CN211674108U - Double-heating type energy-saving dish-washing machine - Google Patents

Double-heating type energy-saving dish-washing machine Download PDF

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Publication number
CN211674108U
CN211674108U CN201922473080.3U CN201922473080U CN211674108U CN 211674108 U CN211674108 U CN 211674108U CN 201922473080 U CN201922473080 U CN 201922473080U CN 211674108 U CN211674108 U CN 211674108U
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air
heating
rack
energy
washing
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CN201922473080.3U
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Chinese (zh)
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王波
吕科明
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Ningbo Jiainuo Energy Saving Technology Co ltd
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Ningbo Jiainuo Energy Saving Technology Co ltd
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Abstract

The utility model discloses a two add energy-conserving dish washer of hot type, which comprises a frame the transport mechanism has been laid in the frame, the frame upper shield is equipped with the aircraft bonnet, be provided with the working chamber that a plurality of mutual UNICOM that air can host computer, air can heating element and separated in the aircraft bonnet, the air can the host computer and arranged at least two sets ofly the air can heating element all be located in the space of frame below to the air can be main heating source, and cooperation auxiliary heating, washing section and rinsing section are hot water, can make the bowl utensil rinsing through dish washer cleaner, and reduce the heating energy consumption of dish washer by a wide margin, only be the fourth of ordinary electrothermal tube heating energy consumption, consequently can practice thrift three fourths heating power consumption, energy saving and consumption reduction.

Description

Double-heating type energy-saving dish-washing machine
Technical Field
The utility model relates to a commercial dish washer technical field especially relates to a two energy-conserving dish washers of hot type that add.
Background
The dish washer is used to automatically clean tableware such as dish, chopsticks, dish, knife and fork. Fully automatic dishwashers on the market can be divided into two categories, domestic and commercial.
The commercial dish-washing machine can be divided into a cabinet type, a cover type, a basket transmission type, a belt transmission type and an ultrasonic 5 class according to the structure, thereby reducing the labor intensity of cooking personnel in restaurants, hotels and canteens of institutions, improving the working efficiency and promoting the cleanness and the sanitation. Traditional industry dish washer needs a large amount of hot water circulation at the in-process that washes dishes, and the hot water source mainly adopts electric heating's mode at present, need powerful heater, lead to the charges of electricity high, some electric load can not install in the too low place, the application scope of dish washer has been limited, for reduce power, current industry dish washer only adopts the hot water rinsing in the rinsing intracavity, the washing section is cold water, make the tableware through the washing section still exist the spot and remain, cause the unclean problem of back end rinsing.
SUMMERY OF THE UTILITY MODEL
The utility model discloses it is not enough to prior art, provide an energy consumption low to guarantee simultaneously that wash chamber and rinsing chamber are hot water supply's two heating type energy-conserving dish washer again.
In order to solve the technical problem, the utility model discloses a following technical scheme can solve: the double-heating energy-saving dishwasher comprises a rack, wherein a conveying mechanism is arranged on the rack, a hood is arranged on the rack, an air energy host, an air energy heating assembly and a plurality of separated working cavities which are communicated with each other are arranged in the hood, and the air energy host and the air energy heating assembly which is at least arranged in two groups are all positioned in a space below the rack.
In the technical scheme, the working cavity comprises a cleaning cavity, a rinsing cavity and a drying cavity.
In the above technical scheme, the air energy heating assembly comprises a first air energy heating assembly and a second air energy heating assembly.
In the above technical scheme, the first air energy heating assembly is arranged in the rack below the cleaning cavity and comprises a cleaning air energy heating pipe located in the cleaning water tank.
In the above technical scheme, the second air energy heating assembly is arranged in the rack below the drying cavity and comprises a rinsing air energy heating pipe located in the hot water tank.
In the technical scheme, a cleaning water auxiliary heating pipe is arranged on one side of the cleaning water tank, and water of the cleaning water tank is supplied to the cleaning cavity through a cleaning circulating pump.
In the technical scheme, the rinsing heat-preservation auxiliary heating tank with the heating pipe is arranged in cooperation with the hot water tank, and water in the hot water tank is conveyed into the rinsing heat-preservation auxiliary heating tank through the rinsing water pump located below the rinsing cavity.
Among the above-mentioned technical scheme, transport mechanism includes conveying guide rail, carriage, bowl dish mount and conveying power unit, and the carriage erects the upper surface of frame and wears to locate the work intracavity, and on the carriage was located to the conveying guide rail, the bowl dish mount set up on the conveying guide rail.
Compared with the prior art, the method has the following beneficial effects: the washing section and the rinsing section are both hot water, so that bowls passing through the dish washing machine can be rinsed more cleanly, the heating energy consumption of the dish washing machine is greatly reduced, and the energy consumption is only one fourth of that of a common electric heating tube, so that three quarters of heating power consumption can be saved, and energy conservation and consumption reduction are realized.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1, the double-heating energy-saving dishwasher comprises a rack 1, a conveying mechanism is arranged on the rack 1, a hood 11 is covered on the rack 1, an air energy host machine 3, an air energy heating assembly and a plurality of separated working chambers which are communicated with each other are arranged in the hood 11, and the air energy host machine and at least two groups of air energy heating assemblies are arranged in a space below the rack 1.
The working chamber is including wasing chamber 21, rinsing chamber 22 and stoving chamber 23, air can heating element include that first air can heating element and second air can heating element, first air can heating element sets up in frame 1 of wasing chamber 21 below, including being located the washing air that washs water tank 211 can heating pipe 31, second air can heating element set up in frame 1 of stoving chamber 23 below, including being located the rinsing air that hot-water tank 221 can heating pipe 32, it is provided with to wash water auxiliary heating pipe 212 to be located washing water tank 211 one side, the water of wasing water tank 211 supplies to wasing in the chamber 21 through washing circulating pump 213.
A rinsing heat-preservation auxiliary heating tank 222 with a heating pipe 2221 is provided in cooperation with the hot water tank 221, and water in the hot water tank 221 is delivered into the rinsing heat-preservation auxiliary heating tank 222 by a rinsing water pump 223 located below the rinsing chamber 22.
The conveying mechanism comprises a conveying guide rail 41, a conveying rack, a dish fixing frame 42 and a conveying power mechanism 43, the conveying rack is arranged on the upper surface of the rack 1 and penetrates through the working cavity, the conveying guide rail 41 is arranged on the conveying rack, and the dish fixing frame 42 is arranged on the conveying guide rail 41.
The dishwasher in the technical scheme is realized as follows:
the water tank and the water inlet system work: the water source is controlled to inject water into the hot water tank and the cleaning water tank respectively through two water inlet electromagnetic valves arranged at the water inlet pipe, and the water level is controlled by a hot water tank liquid level sensor and a cleaning tank liquid level sensor which are respectively positioned in the hot water tank.
The air energy heating system works: the invention adopts an air energy host machine for the first air energy heating component and the second air energy heating component of the dishwasher, and the two components can also work independently without logical influence.
Dish delivery system: the bowls and dishes are placed on the conveying guide rail, the conveying guide rail can adopt a conveying belt structure and can also adopt other structures, the conveying guide rail can be freely selected according to the use environment, the conveying power mechanism drives the bowls and dishes, and the bowls and the dishes are conveyed into the dish washing machine for washing through the inlet on the left side.
Dish washing system: the washing circulating pump that is located washing water tank one side extracts the water that washs in the water tank and constantly washes the bowl dish through wasing the chamber through washing the water jet with the mode of large-traffic big pressure, with the spot sanitization on the bowl dish, owing to need certain temperature to assist the washing, so need wash the water that the air can the heating pipe heating washing water tank, if heating temperature is not enough, can have the washing water that is located washing water tank one side to assist the heat-pipe to assist the heating. And the steam emitted in the cleaning cavity is concentrated by the first steam collecting cavity and then absorbed by the air energy heat collector for cyclic utilization to form a heat closed loop.
Dish rinsing system: the rinsing and the disinfection of the dish washer are completed integrally, so that the temperature of rinsing water needs to reach more than 81 ℃, the rinsing air energy heating pipe in the hot water tank heats the water to 70-80 ℃, then the rinsing water pump positioned below the rinsing cavity conveys the water to the rinsing heat-preservation auxiliary heat tank from the rinsing water supply port of the hot water tank, the heating pipe in the auxiliary heat tank heats the water to more than 82 ℃ and preserves the temperature, then the water is sprayed out from the rinsing spraying port in the rinsing cavity to rinse and disinfect dishes, the rinsed hot water flows into the cleaning cavity from the rinsing cavity, and then the hot water is discharged from the cleaning water outlet of the cleaning cavity to the waste water end heat exchange box for heat exchange and then is discharged.
Dish drying system: the rinsed dishes pass through the drying chamber 14 and are then transported out of the dishwasher.
Finally, the whole dish washing process is realized.
The energy consumption of the air energy heating system is only one fourth of that of a common electric heating pipe, so that three fourths of heating power can be saved, heat emitted in the working process can be absorbed to the maximum extent, energy is saved, consumption is reduced, and the air energy heating system has a good market prospect.
The protection scope of the present invention includes but is not limited to the above embodiments, the protection scope of the present invention is subject to the claims, and any replacement, deformation, and improvement that can be easily conceived by those skilled in the art made by the present technology all fall into the protection scope of the present invention.

Claims (8)

1. Double-heating type energy-saving dishwasher comprises a rack (1) and is characterized in that a conveying mechanism is arranged on the rack (1), a hood (11) is arranged on the rack (1), an air energy host (3), an air energy heating assembly and a plurality of separated working chambers which are communicated with each other are arranged in the hood (11), and the air energy host and at least two groups of air energy heating assemblies are arranged in a space below the rack (1).
2. Double heated energy-saving dishwasher according to claim 1, characterized in that the working chambers comprise a washing chamber (21), a rinsing chamber (22) and a drying chamber (23).
3. A dual heated energy saving dishwasher according to claim 2 in which the air-heatable assembly comprises a first air-heatable assembly and a second air-heatable assembly.
4. A double heated energy saving dishwasher according to claim 3, characterized in that the first air-heatable component is arranged in the rack (1) below the washing chamber (21), comprising washing air-heatable pipes (31) in a washing water tank (211).
5. A double heated energy saving dishwasher according to claim 3, characterized in that the second air-heatable component is arranged in the rack (1) below the drying chamber (23), comprising a rinse air-heatable pipe (32) in a hot water tank (221).
6. A dual heating type energy saving dishwasher according to claim 4, characterized in that a washing water heating auxiliary pipe (212) is provided at one side of the washing water tank (211), and water of the washing water tank (211) is supplied into the washing chamber (21) by a washing circulation pump (213).
7. A dual heating type energy saving dishwasher according to claim 5, characterized in that a rinse and heat insulating auxiliary heating tank (222) with heating pipes (2221) is provided in association with the hot water tank (221), and water in the hot water tank (221) is transferred into the rinse and heat insulating auxiliary heating tank (222) by a rinse water pump (223) located below the rinse chamber (22).
8. A dual-heating energy-saving dishwasher according to claim 1, characterized in that the conveying mechanism comprises a conveying rail (41), a conveying rack, a dish holder (42) and a conveying power mechanism (43), the conveying rack is arranged on the upper surface of the rack (1) and penetrates through the working chamber, the conveying rail (41) is arranged on the conveying rack, and the dish holder (42) is arranged on the conveying rail (41).
CN201922473080.3U 2019-12-31 2019-12-31 Double-heating type energy-saving dish-washing machine Active CN211674108U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922473080.3U CN211674108U (en) 2019-12-31 2019-12-31 Double-heating type energy-saving dish-washing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922473080.3U CN211674108U (en) 2019-12-31 2019-12-31 Double-heating type energy-saving dish-washing machine

Publications (1)

Publication Number Publication Date
CN211674108U true CN211674108U (en) 2020-10-16

Family

ID=72797655

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922473080.3U Active CN211674108U (en) 2019-12-31 2019-12-31 Double-heating type energy-saving dish-washing machine

Country Status (1)

Country Link
CN (1) CN211674108U (en)

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