The present invention relates to the technical field of household appliances, and in particular, relates to a refrigerator.
With the increasing development of society and the continuously improved living standard of people, the pace of life of people is faster and faster, and a lot of foods may be to purchased and stored at a time. In order to guarantee the storage effect of the foods, refrigerators become one of indispensable household appliances in daily life of people.
A refrigerator generally utilizes an evaporator to provide cooling capacity for a storage space, and air with an increased temperature in the storage space returns to the evaporator, so that air circulation is formed. In addition, the role of a liquid storage bag in a refrigerating system is also important, but the existing liquid storage bag is generally placed on an air return pipe and is arranged in a foam layer of a refrigerator cabinet. When the refrigerating system works, the flowing sound of a liquid refrigerant is large and difficult to eliminate, noise is easily transmitted to the external environment through a housing of the cabinet, and user experience is influenced.
An object of the present invention is to reduce noise generated by the flow of a liquid refrigerant and make the internal layout of a cooling chamber compact.
A further object of the present invention is to avoid frosting of a refrigerating fan caused by return air and ensure the working reliability of the refrigerating fan.
Specifically, the present invention provides a refrigerator. The refrigerator includes a cabinet, in which a cooling chamber and at least one storage space are defined, the cooling chamber being arranged at the bottom of the cabinet and directly below the storage space; a door body, which is arranged on a front surface of the cabinet so as to operably open and close the storage space; an evaporator, which is wholly horizontally placed in the cooling chamber in the shape of a flat cube, and is configured to provide cooling capacity to the storage space; and a liquid storage bag, which is arranged in the cooling chamber and connected to the evaporator. An included angle between a center line of the liquid storage bag and a horizontal line is 1° to 89°.
Optionally, there are a plurality of storage spaces including a refrigeration space and at least one freezing space. And the cabinet includes a freezing liner, the cooling chamber and the at least one freezing space located above the cooling chamber being defined in the freezing liner; and a refrigeration liner arranged above the freezing liner, the refrigeration space being defined in the refrigeration liner.
Optionally, the refrigerator further includes an air supply duct which is arranged on inner sides of rear walls of the refrigeration liner and the freezing liner, an air supply inlet in communication with the cooling chamber is formed in a bottom end of the air supply duct, and air supply outlets are formed corresponding to the refrigeration space and the freezing space, respectively, so as to transmit the cooling capacity provided by the evaporator to the storage spaces.
Optionally, the refrigerator further includes a refrigerating fan which is arranged behind the evaporator, and the air blowing direction of the refrigerating fan directly faces the air supply inlet, so that the cooling capacity generated by the evaporator can enter the air supply duct.
Optionally, the liquid storage bag is arranged in a space enclosed by the refrigerating fan, the evaporator and a right side of the freezing liner; or the liquid storage bag is arranged in a space enclosed by the refrigerating fan, the evaporator and a left side of the freezing liner; or the liquid storage bag is arranged between the evaporator and the right side of the freezing liner; or the liquid storage bag is arranged between the evaporator and the left side of the freezing liner; or the liquid storage bag is arranged between the evaporator and the refrigerating fan.
Optionally, the evaporator includes an evaporator body, an upper cover plate and a lower cover plate. The evaporator body includes a plurality of fins arranged in parallel and a coil penetrating through the fins, the upper cover plate is arranged at the top of the evaporator body, and the lower cover plate is arranged at the bottom of the evaporator body.
Optionally, notches are formed in corresponding positions of each fin, and passages laterally extending along the evaporator are formed by the notches in the corresponding positions. And the refrigerator further includes a heating wire embedded in the passages to defrost the evaporator.
Optionally, first fixing holes are formed in four corners of the upper cover plate, and second fixing holes are correspondingly formed in four corners of the top of the evaporator body in position. Third fixing holes are formed in four corners of the lower cover plate, and fourth fixing holes are correspondingly formed in four corners of the bottom of the evaporator body in position.
Optionally, the evaporator further includes fixing members configured to pass through the aligned first and second fixing holes to fix the upper cover plate and the evaporator body, and pass through the aligned third and fourth fixing holes to fix the lower cover plate and the evaporator body.
Optionally, the first fixing holes and the third fixing holes are kidney-shaped holes, and the second fixing holes and the fourth fixing holes are circular holes.
The refrigerator provided by the present invention includes the cabinet, in which the cooling chamber and the at least one storage space are defined, the cooling chamber being arranged at the bottom of the cabinet and directly below the storage space; the door body, which is arranged on the front surface of the cabinet so as to operably open and close the storage space; the evaporator, which is wholly horizontally placed in the cooling chamber in the shape of a flat cube, and is configured to provide cooling capacity to the storage space; and the liquid storage bag, which is arranged in the cooling chamber and connected to the evaporator. The included angle between the center line of the liquid storage bag and the horizontal line is 1° to 89°. The liquid storage bag is arranged in the cooling chamber, and the foam layer and the housing of the refrigerator may block the sound transmission of the flow of a liquid refrigerant, and in particular, the foam layer has a good sound insulation effect. The liquid storage bag is connected to the evaporator and the included angle between the center line of the liquid storage bag and the horizontal line is 1° to 89°, which can make the internal structure of the cooling chamber compact and prevent the occupation of too much space.
Further, in the refrigerator provided by the present invention, the evaporator includes the evaporator body, the upper cover plate and the lower cover plate. The evaporator body includes the plurality of fins arranged in parallel and the coil penetrating through the fins, the upper cover plate is arranged at the top of the evaporator body, and the lower cover plate is arranged at the bottom of the evaporator body. The first fixing holes are formed in four corners of the upper cover plate, and the second fixing holes are correspondingly formed in four corners of the top of the evaporator body in position. The third fixing holes are formed in four corners of the lower cover plate, and the fourth fixing holes are correspondingly formed in four corners of the bottom of the evaporator body in position. The evaporator further includes the fixing members configured to pass through the aligned first and second fixing holes to fix the upper cover plate and the evaporator body, and pass through the aligned third and fourth fixing holes to fix the lower cover plate and the evaporator body. The first fixing holes and the third fixing holes are kidney-shaped holes, and the second fixing holes and the fourth fixing holes are circular holes, so that it is guaranteed that there is no gap between the upper cover plate and the evaporator body and between the lower cover plate and the evaporator body after they are fixed, the situation that the refrigerating fan is frosted up due to the fact that return air of the freezing space directly blows to the refrigerating fan without heat exchange through the evaporator is avoided, the working reliability of the refrigerating fan is effectively guaranteed, and thus the overall refrigerating capacity of the refrigerator is improved. In addition, the upper cover plate and the lower cover plate are arranged at the top and the bottom of the evaporator body respectively, so that the overall structure of the evaporator is simplified, and the production cost is effectively reduced.
The above, as well as other objectives, advantages, and characteristics of the present invention, will be better understood by those skilled in the art according to the following detailed description of specific embodiments of the present invention taken in conjunction with the accompanying drawings.
In the following part, some specific embodiments of the present invention will be described in detail in an exemplary rather than limited manner with reference to the accompanying drawings. The same reference numerals in the accompanying drawings indicate the same or similar components or parts. Those skilled in the art should understand that these accompanying drawings are not necessarily drawn to scale. In figures:
An embodiment provides a refrigerator, a liquid storage bag is arranged in a cooling chamber, and a foam layer and a housing of the refrigerator may block the sound transmission of the flow of a liquid refrigerant. In particular, the foam layer has a good sound insulation effect. The liquid storage bag is connected to an evaporator and an included angle between the center line of the liquid storage bag and a horizontal line is 1° to 89°, which can make the internal structure of the cooling chamber compact and prevent the occupation of too much space.
A cooling chamber 11 and at least one storage space are defined in the cabinet 10. The cooling chamber 11 is arranged at the bottom of the cabinet 10 and directly below the storage space. As shown in
The door body 20 is arranged on a front surface of the cabinet 10 so as to operably open and close the storage space. The door body 20 and the storage space are arranged correspondingly, that is, each storage space corresponds to one or more door bodies 20. As shown in
The evaporator 21 is wholly horizontally arranged in the cooling chamber 11 in the shape of a flat cube and is configured to provide cooling capacity for the storage space. The evaporator 21 is wholly horizontally arranged in the cooling chamber 11 in the shape of a flat cube, i.e., a length-width face of the evaporator 21 is parallel to the horizontal plane, and a thickness face thereof is perpendicular to the horizontal plane. The evaporator 21 provides different cooling capacity for the various types of storage spaces, so that the temperatures in the various types of storage spaces are different. For example, the temperature of the refrigeration space is generally between 2° C. and 10° C., preferably 4° C. to 7° C. The temperature of the freezing space is generally between −22° C. and −14° C. Optimal storage temperatures for different types of articles are different, and thus suitable storage spaces are also different. For example, fruits and vegetables are suitable for storage in the refrigeration space or fresh-keeping space, while meat is suitable for storage in the freezing space.
In a specific embodiment, the refrigerator 100 of the present embodiment is provided with a plurality of storage spaces including a refrigeration space and at least one freezing space. As shown in
In addition, the cabinet 10 may further include a housing 60 and a foam layer 73. The housing 60 is arranged outside the freezing liner 71 and the refrigeration liner 72. The foam layer 73 is arranged between the housing 60 and the refrigeration liner 72 and the freezing liner 71 to insulate heat outside the refrigerator 100.
The liquid storage bag 80 is arranged in the cooling chamber 11 and is connected to the evaporator 21. Specifically, one end of the liquid storage bag 80 is connected to the evaporator 21, while the other end is connected to a compressor. A gas-liquid mixed refrigerant flows out of the evaporator 21 and then flows into the compressor through the liquid storage bag 80. On one hand, the liquid storage bag 80 can enable the refrigerant to be subjected to gas-liquid separation to prevent the compressor from generating liquid hammer. On the other hand, a certain amount of liquid refrigerant can be stored in the liquid storage bag 80, and the amount of the refrigerant can be adjusted according to the environment temperature, so that the refrigerator 100 can obtain a good refrigerating effect at different environment temperatures. The liquid storage bag 80 is arranged in the cooling chamber 11, the foam layer 73 and the housing 60 of the refrigerator 100 may block the sound transmission of the flow of the liquid refrigerant, and in particular, the foam layer 73 has a good sound insulation effect, so that noise is reduced, and user experience is enhanced.
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In a preferred embodiment, as shown in
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In a preferred embodiment, the plurality of passages are arranged at an upper end and a lower end of the fins 211, and the heating wire 90 is integrally bent and embedded in the passages at the upper end and the lower end of the fins 211. That is, one terminal of the heating wire 90 may be located at the upper end of the fins 211, the heating wire is bent along the passages at the upper end of the fins 211 and then bent along the passages at the lower end of the fins 211, and the other terminal of the heating wire 90 may be located at the lower end of the fins 211. The two terminals are connected with wiring terminals in the refrigerator 100 and are further connected to a main control panel of the refrigerator 100 through the wiring terminals so as to control the working state of the heating wire 90. The heating wire 90 is integrally arranged at the upper end and the lower end of the evaporator body 210 and directly heats the upper end and the lower end of the evaporator body 210, so that the defrosting efficiency is improved, and thus the working reliability of the evaporator 21 is further improved.
As shown in
In a preferred embodiment, the first fixing holes 216 and the third fixing holes 218 are kidney-shaped holes, and the second fixing holes 217 and the fourth fixing holes are circular holes. Due to the specific shape setting of the fixing holes, it can be guaranteed that there is no gap between the upper cover plate 214 and the evaporator body 210 and between the lower cover plate 215 and the evaporator body after they are fixed, the situation that the refrigerating fan 22 is frosted up due to the fact that return air of the freezing space directly blows to the refrigerating fan 22 without heat exchange through the evaporator 21 is avoided, the working reliability of the refrigerating fan 22 is effectively guaranteed, and thus the overall refrigerating capacity of the refrigerator 100 is improved. In addition, the upper cover plate 214 and the lower cover plate 215 are arranged at the top and the bottom of the evaporator body 210 respectively, the overall structure of the evaporator 21 is simplified, and the production cost is effectively reduced. It should also be noted that both the upper cover plate 214 and the lower cover plate 215 are fixed to the evaporator body 210 in which the heating wire 90 is embedded. Therefore, the upper cover plate 214 and the lower cover plate 215 can prevent the heating wire 90 from tilting, and ensure that the heating wire 90 is flatly embedded in the passages of the fins 211.
As shown in
A water outlet 41 is formed in the joint of the front section bottom wall and the rear section bottom wall of the cooling chamber 11, and is located below the evaporator 21. The inclination of the front section bottom wall is greater than that of the rear section bottom wall, so that the water outlet 41 is close to the front end of the evaporator 21 in the horizontal direction. Therefore, after entering the cooling chamber 11 through the water outlet 41, external air first passes through the evaporator 21, and the bad phenomena of frosting, icing and the like do not directly occur on the refrigerating fan 22.
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The refrigerator 100 may further include an evaporator cover plate 111 which is arranged above the evaporator 21 in a covering mode, and serves as a top wall to define the cooling chamber 11 together with the freezing liner 71. In a preferred embodiment, a freezing return air inlet 112 in communication with the freezing space is formed in a front end of the evaporator cover plate 111 to return air to the cooling chamber 11 from the freezing space. Specifically, the freezing return air inlet 112 may be louver-shaped. The second space 132 of the present embodiment serves as the freezing space and is adjacently arranged on the cooling chamber 11, so that air can be quickly returned to the cooling chamber 11 through the freezing return air inlet 112.
The refrigerator 100 provided by the present embodiment includes the cabinet, in which the cooling chamber 11 and the at least one storage space are defined, the cooling chamber 11 being arranged at the bottom of the cabinet and directly below the storage space; the door body 20, which is arranged on the front surface of the cabinet so as to operably open and close the storage space; the evaporator 21, which is wholly horizontally placed in the cooling chamber 11 in the shape of a flat cube, and is configured to provide the cooling capacity to the storage space; and the liquid storage bag 80, which is arranged in the cooling chamber 11 and connected to the evaporator 21. The included angle between the center line of the liquid storage bag 80 and the horizontal line is 1° to 89°. The liquid storage bag 80 is arranged in the cooling chamber 11, and the foam layer 73 and the housing 60 of the refrigerator 100 may block the sound transmission of the flow of the liquid refrigerant, and in particular, the foam layer 73 has the good sound insulation effect. The liquid storage bag 80 is connected to the evaporator 21 and the included angle between the center line of the liquid storage bag 80 and the horizontal line is 1° to 89°, which can make the internal structure of the cooling chamber 11 compact and prevent the occupation of too much space.
Further, in the refrigerator 100 provided by the present embodiment, the evaporator 21 includes the evaporator body 210, the upper cover plate 214 and the lower cover plate 215. The evaporator body 210 includes the plurality of fins 211 arranged in parallel and the coil 213 penetrating through the fins 211, the upper cover plate 214 is arranged at the top of the evaporator body 210, and the lower cover plate 215 is arranged at the bottom of the evaporator body 210. The first fixing holes 216 are formed in four corners of the upper cover plate 214, and the second fixing holes 217 are correspondingly formed in four corners of the top of the evaporator body 210 in position. The third fixing holes 218 are formed in four corners of the lower cover plate 215, and the fourth fixing holes are correspondingly formed in four corners of the bottom of the evaporator body 210 in position. The evaporator 21 further includes fixing members configured to pass through the aligned first fixing holes 216 and second fixing holes 217 to fix the upper cover plate 214 and the evaporator body 210, and pass through the aligned third fixing holes 218 and fourth fixing holes to fix the lower cover plate 215 and the evaporator body 210. The first fixing holes 216 and the third fixing holes 218 are kidney-shaped holes, and the second fixing holes 217 and the fourth fixing holes are circular holes, so that it is guaranteed that there is no gap after the upper cover plate 214 and the evaporator body 210 and between the lower cover plate 215 and the evaporator body 210 after they are fixed, the situation that the refrigerating fan 22 is frosted up due to the fact that the return air of the freezing space directly blows to the refrigerating fan 22 without heat exchange through the evaporator 21 is avoided, the working reliability of the refrigerating fan 22 is effectively guaranteed, and thus the overall refrigerating capacity of the refrigerator 100 is improved. In addition, the upper cover plate 214 and the lower cover plate 215 are arranged at the top and the bottom of the evaporator body 210 respectively, the overall structure of the evaporator 21 is simplified, and the production cost is effectively reduced.
Hereto, those skilled in the art should realize that although multiple exemplary embodiments of the present invention have been shown and described in detail herein, without departing from the spirit and scope of the present invention, many other variations or modifications that conform to the principles of the present invention can still be directly determined or deduced from the contents disclosed in the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all these other variations or modifications.
Number | Date | Country | Kind |
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201910865973.4 | Sep 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2020/114256 | 9/9/2020 | WO |