CN211953368U - Vertical refrigerator - Google Patents

Vertical refrigerator Download PDF

Info

Publication number
CN211953368U
CN211953368U CN201921479984.0U CN201921479984U CN211953368U CN 211953368 U CN211953368 U CN 211953368U CN 201921479984 U CN201921479984 U CN 201921479984U CN 211953368 U CN211953368 U CN 211953368U
Authority
CN
China
Prior art keywords
evaporation
air
evaporator
air outlet
return air
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201921479984.0U
Other languages
Chinese (zh)
Inventor
盛艳红
丁海霞
李洪滨
陈云和
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Kaichuang Electrical Appliances Co ltd
Original Assignee
Qingdao Kaichuang Electrical Appliances Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao Kaichuang Electrical Appliances Co ltd filed Critical Qingdao Kaichuang Electrical Appliances Co ltd
Priority to CN201921479984.0U priority Critical patent/CN211953368U/en
Application granted granted Critical
Publication of CN211953368U publication Critical patent/CN211953368U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model discloses a vertical freezer, including the cabinet body and refrigerating unit, the storing cavity and the machine storehouse of arranging about forming in the cabinet body, still be provided with on the cabinet body and be used for the switch the door body of storing cavity, storing cavity's bottom be provided with be used for with the vent of refrigerating unit intercommunication, refrigerating unit sets up in the machine storehouse, still be provided with the return air apron in the storing cavity, the return air apron covers the top of vent, the return air apron with form the return air passageway between storing cavity's the bottom surface, the return air apron is close to the edge of the door body still is provided with down the turn-ups, the return air hole has been seted up on the turn-ups down.

Description

Vertical refrigerator
Technical Field
The utility model relates to a refrigeration technology field especially relates to a vertical freezer.
Background
Vertical refrigerated cabinets are widely used in: supermarkets, convenience stores, hotels, shopping malls, hospitals, cake houses, bars, cafes and the like are the comprehensive public places. Chinese patent No. 201310028443.7 discloses an independently refrigerated freezer in which an independent refrigeration unit is used, the refrigeration unit being disposed at the bottom of the cabinet. The evaporation chamber of the refrigerating unit is communicated with the storage chamber of the cabinet body so as to realize the circulation flow of cold air. And shelter from the vent that the cabinet body is connected with refrigerating unit in order to satisfy the return air requirement, then adopt to arrange the tray in the vent top, the tray both can hold article, can satisfy the return air again and shelter from the needs. However, in the actual use process, the tray can be taken out by the user to access the articles, at the moment, the ventilation opening is completely exposed, and the articles in the cabinet body easily fall into the ventilation opening and enter the evaporation chamber of the refrigerating unit, so that the refrigerating unit is damaged. How to design a refrigeration plant that uses the reliability high is the utility model discloses the technical problem that will solve.
Disclosure of Invention
The utility model discloses the technical problem that will solve is: the utility model provides a vertical freezer realizes improving vertical freezer's use reliability.
The utility model provides a technical scheme is, a vertical freezer, including the cabinet body and refrigerating unit, the storing cavity and the machine storehouse of arranging about forming in the cabinet body, still be provided with on the cabinet body and be used for the switch storing cavity's the door body, storing cavity's bottom be provided with be used for with the vent of refrigerating unit intercommunication, refrigerating unit sets up in the machine storehouse, still be provided with the return air apron in the storing cavity, the return air apron covers the top of vent, the return air apron with form the return air passageway between storing cavity's the bottom surface, the return air apron is close to the edge of the door body still is provided with down the turn-ups, the return air hole has been seted up on the turn-ups down.
Further, the refrigerating unit comprises a shell and a refrigerating circuit, wherein the refrigerating circuit comprises a compressor, a condenser, a throttling device and an evaporator which are connected together, an evaporation chamber and a condensation chamber are formed in the shell, the evaporator is located in the evaporation chamber, and the condenser and the compressor are located in the condensation chamber; the vent is in communication with the evaporation compartment.
Further, the top of the evaporation chamber is provided with an air return inlet and an air outlet; an air outlet cover plate is further arranged in the storage cavity, an air outlet channel is formed between the air outlet cover plate and the back of the storage cavity, and a plurality of air outlet holes are formed in the air outlet cover plate; the air return opening is communicated with the ventilation opening, and the air outlet is communicated with the air outlet channel.
Furthermore, still be provided with the baffle of horizontal arrangement in the evaporation compartment, the lateral part of baffle pastes and leans on the lateral wall of evaporation compartment, the first end of baffle extends to return air inlet department, the evaporimeter with the evaporation fan transversely sets up side by side in the evaporation compartment, the evaporimeter with the evaporation fan is located the below of baffle.
Furthermore, the first end of the baffle is provided with a flange structure, the flange structure is provided with a vent, and the evaporation fan is arranged on the flange structure and opposite to the vent.
Furthermore, a heat insulation partition is arranged in the shell, the heat insulation partition divides the interior of the shell into the evaporation chamber and the condensation chamber, a drain hole communicated with the evaporation chamber and the condensation chamber is formed in the bottom of the heat insulation partition, a water receiving disc and a drain pipe are further arranged in the condensation chamber, the drain pipe is transversely arranged and inserted in the drain hole, and a drain port of the drain pipe is arranged upwards.
Compared with the prior art, the utility model discloses an advantage is with positive effect: the utility model provides a vertical freezer through set up the air-out apron in the storing cavity of the cabinet body, and the air-out apron covers the top at the vent to, the turn-ups is in order to satisfy the requirement of return air under the front side setting of air-out apron, and like this, even if there is debris to fall to the bottom, also can shelter from the protection through the air-out apron, avoids during debris enter into refrigerating unit through the vent, with the use reliability that improves vertical freezer.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
FIG. 1 is a schematic view of the vertical refrigerator of the present invention;
FIG. 2 is a sectional view of the vertical refrigerator of the present invention;
fig. 3 is one of the schematic structural diagrams of the refrigerating unit of the present invention;
fig. 4 is a second schematic structural diagram of the refrigeration unit of the present invention;
fig. 5 is a cross-sectional view of the refrigeration unit of the present invention;
fig. 6 is a schematic structural diagram of the housing of the refrigeration unit of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1 to 6, the vertical refrigerator according to the present embodiment includes a cabinet 100 and a refrigerating unit 200. The cabinet body 100 is provided with a storage cavity 101 and a cabinet 102 which are arranged up and down, the cabinet body 100 is further provided with a door body (not shown) for opening and closing the storage cavity 101, the bottom of the storage cavity 101 is provided with a vent 103 for communicating with the refrigerating unit 200, and the refrigerating unit 200 is arranged in the cabinet 102. The back of the storage cavity 101 is provided with an air outlet cover plate 104, and an air outlet channel is formed between the air outlet cover plate 104 and the back of the storage cavity 101. As for the refrigeration unit 200, the refrigeration unit 200 generally includes a housing 1 and a refrigeration circuit 2, the refrigeration circuit 2 includes a compressor (not shown), a condenser 21, a throttling device and an evaporator 22, which are connected together, an evaporation chamber 11 and a condensation chamber 12 are formed in the housing 1, the evaporator 22 is located in the evaporation chamber 11, an evaporation fan 3 is correspondingly arranged in the evaporation chamber 11, the condenser 21 and the compressor are located in the condensation chamber 12, and a condensation fan 4 is correspondingly arranged in the condensation chamber 12. The top of the evaporation chamber 11 is provided with a return air inlet 111 and an air outlet 112, the return air inlet 111 is communicated with the ventilation opening 103, and the air outlet 112 is communicated with the air outlet channel. Therefore, air in the storage cavity 101 enters the air return opening 111 through the ventilation opening 103, the air entering from the air return opening 111 exchanges heat through the evaporator 22 to form cold air, and the cold air is output to the air outlet channel from the air outlet 112, and is finally output to the storage cavity 101 from the air outlet hole on the air outlet cover plate 104 to refrigerate the articles.
For the vent 103 at the bottom of the storage cavity 101, the sundries can be prevented from falling into the vent 103 more effectively. Then, the following structural improvement design is carried out, specifically: the air return cover plate 7 is further arranged in the storage cavity 101, the air return cover plate 7 covers the air vent 103, an air return channel is formed between the air return cover plate 7 and the bottom surface of the storage cavity 101, a lower flanging 71 is further arranged on the edge, close to the door body, of the air return cover plate 7, and an air return hole (not marked) is formed in the lower flanging 71. Specifically, the return air cover plate 7 can be fixedly installed in the storage cavity 101 in a screw mode and the like, the return air cover plate 7 is shielded and protected at the top of the vent 103, and meanwhile, return air is achieved through a return air channel formed between the return air cover plate 7 and the bottom surface of the storage cavity 101. In actual use, air in the storage cavity 101 enters the return air channel through the return air inlet 111 and enters the refrigeration unit 200 through the vent 103. The return air cover plate 7 is always fixed above the ventilation opening 103, so that sundries can be effectively prevented from directly falling into the ventilation opening 103; meanwhile, as the air return hole is formed in the lower flanging 71 formed in the front of the air return cover plate 7, even if sundries fall to the front side of the lower flanging 71 in the using process, the sundries are difficult to enter the air return hole, so that the using reliability is improved.
In order to avoid the influence of the accumulation of foreign matters on the evaporator 22 during the circulation blowing process on the cooling efficiency. The following structural improvement design is carried out, and specifically:
the evaporation chamber 11 is also provided with a transversely arranged baffle 5, the side part of the baffle 5 is abutted against the side wall of the evaporation chamber 11, the first end part of the baffle 5 extends to the air return opening 111, the evaporator 22 and the evaporation fan 3 are transversely arranged in the evaporation chamber 11 side by side, and the evaporator 22 and the evaporation fan 3 are positioned below the baffle 5. Specifically, the evaporator 22 and the evaporation fan 3 are both located below the baffle 5, and the top shielding protection is performed on the evaporator 22 and the evaporation fan 3 through the baffle 5. Thus, in the actual use process, even if the impurities fall into the return air inlet 111 from the air vent 103, the baffle 5 is shielded at the tops of the evaporator 22 and the evaporation fan 3, the impurities can be effectively prevented from falling onto the evaporator 22 by the baffle 5, so as to ensure that the heat exchange surface of the evaporator 22 is not shielded by the impurities, and ensure that the evaporator 22 has high heat exchange efficiency.
For the baffle 5, in order to ensure smooth air inlet and outlet of the evaporation chamber 11, the second end of the baffle 5 extends to the air outlet 112; alternatively, the second end of the baffle 5 extends to a position between the air return opening 111 and the air outlet 112. Specifically, the baffle 5 can block the air heat exchanged by the evaporator 22 at the top, so as to prevent the air heat exchanged by the evaporator 22 from leaking from the air return opening 111 at the top, and ensure that the air after heat exchange smoothly enters the air outlet 112.
Wherein, baffle 5 except can stopping on debris fall to evaporimeter 22, can also play the effect of installation evaporating fan 3, specifically is: the first end of baffle 5 is provided with flanging structure 51, has seted up installing port 52 on flanging structure 51, and evaporation fan 3 sets up on installing port 52. Specifically, the evaporation fan 3 is mounted and fixed on the flange structure 51, and air introduced from the air return opening 111 enters the evaporation fan 3 through the mounting opening 52. And because the evaporator 22 and the evaporation fan 3 are transversely arranged side by side, the airflow blown out from the evaporation fan 3 is transversely blown to the evaporator 22 to realize heat exchange. The sides of the edge-turned structure 51 also abut against the side walls of the evaporation chamber 11, so that the edge-turned structure 51 has sufficient structural strength to mount and fix the evaporation fan 3.
In addition, in the case of the evaporator 22, the top of the evaporator 22 abuts on the baffle 5, so that the wind blown out from the evaporator fan 3 can be efficiently heat-exchanged via the evaporator 22. At the same time, the evaporator 22 can also be mounted and fixed by means of the baffle 5, for example: the top of the evaporator 22 can be connected with the baffle 5 at the top by welding or the like, and after the evaporation fan 3 is assembled on the baffle 5, the baffle 5 is fixed in the evaporation chamber 11 by screws or the like, so as to complete the integral assembly of the evaporator 22 and the evaporation fan 3. Preferably, the side wall of the evaporation compartment 11 is provided with a vertically arranged positioning rib 113, and the side of the evaporator 22 abuts against the positioning rib 113. Specifically, the lateral part of the evaporator 22 is positioned by the positioning blocking rib 113, and the positioning blocking rib 113 can effectively block the lateral part of the evaporator 22, so that the air flow blown out by the evaporation fan 3 is prevented from being directly conveyed to the air outlet 112 through the gap between the evaporator 22 and the side wall of the evaporation chamber 11, and the air can be effectively exchanged heat through the evaporator 22.
Through dispose baffle 5 in evaporation compartment 11, baffle 5 can shelter from the protection at the top to evaporimeter 22 to avoid the debris that the top dropped to pile up on evaporimeter 22 and influence evaporimeter 22 normal heat transfer, ensure that the not sheltered from by debris of evaporimeter 22 heat-transfer surface is in order to obtain good heat exchange efficiency, thereby can effectual reduction operation energy consumption.
Similarly, since the air cooling method is adopted, the evaporator 22 needs to be defrosted after a long time use, and correspondingly, the bottom of the evaporation chamber 11 needs to be configured with a design for discharging defrosted water. For this purpose, a heat-insulating partition 13 is arranged in the casing 1, the heat-insulating partition 13 divides the inside of the casing 1 into an evaporation chamber 11 and a condensation chamber 12, a drain hole 131 communicating the evaporation chamber 11 and the condensation chamber 12 is opened at the bottom of the heat-insulating partition 13, a water pan 60 and a drain pipe 6 are further arranged in the condensation chamber 12, and the drain pipe 6 is transversely arranged and inserted in the drain hole 131.
In order to avoid the cold air from leaking out from the drain hole 131 through the drain pipe 6 in the normal refrigeration process, the following structural improvement design is performed, specifically: the drain port 61 of the drain pipe 6 is arranged upward. Specifically, after the defrosting process is performed on the evaporator 22, the defrosting water is collected to the bottom of the evaporation chamber 11 and flows into the drain pipe 6 through the drain hole 131, while being arranged upward due to the drain hole 61 of the drain pipe 6. In the defrosting process, the defrosting water accumulated at the bottom of the evaporation chamber 11 cannot be completely discharged, and the defrosting water overflows from the water outlet 61 after the water level of the defrosting water in the evaporation chamber 11 exceeds the height of the water outlet 61. Thus, a water seal can be formed by the water discharge pipe 6, and the leakage of cold air can be reduced or avoided by the water seal formed by the water discharge pipe 6.
The height of the water outlet 61 is higher than that of the bottom surface of the evaporation chamber 11, so that a certain amount of defrosting water can be effectively accumulated at the bottom of the evaporation chamber 11 due to the higher height of the water outlet 61. So that the drain hole 131 is immersed in the defrosted water to achieve a more effective water sealing effect. In addition, a water collection groove 114 is formed in a region of the bottom surface of the evaporation chamber 11 near the water discharge hole 131. Specifically, the water collection groove 114 is formed concavely on the floor of the evaporation chamber 11 to facilitate efficient collection of the defrosting water. Meanwhile, the lower edge of the drainage hole 131 is flush with the bottom of the water collecting groove 114, so that only a small amount of defrosting water needs to be accumulated in the evaporation chamber 11, and the drainage hole 131 can be immersed in the defrosting water to obtain a good water sealing effect.
Further, in order to reduce the leakage of the cold air more effectively, the flange structure 51 extends downward to the bottom surface of the evaporation compartment 11, specifically, the flange structure 51 blocks between the evaporator 22 and the drain hole 131, so that after the air blown to the evaporator 22 by the evaporation fan 3 rebounds, the rebounded air can be prevented from flowing toward the drain hole 131 under the action of the flange structure 51, and the leakage of the cold air can be blocked more effectively.
Furthermore, in order to accelerate the evaporation speed of the defrosting water in the water pan 60, the top of the condensing chamber 12 is provided with a heat dissipation air outlet 121, the front and/or the side wall of the condensing chamber 12 is provided with a heat dissipation air inlet (not marked), the condenser 21 shields the heat dissipation air inlet, the heat dissipation air outlet 121 is provided with a condensation fan, and the condensation fan 4 is located above the water pan 60. Specifically, since the condensing fan 4 is located above the water pan 60, the external air is heat exchanged by the condenser 21 to form a high-temperature airflow which flows through the water pan 60 and is discharged from the condensing fan 4, so that the evaporation speed of the defrosting water in the water pan can be increased.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (6)

1. The utility model provides a vertical freezer, includes the cabinet body and refrigerating unit, the storing cavity and the machine storehouse of arranging about forming in the cabinet body, still be provided with on the cabinet body and be used for the switch the door body of storing cavity, the bottom of storing cavity be provided with be used for with the vent of refrigerating unit intercommunication, refrigerating unit sets up in the machine storehouse, a serial communication port, still be provided with the return air apron in the storing cavity, the return air apron covers the top of vent, the return air apron with form the return air passageway between the bottom surface of storing cavity, the return air apron is close to the edge of the door body still is provided with down the turn-ups, the return air hole has been seted up on the turn-ups down.
2. A vertical refrigerated cabinet according to claim 1 wherein the refrigeration unit comprises a housing and a refrigeration circuit comprising a compressor, a condenser, a restriction and an evaporator connected together, the housing defining an evaporation compartment and a condensation compartment therein, the evaporator being located in the evaporation compartment and the condenser and compressor being located in the condensation compartment; the vent is in communication with the evaporation compartment.
3. The vertical refrigerated cabinet as recited in claim 2 wherein the top of the evaporation compartment is provided with an air return and an air outlet; an air outlet cover plate is further arranged in the storage cavity, an air outlet channel is formed between the air outlet cover plate and the back of the storage cavity, and a plurality of air outlet holes are formed in the air outlet cover plate; the air return opening is communicated with the ventilation opening, and the air outlet is communicated with the air outlet channel.
4. The vertical refrigerated cabinet as recited in claim 3 wherein the evaporation compartment further includes a transversely disposed baffle and an evaporation fan, the sides of the baffle abutting the side walls of the evaporation compartment, a first end of the baffle extending to the return air opening, the evaporator and the evaporation fan being positioned side-by-side in the evaporation compartment, the evaporator and the evaporation fan being positioned below the baffle.
5. The vertical refrigerator according to claim 4, wherein the baffle has a flange structure at a first end thereof, the flange structure having a vent opening therein, and the evaporator fan is disposed on the flange structure and opposite to the vent opening.
6. The vertical refrigerator according to claim 2, wherein the casing is provided with a thermal insulation partition, the thermal insulation partition divides the inside of the casing into the evaporation chamber and the condensation chamber, a drain hole communicating the evaporation chamber and the condensation chamber is formed in the bottom of the thermal insulation partition, the condensation chamber is further provided with a water pan and a drain pipe, the drain pipe is transversely arranged and inserted in the drain hole, and the drain hole of the drain pipe is arranged upward.
CN201921479984.0U 2019-09-06 2019-09-06 Vertical refrigerator Active CN211953368U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921479984.0U CN211953368U (en) 2019-09-06 2019-09-06 Vertical refrigerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921479984.0U CN211953368U (en) 2019-09-06 2019-09-06 Vertical refrigerator

Publications (1)

Publication Number Publication Date
CN211953368U true CN211953368U (en) 2020-11-17

Family

ID=73166480

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921479984.0U Active CN211953368U (en) 2019-09-06 2019-09-06 Vertical refrigerator

Country Status (1)

Country Link
CN (1) CN211953368U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023109807A1 (en) * 2021-12-17 2023-06-22 青岛海尔特种电冰柜有限公司 Refrigeration unit and refrigeration apparatus provided with same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023109807A1 (en) * 2021-12-17 2023-06-22 青岛海尔特种电冰柜有限公司 Refrigeration unit and refrigeration apparatus provided with same

Similar Documents

Publication Publication Date Title
CN211953367U (en) Modular refrigerating unit and vertical refrigerated cabinet
CN110285630A (en) Refrigerator
CN211953369U (en) Integrated refrigerating unit and vertical refrigerated cabinet
CN211953368U (en) Vertical refrigerator
CN110375477B (en) Refrigerator with refrigerating chamber at bottom of freezing chamber
WO2021139149A1 (en) Commercial air-cooled freezer
CN110873489A (en) Refrigerating apparatus and control method thereof
CN112984894B (en) Refrigerating device
KR102646411B1 (en) Refrigerator
CN212481788U (en) Commercial air-cooled refrigerator
CN212157781U (en) Commercial vertical refrigerator
KR101519136B1 (en) Refrigerator
JP3714715B2 (en) Cooling storage
CN217876696U (en) Refrigerating equipment
WO2021139148A1 (en) Commercial upright freezer
CN113124605A (en) Refrigerator with frost reduction module and control method thereof
CN218495553U (en) Refrigerator with a door
JP3757643B2 (en) refrigerator
CN210602347U (en) Mechanical chamber enhanced heat exchange structure for commercial platform snow cabinet
CN218821172U (en) A kind of refrigerator
CN219331197U (en) Refrigerator
CN209978481U (en) Refrigerating unit and refrigerating equipment
CN219889887U (en) Ultrathin refrigerator
CN215951883U (en) Refrigerating and freezing device
CN220601885U (en) Refrigerator with a refrigerator body

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant