KR20170018755A - Delay dropper type steam generator and food making equipment based on the same - Google Patents

Delay dropper type steam generator and food making equipment based on the same Download PDF

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Publication number
KR20170018755A
KR20170018755A KR1020150189022A KR20150189022A KR20170018755A KR 20170018755 A KR20170018755 A KR 20170018755A KR 1020150189022 A KR1020150189022 A KR 1020150189022A KR 20150189022 A KR20150189022 A KR 20150189022A KR 20170018755 A KR20170018755 A KR 20170018755A
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KR
South Korea
Prior art keywords
hole
delayed
steam generator
microdropper
type steam
Prior art date
Application number
KR1020150189022A
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Korean (ko)
Inventor
소용 후
Original Assignee
닝보 구앙 수 일렉트릭 어플리언스 씨오., 엘티디.
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Application filed by 닝보 구앙 수 일렉트릭 어플리언스 씨오., 엘티디. filed Critical 닝보 구앙 수 일렉트릭 어플리언스 씨오., 엘티디.
Publication of KR20170018755A publication Critical patent/KR20170018755A/en

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/04Cooking-vessels for cooking food in steam; Devices for extracting fruit juice by means of steam ; Vacuum cooking vessels
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/14Cooking-vessels for use in hotels, restaurants, or canteens
    • A47J27/16Cooking-vessels for use in hotels, restaurants, or canteens heated by steam

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  • Cookers (AREA)
  • Commercial Cooking Devices (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)

Abstract

A delayed dropper type vapor generator includes a heating body support, a heating body, a temperature sensor, and a micro pipette, and is characterized in that a longitudinal through-hole is formed on the center of the heating body support, the heating body is arranged along the through-hole, the head portion of the micro pipette is inserted into the through-hole of the heating body support, a plurality of water dropping holes and/or ventilation holes are formed on the side wall of the micro pipette in the through-hole, the micro pipette and the heating body support are sealed at the inlet of the through-hole, and the temperature sensor is arranged on the heating body support. The present invention also discloses food making equipment based on the delayed dropper type vapor generator. The supply of water starts when the water supply is delayed and the temperature of the vapor generator reaches the vapor generating temperature, and hot water is prevented from being sprayed during a heating process at the initial temperature of the heating body; supplied water is sent into the inner wall of the heating body through the diameter of the micro pipette, and the heating efficiency of evenly-sprayed fine water drops is higher than that of direct pipeline water flow; water is supplied quantitatively, regularly, and effectively, the water utilization rate is increased, and water resource waste is reduced.

Description

[0001] DELAY DROPPER TYPE STEAM GENERATOR AND FOOD MAKING EQUIPMENT BASED ON THE SAME [0002]

The present invention belongs to the area of food heating and heating equipment as a delayed dropper type steam generator and a food manufacturing equipment based on the generator.

As the rhythm of modern people and the improvement of people's health consciousness are improved, the traditional cooking method of oil roasting does not satisfy people's requirement to manufacture health food, . A common electric steam cooker that is popular in the market today is to design the heating element structure as a normal helical heat pipe and then to perform secondary compression. The structure is very complicated and the heat efficiency is low. When the initial temperature is insufficient, the water is directly delivered to the steam generator. In this process, steam is not steam but steam.

Based on the above problems, it is necessary to design a new type food and beverage apparatus which increases the thermal efficiency of steam and simplifies the structure to lower the cost.

An object of the present invention is to design a delayed dropper type steam generator and a food production equipment based on the generator to solve the problem of degradation of the steam generator steam conversion efficiency of the present technology.

The object of the present invention is specifically realized through the following technical solutions.

The delayed dropper type steam generator includes a heating element support, a heating element, a temperature sensor, and a microdropper. The center of the heating element support has a longitudinal through hole. The heating element is installed along the through hole, A plurality of water holes and / or ventilation holes are provided in the side wall of the microdropper in the through hole, and the microdropper and the heating element support are sealed at the inlet of the through hole, and the temperature sensor is installed on the heating element support.

Furthermore, preferably, the microdropper is laid horizontally or upwardly in the through-hole.

The head portion of the microdropper is a closed structure.

Preferably, the water hole of the microdropper is located on the side or bottom of the microdropper.

Preferably, the vents of the microdropper are located on the side or top of the microdropper.

The length of the microdropper in the through hole is larger than half the length of the through hole.

The head portion of the microdropper and the outlet of the through hole maintain a distance of at least 1/4 through hole length.

The microdropper may be circular, elliptical, rectangular, or regular.

The through-hole is a circular hole, a square hole, a multistage hole, or a malleable hole.

When the through hole is a circular hole or a regular deformation hole, the microdropper and the through hole are arranged on the same axis.

A plurality of the heating elements are arranged and distributed in a direction to surround the circumference of the through hole.

The temperature sensor is a delay temperature sensor.

The steam generating method includes heating the heating element support through the heating element to form a heating space in the through hole of the heating element support, heating the microdropper inserted in the through hole and the water therein, The steam generated in the microdropper flows into the water hole on the dropper, and the steam overflows through the ventilation hole. During the process of steam advancement, the heating element support continuously heats the water and steam and heats up to the outlet of the ventilation hole.

A food preparation equipment based on a delayed dropper type steam generator includes a pedestal, a side shell and a food preparation chamber, wherein a water tank, a pump and the delayed dropper type steam generator according to any one of claims 1 to 12 are installed inside the side shell And the outlet of the pump is connected to the inlet of the delayed dropper type steam generator and the outlet of the delayed dropper type steam generator is connected to the steam outlet of the center of the pedal The food preparation chamber is installed in the pedestal using a closed system to allow the steam outlet to enter the food preparation stall.

Furthermore, the delayed dropper type steam generator is disposed at an angle so that the inlet of the delayed dropper type steam generator is located below the outlet.

The pedestal is provided with a time limit switch.

A water level sensor is installed at the bottom of the water tank.

The food manufacturing method uses a food manufacturing equipment based on the delayed dropper type steam generator.

In the food manufacturing equipment based on the delayed dropper type steam generator of the present invention, when the heating element is used to generate thermal energy, the thermal energy is transmitted to the heating element support, and the delay temperature sensor detects that the temperature of the heating element support reaches the temperature at which steam is generated , The water is supplied to the microdropper, the water flow is uniformly distributed to the inner wall pipe hole of the heating element support through the water holes, and immediately generates steam and is discharged to the generator steam outlet.

When the delayed dropper type steam generator starts working and the delay temperature sensor detects that the temperature of the heating element support reaches the temperature at which the steam is generated, Water is supplied to the dropper and the water flow is uniformly distributed in the pipe hole of the inner wall of the heating element support through the water holes to generate steam immediately and then discharged to the generator steam outlet and enters the food preparation chamber through the steam outlet, do.

In the food production equipment based on the delayed dropper type steam generator of the present invention, water supply is delayed and water supply is started only when the temperature of the steam generator reaches the temperature at which steam is generated, so that hot water Is avoided.

The water feeds directly to the inner wall of the heating element through the diameter of the microdropper, and uniformly spraying the fine water droplets is more efficient than heating the flow of the pipe water directly, effectively supplying water at a predetermined amount and at a predetermined time, Thereby reducing water resource waste.

Lt; / RTI >

BRIEF DESCRIPTION OF THE DRAWINGS The invention will be described in more detail below on the basis of the accompanying drawings and examples.
1 shows an internal structure of a food preparation equipment based on a delayed dropper type steam generator.
Figure 2 shows an overview of the overall structure of a food preparation equipment based on a delayed dropper type steam generator.
3 shows a structural diagram of a delayed dropper type steam generator.
4 shows a cross-sectional view taken along line AA of Fig.
5 shows a perspective view of a delayed dropper type steam generator.

1 and 2, the food manufacturing equipment of the delayed dropper type steam generator provided by the embodiment of the present invention includes a pedestal 70, a side shell 80 and a food preparation chamber 90, and the side shell 80 A pump 55 and a delayed dropper type steam generator 15. The lower outlet of the water tank 50 and the inlet of the pump 55 are connected to each other, 55 and the inlet of the delayed dropper type steam generator 15 are communicated and the outlet of the delayed dropper type steam generator 15 and the steam outlet 72 at the center of the pedestal 70 are communicated and the food preparation chamber 90 Is installed in the pedestal 70 using a sealing method so that the steam outlet 72 enters the food preparation chamber 90.

Furthermore, the delayed dropper type steam generator is disposed at an angle so that the inlet of the delayed dropper type steam generator is located below the outlet.

The time limit switch 71 can be provided on the pedestal 70 and the time limit operation can be performed through the time limit switch 71. [

A water level sensor 51 may be installed at the lower part of the water tank 50 and a water level in the water tank 50 may be measured through the water level sensor 51. [

The steam generating method includes heating the heating element support through the heating element to form a heating space in the through hole of the heating element support, heating the microdropper inserted in the through hole and the water therein, The steam generated in the microdropper flows into the water hole on the microdropper, and the steam overflows through the ventilation hole. During the process of steam advancement, the heating element support continuously heats the steam and water to the outlet of the ventilation hole.

3 to 5, the delayed dropper type steam generator 15 includes a heating element support 10, a heating element 20, a temperature sensor 40, and a microdropper 30. The heating element support 10, The heating element 20 is provided along the through hole and the head of the microdropper 30 is inserted into the through hole of the heating element support 10 and the microdropper 30 A plurality of water holes 31 and a ventilation hole 32 are provided on the sidewall of the through hole so as to seal the microdropper 30 and the heating element support 10 at the entrance of the through hole, ).

The head portion of the microdropper 30 has a closed structure which ensures that when the microdropper 30 is relatively large in water flow, the flow of water can not flow directly out of the front of the microdropper, Can be guaranteed.

The water holes 31 of the microdropper 30 are located on the side or bottom of the microdropper 30 and the water holes of the microdropper 30 are located on the side or bottom of the microdropper 30, The microdropper 30 can be formed by gravity action and the microdropper 30 can be inclined horizontally or upwardly so that the microdropper can be made more uniform in the process of dripping water.

The vent hole 32 of the microdropper 30 is located on the side or upper side of the microdropper 30 so that the steam generated by the microdropper 30 is overflowed through the ventilation hole, And the pressure inside the microdropper is too large to prevent the water flow rate of the water holes from becoming too large.

The length of the microdropper 30 in the through-hole is larger than half the length of the through-hole, and after the microdropper sucks a sufficient amount of heat, the temperature of the water is increased to approach the boiling point, Do.

The head portion of the microdropper 30 and the outlet of the through hole must be maintained at a distance of at least 1/4 through hole length to ensure that water having a high temperature falling from the water hole 31 does not directly flow out to the outlet of the through hole The heat of the through holes is continuously absorbed again, and all of the heat is vaporized to be steam.

The microdropper 30 is circular, elliptical, rectangular, or regular.

The through-hole is a circular hole, a square hole, or a multistage hole or a malleable hole.

When the through-hole is a circular hole, a square hole, or a regular-deformation hole, the micro-droplet (30) and the through-hole are arranged on the same axis.

A plurality of the heating elements (20) are provided and distributed in a direction to wrap the circumference of the through holes.

The temperature sensor 40 is a delay temperature sensor.

The food production method uses food preparation equipment based on delayed dropper type steam generator.

In the food manufacturing equipment based on the delayed dropper type steam generator of the present invention, when the heating element is used to generate thermal energy, the thermal energy is transmitted to the heating element support, and the delay temperature sensor detects that the temperature of the heating element support reaches the temperature at which steam is generated , The water is supplied to the microdropper, the water flow is uniformly distributed to the inner wall pipe hole of the heating element support through the water holes, and immediately generates steam and is discharged to the generator steam outlet.

When the delayed dropper type steam generator starts working and the delay temperature sensor detects that the temperature of the heating element support reaches the temperature at which the steam is generated, Water is supplied to the dropper and the water flow is uniformly distributed in the pipe hole of the inner wall of the heating element support through the water holes to generate steam immediately and then discharged to the generator steam outlet and enters the food preparation chamber through the steam outlet, do.

In the food production equipment based on the delayed dropper type steam generator of the present invention, water supply is delayed and water supply is started only when the temperature of the steam generator reaches the temperature at which steam is generated, so that hot water Is avoided.

The water feeds directly to the inner wall of the heating element through the diameter of the microdropper, and uniformly spraying the fine water droplets is more efficient than heating the flow of the pipe water directly, effectively supplying water at a predetermined amount and at a predetermined time, Thereby reducing water resource waste.

10: Heating element support
15: Steam generator
20: heating element
30: Microdropper
31: water hole
32: Vents
40: Temperature sensor
50: Water tank
51: Water level sensor
55: Pump
70: Stand
71: Time limit switch
72: steam outlet
80: side shell
90: Food preparation room

Claims (18)

A heating element support, a heating element, a temperature sensor and a microdropper,
The center of the heating element support is provided with a through hole in the longitudinal direction and the heating element is provided along the through hole and the head portion of the microdropper is inserted into the through hole of the heating element support and a plurality of water holes and / A ventilation hole is provided and the microdropper and the heating element support are hermetically sealed at the entrance of the through hole and the temperature sensor is installed on the heating element support
Delayed dropper type steam generator.
The method according to claim 1,
Preferably, the microdropper is placed horizontally or upwardly in the through-hole
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
The head portion of the microdropper has a closed structure
Delayed dropper type steam generator.
The method of claim 3,
The water hole of the microdropper is located on the side or bottom of the microdropper
Delayed dropper type steam generator.
The method according to claim 1 or 4,
The vent hole of the microdropper is located on the side or top of the microdropper
Delayed dropper type steam generator.
The method according to claim 1 or 4,
The length of the microdropper in the through hole is larger than half the length of the through hole
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
The head portion of the microdropper and the outlet of the through hole maintain a distance of at least 1/4 through hole length
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
The microdropper may be circular, elliptical, rectangular,
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
The through-hole may be a circular hole, a square hole, a multi-
Delayed dropper type steam generator.
10. The method of claim 9,
Wherein when the through hole is a circular hole or a regular deformation hole, the microdropper and the through hole are arranged on the same axis
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
A plurality of the heating elements are arranged and distributed in a direction to wrap the circumference of the through hole
Delayed dropper type steam generator.
3. The method according to claim 1 or 2,
The temperature sensor is a delay temperature sensor
Delayed dropper type steam generator.
The through hole of the heating element support member forms a heating space through the heating element support by heating the heating element support, heating the microdropper inserted in the through hole and the water inside the heating hole, and then water is heated to the water hole on the microdropper The steam formed inside the microdropper is overflowed with the ventilation holes. During the process of steam advancement, the heating element support continuously heats the water and steam and heats up to the outlet of the ventilation hole
Method of generating steam.
A pedestal, a side shell and a food preparation chamber,
Wherein the side shell is provided with a water tank, a pump, and the delayed dropper type steam generator according to any one of claims 1 to 12. The lower outlet of the water tank and the inlet of the pump are connected to each other, The outlet of the delayed dropper type steam generator is communicated, the outlet of the delayed dropper type steam generator is connected to the steam outlet of the center of the pedestal, and the food preparation chamber is installed in the pedestal by using a sealing method, To enter
Food preparation equipment based on delayed dropper type steam generator.
15. The method of claim 14,
The delayed dropper type steam generator is disposed at an angle so that the inlet of the delayed dropper type steam generator is positioned below the outlet
Delayed dropper type steam generator.
15. The method of claim 14,
The pedestal is provided with a time limit switch
Delayed dropper type steam generator.
15. The method of claim 14,
A water level sensor is installed at the bottom of the water tank
Delayed dropper type steam generator.
Use of the delayed dropper type steam generator-based food preparation equipment according to any one of claims 14 to 17
How to make food.
KR1020150189022A 2015-08-10 2015-12-29 Delay dropper type steam generator and food making equipment based on the same KR20170018755A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201510486406.X 2015-08-10
CN201510486406.XA CN105011777A (en) 2015-08-10 2015-08-10 Delayed dropper type vapor generator and food making device based on same

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Publication Number Publication Date
KR20170018755A true KR20170018755A (en) 2017-02-20

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KR1020150189022A KR20170018755A (en) 2015-08-10 2015-12-29 Delay dropper type steam generator and food making equipment based on the same

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JP (1) JP2017036904A (en)
KR (1) KR20170018755A (en)
CN (1) CN105011777A (en)
TW (1) TWI556779B (en)

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CN109973972B (en) * 2019-04-08 2024-06-18 广东美的暖通设备有限公司 Steam generator, control method and air conditioner
CN115164400A (en) * 2022-08-17 2022-10-11 佛山市小熊厨房电器有限公司 Liquid heating system and heating device

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Publication number Publication date
TWI556779B (en) 2016-11-11
JP2017036904A (en) 2017-02-16
CN105011777A (en) 2015-11-04
TW201705885A (en) 2017-02-16

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