Adjustable refrigerator shelving
11629904 ยท 2023-04-18
Assignee
Inventors
Cpc classification
F25D23/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D25/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B57/06
HUMAN NECESSITIES
International classification
F25D23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B57/06
HUMAN NECESSITIES
F25D23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Embodiments disclosed herein are directed to a shelf and shelving system for a refrigerator door having a door liner with opposing side walls, where each side wall includes a row of ditch steps. The shelf or shelves includes a gap wall at each end of the shelf. A switch is positioned above each gap wall. Each switch includes a handle, a mounting rod and a biasing member for biasing a long component of the handle outwardly away from the gap wall such that an engagement surface of the long component will engage a ditch step and thereby secure the shelf in place within the refrigerator door. The switch is actuatable by a user to allow for vertical adjustment of the shelf along the rows of ditch steps or to remove the shelf therefrom.
Claims
1. A shelving system for a refrigerator door comprises: a door liner, the door liner having opposing side walls, wherein each sidewall defines a row of ditch steps; at least one shelf, the at least on shelf having a first end and a second end, each end having a gap wall, a switch is positioned above each gap wall, each switch comprises: a switch handle, a mounting rod and a biasing member, the switch handle having a long component and a short component, the long component defining a ditch step engagement end, the long component having a length greater than the short component, at an intersection of the long component and the short component the switch handle defining a mounting rod passage, the switch handle having an interior surface and defining a notch, the notch being in communication with the mounting rod passage, the mounting rod configured to extend through the mounting rod passage, the switch handle being pivotable about the mounting rod, the biasing member configured to be positioned within the notch and disposed about the mounting rod, the biasing member includes a first biasing post that extends through the notch to contact the interior surface of the long component and a second biasing post that extends through the notch to contact the gap wall, the biasing member biasing the long component of the switch handle outwardly away from the gap wall; the at least one shelf being removeably positionable between the opposing sidewalls, such that when the at least one shelf is positioned in place between the sidewalls, each ditch step engagement end is engaged to one of the ditch steps.
2. The system of claim 1, wherein each row of ditch steps is comprised of a plurality of ditch steps extending vertically upward from a base ditch step, each ditch step has a back and a front, each ditch step being separated by a tapered riser, the tapered riser extending from the back of the base ditch step to the front of a next vertically adjacent ditch step in the row.
3. The system of claim 2, wherein each row of ditch steps terminates at terminal riser.
4. The system of claim 3, wherein each side wall defines an interior surface, each row of ditch steps is segmented into plurality of regions of ditch steps separated by the interior surface of the side wall.
5. The system of claim 1, wherein the gap wall is positioned between a first protrusion and a second protrusion, each protrusion comprises a first pillar and a second pillar, each protrusion has a height greater than the gap wall and defining a switch pocket above the gap wall and between the first protrusion and the second protrusion, the switch handle constructed and arranged to fit within the switch pocket.
6. The system of claim 5, wherein each pillar defines a hole, the mounting rod being configured for passage through the hole of each pillar to secure the switch thereto.
7. A shelf for use with a refrigerator having a door liner with opposing sidewalls, each sidewall having a row of ditch steps, the shelf comprises: a first end and a second end, each end having a gap wall, a switch is positioned above each gap wall, each switch comprises: a switch handle, a mounting rod and a biasing member, the switch handle having a long component and a short component, the long component defining a ditch step engagement end, the long component having a length greater than the short component, at an intersection of the long component and the short component the switch handle defining a mounting rod passage, the switch handle having an interior surface and defining a notch, the notch being in communication with the mounting rod passage, the mounting rod configured to extend through the mounting rod passage, the switch handle being pivotable about the mounting rod, the biasing member configured to be positioned within the notch and disposed about the mounting rod, the biasing member includes a first biasing post that extends through the notch to contact the interior surface of the long component and a second biasing post that extends through the notch to contact the gap wall, the biasing member biasing the long component of the switch handle outwardly away from the gap wall; the shelf being removeably positionable between the opposing sidewalls, such that when the shelf is positioned in place between the sidewalls, each ditch step engagement end is engaged to one of the ditch steps.
8. The shelf of claim 7, wherein the gap wall is positioned between a first protrusion and a second protrusion, each protrusion comprises a first pillar and a second pillar, each protrusion has a height greater than the gap wall and defining a switch pocket above the gap wall and between the first protrusion and the second protrusion, the switch handle constructed and arranged to fit within the switch pocket.
9. The system of claim 8, wherein each pillar defines a hole, the mounting rod being configured for passage through the hole of each pillar to secure the switch thereto.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(12) In
(13) As shown in
(14) As best shown in
(15) In at least one embodiment, each row 26 or region 32 terminates at the vertically highest point of the row 26 or regions 32 at a terminal riser 40 that extends from the back 30 of a top most ditch step 42 to the adjacent interior surface 44 of the side wall 18 or 20.
(16) The rows 26 of ditch steps 28 defined by the opposing side walls 18 and 20 are spaced apart to receive and retain one or more shelves therebetween, such as the shelf 24 shown in
(17) Turning to
(18) The switch handle 66 is characterized by two major components: a long component 72 and a short component 74. The long component 72 is longer than the short component 74. At the intersection of the long component 72 and the short component 74 the switch handle 66 defines a mounting rod passage 76 that the mounting rod 68 may be passed therethrough. The long component 72 and the short component 74 define an obtuse angle 78. On the underside 80 of the switch handle 66, the long component 72 and the short component 74 define a biasing member notch 82 in communication with the mounting rod passage 76. The biasing member 70 is disposed about the mounting rod 68 and includes a first post 84 that extends out of the notch 82 to contact the underside 80 of the long component 72. A second post 86 of the biasing member 70 extends out of the notch 82 to contact the gap wall 50 when the switch 64 is properly engaged to the shelf 24, such as in the manner shown in
(19) Returning to
(20) Once each end 46 and 48 of the shelf 24 are equipped with an adjustment switch 64, the shelf 24 is ready for insertion into the door insert 16, such as in the manner shown in
(21) Operation of the system 14, is best illustrated in
(22) The short component 74 of each switch handle 66 is a user interface which may be manipulated to pivot the long component 74 of the switch handle 66 toward the gap wall 50. When manipulated in this manner, the user applies a force sufficient to overcome the biasing force supplied by biasing member 70 that holds the engagement end 90 against the ditch step 28. By actuating both switches 64 of a shelf 24, such as in the manner shown in
(23) The many features and advantages of the invention are apparent from the above description. Numerous modifications and variations will readily occur to those skilled in the art. Since such modifications are possible, the invention is not to be limited to the exact construction and operation illustrated and described. Rather, the present invention should be limited only by the following claims.