Infant incubator with electric heating glass

By installing heating components and sealing components on the glass plate of the baby insulated box, the problem of the existing baby insulated box heating methods affecting the short line of sight and resistance heating life is solved, and the safety and sealing are improved.

CN222968795UActive Publication Date: 2025-06-13HEBEI ZIQIAN MEDICAL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202420752650.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-12
Publication Date
2025-06-13
Estimated Expiration
2034-04-12

AI Technical Summary

Technical Problem

The heating method of existing baby insulated boxes is mainly through lighting and resistance heating, which causes glaring lighting to affect the line of sight, and short resistance heating life affects safety.

Method used

The baby insulated box with electric heating glass is used to heat and seal the interior of the insulated box by installing heating and sealing components on the glass plate.

Benefits of technology

Ensures the safety and sealing of the insulating box, avoids the problem of dazzling lighting, and extends the service life of the heating element.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a baby incubator with electric heating glass, which relates to the technical field of glass and comprises a placing table, an incubator body mounted at the top of the placing table, a glass plate arranged at the top of the incubator body, and a heating component arranged at the top of the glass plate and used for heating the inside of the incubator body. The sealing assembly is arranged between the heat preservation box and the glass plate and used for ensuring the sealing performance in the heat preservation box. According to the infant incubator with the electric heating glass, the heating block made of a silver material is arranged between the glass plate and the cover plate, so that the heating block is electrified to generate heat to heat the interior of the incubator, the safety of the incubator is ensured, and when the glass plate covers the top of the incubator through the sealing assembly, the sealing performance of the interior of the incubator can be ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass, in particular to an infant incubator with electrically heated glass. Background Art

[0002] An infant incubator is mainly used to provide a thermostatic and sterile space that simulates the uterine environment of the mother for premature infants, low birth weight infants or sick newborns. In this environment, doctors can precisely control conditions such as temperature, humidity, and oxygen concentration to help the infant stabilize body temperature, prevent infection, improve respiratory function, and promote its physical development. Although the infant incubator is not completely sealed in design, it does need to form a relatively enclosed environment that can maintain constant temperature, constant humidity, and controllable oxygen concentration. Such equipment is usually equipped with good heat preservation performance and an air circulation system to maintain a stable microenvironment inside.

[0003] The existing heating methods for infant warming are generally through lamp lighting and resistance heating. However, the method of lamp lighting will continuously illuminate the inside of the incubator, and since the infant incubator is generally made of glass materials, the glaring light of the lamp will affect the sight of medical staff and family members. If resistance heating is used, the service life of the resistance in a high-temperature state for a long time will be greatly shortened, thus affecting the safety of the infant incubator. Summary of the Utility Model

[0004] The purpose of the utility model is to solve the disadvantages existing in the background art, and provide an infant incubator with electrically heated glass, which can heat up the incubator through a heating component, and ensure the airtightness inside the incubator through a sealing component.

[0005] To achieve the above purpose, the utility model provides the following technical solution: an infant incubator with electrically heated glass, including: a placement table, an incubator installed on the top of the placement table, a glass plate provided on the top of the incubator, a heating component provided on the top of the glass plate for heating and raising the temperature inside the incubator, and a sealing component provided between the incubator and the glass plate for ensuring the airtightness inside the incubator.

[0006] Optionally, the heating component includes: multiple heating blocks installed on the top of the glass plate, a cover plate arranged on the top of the heating blocks, a connecting block connected to the bottom of the cover plate, the bottom of the connecting block being connected to the glass plate, two heat-conducting blocks being connected between adjacent two heating blocks, a frame being connected to one side of the outer end of the glass plate, one side of the outer end of the frame being rotatably connected to the incubator through a hinge, a handle being connected to the top of the cover plate, two inclined baffles being installed on one side of the outer end of the incubator, a buffer block being installed on one side of the outer end of the baffle, an energized wire being connected to one side of the outer end of one of the heating blocks, one end of the energized wire passing through the connecting block and protruding from one side of the outer end of the connecting block, a control panel being installed on one side of the top of the cover plate, wherein the heating component is used to heat up the inside of the incubator to a temperature suitable for newborns.

[0007] Optionally, the sealing component includes: a sealing block connected to the bottom of the glass plate, a surrounding frame connected to the top of the incubator, a sealing groove opened on the top of the surrounding frame, the bottom of the sealing block being slidably connected to the sealing groove, and a fitting block installed on one side of the inner wall of the sealing groove, wherein the sealing component is used to ensure the sealing of the inside of the incubator and prevent external air from entering the inside of the incubator between the glass plate and the surrounding frame.

[0008] Optionally, brackets are installed at the bottom of the placement table, side plates are connected to both sides of the outer ends of the brackets, and two pulleys are arranged at the bottoms of the two side plates, wherein the pulleys, side plates and brackets facilitate moving the placement table and the incubator.

[0009] The utility model provides an infant incubator with an electrically heated glass, which has the following beneficial effects:

[0010] The advantages of the utility model are that by placing the heating block made of silver material between the glass plate and the cover plate, when the heating block is energized to generate heat, the temperature inside the incubator is raised, thereby ensuring the safety of the incubator. When the glass plate covers the top of the incubator through the sealing component, the sealing of the inside of the incubator can be ensured. Description of the Drawings

[0011] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0012] Figure 2 It is a cross-sectional view of the overall structure of the utility model.

[0013] Figure 3 It is a schematic diagram of the structure of the connecting block of the utility model.

[0014] Figure 4 It is a schematic diagram of the structure of the heating block of the utility model.

[0015] Figure 5This is a top view cross-sectional view of the connection block structure of the present utility model.

[0016] Figure 6 This is the Figure 2 enlarged view of part A in

[0017] Figures 1-6 In the figure: 1 - placement table; 101 - incubator; 102 - glass plate; 2 - heating block; 201 - cover plate; 202 - connection block; 3 - heat conducting block; 301 - frame; 4 - sealing block; 401 - surrounding frame; 402 - sealing groove; 403 - fitting block; 5 - handle; 501 - baffle; 502 - buffer block; 6 - power line; 7 - bracket; 701 - side plate; 702 - pulley. Specific embodiments

[0018] The present application will be described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0019] Embodiment:

[0020] Please refer to Figures 1-6 In the figure, a baby incubator with electrically heated glass provided in this embodiment includes: a placement table 1, an incubator 101 installed on the top of the placement table 1, a glass plate 102 provided on the top of the incubator 101, a heating assembly provided on the top of the glass plate 102 for heating and raising the temperature inside the incubator 101, and a sealing assembly provided between the incubator 101 and the glass plate 102 for ensuring the airtightness inside the incubator 101.

[0021] Among them, the heating assembly includes: a plurality of heating blocks 2 installed on the top of the glass plate 102, a cover plate 201 provided on the top of the heating block 2, a connection block 202 connected to the bottom of the cover plate 201, and the bottom of the connection block 202 is connected to the glass plate 102. When a newborn is placed in the incubator 101 to promote its physiological development, the glass plate 102 can be rotated to cover the top of the incubator 101, and the heating blocks 2 are powered on. After the heating blocks 2 are powered on, heat is generated to raise the temperature inside the incubator 101, ensuring that the temperature inside the incubator 101 is suitable for the physiological development of the newborn. Moreover, the plurality of heating blocks 2, the cover plate 201, the connection block 202 and the glass plate 102 form the baby incubator body with electrically heated glass.

[0022] Among them, two heat conduction blocks 3 are connected between adjacent two heating blocks 2. One side of the outer end of the glass plate 102 is connected with a frame 301. One side of the outer end of the frame 301 is rotatably connected with the incubator 101 through a hinge. Multiple heating blocks 2 are connected through multiple heat conduction blocks 3, and both the multiple heating blocks 2 and the multiple heat conduction blocks 3 are made of silver material. Therefore, the heating blocks 2 and the heat conduction blocks 3 have good heat conduction performance, and the heating blocks 2 made of silver material can generate heat after being powered on. The cover plate 201 is installed on the top of the glass plate 102 through a connecting block 202, so that the heating blocks 2 are placed between the cover plate 201 and the glass plate 102. Since the cover plate 201 is made of ceramic heat preservation board material, the heat generated by the heating blocks 2 can only be conducted into the incubator 101.

[0023] Among them, a handle 5 is connected to the top of the cover plate 201. Two inclined baffles 501 are installed on one side of the outer end of the incubator 101. A buffer block 502 is installed on one side of the outer end of the baffle 501. When the glass plate 102 needs to be opened, the glass plate 102 and the cover plate 201 can be rotated towards the baffle 501 through the handle 5, the frame 301 and the hinge, and the cover plate 201 and the glass plate 102 can be rotated to one side of the baffle 501, so that the cover plate 201 and the glass plate 102 are limited on one side of the baffle 501, which is convenient for medical staff to put the newborn into the incubator 101 or take the newborn out of the incubator 101, and the buffer block 502 buffers the cover plate 201 to avoid making a sound after the cover plate 201 collides with the baffle 501. And the buffer block 502 is made of rubber material, so that the buffer block 502 has good buffer performance.

[0024] Among them, the sealing assembly includes: a sealing block 4 connected to the bottom of the glass plate 102, a surrounding frame 401 connected to the top of the incubator 101, a sealing groove 402 opened on the top of the surrounding frame 401, the bottom of the sealing block 4 is slidably connected with the sealing groove 402, and a fitting block 403 installed on one side of the inner wall of the sealing groove 402. When the glass plate 102 is covered on the top of the incubator 101, the bottom of the sealing block 4 will be placed in the sealing groove 402, and due to the self-weights of the glass plate 102, the heating blocks 2 and the cover plate 201, the bottom of the sealing block 4 is closely attached to the fitting block 403. And the fitting block 403 is made of rubber material. Therefore, after the bottom of the sealing block 4 is closely attached to the fitting block 403, external air can be prevented from entering the incubator 101 between the glass plate 102 and the surrounding frame 401, thereby ensuring the sealing performance inside the incubator 101. And the sealing block 4 is made of ceramic heat preservation board material, which can prevent the sealing block 4 from conducting heat to the fitting block 403 and prevent the fitting block 403 from being damaged.

[0025] Among them, one side of the outer end of a heating block 2 is connected with a live wire 6. One end of the live wire 6 penetrates through the connecting block 202 and protrudes from one side of the outer end of the connecting block 202. One side of the top of the cover plate 201 is provided with a control panel. When using the heating block 2, connect one end of the live wire 6 to an external power supply, use the live wire 6 to power on the heating block 2, and control the power on and off of the heating block 2 through the control panel. The control panel is also powered by an external power supply. And for the control program involved in the present utility model, those skilled in the art can all implement it according to the same or similar principles in the prior art. This part is not the innovation of the present utility model.

[0026] Among them, a bracket 7 is installed at the bottom of the placement table 1. Both sides of the outer end of the bracket 7 are connected with side plates 701. Two pulleys 702 are arranged at the bottom of both side plates 701. The placement table 1 is supported by the bracket 7, and the side plates 701 connected to both sides of the bracket 7 are provided with pulleys 702 at the bottom. Therefore, the bracket 7, the placement table 1 and the incubator 101 can be moved by the pulleys 702.

[0027] The specific usage method and function of this embodiment:

[0028] When using this device, rotate the glass plate 102 and the cover plate 201 towards the baffle 501 through the handle 5, the frame 301 and the hinge, and rotate the cover plate 201 and the glass plate 102 to one side of the baffle 501, so that the cover plate 201 and the glass plate 102 are limited to one side of the baffle 501, which is convenient for medical staff to put the newborn into the incubator 101. Then rotate the glass plate 102 and the cover plate 201 towards the surrounding frame 401 and until they cover the top of the incubator 101. The bottom of the sealing block 4 will be placed in the sealing groove 402. According to the self-weights of the glass plate 102, the heating block 2 and the cover plate 201, the bottom of the sealing block 4 will be closely attached to the fitting block 403. The fitting block 403 is made of rubber material. Therefore, after the bottom of the sealing block 4 is closely attached to the fitting block 403, external air can be prevented from entering the incubator 101 between the glass plate 102 and the surrounding frame 401. Then, power on the heating block 2. After the heating block 2 is powered on, it will generate heat to raise the temperature inside the incubator 101, ensuring that the temperature inside the incubator 101 is suitable for the physiological development of the newborn.

[0029] In the above embodiments, the descriptions of each embodiment have their own emphases. For the parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0030] The above has introduced in detail an infant incubator with an electrically heated glass provided by the embodiments of the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the technical solution and its core idea of the present application; those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A baby incubator with electrically heated glass, characterized in that: include: Placement table (1); An insulation box (101) installed on the top of the placement table (1), wherein a glass plate (102) is provided on the top of the insulation box (101); A heating component disposed on the top of the glass plate (102), used for heating the interior of the heat preservation box (101); A sealing component arranged between the heat preservation box (101) and the glass plate (102) is used to ensure the sealing performance inside the heat preservation box (101).

2. The baby incubator with electrically heated glass according to claim 1, characterized in that: The heating assembly comprises: A plurality of heating blocks (2) mounted on top of the glass plate (102); A cover plate (201) disposed on the top of the heating block (2); A connection block (202) connected to the bottom of the cover plate (201), wherein the bottom of the connection block (202) is connected to the glass plate (102).

3. The baby incubator with electrically heated glass according to claim 2, characterized in that: Two heat-conducting blocks (3) are connected between two adjacent heating blocks (2); one side of the outer end of the glass plate (102) is connected to a frame (301); and one side of the outer end of the frame (301) is rotatably connected to the heat preservation box (101) via a hinge.

4. The baby incubator with electrically heated glass according to claim 1, characterized in that: The sealing assembly comprises: A sealing block (4) connected to the bottom of the glass plate (102); A surrounding frame (401) connected to the top of the thermal insulation box (101); A sealing groove (402) is provided on the top of the surrounding frame (401), and the bottom of the sealing block (4) is slidably connected to the sealing groove (402); A fitting block (403) is installed on one side of the inner wall of the sealing groove (402).

5. The baby incubator with electrically heated glass according to claim 2, characterized in that: The top of the cover plate (201) is connected to a handle (5), and one side of the outer end of the thermal insulation box (101) is equipped with two baffles (501) with an inclined structure, and one side of the outer end of the baffle (501) is equipped with a buffer block (502).

6. The baby incubator with electrically heated glass according to claim 2, characterized in that: One side of the outer end of one of the heating blocks (2) is connected to a power line (6), one end of the power line (6) passes through the connection block (202) and protrudes from one side of the outer end of the connection block (202), and a control panel is installed on one side of the top of the cover plate (201).

7. The baby incubator with electrically heated glass according to claim 1, characterized in that: A bracket (7) is installed at the bottom of the placement table (1), and side panels (701) are connected to both sides of the outer end of the bracket (7), and two pulleys (702) are arranged at the bottom of the two side panels (701).