Buffering Device for the Slide Rail of a Drawer
A slide rail assembly having a fixed slide rail with an open channel. A hook plate is mounted to the fixed slide rail. The hook plate has a locking groove. A base is attached to the fixed slide rail within the open channel. A buffer frame moves in the open channel between two positions. A toggle plate is mounted to the buffer frame. The toggle plate can rotate between a free and locked position. A locking pin extends from the toggle plate that engages the locking groove. The locking pin is free to move in the locking groove when the toggle plate is in its free position. The locking pin becomes locked in the locking groove when the toggle plate is in its locked position. A movable slide rail selectively moves within the open channel. The movable slide rail engages the toggle plate and moves the toggle plate between positions.
This application claims the priority of China Utility Model application No. 202323300218.2, filed Dec. 4, 2023.
BACKGROUND OF THE INVENTION 1. Field of the InventionThe present invention relates to slide rail devices used in the opening and closing of drawers. More particularly, the present invention relates to buffering devices for a slide rail that slow the closing rate of an open drawer.
2. Prior Art DescriptionMany modern drawers use slide hardware to assist the drawer in opening and closing smoothly. At present, a conventional slide rail comprises an upper rail, a middle rail and a lower rail which are sequentially installed. The upper rail is installed on the drawer. The lower rail is installed on the cabinet body. The upper rail, the middle rail, and the lower rail are slidably connected to one another to enable the drawer to slide open or closed on the cabinet body. During use, a drawer may collide with the cabinet body, producing loud noise, affecting the use of the drawer, and even damaging the drawer and the cabinet body. For this reason, buffer dampers are often mounted on slide rails. However, in actual applications, slide rails that are provided with buffer dampers have other shortcomings. For example, it is difficult to ensure the reliable closing and locking of a drawer having a buffer damper. Often, the forces used to slow the drawer when closing act to prevent the drawer from fully closing or cause the drawer to open the drawer slightly after it is closed. The result is that many drawers with buffer dampers are constantly ajar. If the drawer is a safety drawer that is self-locking, the slide rail system may prevent the drawer from locking, which can present a safety hazard.
A need therefore exists for an improved slide rail assembly that can help a drawer close softly, yet does not prevent the drawer from closing fully. This need is met by the present invention as described and claimed below.
SUMMARY OF THE INVENTIONThe present invention is a slide rail assembly for a drawer. The slide rail assembly has a fixed slide rail that extends a length between a first end and a second end. The fixed slide rail has a rear wall and side walls that define an open channel that extends along its length.
A hook plate is mounted to the fixed slide rail within the open channel. The hook plate has a locking groove formed within its structure.
A base is attached to the fixed slide rail within the open channel at the first end of the open channel. A buffer frame is positioned in the open channel next to the base. The buffer frame is disposed in the open channel between the base and the second end of the open channel. The buffer frame can move in the open channel between a first position and a second position. In the first position, the buffer frame is in abutment with the base. In the second position, the buffer frame is positioned over the hook plate.
A toggle plate is mounted at a pivot connection to the buffer frame. This enables the toggle plate to rotate about the pivot connection between a free position and a locked position. A locking pin extends from the toggle plate. The locking pin engages a locking groove on the hook plate when the buffer plate moves into its second position from its first position. The locking pin is free to move in the locking groove when the toggle plate is in its free position. Conversely, the locking pin becomes locked in the locking groove when the toggle plate is in its locked position.
A movable slide rail selectively moves within the open channel of the fixed slide rail. The movable slide rail engages the toggle plate and moves the toggle plate between its free position and its locked position as the movable slide rail moves. The toggle plate is moved to its free position as the movable slide rail moves toward the first end of the fixed slide rail. The toggle plate is moved to its locked position as the movable slide rail moves away from the first end of the fixed slide rail. Movement of the movable slide rail toward the first end of the fixed slide rail is assisted by retraction elements and is buffered by a damping element.
For a better understanding of the present invention, reference is made to the following description of exemplary embodiments thereof, considered in conjunction with the accompanying drawings, in which:
Although the present invention slide rail system and methodology can be embodied in many ways, only one exemplary embodiment is illustrated and described. The exemplary embodiment is being shown for the purposes of explanation and description. The exemplary embodiment is selected in order to set forth one of the best modes contemplated for the invention. The illustrated embodiment, however, is merely exemplary and should not be considered as a limitation when interpreting the scope of the appended claims.
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The movable slide rail 14 is positioned within the open channel 26 of the fixed slide rail 12. The movable slide rail 14 is an assembly that includes a middle rail 28 and an inner rail 30. The middle rail 28 and the inner rail 30 are nested and are slidable relative to each other. The middle rail 28 and the inner rail 30 can move selectively beyond the second end 18 of the fixed slide rail 12, therein allowing a drawer to open and close.
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The retraction elements 42 counter the bias of the hydraulic cylinder 44. As such, the retraction elements 42 bias the buffer frame 36 toward the base holder 34. The retraction elements 42 can be bands of elastic material, but are preferably metal springs.
The hook plate 50 is attached to the rear wall 20 of the fixed slide rail 12 within the open channel 26. The hook plate 50 has a locking groove 52 formed into its structure. The end of the locking groove 52 is positioned at a distance D1 from the locking pin 39 of the toggle plate 38. The distance D1 between the locking groove 52 and the locking pin 39 is equal to the range of movement allotted to the buffer frame 36 relative the base holder 34. The distance D1 is also equal to the extension range of the piston rod 48 on the hydraulic cylinder 44.
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It will be understood that the embodiment of the present invention that is illustrated and described is merely exemplary and that a person skilled in the art can make many variations to that embodiment. All such embodiments are intended to be included within the scope of the present invention as defined by the claims.
Claims
1. A slide rail assembly, comprising:
- a fixed slide rail having a length between a first end and a second end, wherein said fixed slide rail has a rear wall and side walls that define an open channel that extends said length;
- a hook plate mounted to said rear wall of said fixed slide rail within said open channel, wherein said hook plate has a locking groove formed therein; a base affixed to said fixed slide rail within said open channel at said first end;
- a buffer frame disposed in said open channel between said base and said second end, wherein said buffer frame can move in said open channel between a first position in abutment with said base and a second position over said hook plate;
- a toggle plate mounted at a pivot connection to said buffer frame, wherein said toggle plate can rotate about said pivot connection between a free position and a locked position;
- a locking pin that extends from said toggle plate, wherein said locking pin engages said locking groove on said hook plate when said buffer frame moves into said second position from said first position, and wherein said locking pin is free to move in said locking groove when said toggle plate is in said free position and becomes locked in said locking groove when said toggle plate is in said locked position;
- a movable slide rail that selectively moves within said open channel of said fixed slide rail, wherein said movable slide rail engages said toggle plate and moves said toggle plate between said free position and said locked position as said movable slide rail moves toward said first end of said fixed slide rail and away from said first end of said fixed slide rail, respectively.
2. The slide rail assembly of claim 1, further including a damping element that slows movement of said buffer frame toward said base in said open channel.
3. The slide rail assembly of claim 2, wherein said damping element is a hydraulic cylinder that extends between said base and said buffer frame.
4. The slide rail assembly of claim 1 further including retraction elements that bias said buffer frame toward said base within said open channel.
5. The slide rail assembly of claim 1, wherein said retraction elements are springs.
6. A slide rail assembly, comprising:
- a fixed slide rail having an open channel that extends along a length;
- a hook plate mounted to said fixed slide rail within said open channel, wherein a locking groove is formed in said hook plate; a base affixed to said fixed slide rail;
- a buffer frame disposed in said open channel, wherein said buffer frame can move in said open channel;
- a damping element connected between said base and said buffer frame that governs movement speed of said buffer frame relative to said base in said open channel;
- a toggle plate mounted on said buffer frame, wherein said toggle plate can move between a free position and a locked position;
- a locking pin that extends from said toggle plate, wherein said locking pin engages said locking groove on said hook plate, and wherein said locking pin is free to move in said locking groove when said toggle plate is in said free position and becomes locked in said locking groove when said toggle plate is in said locked position;
- a movable slide rail that selectively moves within said open channel of said fixed slide rail, wherein said movable slide rail engages said toggle plate and moves said toggle plate between said free position and said locked position as said movable slide rail moves relative to said fixed slide rail.
7. The slide rail assembly of claim 6, wherein said damping element only slows movement of said buffer frame toward said base in said open channel.
8. The slide rail assembly of claim 6, wherein said damping element is a hydraulic cylinder that extends between said base and said buffer frame.
9. The slide rail assembly of claim 6 further including retraction elements that bias said buffer frame toward said base within said open channel.
10. The slide rail assembly of claim 9, wherein said retraction elements are springs.
Type: Application
Filed: Oct 11, 2024
Publication Date: Jun 5, 2025
Applicant: Comtrad Strategic Sourcing INC. (Mississauga)
Inventors: Yiwei Huang (Jieyang City), Mingtao Hu (Jieyang City), Shaozhong Xu (Jieyang City), Jinming Lin (Jieyang City), Teng Long (Jieyang City)
Application Number: 18/913,773