WO2007129803A1 - A installation structure of shelf assembly for refrigerator and refrigerator comprising the same - Google Patents

A installation structure of shelf assembly for refrigerator and refrigerator comprising the same Download PDF

Info

Publication number
WO2007129803A1
WO2007129803A1 PCT/KR2006/005897 KR2006005897W WO2007129803A1 WO 2007129803 A1 WO2007129803 A1 WO 2007129803A1 KR 2006005897 W KR2006005897 W KR 2006005897W WO 2007129803 A1 WO2007129803 A1 WO 2007129803A1
Authority
WO
WIPO (PCT)
Prior art keywords
shelf assembly
storage space
stopper
mounting structure
guide
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.)
Ceased
Application number
PCT/KR2006/005897
Other languages
French (fr)
Inventor
Bon-Young Koo
Jong-Gon Kim
Oh-Chul Kwon
Yoo-Min Park
Myung-Soo Kim
Young-Hoon Gwak
Hyeon-Po Cho
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.)
LG Electronics Inc
Original Assignee
LG Electronics Inc
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 LG Electronics Inc filed Critical LG Electronics Inc
Priority to GB0820107A priority Critical patent/GB2451375B/en
Priority to US12/300,101 priority patent/US8167390B2/en
Priority to DE112006003890.7T priority patent/DE112006003890B4/en
Priority to AU2006343052A priority patent/AU2006343052B2/en
Priority to CN2006800544714A priority patent/CN101432588B/en
Priority to MX2008014356A priority patent/MX2008014356A/en
Publication of WO2007129803A1 publication Critical patent/WO2007129803A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • F25D25/024Slidable shelves
    • F25D25/025Drawers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • F25D25/024Slidable shelves

Definitions

  • the present invention relates to a refrigerator, and more particularly, to a shelf assembly mounting structure for a refrigerator to be detachably installed in a storage space of a refrigerator, and a refrigerator having the same.
  • FIG. 9 is a front view showing a refrigerator in which a shelf is mounted by means of a conventional shelf mounting structure for a refrigerator.
  • an interior of a refrigerator body 10 is partitioned into an upper portion and a lower portion as a freezing chamber 11 and a refrigerating chamber 13, respectively.
  • the freezing chamber 11 and the refrigerating chamber 13 are selectively opened and closed by means of a freezing chamber door 1 ID and a refrigerating chamber door 13D, each of which is installed at the body 10 to pivot on an end of the door so that the other end thereof moves in the fore and aft direction about the one end.
  • a plurality of shelves 17 are detachably installed in the freezing chamber 11 and the refrigerating chamber 13. Each of the shelves 17 partitions the freezing or refrigerating chamber 11 or 13 into upper and lower portions, and food to be stored in the freezing chamber 11 and the refrigerating chamber 13 is placed on the shelf 17.
  • a plurality of supporting steps 15 are provided on both side surfaces of the freezing chamber 11 and the refrigerating chamber 13, in which each pair of supporting steps 15 are positioned at the same level as each other.
  • the supporting steps 15 are formed to extend in the fore and aft direction, and both side ends of a bottom surface of the shelf 17 are supported on upper surfaces of the supporting steps 15.
  • the shelf
  • the shelf mounting structure for a refrigerator according to the prior art as described above has the problems as follows.
  • the shelf 17 is moved in the fore and aft direction, so that the food placed on the shelf can be more easily put into or taken out of the chamber.
  • the shelf 17 is however moved in the fore and aft direction of the freezing or refrigerating chamber 11 or 13 with both the side ends of the bottom surface of the shelf 17 merely supported on the upper surfaces of the supporting steps 15. Accordingly, when the shelf 17 is moved in the fore and aft direction of the freezing or refrigerating chamber 11 or 13, the shelf 17 can be tilted by a weight of the food placed thereon.
  • the shelf 17 is inadvertently detached from the storage space or the food placed on the shelf can fall off.
  • An object of the present invention is to provide a shelf assembly mounting structure for a refrigerator, which is configured for a shelf to be more stably used, and a refrigerator having the same.
  • Another object of the present invention is to provide a shelf assembly mounting structure for a refrigerator, in which cold air circulating in a storage space may effectively flow.
  • a shelf assembly mounting structure for a refrigerator comprising: stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide slots respectively provided in upper surfaces of the supporting ribs, the stopper sliding in the guide slot in a state where the stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein if the shelf assembly is moved in the fore and aft direction of the storage space, the stopper is moved in the fore and aft direction along the guide slot and brought into contact with front and rear ends of the guide slot
  • a rear end of the shelf assembly is spaced apart from a rear end of the storage space by a predetermined distance in a state where the stopper is in contact with the rear end of the guide slot.
  • a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off.
  • the stopper protrudes downward from each of both the side ends of the bottom surface of the shelf assembly by a predetermined height, and at least one of front and rear surfaces of the stopper to be brought into contact with the front and rear ends of the guide slot includes an inclined surface for preventing damage generated when the stopper is brought into contact with the front or rear end of the guide slot.
  • the inclined surface of the stopper and the front or rear end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
  • the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
  • a shelf assembly mounting structure for a refrigerator comprising: upper stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide ribs provided to be spaced apart from upper surfaces of the supporting ribs by a predetermined distance and formed to extend in the fore and aft direction of the storage space, wherein when the shelf assembly is moved in the fore and aft direction of the storage space, the upper stopper is brought into contact with a front end of the guide rib, thereby restricting a moving distance of the shelf assembly.
  • a rear end of the shelf assembly in a state where the upper stopper is in contact with the front end of the guide rib, is spaced apart from a rear end of the storage space by a predetermined distance.
  • a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off.
  • the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
  • the upper stopper protrudes upward from each of both side ends of an upper surface of the shelf assembly by a predetermined height, and a rear surface of the upper stopper to be brought into contact with the front end of the guide rib includes an inclined surface for preventing damage generated when the upper stopper is brought into contact with the front end of the guide rib.
  • the inclined surface of the upper stopper and the front end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
  • the lower stoppers are formed to protrude outward from one surfaces of shielding ribs for shielding the supporting ribs, the shielding ribs extending downward from locations spaced apart by a predetermined distance inwardly from both the side ends of the bottom surface of the shelf assembly, and front and rear surfaces of the lower stopper to be brought into contact with the front and rear ends of the guide slot includes inclined surfaces for preventing damage generated when the lower stopper is brought into contact with the front and rear ends of the guide slot.
  • the front and rear ends of the guide slot are formed to be inclined at a predetermined angle to be mated with the inclined surfaces of the lower stopper in shape.
  • a refrigerator comprising: a main body having a predetermined storage space provided therein; a shelf assembly detachably installed in the storage space; and the shelf assembly mounting structure according to any one of claims 1 to 16 for supporting the shelf assembly.
  • Fig. 1 is a perspective view showing a configuration of a preferred embodiment of a shelf assembly mounting structure for a refrigerator according to the present invention
  • Fig. 2 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 1 ;
  • Figs. 3 and 4 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 1 ;
  • Fig. 5 is a perspective view illustrating a configuration of a shelf assembly mounting structure for a refrigerator according to another embodiment of the present invention
  • Fig. 6 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 5;
  • Fig. 7 and Fig. 8 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 5;
  • Fig. 9 is a front view showing a refrigerator in which a shelf is mounted by means of a conventional shelf mounting structure for a refrigerator.
  • FIG. 1 is a perspective view showing a configuration of a preferred embodiment of a shelf assembly mounting structure for a refrigerator according to the present invention
  • Fig. 2 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 1.
  • a shelf assembly 120 is detachably installed in a storage space 110 defined in a refrigerator.
  • the shelf assembly 120 is installed to be movable in the fore and aft direction of the storage space by a predetermined distance in a state where the shelf assembly is installed in the storage space 110.
  • a rear end of the shelf assembly 120 is spaced apart from a rear surface of the storage space 110 by a predetermined distance in a state that the shelf assembly is installed in the storage space 110. This allows cold air circulating in the storage space 110 to flow smoothly.
  • a shelf frame 121 of the shelf assembly 120 is formed in a rectangular shape, and a rectangular through hole 122 is formed to be bored through the shelf frame vertically.
  • a seating step 123 is provided on a peripheral portion of the through hole 122.
  • the through hole 122 is provided with a support member 124. A peripheral portion of a bottom surface of the support member 124 is placed and supported on an upper surface of the seating step 123.
  • shielding skirts 125 are provided at both sides of a bottom surface of the shelf frame 121, respectively.
  • the shielding skirts 125 extend downwardly from locations which are spaced apart by a predetermined distance inwardly from both side ends of the bottom surface of the shelf frame 121.
  • the shielding skirt 125 are adjacent to supporting ribs 131, which will be described below, respectively, so that the shielding skirts serve to prevent the supporting ribs 131 from being exposed to the outside.
  • Stoppers 127 are provided at both the side ends of the bottom surface of the shelf frame 121 corresponding to outside portions of the shielding skirts 127, respectively.
  • the stoppers 127 slide along guide slots 133, which will be described below, so that the stoppers serve to restrict a moving distance of the shelf assembly 120 which is moved in the fore and aft direction in a state where the shelf assembly 120 is mounted in the storage space 110.
  • the stoppers 127 protrude from both the side ends of the bottom surface of the shelf frame 121, respectively.
  • a front surface of each of the stoppers 127 is provided with an inclined surface 127 A.
  • the front surface of the stopper 127 extends to be downward inclined at a predetermined angle toward the rear side, so that the inclined surface 127 A is formed.
  • the inclined surface 127 A is to prevent the guide slot 133, particularly, a front end thereof, from being damaged when the stopper 127 slides along the guide slot 133.
  • a supporting panel 129 is provided in a rear end of the shelf frame 121.
  • the supporting panel 129 extends by a predetermined distance from the rear end of the shelf frame 121 to be upward inclined.
  • the supporting panel 129 serves to prevent the food placed on the shelf assembly 120 from falling off rearward when the shelf assembly 120 is moved in the fore and aft direction in the storage space 110.
  • a plurality of supporting ribs 131 are provided on both side surfaces of the storage space 110 to be vertically spaced apart from each other at a predetermined interval and to extend in the fore and aft direction.
  • the supporting ribs 131 protrude by a predetermined width from both the side surfaces of the storage space 110 in the directions opposite to each other. Both the side ends of the bottom surface of the shelf frame 121 are selectively supported on upper surfaces of the supporting ribs 131.
  • the guide slot 133 is provided in the upper surface of each of the supporting ribs 131.
  • the guide slot 133 is formed by depressing a portion of the upper surface of the supporting rib 131 downward by a predetermined depth. Accordingly, upper surfaces and opposed side surfaces of the respective guide slots 133 are substantially opened.
  • the stopper 127 is located in each guide slot 133, so that if the shelf assembly 120 is moved in the fore and aft direction in the storage space 110, the stopper 127 slides along the guide slot 133. In addition, when the shelf assembly 120 is moved in the fore and aft direction in the storage space 110, the inclined surface 127 A is brought into contact with a front end of the guide slot 133.
  • a plurality of guide ribs 135 are provided on both the side surfaces of the storage space 110 at positions corresponding to upsides of the supporting ribs 131, respectively.
  • the guide rib 135 is formed integrally with one of the supporting ribs 131 that is positioned directly above another of the supporting ribs 131 on which the shelf assembly 120 is supported.
  • the guide ribs 135 are formed to extend in the fore and aft direction of the storage space 110 and protrude from both the side surfaces of the storage space 110 by a predetermined width to face each other. Compared with the front end of the guide slot 133, a front end of the supporting rib 131 is located in the rear of the storage space 110. A bottom surface of the guide rib 135 is spaced apart by a predetermined distance from the upper surface of the supporting rib 131 positioned directly below the guide rib.
  • FIGS. 3 and 4 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 1.
  • the shelf assembly 120 is pulled to the front of the storage space 110.
  • the shelf assembly is moved in the fore and aft direction of the storage space 110 along the guide channel 137.
  • the stoppers 127 also slide to the front of the storage space 110 along the guide slots 133. Then, if the inclined surfaces 127 A of the stoppers 127 come into contact with the front ends of the guide slots 133, the shelf assembly 120 does not move to the front of the storage space 110 any more.
  • the shelf assembly 120 is pushed to the rear of the storage space 110 as shown in Fig. 4. Accordingly, the stoppers 127 slide to the rear of the storage space 110 along the guide slots 133. Then, if the shelf assembly 120 is continuously moved to the rear of the storage space 110, rear surfaces of the stoppers 127 come into contact with rear ends of the guide slots 133.
  • the shelf assembly 120 does not move to the rear of the storage space 110 any more. That is, the shelf assembly 120 is mounted in the storage space 110. At this time, the rear end of the shelf assembly 120 is spaced apart from the rear surface of the storage space 110 by a predetermined distance. Accordingly, cold air flows through a space between the rear end of the shelf assembly 120 and the rear surface of the storage space 110, so that the food placed on the shelf assembly 120 can be effectively refrigerated or frozen by means of cold air circulating in the storage space 110. It will be apparent that those skilled in the art can make various modifications thereto within the technical scope of the present invention. The true scope of the present invention should be defined on the basis of the appended claims. [Mode for Invention]
  • Fig. 5 is a perspective view illustrating a configuration of a shelf assembly mounting structure for a refrigerator according to another embodiment of the present invention
  • Fig. 6 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 5.
  • a shelf assembly 220 is detachably installed in a storage space 210 defined in a refrigerator.
  • the shelf assembly 220 may be moved in the fore and aft direction of the storage space 210 by a predetermined distance in a state where the shelf assembly is installed in the storage space 210.
  • a rear end of the shelf assembly 220 is spaced apart from a rear surface of the storage space 210 by a predetermined distance in order to allow cold air to flow.
  • a shelf frame 222 of the shelf assembly 220 is formed in an approximately rectangular shape.
  • a rectangular through hole 223 is formed in the shelf frame 222 and a seating step 223 is formed on a periphery of the through hole 223.
  • the through hole 223 is provided with a support member 224.
  • the support member 224 is one on which food is placed, wherein a peripheral portion of a lower side of the support member 224 is placed and supported on an upper surface of the seating step 223.
  • Shielding skirts 225 are provided at both sides of a bottom surface of the shelf assembly 220, respectively.
  • the shielding skirts 225 extend downwardly from locations which are spaced apart by a predetermined distance inwardly from both side ends of the bottom surface of the shelf assembly 220.
  • a lower stopper 227 is provided on one side surface of each of the shielding skirts 225.
  • the respective lower stoppers 227 protrude from side surfaces of the shielding skirts 225 adjacent to side surfaces of the storage space 210 toward the outside, i.e., toward the side surfaces of the storage space 210.
  • the lower stoppers 227 slide along guide slots 231 in a state where the lower stoppers are located in the guide slots 231 , which will be described below.
  • each of the lower stoppers 227 is formed to have a generally triangular cross section, so that front and rear surfaces of the lower stopper 227 include first and second inclined surfaces 227 A and 227B.
  • the first and second inclined surfaces 227 A and 227B of the lower stopper 227 are to prevent front and rear ends of the guide slot 231 from being damaged when the lower stopper 227 slides along the guide slot 231.
  • upper stoppers 228 are provided on both side ends of an upper surface of the shelf assembly 220, respectively.
  • the upper stoppers 228 protrude upward from both the side ends of the upper surface of the shelf assembly 220 by a predetermined height.
  • front and rear surfaces of the upper stopper 228 include inclined surfaces 228A.
  • the rear surface of the upper stopper 228 is downward inclined at a predetermined angle toward the rear, whereby the inclined surface 228A of the upper stopper 228 is formed.
  • the inclined surfaces 228A of the upper stoppers 228 comes into contact with guide ribs 235, which will be described below. Accordingly, the inclined surfaces 228A of the upper stoppers 228 serve to prevent the rear ends of the guide slots 233 from being damaged by the second inclined surfaces 227 A of the lower stoppers 227 when the shelf assembly 220 is moved to the rear of the storage space 210.
  • a location of the upper stopper 228 is determined so that if the shelf assembly 220 is moved to the rear of the storage space 210, immediately when or before the second inclined surface 227B of the lower stopper 227 is brought into contact with the rear end of the guide slot 233, the inclined surface 228A of the upper stopper 228 is brought into contact with a front end of the guide rib 235.
  • a supporting panel 229 is provided at the rear end of the shelf assembly 220.
  • the supporting panel 229 serves to prevent the food placed on the shelf assembly, substantially on the support member 224, from falling off when the shelf assembly 220 is moved in the fore and aft direction in the storage space 210.
  • a plurality of supporting ribs 231 are provided on both side surfaces of the storage space 210.
  • the supporting ribs 231 is provided on both the side surfaces of the storage space 210 to be vertically spaced apart from each other at a predetermined interval and to extend in the fore and aft direction.
  • the supporting ribs 231 protrude by a predetermined width from both the side surfaces of the storage space 210 in the directions opposite to each other. Both side ends of a bottom surface of the shelf frame 221 are supported on upper surfaces of the supporting ribs 231.
  • the guide slot 233 is provided in the upper surface of each of the supporting ribs 231.
  • the guide slot 233 is formed by depressing a portion of the upper surface of the supporting rib 231 downward.
  • the front and rear ends of the guide slot 233 are formed to be inclined at a predetermined angle so as to be mated with the front and rear surfaces of the lower stopper 227 in shape, respectively.
  • a plurality of guide ribs 235 are provided on both the side surfaces of the storage space 210 at positions corresponding to upsides of the supporting ribs 231, respectively.
  • the guide ribs 235 are provided to be spaced apart upward from upper surfaces of the supporting ribs 231 by a predetermined interval, respectively, and to extend in the fore and aft direction.
  • the guide rib 235 is formed integrally with the supporting rib 131 that is positioned directly above one of the supporting ribs 231 on which the shelf assembly 220 is supported.
  • a front end of the guide rib 235 is formed to be downward inclined at a predetermined angle toward the rear so as to be mated with the rear surface of the upper stopper 228 in shape.
  • a guide channel 237 in which each of both the side ends of the shelf frame 221 is substantially inserted, is defined between a bottom surface of the guide rib 235 and the upper surface of the supporting rib 231 positioned directly below of the guide rib. Accordingly, it is preferred that a height of the guide channel 237, i.e., a distance between the supporting rib 231 and the guide rib 234 is determined in correspondence to a thickness of the shelf frame 221.
  • Figs. 7 and 8 illustrate a moving process of the shelf assembly in the shelf assembly mounting structure for a refrigerator and the refrigerator including the same according to the present invention.
  • the shelf assembly 220 is pulled to the front of the storage space 210.
  • the lower stoppers 227 slide along the guide slots 233.
  • the shelf assembly 220 does not move to the front of the storage space 210 any more.
  • the shelf assembly 220 is pushed to the rear of the storage space 210 as shown in Fig. 8.
  • the lower stoppers 227 slide along the guide slots 233.
  • the inclined surfaces 228 A of the upper stoppers 228 are brought into contact with the front ends of the guide ribs 235.
  • the inclined surfaces 228A of the upper stoppers 228 come into contact with the front ends of the guide ribs 235, and at the same time, the second inclined surfaces 227A of the lower stoppers 227 can also be brought into contact with the rear ends of the guide slots 233.
  • the shelf assembly is substantially moved in the fore and aft direction of the storage space along guide channels formed between the supporting ribs and the guide ribs, and the stoppers moving along the guide slots restrict a moving distance of the shelf assembly. Accordingly, when the shelf assembly is moved in the fore and aft direction of the storage space, the shelf assembly does not escape from a predetermined location inadvertently, whereby it is possible to utilize the shelf assembly more stably.
  • the rear surface of the storage space is spaced apart from the rear end of the shelf assembly by a predetermined distance. Accordingly, the flow of cold air circulating in the storage space is not hindered by the shelf assembly, so that the food placed on the shelf assembly can be refrigerated or frozen more effectively.
  • the lower stoppers which move along the guide slots provided in the upper surfaces of the supporting ribs so as to guide the movement of the shelf assembly and thus are brought into contact with the front and rear ends of the guide slots.
  • the shelf assembly is further provided with the upper stoppers, which are brought into contact with the front ends of the supporting ribs so that immediately when or before the lower stoppers are brought into contact with the rear ends of the guide slots, the lower stoppers are brought into contact with the front ends of the guide ribs and thus a user can more easily distinguish the extent to which the shelf assembly is mounted. Accordingly, when the shelf assembly is moved, it is possible to prevent the lower stoppers from damaging the supporting ribs, so that the durability and appearance of the article are enhanced.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Freezers Or Refrigerated Showcases (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
  • Warehouses Or Storage Devices (AREA)

Abstract

The present invention relates to a shelf assembly mounting structure for a refrigerator and a refrigerator comprising the same. The present invention provides a shelf assembly mounting structure for a refrigerator, comprising: stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide slots respectively provided in upper surfaces of the supporting ribs, the stopper sliding in the guide slot in a state where the stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein if the shelf assembly is moved in the fore and aft direction of the storage space, the stopper is moved in the fore and aft direction along the guide slot and brought into contact with front and rear ends of the guide slot, whereby a moving distance of the shelf assembly is restricted. According to the present invention as described above, there are advantages in that it is possible to stably use the shelf and cold air can effectively flow in a storage space.

Description

[DESCRIPTION] [Invention Title]
A INSTALLATION STRUCTURE OF SHELF ASSEMBLY FOR REFRIGERATOR AND REFRIGERATOR COMPRISING THE SAME [Technical Field]
The present invention relates to a refrigerator, and more particularly, to a shelf assembly mounting structure for a refrigerator to be detachably installed in a storage space of a refrigerator, and a refrigerator having the same.
[Background Art] Fig. 9 is a front view showing a refrigerator in which a shelf is mounted by means of a conventional shelf mounting structure for a refrigerator.
As shown in the figure, an interior of a refrigerator body 10 is partitioned into an upper portion and a lower portion as a freezing chamber 11 and a refrigerating chamber 13, respectively. The freezing chamber 11 and the refrigerating chamber 13 are selectively opened and closed by means of a freezing chamber door 1 ID and a refrigerating chamber door 13D, each of which is installed at the body 10 to pivot on an end of the door so that the other end thereof moves in the fore and aft direction about the one end.
A plurality of shelves 17 are detachably installed in the freezing chamber 11 and the refrigerating chamber 13. Each of the shelves 17 partitions the freezing or refrigerating chamber 11 or 13 into upper and lower portions, and food to be stored in the freezing chamber 11 and the refrigerating chamber 13 is placed on the shelf 17.
A plurality of supporting steps 15 are provided on both side surfaces of the freezing chamber 11 and the refrigerating chamber 13, in which each pair of supporting steps 15 are positioned at the same level as each other. The supporting steps 15 are formed to extend in the fore and aft direction, and both side ends of a bottom surface of the shelf 17 are supported on upper surfaces of the supporting steps 15. In addition, the shelf
17 is moved in the fore and aft direction in a state where both the side ends of the bottom surface of the shelf 17 are supported on the upper surfaces of the supporting steps 15, whereby food placed on the shelf 17 can be more easily put into or taken out of the freezing or refrigerating chamber 11 or 13. However, the shelf mounting structure for a refrigerator according to the prior art as described above has the problems as follows.
As described above, in a state where both the side ends of the bottom surface of the shelf 17 are supported on the upper surfaces of the supporting steps 15, the shelf 17 is moved in the fore and aft direction, so that the food placed on the shelf can be more easily put into or taken out of the chamber. In the conventional prior art, the shelf 17 is however moved in the fore and aft direction of the freezing or refrigerating chamber 11 or 13 with both the side ends of the bottom surface of the shelf 17 merely supported on the upper surfaces of the supporting steps 15. Accordingly, when the shelf 17 is moved in the fore and aft direction of the freezing or refrigerating chamber 11 or 13, the shelf 17 can be tilted by a weight of the food placed thereon. Thus, there is a problem in that the shelf 17 is inadvertently detached from the storage space or the food placed on the shelf can fall off.
In addition, in a process where the shelf 17 is moved to the rear of the freezing or refrigerating chamber 11 or 13, a user moves excessively the shelf 17 to the rear of the freezing or refrigerating chamber 11 or 13, so that a rear end of the shelf 17 can be brought into close contact with a rear surface of the freezing or refrigerating chamber 11 or 13. Thus, flow of cold air circulating in the freezing or refrigerating chamber 11 or 13 is hindered by the shelf 17, and particularly, the food placed in a rear side of an upper surface of the shelf 17 is not effectively refrigerated or frozen. [Disclosure]
[Technical Problem]
Accordingly, the present invention is conceived to solve the aforementioned problems in the prior art. An object of the present invention is to provide a shelf assembly mounting structure for a refrigerator, which is configured for a shelf to be more stably used, and a refrigerator having the same.
Another object of the present invention is to provide a shelf assembly mounting structure for a refrigerator, in which cold air circulating in a storage space may effectively flow.
[Technical Solution] According to an aspect of the present invention for achieving the objects, there is provided a shelf assembly mounting structure for a refrigerator, comprising: stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide slots respectively provided in upper surfaces of the supporting ribs, the stopper sliding in the guide slot in a state where the stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein if the shelf assembly is moved in the fore and aft direction of the storage space, the stopper is moved in the fore and aft direction along the guide slot and brought into contact with front and rear ends of the guide slot, whereby a moving distance of the shelf assembly is restricted.
In one embodiment of the invention, a rear end of the shelf assembly is spaced apart from a rear end of the storage space by a predetermined distance in a state where the stopper is in contact with the rear end of the guide slot.
In another embodiment of the invention, a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off.
In another embodiment of the invention, the stopper protrudes downward from each of both the side ends of the bottom surface of the shelf assembly by a predetermined height, and at least one of front and rear surfaces of the stopper to be brought into contact with the front and rear ends of the guide slot includes an inclined surface for preventing damage generated when the stopper is brought into contact with the front or rear end of the guide slot. In another embodiment of the invention, the inclined surface of the stopper and the front or rear end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
In another embodiment of the invention, there is further comprising a plurality of guide ribs provided to be spaced apart from the upper surfaces of the supporting ribs by a predetermined distance and formed to extend in the fore and aft direction of the storage space, wherein a movement of the shelf assembly is guided in the fore and aft direction of the storage space by means of a guide channel defined between the upper surface of the supporting rib and a bottom surface of the guide rib.
In another embodiment of the invention, the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
According to another aspect of the present invention for achieving the objects, there is provided a shelf assembly mounting structure for a refrigerator, comprising: upper stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide ribs provided to be spaced apart from upper surfaces of the supporting ribs by a predetermined distance and formed to extend in the fore and aft direction of the storage space, wherein when the shelf assembly is moved in the fore and aft direction of the storage space, the upper stopper is brought into contact with a front end of the guide rib, thereby restricting a moving distance of the shelf assembly.
In one embodiment of the invention, in a state where the upper stopper is in contact with the front end of the guide rib, a rear end of the shelf assembly is spaced apart from a rear end of the storage space by a predetermined distance.
In another embodiment of the invention, a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off. In another embodiment of the invention, the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
In another embodiment of the invention, the upper stopper protrudes upward from each of both side ends of an upper surface of the shelf assembly by a predetermined height, and a rear surface of the upper stopper to be brought into contact with the front end of the guide rib includes an inclined surface for preventing damage generated when the upper stopper is brought into contact with the front end of the guide rib.
In another embodiment of the invention, the inclined surface of the upper stopper and the front end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
In another embodiment of the invention, there is further comprising lower stoppers respectively provided both the sides of the shelf assembly; and a plurality of guide slots respectively provided in the upper surfaces of the supporting ribs, the lower stopper sliding in the guide slot in a state where the lower stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein the lower stopper is moved to the front along the guide slot and brought into contact with a front end of the guide slot when the shelf assembly is moved to the front of the storage space, and the upper stopper is brought into contact with the front end of the guide rib when the shelf assembly is moved to the rear of the storage space, whereby a moving distance of the shelf assembly is restricted.
In another embodiment of the invention, the lower stoppers are formed to protrude outward from one surfaces of shielding ribs for shielding the supporting ribs, the shielding ribs extending downward from locations spaced apart by a predetermined distance inwardly from both the side ends of the bottom surface of the shelf assembly, and front and rear surfaces of the lower stopper to be brought into contact with the front and rear ends of the guide slot includes inclined surfaces for preventing damage generated when the lower stopper is brought into contact with the front and rear ends of the guide slot.
In another embodiment of the invention, the front and rear ends of the guide slot are formed to be inclined at a predetermined angle to be mated with the inclined surfaces of the lower stopper in shape.
According to another aspect of the present invention for achieving the objects, there is provided a refrigerator, comprising: a main body having a predetermined storage space provided therein; a shelf assembly detachably installed in the storage space; and the shelf assembly mounting structure according to any one of claims 1 to 16 for supporting the shelf assembly. [Advantageous Effects]
According to the present invention so configured, there is an advantage in that it is possible to stably use the shelf and at the same time cold air can be caused to effectively flow in a storage space. [Description of Drawings]
Fig. 1 is a perspective view showing a configuration of a preferred embodiment of a shelf assembly mounting structure for a refrigerator according to the present invention;
Fig. 2 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 1 ; Figs. 3 and 4 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 1 ;
Fig. 5 is a perspective view illustrating a configuration of a shelf assembly mounting structure for a refrigerator according to another embodiment of the present invention; Fig. 6 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 5;
Fig. 7 and Fig. 8 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 5; and
Fig. 9 is a front view showing a refrigerator in which a shelf is mounted by means of a conventional shelf mounting structure for a refrigerator.
[Best Mode]
Hereinafter, a shelf assembly mounting structure for a refrigerator and a refrigerator having the same according to the preferred embodiment of the present invention will be described in more detail with reference to accompanying drawings. Fig. 1 is a perspective view showing a configuration of a preferred embodiment of a shelf assembly mounting structure for a refrigerator according to the present invention, and Fig. 2 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 1.
As shown in the figures, a shelf assembly 120 is detachably installed in a storage space 110 defined in a refrigerator. The shelf assembly 120 is installed to be movable in the fore and aft direction of the storage space by a predetermined distance in a state where the shelf assembly is installed in the storage space 110. In addition, a rear end of the shelf assembly 120 is spaced apart from a rear surface of the storage space 110 by a predetermined distance in a state that the shelf assembly is installed in the storage space 110. This allows cold air circulating in the storage space 110 to flow smoothly.
A shelf frame 121 of the shelf assembly 120 is formed in a rectangular shape, and a rectangular through hole 122 is formed to be bored through the shelf frame vertically. In addition, a seating step 123 is provided on a peripheral portion of the through hole 122. The through hole 122 is provided with a support member 124. A peripheral portion of a bottom surface of the support member 124 is placed and supported on an upper surface of the seating step 123.
Also, as shown in Fig. 2, shielding skirts 125 are provided at both sides of a bottom surface of the shelf frame 121, respectively. The shielding skirts 125 extend downwardly from locations which are spaced apart by a predetermined distance inwardly from both side ends of the bottom surface of the shelf frame 121. In a state where the shelf assembly 120 is mounted in the storage space 110, the shielding skirt 125 are adjacent to supporting ribs 131, which will be described below, respectively, so that the shielding skirts serve to prevent the supporting ribs 131 from being exposed to the outside.
Stoppers 127 are provided at both the side ends of the bottom surface of the shelf frame 121 corresponding to outside portions of the shielding skirts 127, respectively. The stoppers 127 slide along guide slots 133, which will be described below, so that the stoppers serve to restrict a moving distance of the shelf assembly 120 which is moved in the fore and aft direction in a state where the shelf assembly 120 is mounted in the storage space 110. The stoppers 127 protrude from both the side ends of the bottom surface of the shelf frame 121, respectively.
In the meantime, a front surface of each of the stoppers 127 is provided with an inclined surface 127 A. The front surface of the stopper 127 extends to be downward inclined at a predetermined angle toward the rear side, so that the inclined surface 127 A is formed. The inclined surface 127 A is to prevent the guide slot 133, particularly, a front end thereof, from being damaged when the stopper 127 slides along the guide slot 133. In addition, a supporting panel 129 is provided in a rear end of the shelf frame 121.
The supporting panel 129 extends by a predetermined distance from the rear end of the shelf frame 121 to be upward inclined. The supporting panel 129 serves to prevent the food placed on the shelf assembly 120 from falling off rearward when the shelf assembly 120 is moved in the fore and aft direction in the storage space 110.
Meanwhile, as shown in Fig. 1, a plurality of supporting ribs 131 are provided on both side surfaces of the storage space 110 to be vertically spaced apart from each other at a predetermined interval and to extend in the fore and aft direction. The supporting ribs 131 protrude by a predetermined width from both the side surfaces of the storage space 110 in the directions opposite to each other. Both the side ends of the bottom surface of the shelf frame 121 are selectively supported on upper surfaces of the supporting ribs 131.
In addition, the guide slot 133 is provided in the upper surface of each of the supporting ribs 131. The guide slot 133 is formed by depressing a portion of the upper surface of the supporting rib 131 downward by a predetermined depth. Accordingly, upper surfaces and opposed side surfaces of the respective guide slots 133 are substantially opened.
The stopper 127 is located in each guide slot 133, so that if the shelf assembly 120 is moved in the fore and aft direction in the storage space 110, the stopper 127 slides along the guide slot 133. In addition, when the shelf assembly 120 is moved in the fore and aft direction in the storage space 110, the inclined surface 127 A is brought into contact with a front end of the guide slot 133.
Further, a plurality of guide ribs 135 are provided on both the side surfaces of the storage space 110 at positions corresponding to upsides of the supporting ribs 131, respectively. The guide rib 135 is formed integrally with one of the supporting ribs 131 that is positioned directly above another of the supporting ribs 131 on which the shelf assembly 120 is supported.
The guide ribs 135 are formed to extend in the fore and aft direction of the storage space 110 and protrude from both the side surfaces of the storage space 110 by a predetermined width to face each other. Compared with the front end of the guide slot 133, a front end of the supporting rib 131 is located in the rear of the storage space 110. A bottom surface of the guide rib 135 is spaced apart by a predetermined distance from the upper surface of the supporting rib 131 positioned directly below the guide rib.
Accordingly, a guide channel 137, into which each of both side ends of the shelf assembly
120 is substantially inserted, is formed between the supporting rib 131 and the guide rib 135.
Hereinafter, a moving process of the shelf assembly in the preferred embodiment of the shelf assembly mounting structure for a refrigerator and the refrigerator including the same according to the present invention will be described in more detail with reference to accompanying drawings. Figs. 3 and 4 are operational state views showing a moving process of the shelf assembly in the embodiment shown in Fig. 1.
First, as shown in Fig. 3, in order to put or take the food on or out of the shelf assembly 120, the shelf assembly 120 is pulled to the front of the storage space 110. At this time, in a state where both the side ends of the shelf assembly 120 are substantially inserted in the guide channels 137 formed between the supporting ribs 130 and the guide ribs 135, the shelf assembly is moved in the fore and aft direction of the storage space 110 along the guide channel 137. The stoppers 127 also slide to the front of the storage space 110 along the guide slots 133. Then, if the inclined surfaces 127 A of the stoppers 127 come into contact with the front ends of the guide slots 133, the shelf assembly 120 does not move to the front of the storage space 110 any more.
In addition, after the food is put on or taken out of the shelf assembly 120, the shelf assembly 120 is pushed to the rear of the storage space 110 as shown in Fig. 4. Accordingly, the stoppers 127 slide to the rear of the storage space 110 along the guide slots 133. Then, if the shelf assembly 120 is continuously moved to the rear of the storage space 110, rear surfaces of the stoppers 127 come into contact with rear ends of the guide slots 133.
Further, if the rear surfaces of the stoppers 127 come into contact with the rear ends of the guide slots 133, the shelf assembly 120 does not move to the rear of the storage space 110 any more. That is, the shelf assembly 120 is mounted in the storage space 110. At this time, the rear end of the shelf assembly 120 is spaced apart from the rear surface of the storage space 110 by a predetermined distance. Accordingly, cold air flows through a space between the rear end of the shelf assembly 120 and the rear surface of the storage space 110, so that the food placed on the shelf assembly 120 can be effectively refrigerated or frozen by means of cold air circulating in the storage space 110. It will be apparent that those skilled in the art can make various modifications thereto within the technical scope of the present invention. The true scope of the present invention should be defined on the basis of the appended claims. [Mode for Invention]
Hereinafter, a shelf assembly mounting structure for a refrigerator and a refrigerator including the same according to another embodiment of the present invention will be described below.
Fig. 5 is a perspective view illustrating a configuration of a shelf assembly mounting structure for a refrigerator according to another embodiment of the present invention, and Fig. 6 is a bottom perspective view showing a shelf assembly constituting the embodiment shown in Fig. 5.
As shown in the figures, a shelf assembly 220 is detachably installed in a storage space 210 defined in a refrigerator. The shelf assembly 220 may be moved in the fore and aft direction of the storage space 210 by a predetermined distance in a state where the shelf assembly is installed in the storage space 210. Also, a rear end of the shelf assembly 220 is spaced apart from a rear surface of the storage space 210 by a predetermined distance in order to allow cold air to flow.
A shelf frame 222 of the shelf assembly 220 is formed in an approximately rectangular shape. In addition, a rectangular through hole 223 is formed in the shelf frame 222 and a seating step 223 is formed on a periphery of the through hole 223. The through hole 223 is provided with a support member 224. The support member 224 is one on which food is placed, wherein a peripheral portion of a lower side of the support member 224 is placed and supported on an upper surface of the seating step 223.
Shielding skirts 225 are provided at both sides of a bottom surface of the shelf assembly 220, respectively. The shielding skirts 225 extend downwardly from locations which are spaced apart by a predetermined distance inwardly from both side ends of the bottom surface of the shelf assembly 220.
As shown in Fig. 6, a lower stopper 227 is provided on one side surface of each of the shielding skirts 225. The respective lower stoppers 227 protrude from side surfaces of the shielding skirts 225 adjacent to side surfaces of the storage space 210 toward the outside, i.e., toward the side surfaces of the storage space 210. In order to restrict a fore and aft movement of the shelf assembly 220 mounted in the storage space 210, the lower stoppers 227 slide along guide slots 231 in a state where the lower stoppers are located in the guide slots 231 , which will be described below. Also, each of the lower stoppers 227 is formed to have a generally triangular cross section, so that front and rear surfaces of the lower stopper 227 include first and second inclined surfaces 227 A and 227B. The first and second inclined surfaces 227 A and 227B of the lower stopper 227 are to prevent front and rear ends of the guide slot 231 from being damaged when the lower stopper 227 slides along the guide slot 231. In the meantime, upper stoppers 228 are provided on both side ends of an upper surface of the shelf assembly 220, respectively. The upper stoppers 228 protrude upward from both the side ends of the upper surface of the shelf assembly 220 by a predetermined height. In addition, front and rear surfaces of the upper stopper 228 include inclined surfaces 228A. The rear surface of the upper stopper 228 is downward inclined at a predetermined angle toward the rear, whereby the inclined surface 228A of the upper stopper 228 is formed.
If the shelf assembly 220 is moved to the rear of the storage space 210 in a state where the shelf assembly 220 is mounted in the storage space 210, the inclined surfaces 228A of the upper stoppers 228 comes into contact with guide ribs 235, which will be described below. Accordingly, the inclined surfaces 228A of the upper stoppers 228 serve to prevent the rear ends of the guide slots 233 from being damaged by the second inclined surfaces 227 A of the lower stoppers 227 when the shelf assembly 220 is moved to the rear of the storage space 210. To this end, a location of the upper stopper 228 is determined so that if the shelf assembly 220 is moved to the rear of the storage space 210, immediately when or before the second inclined surface 227B of the lower stopper 227 is brought into contact with the rear end of the guide slot 233, the inclined surface 228A of the upper stopper 228 is brought into contact with a front end of the guide rib 235.
A supporting panel 229 is provided at the rear end of the shelf assembly 220. The supporting panel 229 serves to prevent the food placed on the shelf assembly, substantially on the support member 224, from falling off when the shelf assembly 220 is moved in the fore and aft direction in the storage space 210.
In the meantime, a plurality of supporting ribs 231 are provided on both side surfaces of the storage space 210. The supporting ribs 231 is provided on both the side surfaces of the storage space 210 to be vertically spaced apart from each other at a predetermined interval and to extend in the fore and aft direction. In addition, the supporting ribs 231 protrude by a predetermined width from both the side surfaces of the storage space 210 in the directions opposite to each other. Both side ends of a bottom surface of the shelf frame 221 are supported on upper surfaces of the supporting ribs 231.
The guide slot 233 is provided in the upper surface of each of the supporting ribs 231. The guide slot 233 is formed by depressing a portion of the upper surface of the supporting rib 231 downward. The front and rear ends of the guide slot 233 are formed to be inclined at a predetermined angle so as to be mated with the front and rear surfaces of the lower stopper 227 in shape, respectively.
A plurality of guide ribs 235 are provided on both the side surfaces of the storage space 210 at positions corresponding to upsides of the supporting ribs 231, respectively.
The guide ribs 235 are provided to be spaced apart upward from upper surfaces of the supporting ribs 231 by a predetermined interval, respectively, and to extend in the fore and aft direction. The guide rib 235 is formed integrally with the supporting rib 131 that is positioned directly above one of the supporting ribs 231 on which the shelf assembly 220 is supported. A front end of the guide rib 235 is formed to be downward inclined at a predetermined angle toward the rear so as to be mated with the rear surface of the upper stopper 228 in shape.
In the meantime, a guide channel 237, in which each of both the side ends of the shelf frame 221 is substantially inserted, is defined between a bottom surface of the guide rib 235 and the upper surface of the supporting rib 231 positioned directly below of the guide rib. Accordingly, it is preferred that a height of the guide channel 237, i.e., a distance between the supporting rib 231 and the guide rib 234 is determined in correspondence to a thickness of the shelf frame 221.
Hereinafter, the operation of the shelf assembly mounting structure for a refrigerator and the refrigerator including the same according to the preferred embodiment of the present invention will be described in detail with reference to accompanying drawings.
Figs. 7 and 8 illustrate a moving process of the shelf assembly in the shelf assembly mounting structure for a refrigerator and the refrigerator including the same according to the present invention.
First, as shown in Fig. 7, in order to put or take the food on or out of the shelf assembly 220, the shelf assembly 220 is pulled to the front of the storage space 210. At this time, the lower stoppers 227 slide along the guide slots 233. Then, if the first inclined surfaces 227A of the lower stoppers 227 are brought into contact with the front ends of the guide slots 233, the shelf assembly 220 does not move to the front of the storage space 210 any more.
In the meantime, after the food is put on or taken out of the shelf assembly 220, the shelf assembly 220 is pushed to the rear of the storage space 210 as shown in Fig. 8. At this time, the lower stoppers 227 slide along the guide slots 233. Then, if the shelf assembly 220 is continuously moved to the rear of the storage space 210, the inclined surfaces 228 A of the upper stoppers 228 are brought into contact with the front ends of the guide ribs 235. At this time, the inclined surfaces 228A of the upper stoppers 228 come into contact with the front ends of the guide ribs 235, and at the same time, the second inclined surfaces 227A of the lower stoppers 227 can also be brought into contact with the rear ends of the guide slots 233.
Accordingly, when the second inclined surfaces 227A of the lower stoppers 227 which are relatively invisible to the naked eye of a user are brought into closely contact with the rear ends of the guide slots 233, excessive external force is not applied to the guide slots 233. That is, when the shelf assembly 220 is moved to the rear of the storage 210, it is possible to prevent the lower stoppers 227 from damaging the rear ends of the guide slots 233. [Industrial Applicability]
According to the shelf assembly mounting structure for a refrigerator and the refrigerator including the same according to the present invention constituted as described in detail above, the following advantages can be expected.
First, in the present invention, the shelf assembly is substantially moved in the fore and aft direction of the storage space along guide channels formed between the supporting ribs and the guide ribs, and the stoppers moving along the guide slots restrict a moving distance of the shelf assembly. Accordingly, when the shelf assembly is moved in the fore and aft direction of the storage space, the shelf assembly does not escape from a predetermined location inadvertently, whereby it is possible to utilize the shelf assembly more stably.
Further, according to the present invention, in a state where the shelf assembly is mounted in the storage space, the rear surface of the storage space is spaced apart from the rear end of the shelf assembly by a predetermined distance. Accordingly, the flow of cold air circulating in the storage space is not hindered by the shelf assembly, so that the food placed on the shelf assembly can be refrigerated or frozen more effectively.
In addition, in the present invention, there are provided the lower stoppers, which move along the guide slots provided in the upper surfaces of the supporting ribs so as to guide the movement of the shelf assembly and thus are brought into contact with the front and rear ends of the guide slots. Further, the shelf assembly is further provided with the upper stoppers, which are brought into contact with the front ends of the supporting ribs so that immediately when or before the lower stoppers are brought into contact with the rear ends of the guide slots, the lower stoppers are brought into contact with the front ends of the guide ribs and thus a user can more easily distinguish the extent to which the shelf assembly is mounted. Accordingly, when the shelf assembly is moved, it is possible to prevent the lower stoppers from damaging the supporting ribs, so that the durability and appearance of the article are enhanced.

Claims

[CLAIMS] [Claim 1]
A shelf assembly mounting structure for a refrigerator, comprising: stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide slots respectively provided in upper surfaces of the supporting ribs, the stopper sliding in the guide slot in a state where the stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein if the shelf assembly is moved in the fore and aft direction of the storage space, the stopper is moved in the fore and aft direction along the guide slot and brought into contact with front and rear ends of the guide slot, whereby a moving distance of the shelf assembly is restricted.
[Claim 2]
The shelf assembly mounting structure as claimed in claim 1 , wherein a rear end of the shelf assembly is spaced apart from a rear end of the storage space by a predetermined distance in a state where the stopper is in contact with the rear end of the guide slot.
[Claim 3]
The shelf assembly mounting structure as claimed in claim 2, wherein a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off.
[Claim 4]
The shelf assembly mounting structure as claimed in claim 1 , wherein the stopper protrudes downward from each of both the side ends of the bottom surface of the shelf assembly by a predetermined height, and at least one of front and rear surfaces of the stopper to be brought into contact with the front and rear ends of the guide slot includes an inclined surface for preventing damage generated when the stopper is brought into contact with the front or rear end of the guide slot.
[Claim 5] The shelf assembly mounting structure as claimed in claim 4, wherein the inclined surface of the stopper and the front or rear end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
[Claim 6]
The shelf assembly mounting structure as claimed in claim 1, further comprising a plurality of guide ribs provided to be spaced apart from the upper surfaces of the supporting ribs by a predetermined distance and formed to extend in the fore and aft direction of the storage space, wherein a movement of the shelf assembly is guided in the fore and aft direction of the storage space by means of a guide channel defined between the upper surface of the supporting rib and a bottom surface of the guide rib.
[Claim 7]
The shelf assembly mounting structure as claimed in claim 6, wherein the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
[Claim 8] A shelf assembly mounting structure for a refrigerator, comprising: upper stoppers respectively provided both sides of a shelf assembly to be detachably installed in a storage space; a plurality of supporting ribs respectively provided on both side surfaces of the storage space to be vertically spaced apart from each other by a predetermined distance, the supporting ribs being formed to extend in a fore and aft direction of the storage space thus to support both side ends of a bottom surface of the shelf assembly; and a plurality of guide ribs provided to be spaced apart from upper surfaces of the supporting ribs by a predetermined distance and formed to extend in the fore and aft direction of the storage space, wherein when the shelf assembly is moved in the fore and aft direction of the storage space, the upper stopper is brought into contact with a front end of the guide rib, thereby restricting a moving distance of the shelf assembly.
[Claim 9]
The shelf assembly mounting structure as claimed in claim 8, wherein in a state where the upper stopper is in contact with the front end of the guide rib, a rear end of the shelf assembly is spaced apart from a rear end of the storage space by a predetermined distance.
[Claim 10]
The shelf assembly mounting structure as claimed in claim 9, a supporting panel is provided at the rear end of the shelf assembly to protrude upward by a predetermined height to prevent food placed on the shelf assembly from falling off.
[Claim 11]
The shelf assembly mounting structure as claimed in claim 8, wherein the guide rib is formed integrally with one of the supporting ribs that is positioned directly above another of the supporting ribs on which the shelf assembly is supported.
[Claim 12]
The shelf assembly mounting structure as claimed in claim 8, wherein the upper stopper protrudes upward from each of both side ends of an upper surface of the shelf assembly by a predetermined height, and a rear surface of the upper stopper to be brought into contact with the front end of the guide rib includes an inclined surface for preventing damage generated when the upper stopper is brought into contact with the front end of the guide rib.
[Claim 13]
The shelf assembly mounting structure as claimed in claim 12, wherein the inclined surface of the upper stopper and the front end of the guide slot are inclined at a predetermined angle so that they are mated with each other.
[Claim 14]
The shelf assembly mounting structure as claimed in claim 8, further comprising lower stoppers respectively provided both the sides of the shelf assembly; and a plurality of guide slots respectively provided in the upper surfaces of the supporting ribs, the lower stopper sliding in the guide slot in a state where the lower stopper is positioned therein when the shelf assembly is moved in the fore and aft direction of the storage space, wherein the lower stopper is moved to the front along the guide slot and brought into contact with a front end of the guide slot when the shelf assembly is moved to the front of the storage space, and the upper stopper is brought into contact with the front end of the guide rib when the shelf assembly is moved to the rear of the storage space, whereby a moving distance of the shelf assembly is restricted.
[Claim 15]
The shelf assembly mounting structure as claimed in claim 14, wherein the lower stoppers are formed to protrude outward from one surfaces of shielding ribs for shielding the supporting ribs, the shielding ribs extending downward from locations spaced apart by a predetermined distance inwardly from both the side ends of the bottom surface of the shelf assembly, and front and rear surfaces of the lower stopper to be brought into contact with the front and rear ends of the guide slot includes inclined surfaces for preventing damage generated when the lower stopper is brought into contact with the front and rear ends of the guide slot.
[Claim 16] The shelf assembly mounting structure as claimed in claim 15, wherein the front and rear ends of the guide slot are formed to be inclined at a predetermined angle to be mated with the inclined surfaces of the lower stopper in shape. [Claim 17]
A refrigerator, comprising: a main body having a predetermined storage space provided therein; a shelf assembly detachably installed in the storage space; and the shelf assembly mounting structure according to any one of claims 1 to 16 for supporting the shelf assembly.
PCT/KR2006/005897 2006-05-10 2006-12-29 A installation structure of shelf assembly for refrigerator and refrigerator comprising the same Ceased WO2007129803A1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
GB0820107A GB2451375B (en) 2006-05-10 2006-12-29 A installation structure of shelf assemly for refrigerator and refrigerator comprising the same
US12/300,101 US8167390B2 (en) 2006-05-10 2006-12-29 Installation structure of shelf assembly for refrigerator and refrigerator comprising the same
DE112006003890.7T DE112006003890B4 (en) 2006-05-10 2006-12-29 Installation construction of a shelf assembly for a refrigerator and refrigerator with this
AU2006343052A AU2006343052B2 (en) 2006-05-10 2006-12-29 A installation structure of shelf assembly for refrigerator and refrigerator comprising the same
CN2006800544714A CN101432588B (en) 2006-05-10 2006-12-29 A installation structure of shelf assembly for refrigerator and refrigerator comprising the same
MX2008014356A MX2008014356A (en) 2006-05-10 2006-12-29 A installation structure of shelf assembly for refrigerator and refrigerator comprising the same.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020060042113A KR100703674B1 (en) 2006-05-10 2006-05-10 Shelf assembly mounting structure for refrigerator
KR10-2006-0042113 2006-05-10

Publications (1)

Publication Number Publication Date
WO2007129803A1 true WO2007129803A1 (en) 2007-11-15

Family

ID=38160870

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2006/005897 Ceased WO2007129803A1 (en) 2006-05-10 2006-12-29 A installation structure of shelf assembly for refrigerator and refrigerator comprising the same

Country Status (8)

Country Link
US (1) US8167390B2 (en)
KR (1) KR100703674B1 (en)
CN (1) CN101432588B (en)
AU (1) AU2006343052B2 (en)
DE (1) DE112006003890B4 (en)
GB (1) GB2451375B (en)
MX (1) MX2008014356A (en)
WO (1) WO2007129803A1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110127897A1 (en) * 2009-12-01 2011-06-02 Jonathan Nash Shelf for an appliance
WO2011009781A3 (en) * 2009-07-21 2011-06-03 BSH Bosch und Siemens Hausgeräte GmbH Refrigeration device having a removable lower shelf
CN105531362A (en) * 2013-10-11 2016-04-27 松下健康医疗控股株式会社 Culture apparatus
EP2508825A3 (en) * 2011-04-05 2017-11-29 BSH Hausgeräte GmbH Cooler, in particular domestic cooler

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101351030B1 (en) * 2007-06-05 2014-01-13 엘지전자 주식회사 Refrigerator
WO2010008141A2 (en) * 2008-07-14 2010-01-21 엘지전자 주식회사 Refrigerator
US20110148267A1 (en) * 2009-12-18 2011-06-23 Mcdaniel Aaron Matthew Slumped glass spill proof shelf for an appliance and method of manufacturing a shelf
CN103836879B (en) * 2012-11-22 2017-05-03 北京中家智铭设计有限公司 Compatible drawing and sliding mechanism of refrigerator
DE102013201589A1 (en) * 2013-01-31 2014-07-31 BSH Bosch und Siemens Hausgeräte GmbH Refrigerating appliance with a container
US20160131416A1 (en) * 2014-11-10 2016-05-12 Whirlpool Corporation Liner shelf support structures for refrigerators and freezers
WO2017163295A1 (en) * 2016-03-22 2017-09-28 三菱電機株式会社 Refrigerator
KR102338782B1 (en) * 2017-03-16 2021-12-14 엘지전자 주식회사 Refrigerator
BR102017009967B1 (en) * 2017-05-11 2024-02-20 Whirlpool S.A. HOUSEHOLD APPLIANCE EQUIPMENT COMPRISING SHELF ARRANGEMENT
CN107883647A (en) * 2017-10-20 2018-04-06 浙江凯普顿厨房设备有限公司 A kind of Intelligent refrigerator temperature control system

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5788094A (en) * 1995-11-30 1998-08-04 Samsung Electronics Co., Ltd. Refrigerator shelf structure having stops for limiting forward and rearward sliding movement of a shelf
KR19990021547U (en) * 1997-11-29 1999-06-25 전주범 Shelf assembly structure of refrigerator
KR19990032122U (en) * 1997-12-31 1999-07-26 윤종용 Shelf of refrigerator
KR20050071184A (en) * 2003-12-31 2005-07-07 삼성전자주식회사 Refrigerator

Family Cites Families (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1800052A (en) * 1929-08-22 1931-04-07 American Stove Co Oven lining and rack supported thereby
US2633400A (en) * 1950-02-27 1953-03-31 Roper Corp Geo D Rack and rack support assembly
US3169813A (en) * 1963-08-26 1965-02-16 Westinghouse Electric Corp Cabinet structure
US3857624A (en) * 1973-05-18 1974-12-31 Westinghouse Electric Corp Shelf and support arrangement
US4502741A (en) * 1982-05-20 1985-03-05 Midwest Fasteners Corp. Fastener storage and display rack
US4936641A (en) * 1988-11-07 1990-06-26 Whirlpool Corporation Mounting system for an adjustable refrigerator article supporting member
US4904032A (en) * 1989-01-09 1990-02-27 General Electric Company Shelf support system for a refrigerator cabinet
US5273354A (en) * 1991-03-07 1993-12-28 Donnelly Corporation Molded refrigerator shelf and support bracket
US5893620A (en) * 1993-07-26 1999-04-13 Whirlpool Corporation Multiple shelf support system in common refrigerator liner
US5642924A (en) * 1996-02-29 1997-07-01 White Consolidated Industries, Inc. Shelf system for a refrigerator cabinet
JPH11132649A (en) * 1997-10-31 1999-05-21 Sanyo Electric Co Ltd Refrigerator
JP3657462B2 (en) * 1999-06-28 2005-06-08 株式会社東芝 refrigerator
US6422673B1 (en) * 2001-04-16 2002-07-23 Gemtron Corporation Refrigerator compartment housing vertically adjustable shelves, each formed from a piece of tempered glass snapped-fastened to an injection molded frame
US6851776B2 (en) * 2001-06-28 2005-02-08 Gemtron Corporation Refrigerator compartment housing vertically adjustable shelves, each formed from a piece of tempered glass to which is injection molded a frame in the form of front and rear border members
US6732662B2 (en) * 2001-08-10 2004-05-11 Metro Industries, Inc. Removable tray and tray racking system
JP2005226967A (en) * 2004-02-16 2005-08-25 Toshiba Corp refrigerator
KR20080103348A (en) * 2007-05-23 2008-11-27 엘지전자 주식회사 Shelf mounting structure for refrigerator
US7878344B2 (en) * 2008-04-03 2011-02-01 Electrolux Home Products, Inc. Tuck and store rack

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5788094A (en) * 1995-11-30 1998-08-04 Samsung Electronics Co., Ltd. Refrigerator shelf structure having stops for limiting forward and rearward sliding movement of a shelf
KR19990021547U (en) * 1997-11-29 1999-06-25 전주범 Shelf assembly structure of refrigerator
KR19990032122U (en) * 1997-12-31 1999-07-26 윤종용 Shelf of refrigerator
KR20050071184A (en) * 2003-12-31 2005-07-07 삼성전자주식회사 Refrigerator

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011009781A3 (en) * 2009-07-21 2011-06-03 BSH Bosch und Siemens Hausgeräte GmbH Refrigeration device having a removable lower shelf
US20110127897A1 (en) * 2009-12-01 2011-06-02 Jonathan Nash Shelf for an appliance
EP2508825A3 (en) * 2011-04-05 2017-11-29 BSH Hausgeräte GmbH Cooler, in particular domestic cooler
CN105531362A (en) * 2013-10-11 2016-04-27 松下健康医疗控股株式会社 Culture apparatus
CN105531362B (en) * 2013-10-11 2017-09-29 松下健康医疗控股株式会社 Culture apparatus

Also Published As

Publication number Publication date
GB0820107D0 (en) 2008-12-10
DE112006003890B4 (en) 2015-01-22
MX2008014356A (en) 2008-11-24
CN101432588A (en) 2009-05-13
CN101432588B (en) 2011-09-28
AU2006343052A1 (en) 2007-11-15
US8167390B2 (en) 2012-05-01
GB2451375B (en) 2011-02-16
GB2451375A (en) 2009-01-28
DE112006003890T5 (en) 2009-04-02
KR100703674B1 (en) 2007-04-09
US20090206717A1 (en) 2009-08-20
AU2006343052B2 (en) 2010-05-27

Similar Documents

Publication Publication Date Title
US8167390B2 (en) Installation structure of shelf assembly for refrigerator and refrigerator comprising the same
US7270385B2 (en) Spill proof shelf assembly method and structure
KR101410460B1 (en) Variable lathe and refrigerator with it
EP3244148B1 (en) Refrigerator
JP5443721B2 (en) refrigerator
US6231146B1 (en) Refrigerator door bottom storage module assembly
US20220290913A1 (en) Refrigeration appliance with a storage box
EP3017257B1 (en) Refrigeration appliance having improved slidable shelf system
JP2010139096A (en) Cooling storage
KR100513681B1 (en) Refrigerator
CN202153083U (en) Drawer for fridge and fridge with same
US12163730B2 (en) Refrigerator
KR100471105B1 (en) refrigerator
JP4481436B2 (en) refrigerator
KR100443982B1 (en) Refrigerator
KR100575222B1 (en) Refrigerator
KR100621107B1 (en) Refrigerator
JP2006071281A (en) refrigerator
KR100487819B1 (en) Storage compartment structure of door for refrigerator
KR0133334Y1 (en) A refrigerator
KR100452990B1 (en) Shelf for refrigerator
KR101486353B1 (en) Refrigerator
KR20200124864A (en) Refrigerator
KR20030082643A (en) Shelf having vertical devider for refrigerator
KR19990056263A (en) Door pocket of refrigerator with variable width

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 06835597

Country of ref document: EP

Kind code of ref document: A1

WWE Wipo information: entry into national phase

Ref document number: 4242/KOLNP/2008

Country of ref document: IN

ENP Entry into the national phase

Ref document number: 0820107

Country of ref document: GB

Kind code of ref document: A

Free format text: PCT FILING DATE = 20061229

WWE Wipo information: entry into national phase

Ref document number: 0820107.1

Country of ref document: GB

WWE Wipo information: entry into national phase

Ref document number: 200680054471.4

Country of ref document: CN

WWE Wipo information: entry into national phase

Ref document number: 12300101

Country of ref document: US

Ref document number: MX/a/2008/014356

Country of ref document: MX

Ref document number: 2006343052

Country of ref document: AU

ENP Entry into the national phase

Ref document number: 2006343052

Country of ref document: AU

Date of ref document: 20061229

Kind code of ref document: A

RET De translation (de og part 6b)

Ref document number: 112006003890

Country of ref document: DE

Date of ref document: 20090402

Kind code of ref document: P

122 Ep: pct application non-entry in european phase

Ref document number: 06835597

Country of ref document: EP

Kind code of ref document: A1