1, main body; 2, water tank assembly; 21, box body; 211, volatile port; 212, communication port; 213, constraint column; 22, water filling pipe; 23, floating ball; 24, marker post; 241, constraint rib; 242, spherical surface structure. DETAILED DESCRIPTION

[0019] The utility model will be described in detail in combination with the drawings below, but it should be understood that the protection scope of the utility model is not limited by the specific embodiment.

[0020] ​​The utility model discloses a kind of water adding structures of egg incubator as shown in Figure 1 、 Figure 2 、 Figure 3 And Figure 4 Indicated, including main body 1, and water tank assembly 2 being set in main body 1, the water tank assembly 2 includes tank 21, water adding pipe 22, float ball 23 and marker post 241;Wherein, the upper end face of tank 21 is structured and is provided with volatile mouth 211 for water evaporation to guarantee the humidity of egg incubator inner container, the port plane of this volatile mouth 211 is higher than the upper end face of tank 21 or flush;Water adding pipe 22 is vertically upwards and is set on the upper end face of tank 21 and is communicated by communicating port 212 between the two, so as to be able to realize water adding to tank 21 by the upper port of water adding pipe 22;Float ball 23 is set in tank 21, and the lower side of the communicating port 212 in tank 21 is structured and is provided with the constraint channel for accommodating float ball 23 and restricting the up-down movement of float ball 23, so that float ball 23 can move towards or away from communicating port 212 under the action of buoyancy;Marker post 241 is movably set in water adding pipe 22 and the lower end of marker post 241 rests on float ball 23, so that marker post 241 moves with float ball 23;So that users can use marker post 241 as a reference during water adding to water tank assembly 2, and as the water level in tank 21 rises, float ball 23 can float upwards to move towards communicating port 212 under the constraint of constraint channel, so that marker post 241 moves upwards along water adding pipe 22 under the push of float ball 23, so that when marker post 241 moves upwards to flush with the upper end face of water adding pipe 22 or slightly lower than the upper end face of water adding pipe 22, it is generally considered that tank 21 is full to stop water adding, the water level in tank 21 is lower than volatile mouth 211, so that water adding can be avoided to be excessive;It can also be marked by marking in the upper port of water adding pipe 22, when marker post 241 moves upwards to the mark to identify that tank 21 is full, at this time, water adding can be stopped, so that water adding can be avoided to be excessive.

[0021] In the embodiment, as shown in Figure 3 , float ball 23 is preferably a foam ball with a density less than water and a diameter greater than the caliber of communicating port 212, so that when the water level in tank 21 reaches a certain height, float ball 23 can block communicating port 212 to limit further water adding to tank 21, at this time, marker post 241 just moves to the position identified that tank 21 is full.

[0022] In the embodiment, as shown in Figure 3 And Figure 4As shown, the constraint channel is at least three constraint columns 213 arranged on the bottom wall of the box body 21 in circumferential intervals, and the interval between two adjacent constraint columns 213 is smaller than the diameter of the floating ball 23, so that the movement of the floating ball 23 can be constrained and the floating ball 23 can be prevented from running out of the constraint channel, and the communication between the constraint channel and the box body 21 can be ensured to make the added water smoothly enter the box body 21; in other specific embodiments, the constraint channel can also be at least three constraint columns 213 arranged on the top wall of the box body 21 in circumferential intervals, or the constraint channel is at least three pairs of constraint columns 213 arranged on the bottom wall and the top wall of the box body 21.

[0023] In the embodiment, as shown in Figure 3 and Figure 4 As shown, the marker 241 is provided with constraint ribs arranged on the outer circumferential wall in circumferential intervals, and the constraint ribs cooperate with the inner wall of the water adding pipe 22 to effectively constrain the movement track of the marker 241, and the water inlet channel is formed between two adjacent constraint ribs to ensure that the water can smoothly flow into the box body 21; in addition, the lower end surface of the marker 241 is a spherical surface structure 242 matched with the surface of the floating ball 23, so that the contact area between the marker 241 and the floating ball 23 can be effectively increased, and the effect between the two can be ensured.

[0024] Compared with the prior art, the utility model has the advantages of simple structure and rationality, the marker in the water adding pipe is placed on the floating ball in the box body, so that the floating ball will rise under the action of buoyancy to push the marker to move upward along the water adding pipe as the water level in the box body rises during the water adding process, so that the user can use the marker as a reference to control the water adding by observing the position of the marker, so that the water level in the box body is lower than the end surface of the evaporation port, thereby avoiding overflow caused by excessive water adding.

[0025] The above disclosure is only an embodiment of the utility model, but the utility model is not limited to this, and any changes that can be thought of by those skilled in the art should fall within the protection scope of the utility model.

Claims

1. A water supply structure for an incubator, comprising a main body and a water tank assembly disposed within the main body, the water tank assembly comprising a tank body and a water supply pipe extending vertically onto the upper surface of the tank body, the water supply pipe being connected to the tank body via a communication port, and an evaporation port being constructed on the upper surface of the tank body; Its features are, The water tank assembly also includes a float disposed inside the tank and a marker rod movably disposed inside the water inlet pipe with its lower end resting on the float. A constraint channel is provided below the corresponding connection port inside the tank for accommodating the float and constraining its up-and-down movement.

2. The water filling structure of an incubator according to claim 1, characterized in that, The diameter of the float is larger than the diameter of the connecting opening.

3. The water filling structure of an incubator according to claim 1, characterized in that, The constraint channel includes at least three constraint posts arranged circumferentially on the bottom wall and / or top wall of the housing, and the distance between two adjacent constraint posts is less than the diameter of the float.

4. The water filling structure of an incubator according to claim 1, characterized in that, The outer peripheral wall of the marker is provided with several constraint ribs at intervals, and a water inlet channel is formed between two adjacent constraint ribs.

5. The water filling structure of an egg incubator according to claim 1, characterized in that, The lower end face of the marker is a spherical structure adapted to the float.

6. The water filling structure of an egg incubator according to claim 1, characterized in that, When the float rises and blocks the connection, the upper end face of the marker is flush with the upper end face of the water inlet pipe, or the upper end face of the marker is slightly lower than the upper end face of the water inlet pipe.