Abstract:
The present invention relates to a fixing means for fastening a fixed rail (141) of a slide rail (140) comprising: the fixed rail coupled to a wire rack (110), which is coupled to a main body of a drawer assembly and comprises a plurality of vertical frames (120) and a plurality of horizontal frames (130); and a movable rail (142) which is slidably disposed on the fixed rail (141) and to which the drawer assembly fastens, wherein the fixing means (100) can provide: a first fixing clip (160) provided on one side of the fixed rail (141) and fastened to one side of the wire rack (110); and a second fixing clip (160) provided on the other side of the fixed rail (141) and fastened to the other side of the wire rack (110).
Abstract:
An embodiment of the present invention provides a fixing assembly comprising: a wire rack having a vertical frame and a horizontal frame; a slide rail which has a fixed rail coupled to the wire rack and a movable rail slidably disposed on the fixed rail; and a fixing means for fastening the fixed rail to the wire rack, wherein the fixing means comprises a first fixing clip provided on one side of the fixed rail and a second fixing clip provided on the other side of the fixed rail. The fixing assembly has a structure in which the first fixing clip is fixed laterally to the horizontal frame, and then the second fixing clip is fixed vertically to the horizontal frame.
Abstract:
Disclosed herein is a roller unit for a drawer capable of decreasing the number of components, improving assembly productivity, and continuously maintaining a normal assembly state of the component by changing a structure of an assembled portion of the components configuring the roller unit. The roller unit includes a rotating support shaft fixed to an accommodation body, an idle roller idle-rotatably coupled to the rotating support shaft, and coupling structures provided at assembled portions of the rotating support shaft and the idle roller, respectively, the coupling structures including a locking groove formed in a circumferential direction with respect to an outer circumferential surface of the rotating support shaft, a protrusion formed on an inner circumferential surface of a fastening hole of the idle roller and coupled to the locking groove, and an assembly guiding groove formed at one end of the outer circumferential surface of the rotating support shaft.
Abstract:
Provided is a rail having a simple structure and capable of stably supporting a load caused by a drawer and accommodated matters. The rail has a structure having a resistance against a torsional load that twists the rail in a central direction of the drawer and configured to prevent interference between components of the rail even when the torsional load occurs.
Abstract:
The present invention relates to a sliding device. A movable rail body is fastened to a movable body and has a first space. Movable rail bearings are disposed in the first space at diagonally facing corners of the movable rail body. A stationary rail body is fastened to a stationary support and has a second space. Stationary rail bearings are disposed in the second space at diagonally facing corners of the stationary rail body. A slider has an upper end in rolling contact with the movable rail bearings, and a lower end in rolling contact with the stationary rail bearings. An angle between a center line parallel to the movable body and a connection line connecting centers of the movable rail bearings ranges from 40 degrees to 50 degrees. An angle between the center line and a connection line connecting centers of the stationary rail bearings ranges from 130 degrees to 140 degrees.