Condensation shunting dew-removing cabinet body
Technical Field
The utility model belongs to the technical field of cabinet bodies, and particularly relates to a condensation split-flow type dew-removing cabinet body.
Background
The refrigeration of the evaporator on the refrigeration cabinet always accompanies with the production of frost dew, and the frost dew not only can influence the refrigeration effect, piles up too much and also can cause the damage of evaporimeter in addition, and too much is piled up to avoid evaporimeter frost dew, also for more energy-concerving and environment-protective simultaneously, will always carry the steam that the condenser produced inside the evaporimeter through removing the dew pipe, handle it of defrosting to it. The connection mode of the dew removing pipe in the existing industry has two modes, the first mode is to directly connect the dew removing pipe to the air outlet end of the condenser, and the defect of the connection mode is that a refrigerant at the tail end of the condenser is in a supercooled state, the heat radiation is small, and the defrosting effect is not obvious; the second kind is that directly will remove the dew union coupling and be at the inlet end of condenser, the end of giving vent to anger of compressor promptly, and the drawback of this kind of connected mode just lies in, and the compressor exhaust directly gets into and removes the dew pipe, if compressor exhaust temperature surpasss 100 ℃, the high temperature not only influences user experience, seriously influences the internal temperature of cabinet moreover, causes the energy extravagant.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a condensation split-flow type dew-removing cabinet body which is energy-saving, environment-friendly and good in dew-removing effect.
In order to achieve the purpose, the utility model provides the following technical scheme: a condensation shunting type dew removing cabinet body comprises a cabinet body, wherein an equipment box is fixedly installed on the lower bottom surface of the cabinet body; a cabinet door is mounted on the front side wall of the cabinet body; a front baffle is arranged on the front side wall of the equipment box; a heat dissipation mask is embedded in the front baffle; an air inlet mask is arranged on the rear side wall of the equipment box; a throttle valve, a compressor, a bracket and a condenser are sequentially arranged on the bottom surface in the equipment box from left to right; a heat dissipation fan is arranged on the upper end face of the bracket; the middle part of the condenser is outwards guided and provided with a dew removing pipe; a handle is arranged on the front side wall of the left side of the cabinet door; and guide wheels are symmetrically arranged on the lower bottom surface of the equipment box.
As a further improvement of the utility model, an evaporator is arranged inside the cabinet body; and the air inlet end of the evaporator is connected with the air outlet end of the dew removing pipe.
As a further improvement of the utility model, the air outlet end of the condenser is connected with the air inlet end of the throttle valve and is provided with a first pipeline.
As a further improvement of the utility model, the air outlet end of the throttle valve is connected with the air inlet end of the compressor and is provided with a second pipeline.
As a further improvement of the utility model, a third pipeline is connected and installed between the air outlet end of the compressor and the air inlet end of the condenser.
Compared with the prior art, the utility model has the beneficial effects that: according to the technical scheme, the dew removing pipe is arranged on the condenser, and heat emitted by the condenser is collected through the dew removing pipe, so that defrosting of equipment is realized, the resource utilization rate is improved, and the energy is saved and the environment is protected; this technical scheme inserts from the middle part of condenser and removes the dew pipe, avoids the appearance of the too high or two kind too low extreme circumstances of temperature that the condenser gived off, can guarantee promptly that the dew pipe can effectual defrosting, can avoid removing the damage of dew pipe again, increases its life.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is an enlarged schematic view of the inside of the equipment box of the present invention.
Fig. 3 is a schematic structural diagram of the working principle of the present invention.
In the figure: 1. a cabinet body; 2. an equipment box; 3. a cabinet door; 4. a front baffle; 5. a heat-dissipating mask; 6. an air inlet mask; 7. a throttle valve; 8. a compressor; 9. a support; 10. a condenser; 11. a heat dissipation fan; 12. removing dew pipes; 13. a handle; 14. a guide wheel; 15. an evaporator; 16. a first conduit; 17. a second conduit; 18. a third conduit.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 3, the present invention provides a technical solution: a condensation shunting type dew removing cabinet body comprises a cabinet body 1, wherein an equipment box 2 is fixedly arranged on the lower bottom surface of the cabinet body 1; a cabinet door 3 is arranged on the front side wall of the cabinet body 1; the front side wall of the equipment box 2 is provided with a front baffle 4; a heat dissipation mask 5 is embedded in the front baffle 4; the rear side wall of the equipment box 2 is provided with an air inlet mask 6; the throttle valve 7, the compressor 8, the bracket 9 and the condenser 10 are sequentially arranged on the bottom surface in the equipment box 2 from left to right; the upper end surface of the bracket 9 is provided with a heat radiation fan 11; the middle part of the condenser 10 is outwards guided and provided with a dew removing pipe 12; a handle 13 is arranged on the left front side wall of the cabinet door 3; the lower bottom surface of the equipment box 2 is symmetrically provided with guide wheels 14; an evaporator 15 is arranged in the cabinet body 1; the air inlet end of the evaporator 15 is connected with the air outlet end of the dew-removing pipe 12; the air outlet end of the condenser 10 is connected with the air inlet end of the throttle valve 7 and is provided with a first pipeline 16; the air outlet end of the throttle valve 7 is connected with the air inlet end of the compressor 8 and is provided with a second pipeline 17; the outlet end of the compressor 8 is connected with the inlet end of the condenser 10 and is provided with a third pipeline 18.
After the equipment is installed, the power is switched on, the compressor 8 starts to operate, the evaporator 15 refrigerates the cabinet body 3, meanwhile, the condenser 10 cools the cabinet body in an outward heat dissipation mode, when defrosting is needed, the throttle valve 7 is closed, and hot air generated by the condenser 10 can be used for defrosting the evaporator 15 through the dew removing pipe 12.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the utility model. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.