Medical intelligent mobile dry type automatic temperature control milk warmer

The medical-grade intelligent mobile dry automatic temperature-controlled bottle warmer directly heats the baby bottle and, combined with temperature detection and photoelectric sensors, solves the problems of energy waste and inflexible heating in existing technologies, achieving energy-saving and flexible milk heating control.

CN112690661BActive Publication Date: 2025-12-12NANJING LIFEI MEDICAL SUPPLIES CO LTD
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Patent Information

Application Number
CN202011642176.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-31
Publication Date
2025-12-12
Estimated Expiration
2040-12-31

AI Technical Summary

Technical Problem

Existing bottle water bath heating devices suffer from energy waste, inflexible heating, and temperature loss, making them particularly unsuitable for hospitals' large-volume and irregular milk heating needs.

Method used

This medical-grade intelligent mobile dry automatic temperature-controlled bottle warmer uses a heating base and electric heating element to directly heat the bottle. It combines a temperature detection device and a photoelectric sensor to achieve individual heating and intelligent control. It is equipped with an insulation layer and casters to improve flexibility and energy efficiency.

Benefits of technology

It enables independent heating control for each bottle, reducing energy waste, avoiding temperature loss, and improving heating flexibility and accuracy, making it suitable for complex infant feeding environments in hospitals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of medical intelligent mobile dry type automatic temperature control milk warmer, applied in batch milk warming technical field, it includes box, a plurality of heating devices being arranged in box, the heating device includes the heating seat for inserting feeding bottle and the heating sheet of electric heating affixed in heating seat outside, temperature detection device is fixed on the heating seat, the temperature detection device includes the connecting plug inserted in heating seat, temperature sensor is passed in connecting plug, recess is set in the end of connecting plug, and the probe of temperature sensor is located in recess;When feeding bottle is placed into heating seat, the heating sheet generates heat under the supply of power, and heat is sequentially transferred to heating seat and feeding bottle, while closed cavity is formed between feeding bottle sidewall and recess.The present application has the effect of saving more electric energy, heating for each feeding bottle separately, and more flexible application.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of batch milk warming, and more particularly to a medical intelligent mobile dry type automatic temperature control milk warmer. BACKGROUND

[0002] Most of the contemporary babies are grown up by eating milk powder, and the babies need to eat milk by means of a feeding bottle, the milk powder is brewed in the feeding bottle, and finally the milk is heated to between 37 degrees Celsius and 45 degrees Celsius. For hospitals, a large amount of milk needs to be heated. The existing milk heating method is water bath heating.

[0003] The existing feeding bottle water bath heating device comprises a water tank heating resistance wire, a certain amount of water is poured into the water tank, and then a feeding bottle containing milk is placed in the water tank, the water in the water tank is heated, and the feeding bottle is heated through heat transfer.

[0004] However, this way of heating the feeding bottle has the following problems:

[0005] 1. Usually, the water in the water tank is more than the content of the milk, and in fact, the milk only needs to be heated directly, and the energy consumed by heating the water in the water tank is redundant, so the water bath heating wastes electric energy;

[0006] 2. The time of eating milk by the very few babies is not fixed, the water bath heating device is usually large, in order to keep the milk ready for the babies to eat at any time, usually only the water in the whole water tank can be heated;

[0007] 3. The water bath heating device of the hospital is a certain distance away from the baby room, so when the feeding bottle is delivered to the baby, the temperature will be lost, which is not conducive to the baby eating milk. SUMMARY

[0008] In view of the deficiencies of the prior art, the present application aims to provide a medical intelligent mobile dry type automatic temperature control milk warmer, which has the advantages of saving more electric energy, heating each feeding bottle separately, and being more flexible in application.

[0009] The above technical purpose of the present application is achieved by the following technical scheme: a medical intelligent mobile dry type automatic temperature control milk warmer, comprising a box body, a plurality of heating devices arranged in the box body, the heating device comprising a heating seat for inserting a feeding bottle and an electric heating heating sheet attached outside the heating seat, a temperature detection device is fixed on the heating seat, the temperature detection device comprises a connecting plug inserted into the heating seat and a temperature sensor arranged in the connecting plug, the end of the connecting plug is provided with a groove, and the probe of the temperature sensor is located in the groove; when the feeding bottle is placed in the heating seat, the heating sheet generates heat under the power supply, and the heat is sequentially transferred to the heating seat and the feeding bottle, and a closed cavity is formed between the side wall of the feeding bottle and the groove.

[0010] Further arrangement: the outside of the heating seat is fixed with a photoelectric sensor for detecting the feeding bottle; when the feeding bottle is put into the heating seat, the photoelectric sensor detects the feeding bottle, at which time the heating sheet is in the energized state.

[0011] Further arrangement: the heating seat is wrapped with a heat preservation layer.

[0012] Further arrangement: the box body is further provided with a power module, and the power module is in electrical signal connection with the heating sheet.

[0013] Further arrangement: the upper surface of the box body is embedded with an electric quantity display device for displaying the power supply electric quantity.

[0014] Further arrangement: the lower end of the box body is provided with a support, the support is provided with a pulley, and the box body is installed on the support.

[0015] Further arrangement: the box body is detachably fixed with a mounting plate, the heating seats are uniformly distributed on the mounting plate, the mounting plate is provided with a display device for displaying the temperature of the temperature sensor, and the display device corresponds to the heating seat one by one.

[0016] Further arrangement: the heating sheet comprises an adhesive layer, an insulating layer and a resistance wire embedded in the insulating layer, and the adhesive layer is pasted on the outer side of the heating seat.

[0017] Further arrangement: the box body is rotatably connected with a cover plate, and the cover plate is embedded with a transparent observation plate through which the inside of the box body can be seen.

[0018] Compared with the prior art, the present application has the following beneficial effects:

[0019] 1. The heating sheet directly heats the feeding bottle and milk, which saves more electric energy compared with water bath heating, and the feeding bottle can be directly used after being taken out, which reduces the process of scrubbing the outer surface of the feeding bottle compared with water bath heating;

[0020] 2. One heating seat corresponds to one feeding bottle, and since the amount of milk eaten by each baby is different, this setting facilitates individual heating for each feeding bottle, which is more flexible;

[0021] 3. The temperature detection device and the photoelectric sensor are used for monitoring the heating condition of the feeding bottle, so that the feeding bottle is immediately heated when being inserted into the heating seat, and the heating is stopped when the feeding bottle is separated from the heating seat; when the milk is heated to the set temperature, the heating sheet is switched from the heating state to the heat preservation state, which further intelligently heats and avoids waste of electric energy;

[0022] 4. The box body as a whole can be moved, which facilitates moving the feeding bottle to the baby and then taking out the feeding bottle for the baby to eat, thereby avoiding temperature loss of the feeding bottle in the middle;

[0023] 5、The special structure of the temperature detection device can accurately measure the temperature of the milk, avoid overheating or insufficient heating of the milk, and has better accuracy. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a structural schematic diagram of the whole of the front side of the embodiment;

[0025] Figure 2 is a structural schematic diagram of the whole of the rear side of the embodiment;

[0026] Figure 3 is a structural schematic diagram of the heating device and the mounting plate of the embodiment;

[0027] Figure 4 is a structural schematic diagram of the whole of the heating device of the embodiment;

[0028] Figure 5 is a structural schematic diagram of the heating device after hiding the heat preservation layer of the embodiment;

[0029] Figure 6 is a structural schematic diagram of the heating seat and the temperature detection device of the embodiment;

[0030] Figure 7 is a structural schematic diagram of the heating sheet of the embodiment;

[0031] Figure 8 is a structural schematic diagram of the internal section of the heating seat of the embodiment;

[0032] Figure 9 is Figure 8 an enlarged schematic diagram at A of the embodiment;

[0033] Figure 10 is a structural schematic diagram of the temperature detection device of the embodiment;

[0034] Figure 11 is a structural schematic diagram of the whole of the embodiment 2.

[0035] In the figure: 1, box body; 11, cover plate; 12, observation plate; 13, power module; 14, display device; 15, mounting plate; 16, support; 2, heating device; 21, heating seat; 22, heating sheet; 221, insulation layer; 222, resistance wire; 223, adhesive layer; 23, photoelectric sensor; 25, heat preservation layer; 3, temperature detection device; 31, connecting plug; 311, groove; 312, positioning ring; 32, temperature sensor; 33, pressing plate; 34, screw rod; 4, feeding bottle. DETAILED DESCRIPTION

[0036] The application will be further described below with reference to the drawings. The following examples are only used to more clearly illustrate the technical solutions of the application, and cannot be used to limit the protection scope of the application.

[0037] Embodiment 1: Reference Figures 1-3 The application discloses a medical intelligent mobile dry automatic temperature control milk heater which comprises a box body 1 and a plurality of heating devices 2 arranged in the box body 1.

[0038] Reference Figures 3-6 The heating device 2 comprises a heating seat 21 for inserting the milk bottle 4 and a heating sheet 22 for electric heating which is attached to the outside of the heating seat 21. The heating seat 21 is provided with a cavity which is matched with the shape of the milk bottle 4. The shape of the cavity can be circular, polygonal or other irregular shapes. The heating sheet 22 is connected with an external power supply and serves as a heating source.

[0039] Reference Figures 5-7 The heating sheet 22 comprises an insulating layer 221, an electric resistance wire 222 arranged in the insulating layer 221 and a bonding layer 223 for bonding the insulating layer 221 to the heating seat 21. The heating seat 21 is embedded with a temperature detection device 3 for measuring the temperature of the milk bottle 4. The heating sheet 22 is connected with the power supply through a wire, and the electric resistance wire 222 generates heat after being electrified. The milk bottle 4 is inserted into the heating seat 21, and the heating sheet 22 generates heat while consuming electric energy, and the heat is transmitted to the heating seat 21, the milk bottle 4 and the milk water in the milk bottle 4 in sequence, so that dry heating is formed. Compared with water bath heating, the energy is directly transmitted to the milk water, and the waste of electric energy is reduced.

[0040] Reference Figures 4-6 The heating seat 21 is fixed with a photoelectric sensor 23 for automatically detecting the milk bottle 4. When the milk bottle 4 is inserted into the heating seat 21, the photoelectric sensor 23 detects the milk bottle 4 and makes the heating sheet 22 in an electrified heating state. When the milk bottle 4 is separated from the heating seat 21, the photoelectric sensor 23 detects that there is no milk bottle 4 in the heating seat 21, and the heating sheet 22 is in a de-energized non-working state.

[0041] Reference Figures 6-9The temperature detecting device 3 is used for detecting the temperature of the feeding bottle 4 and milk, and when the milk is heated to between 37 and 45 degrees Celsius, the control heating sheet 22 is in the mode of heat preservation heating, avoiding the waste of electric energy. The temperature detecting device 3 comprises a connecting plug 31 embedded in the side wall of the heating seat 21, and a temperature sensor 32 penetrating through the connecting plug 31. The head of the connecting plug 31 is provided with a recess 311, and the temperature sensor 32 is located in the recess 311. When the feeding bottle 4 is installed in the heating seat 21, the side wall of the feeding bottle 4 abuts against the opening of the recess 311, so that the recess 311 forms a sealed space.

[0042] With reference to Figures 8-10 The existing detection technology is that the temperature sensor 32 directly contacts with the feeding bottle 4. However, since the temperature of the side wall of the heating seat 21 is much higher than the temperature of the surface of the feeding bottle 4, and the temperature sensor 32 is very close to the heating seat 21, the influence of the heating seat 21 on the temperature sensor 32 is great, so that the temperature sensor 32 cannot accurately measure the temperature of the feeding bottle 4. In the embodiment, the environment temperature in the recess 311 is directly detected, and the temperature is the temperature of the bottle body and milk heat radiation, which is close to the temperature of the milk. In this way, the influence of the heating seat 21 on the temperature sensor 32 is avoided, so as to ensure the accuracy of detection.

[0043] With reference to Figures 8-10 The connecting plug 31 is made of rubber material, so that the rubber plug can be deformed to make the rubber plug elastically contact with the side wall of the feeding bottle 4, improve the sealing property between the connecting plug 31 and the feeding bottle 4, and further improve the accuracy of temperature detection. The connecting plug 31 can also be made of wood plug, heat preservation cotton and the like. The temperature sensor 32 is specifically a thermistor.

[0044] With reference to Figures 8-10 The temperature sensor 32 is inserted into the connecting plug 31 in interference fit, so that the temperature sensor 32 cannot slide in the connecting plug 31 without external force.

[0045] With reference to Figures 8-10 The shape of the recess 311 can be regular spherical shape, polygonal prism or cylindrical shape, as long as the connecting plug 31 and the side wall of the feeding bottle 4 can be sealed and connected.

[0046] With reference to Figure 5 and Figure 10The side wall of the heating seat 21 is provided with a through hole, and the connecting plug 31 is inserted into the through hole in an interference fit. The connecting plug 31 is integrally provided with a positioning ring 312. When the step surface of the positioning ring 312 abuts against the side surface of the heating seat 21, the connecting plug 31 cannot move into the interior of the heating wall. The positioning ring 312 plays a role of positioning and limiting. When the connecting plug 31 is assembled in the through hole, the end of the connecting plug 31 protrudes into the interior of the heating seat 21. In this way, when the feeding bottle 4 is placed in the heating seat 21, the connecting plug 31 can elastically abut against the feeding bottle 4.

[0047] With reference to Figure 5 and Figure 10 The outer side wall of the heating seat 21 is fixed with a screw rod 34 along the diameter direction of the heating seat 21. There are two screw rods 34, and they are symmetrically arranged on the two sides of the connecting plug 31. The screw rod 34 is slidably provided with a pressing plate 33 on the side away from the connecting plug 31. The screw rod 34 is threadedly connected with a locking cap on the side away from the pressing plate 33. When the connecting plug 31 is assembled on the heating seat 21, the locking cap is rotated to limit the connecting plug 31 on the heating seat 21, so that the connecting plug 31 is prevented from being separated from the heating seat 21.

[0048] With reference to Figures 4-6 The heating seat 21 is provided with a heat preservation layer 25. The heat preservation layer 25 prevents the heat on the heating seat 21 from being dissipated into the air or other components, and plays a role of energy saving. The heating seat 21 exists independently. The heating seat 21, the feeding bottle 4, the temperature detection device 3 and the photoelectric sensor 23 correspond to each other, and each feeding bottle 4 can be individually heated and controlled. This is suitable for complex and variable infant conditions in hospitals, and greatly reduces the workload of nurses in hospitals.

[0049] With reference to Figures 1-3 The mounting plate 15 is detachably fixed in the box body 1, and the heating seats 21 are fixed to the lower surface of the mounting plate 15. The mounting plate 15 is provided with a display for displaying the temperature of the temperature sensor 32. The display corresponds to the heating seat 21, and the display is arranged to facilitate people to intuitively know whether each feeding bottle 4 can be used.

[0050] With reference to Figures 1-2 The cover plate 11 is rotatably connected to the box body 1, and the cover plate 11 is provided with an observation plate 12 embedded therein. The observation plate 12 is transparent and can be used to observe the inside of the box body 1. The cover plate 11 is used to protect the feeding bottles 4 in the box body 1, and the observation plate 12 is used to observe the heating state of the feeding bottles 4.

[0051] Embodiment 2: With reference to Figure 11The difference between the medical intelligent mobile dry type automatic temperature control milk warmer and the embodiment 1 is that the power module 13 is added, the power module 13 is installed in the box 1, the power module 13 is electrically connected with the heating sheet 22, the socket is arranged on the power supply, the socket is used for inserting the wire, so that the power module 13 and the external 220V power supply are directly connected. The lower surface of the box 1 is installed on the support 16, the pulley is arranged on the support 16. The existing water bath heating device 2 cannot be moved, the milk warmer described in the embodiment can be moved, so that the staff can push the support 16 and move the feeding bottle 4 to the side of each baby room baby, so as to facilitate the baby feeding. The function of the power module 13 is to keep the heated feeding bottle 4, so that the temperature of the milk water does not change when the feeding bottle 4 is taken to the side of the baby.

[0052] Reference Figures 1-3 The upper surface of the box 1 is embedded with the display device 14 for displaying the power of the power module 13, when the staff notices that the power displayed by the display device 14 is low, the staff is prompted to charge.

[0053] The implementation principle of the above embodiment is that: first, each feeding bottle 4 is placed in the heating seat 21, which can be detected by the photoelectric sensor 23, at this time, the heating sheet 22 is in the heating state, and the feeding bottle 4 is heated; the temperature detection device 3 is used for sensing the temperature of the feeding bottle 4 and the milk water, when the milk water is heated to the set temperature, at this time, the heating is stopped, the milk water is kept warm, so that the heated milk water is more intelligent.

[0054] The above only describes the preferred embodiments of the present application, it should be pointed out that, for ordinary skilled in the art, without departing from the technical principles of the present application, a number of improvements and modifications can be made, these improvements and modifications should also be considered as the protection scope of the present application.

Claims

1. A medical intelligent mobile dry automatic temperature-controlled bottle warmer, characterized in that: The utility model provides a baby bottle heating device, including box (1), a plurality of heating device (2) are arranged in box (1), the heating device (2) includes the heating seat (21) for inserting baby bottle (4) and the heating sheet (22) of electric heating affixed outside heating seat (21), temperature detection device (3) is fixed on heating seat (21), temperature detection device (3) includes the connecting plug (31) of splicing in heating seat (21), temperature sensor (32) is passed in connecting plug (31), the recess is set up in the end of connecting plug (31), and the probe of temperature sensor (32) is located in the recess, when baby bottle (4) is put into heating seat (21), the heating sheet (22) generates heat under the supply of power, and heat is successively transferred to heating seat (21) and baby bottle (4), and the cavity of airtightness is formed between baby bottle (4) side wall and recess, The outer side wall of heating seat (21) is fixed with screw rod (34) along the diameter direction of heating seat (21), the screw rod (34) is two in total and is symmetrically arranged on the two sides of connecting plug (31), the pressure plate (33) is slidably arranged on one side of screw rod (34) away from connecting plug (31), and the locking cap is threadedly connected to the other side of screw rod (34) away from pressure plate (33); The outside of heating seat (21) is fixed with photoelectric sensor (23) for detecting baby bottle (4), when baby bottle (4) is put into heating seat (21), the photoelectric sensor (23) detects baby bottle (4), and at this time, the heating sheet (22) is in the state of electrification; The box (1) is also provided with a power module (13), and the power module (13) is electrically connected with the heating sheet (22); The upper surface of the box (1) is embedded with an electric quantity display device (14) for displaying the power supply electric quantity. The lower end of the box (1) is provided with a support (16), the support (16) is provided with a pulley, and the box (1) is installed on the support (16). The box (1) is detachably fixed with a mounting plate (15), the heating seats (21) are uniformly distributed on the mounting plate (15), the mounting plate (15) is provided with a display for displaying the temperature of the temperature sensor (32), and the display is in one-to-one correspondence with the heating seats (21). The box (1) is rotatably connected with a cover plate (11), and the cover plate (11) is embedded with a transparent observation plate (12) capable of observing the inside of the box (1).

2. The medical smart mobile dry automatic temperature control milk warmer according to claim 1, characterized in that: The heating seat (21) is coated with a heat preservation layer (25).

3. The medical intelligent mobile dry automatic temperature control milk warmer according to claim 1, characterized in that: The heating sheet (22) comprises an adhesive layer (223), an insulating layer (221), and an electric resistance wire (222) embedded in the insulating layer (221), and the adhesive layer (223) is attached to the outer side of the heating seat (21).

Citation Information

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