Heat dissipation type milk shaking device

By incorporating an air duct and fan into the baby shaker, the problem of decreased temperature measurement accuracy caused by heat buildup around the bottle is solved, enabling rapid heat dissipation and accurate temperature detection of the bottle.

CN223715613UActive Publication Date: 2025-12-26浙江喂养家智能科技有限公司
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Patent Information

Application Number
CN202423189358.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-26
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

In existing baby bottle shakers, the accuracy of non-contact temperature sensors decreases due to heat buildup around the bottle, making it impossible to accurately detect the bottle's temperature.

Method used

The milk shaker is equipped with an air duct and a fan. The fan blows air through the duct to allow the air around the bottle to circulate with the outside air or the room temperature air inside the base, preventing heat buildup and improving temperature measurement accuracy.

Benefits of technology

By using a fan to blow air through the duct, air exchange is achieved around the bottle, heat is quickly dissipated, the accuracy of the temperature sensor is improved, and the accuracy of the bottle temperature detection is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a heat dissipation type milk shaking device which comprises a base and a detection seat arranged on the base, and further comprises a milk shaking basket rotationally connected in the base, a detection assembly is arranged on the detection seat, a fan is arranged in the base, the base further comprises an air passing channel communicated with a detection through hole, and the air passing channel is communicated with the detection through hole. And the fan is communicated with the air passing channel. By arranging the air passing channel and the fan, air can be directly blown or sucked to the bottom of the milk shaking basket, namely the position opposite to the detection assembly, so that air in the milk shaking basket is circulated and exchanged with external normal-temperature air and / or normal-temperature air in the base; or air in the area near the milk shaking basket is circulated and exchanged with outside normal-temperature air and / or normal-temperature air in the base, so that heat is not accumulated in the area of the milk shaking basket, and the temperature measurement accuracy of the detection assembly is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of maternal and child products, more exactly, to a heat dissipation type milk shaker. BACKGROUND

[0002] In the related art, some waterless milk shakers use hot air for heating, heat the milk bottles through the hot air, heat the milk bottles, and adjust the temperature of the refrigerated breast milk or the brewed milk powder in the milk bottles to achieve the purpose of warming the milk. The milk shaker reciprocates or moves circumferentially through a rack or a belt to make the milk powder in the milk bottle uniform, avoiding problems such as milk powder clumping and granulating.

[0003] The existing milk shaker detects the temperature of the milk bottle through a contact type NTC temperature sensor. Since the milk bottle reciprocates, the contact type NTC temperature sensor rubs, and the detection result is inaccurate. To avoid mutual friction between the contact type NTC temperature sensor and the milk bottle, some milk shakers use an infrared non-contact temperature sensor with an opening. This avoids friction after contact and completes temperature measurement, but long-term use or repeated use will cause heat accumulation around the milk bottle, causing the infrared non-contact temperature sensor to be disturbed by external accumulated hot air, resulting in a decrease in temperature measurement accuracy. SUMMARY

[0004] The technical problem to be solved by the utility model is to provide a heat dissipation type milk shaker that reduces heat accumulation around the milk bottle and improves the temperature measurement accuracy of the non-contact temperature sensor.

[0005] The technical solution of the utility model is to provide a heat dissipation type milk shaker with the following structure, which includes a base and a detection seat arranged on the base, a milk shaker basket rotatably connected in the base, a detection assembly arranged on the detection seat, a fan arranged in the base, a wind passage communicated with the detection hole, and the fan communicated with the wind passage.

[0006] As an improvement of the utility model, the wind passage includes a first wind passage located in the detection seat and communicated with the fan, and the other end of the first wind passage is communicated with the detection hole.

[0007] As an improvement of the utility model, the wind passage includes a second wind passage arranged between the detection seat and the milk shaker basket, and the second wind passage is communicated with the detection hole.

[0008] As an improvement of the utility model, the fan is arranged at the bottom of the detection seat, the fan is provided with a first opening opposite to the base, and the bottom of the base is provided with a ventilation hole opposite to the first opening.

[0009] As an improvement of the utility model, the over-wind air duct comprises a third over-wind passage arranged between the detection seat bottom and the base bottom.

[0010] As an improvement of the utility model, the second over-wind passage is in communication with the internal space of the base.

[0011] As an improvement of the utility model, the milk shaking basket comprises a basket main body and a driving seat fixedly connected with the basket main body, the driving seat is provided with a first through hole for the detection assembly to pass through, and the second over-wind passage comprises a gap between the detection seat and the first through hole.

[0012] As an improvement of the utility model, the detection seat comprises a boss matched with the gap of the first through hole, and the second over-wind passage comprises a gap between the boss and the first through hole.

[0013] As an improvement of the utility model, the boss is provided with a second through hole in communication with the detection through hole, and the first over-wind passage is in communication with the second through hole.

[0014] As an improvement of the utility model, the detection seat and the milk shaking basket are provided with the second over-wind passage, and the second over-wind passage is in communication with the detection through hole.

[0015] As an improvement of the utility model, the detection through hole is provided with a light-transmitting lens at an end away from the detection seat.

[0016] After the above structure is adopted, compared with the prior art, the heat dissipation type milk shaker has the following advantages: through the arrangement of the over-wind air duct and the fan, air blowing or air suction can be directly performed on the bottom of the milk shaking basket, i.e. the place relative to the detection assembly, air in the milk shaking basket and external normal-temperature air and / or normal-temperature air in the base can be circulated and exchanged, or air in the region near the milk shaking basket and external normal-temperature air and / or normal-temperature air in the base can be circulated and exchanged, the region of the milk shaking basket is not accumulated with heat, and the temperature measurement accuracy of the detection assembly is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structure schematic diagram of the heat dissipation type milk shaker of the utility model Figure 1 .

[0018] Figure 2 is a structure schematic diagram of the heat dissipation type milk shaker of the utility model Figure 2 .

[0019] Figure 3 is Figure 2 a cross-sectional schematic diagram along A-A in the utility model.

[0020] Figure 4 is Figure 3 an enlarged view of B in the utility model.

[0021] As shown in the figure: 100, base; 110, detection seat; 111, detection assembly; 112, boss; 113, second through hole; 120, milk shaking basket; 121, detection through hole; 122, basket body; 123, driving seat; 124, first through hole; 130, wind hole; 200, fan; 210, first opening; 300, wind passage; 310, first wind passage; 320, second wind passage; 330, third wind passage. DETAILED DESCRIPTION

[0022] The utility model will be further described below in combination with the drawings and specific embodiments.

[0023] Refer to the drawings Figures 1-4 A heat dissipation type milk shaker, comprising a base 100 and a detection seat 110 arranged on the base 100, further comprising a milk shaking basket 120 rotatably connected in the base 100, the milk shaking basket 120 is provided with a detection through hole 121 opposite to the detection seat 110, the detection seat 110 is provided with a detection assembly 111 matched with the detection through hole 121, the base 100 is provided with a fan 200, and the base 100 further comprises a wind passage 300 communicated with the detection through hole 121, the fan 200 is communicated with the wind passage 300, by arranging the wind passage 300 and the fan 200, the detection through hole 121 can be directly blown or sucked, so that the air in the detection through hole 121 can be circulated and exchanged with the normal temperature air outside or in the base 100. Figures 1-4 As shown in the figure, when the milk bottle is placed in the milk shaking basket 120, the wind passage 300 and the fan 200 can prevent the heat from accumulating in the detection through hole 121, so as to improve the temperature measurement accuracy, and when the milk bottle in the milk shaker is taken out, the detection through hole 121 forms a structure communicated with the outside of the milk shaking basket 120, so that the air in the detection through hole 121 can be directly blown or sucked, the air in the detection through hole 121 can be quickly replaced, the accumulated heat can be quickly dissipated, the temperature measurement accuracy can be improved, and the detection through hole 121 can be sealed by a light-transmitting lens at the end away from the detection seat 110, so that the heat is not passed through, that is, when the milk bottle is placed in the milk shaker or not, the wind passage 300 is directly communicated with the bottom of the milk shaking basket 120, and the accumulated heat can be quickly dissipated by the wind passage 300 and the fan 200, so as to improve the temperature measurement accuracy.

[0024] Refer to the drawings Figure 4As shown, the air passage 300 includes a first air passage 310 in the detection seat 110 and communicated with the fan 200, and the first air passage 310 is communicated with the detection hole 121 at the other end. When only the first air passage 310 is provided, the fan 200 blows air or sucks air, which can affect the air in the detection hole 121, so that the detection hole 121 exchanges with the normal temperature air outside or in the base 100, the accumulated heat is quickly dissipated, and the temperature measurement accuracy is improved.

[0025] Or only the second air passage 320 is provided, the air passage 300 includes a second air passage 320 arranged between the detection seat 110 and the rocking cradle 120, and the second air passage 320 is communicated with the detection hole 121. At this time, the fan 200 is arranged in the region communicated with the second air passage 320. At this time, the second air passage 320 is communicated with the internal space of the base 100, and the second air passage 320 formed between the detection seat 110 and the rocking cradle 120 can make the detection hole 121 not accumulate heat, so that the temperature measurement accuracy is improved.

[0026] Referring to the drawings Figure 4As shown, the overwind air duct 300 includes a first overwind passage 310 in the detection seat 110 and communicated with the fan 200, the other end of the first overwind passage 310 is communicated with the detection through hole 121, the overwind air duct 300 includes a second overwind passage 320 arranged between the detection seat 110 and the rocking bassinet 120, the second overwind passage 320 is communicated with the detection through hole 121, at this time, the first overwind passage 310, the second overwind passage 320 and the detection through hole 121 are communicated, when the fan 200 is arranged at the bottom of the detection seat 110, the airflow in the second overwind passage 320 and the detection through hole 121 is circulated through the first overwind passage 310, at this time, the fan 200 can achieve the effect of air suction or air blowing, further, the fan 200 is provided with a first opening 210 opposite to the base 100, the bottom of the base 100 is provided with a ventilation hole 130 opposite to the first opening 210, that is, the outside air can be directly exchanged through the ventilation hole 130, which is a way of faster heat dissipation, at this time, the fan 200 sucks the outside normal temperature air through the ventilation hole 130, and then blows the air into the detection through hole 121 through the first overwind passage 310, the air blown out of the first overwind passage 310 and the air in the detection through hole 121 are all discharged through the second overwind passage 320, which can be discharged into the base 100. Another way of faster heat dissipation, at this time, the fan 200 sucks the air in the first overwind passage 310 to form a negative pressure area, which can quickly suck the high temperature air in the detection through hole 121 and the air in the second overwind passage 320, can quickly suck the high temperature air in the detection through hole 121 to achieve the effect of quickly dissipating the accumulated heat, so as to improve the temperature measurement accuracy, the gas in the second overwind passage 320 will also flow into the detection through hole 121, which can achieve the effect of quickly dissipating the accumulated heat and improving the temperature measurement accuracy. The overwind air duct 300 includes a third overwind passage 330 arranged between the bottom of the detection seat 110 and the bottom of the base 100, which can balance the air pressure in the base 100 and make the gas flow smoothly.

[0027] Referring to the drawings Figure 4As shown, the rocking cradle 120 comprises a cradle body 122 and a driving seat 123 fixedly connected with the cradle body 122, the driving seat 123 is provided with a first through hole 124 for the detection assembly 111 to pass through, the second air passage 320 comprises a gap between the detection seat 110 and the first through hole 124, that is, the first through hole 124 provided in the driving seat 123 for the detection assembly 111 to pass through realizes the second air passage 320 and the communication between the second air passage 320 and the detection through hole 121, at this time, a gap is provided between the end of the detection through hole 121 and the detection assembly 111, so as to not affect the communication between the second air passage 320 and the detection through hole 121, the detection seat 110 comprises a boss 112 matched with the gap of the first through hole 124, the second air passage 320 comprises a gap between the boss 112 and the first through hole 124, the second air passage 320 comprises a gap between the boss 112 and the first through hole 124, the second air passage 320 further comprises a gap between the driving seat 123 and the boss 112, at this time, the boss 112 is provided with a second through hole 113 communicated with the detection through hole 121, the first air passage 310 is communicated with the second through hole 113, the first air passage 310 is located in the boss 112 and communicated with the fan 200, the first air passage 310 is communicated with the second air passage 320 and the detection through hole 121 through the second through hole 113.

[0028] The preferred embodiments of the utility model are described above, the protection scope of the utility model is not only limited to the above-mentioned embodiments, all technical solutions under the idea of the utility model belong to the protection scope of the utility model. It should be noted that for ordinary skilled in the art, some improvements and decorations without departing from the principle of the utility model, these improvements and decorations should also be considered as the protection scope of the utility model.

Claims

1. A heat-dissipating type milk shaker, comprising a base (100) and a detection seat (110) disposed on the base (100), and further comprising a milk shaker basket (120) rotatably connected within the base (100), wherein the detection seat (110) is provided with a detection component (111), characterized in that: The base (100) is internally provided with a fan (200), and the base (100) further comprises a wind passing air duct (300) in communication with the rocking bassinet (120), and the fan (200) is in communication with the wind passing air duct (300).

2. The heat dissipation type milk frother according to claim 1, characterized in that: The rocking bassinet (120) is provided with a detection through hole (121) opposite to the detection seat (110), and the detection through hole (121) is in communication with the wind passing air duct (300).

3. The heat dissipating type milk frother according to claim 2, characterized in that: The wind passing air duct (300) comprises a first wind passing channel (310) in the detection seat (110) and in communication with the fan (200), and the first wind passing channel (310) is in communication with the detection through hole (121) at the other end.

4. The heat dissipating type milk frother according to claim 3, characterized in that: The wind passing air duct (300) comprises a second wind passing channel (320) arranged between the detection seat (110) and the rocking bassinet (120), and the second wind passing channel (320) is in communication with the detection through hole (121).

5. The heat dissipating type milk frother according to claim 3, characterized in that: The fan (200) is arranged at the bottom of the detection seat (110), and the fan (200) is provided with a first opening (210) opposite to the base (100), and the bottom of the base (100) is provided with a wind passing hole (130) opposite to the first opening (210).

6. The heat dissipating type milk frother according to claim 5, characterized in that: The wind passing air duct (300) comprises a third wind passing channel (330) arranged between the bottom of the detection seat (110) and the bottom of the base (100).

7. The heat dissipating type milk frother according to claim 4, characterized in that: The second wind passing channel (320) is in communication with the internal space of the base (100).

8. The heat dissipating type milk frother according to claim 4, characterized in that: The rocking bassinet (120) comprises a basket body (122) and a driving seat (123) fixedly connected with the basket body (122), the driving seat (123) is provided with a first through hole (124) through which the detection assembly (111) passes, and the second wind passing channel (320) comprises a gap between the detection seat (110) and the first through hole (124).

9. The heat dissipating type milk frother according to claim 8, characterized in that: The detection seat (110) comprises a boss (112) matched with the gap of the first through hole (124), and the second wind passing channel (320) comprises a gap between the boss (112) and the first through hole (124).

10. The heat dissipating type milk frother according to claim 9, characterized in that: The boss (112) is provided with a second through hole (113) in communication with the detection through hole (121), and the first wind passing channel (310) is in communication with the second through hole (113).

11. The heat dissipating type milk frother according to claim 2, characterized in that: The detection seat (110) and the rocking bassinet (120) are provided with the second wind passing channel (320) in communication with the detection through hole (121).

12. The heat dissipating type milk frother according to claim 2, characterized in that: The detection through hole (121) is provided with a light transmission lens at the end away from the detection seat (110).