A47B2210/0054

COUPLING MECHANISM AND SLIDE RAIL ASSEMBLY FOR FURNITURE PART

A coupling mechanism adapted for a slide rail includes a coupling base, a supporting member, and an adjustment member. The coupling base is detachably fixed to the slide rail. The supporting member includes a supporting portion. The adjustment member is configured for displacing and thereby adjusting the supporting member with respect to the coupling base in order to change the height of the supporting portion of the supporting member with respect to the slide rail through a guiding feature.

Uniform equipment mounting system

A universal mounting system is provided for use in connection with substantially any type of electronic equipment so was to reduce or substantially avoid the need for rail kids or other mounting assemblies that are its equipment specific for mounting equipment to racks. In one implementation, a uniform mounting system (101) includes a number of rail and slider assemblies (112). Each of the rail and slider assemblies includes a slider that is slightly mounted on a support rail. Each of the slider is includes mounting flange is and brackets for mounting the slider to a piece of equipment. The mounting flanges 116 that's collectively define a segmented vertical rail. A safety stop mechanism can be used to define very a offset figurations of the equipment with respect to a front end of the rack.

SLIDE RAIL MECHANISM AND ADJUSTING ASSEMBLY FOR SLIDE RAIL
20180160805 · 2018-06-14 ·

A slide rail mechanism includes a slide rail, a resilient member, and an adjusting device. The slide rail includes a front portion and a rear portion. The resilient member is located between the front portion and the rear portion of the slide rail and includes a first portion and a second portion, wherein the first portion is fixed with respect to the slide rail. The adjusting device is configured for adjusting the height of the second portion with respect to the first portion.

DRAWER GLIDE MECHANISM

A drawer glide mechanism can include a first elongate guide member, a second elongate glide member, a ball bearing component, and a v-notch socket. The first elongate guide member includes a distal end that is configured to fit within an opening in the v-notch socket. The drawer glide mechanism can further include one or more floating members and fixed members.

Pull-out guide
09894994 · 2018-02-20 · ·

A pull-out guide for pulling a pull-out furniture part out of a basic furniture structure, having at least a first and second guide rails, displaceable relative to one another in and counter to the pull-out direction. The first guide rail has a basic profile and at least one lateral-guidance unit retained on the basic profile and has a lateral-guidance part. The lateral-guidance part, which limits play of the second guide rail relative to the first guide rail in at least a transverse direction extending at right angles to the pull-out direction, interacts with a lateral-guidance surface of the second guide rail. The lateral-guidance unit has an openable and closeable locking device which, in an open state, allows adjustment of the lateral-guidance part in the transverse direction relative to the basic profile of the first guide rail by applying pressure on the lateral-guidance part parallel to the transverse direction, and in a closed state of the locking device, fixes the position of the lateral-guidance part.

BLADE BASED CABINET SYSTEM
20180042378 · 2018-02-15 ·

A blade based cabinet system and method. A disclosed cabinetry system includes cabinetry system, comprising: a pair of mounting rails that are horizontally mountable to a wall; a set of blade assemblies, each having a substantially planar profile; and a mounting interface adapted to connect the set of blade assemblies to the pair of mounting rails, orthogonal to the wall to form a cabinet chassis.

Centering-rotary positioning automatic closing device

A centering-rotary positioning automatic closing device includes a sliding rail installed on a fixed rail in a sliding from; wherein a guiding holder is mounted on a bottom of the fixed rail; a guiding part is mounted on the guiding holder along a sliding direction of the sliding rail; a sliding block is installed on the guiding part of the guiding holder and the guiding holder is connected to the sliding block through a spring; the guiding part has a guiding slot; a centering boss and a rotary boss are provided on a bottom of a bottom plate of a toggle block; the centering boss passes through a fixing hole of the sliding block, and the rotary boss passes through a rotary slot of the sliding block and extends into the guiding slot; a front end of the guiding slot has a positioning slot communicating with the guiding slot.

Drawer glide mechanism

A drawer glide mechanism can include a first elongate guide member, a second elongate glide member, a ball bearing component, and a v-notch socket. The first elongate guide member includes a distal end that is configured to fit within an opening in the v-notch socket. The drawer glide mechanism can further include one or more floating members and fixed members.

Refrigerator

An assembly includes an enclosure including an opening providing an access to an interior of the enclosure, a door configured to open or close the opening in the enclosure. The assembly also includes a drawer side assembly supported by the enclosure and coupled to the door to move the door at least in part between an open position and a closed position. The assembly further includes a joining member configured to adjustably couple the door to the drawer side assembly. The joining member includes one or more oversized apertures relative to corresponding fasteners.

SLIDABLE CABINET PULLOUT APPARATUS AND METHOD OF USE
20170332785 · 2017-11-23 · ·

Disclosed is a pullout apparatus having side access and designed for simple, adjustable, and accurate installation within a pre-existing cabinet space. The apparatus, slidably mounted within the cabinet space, comprises a top slide assembly mounted to a cabinet carcass and a drawer box. The drawer box is automatically centered on a base slide box. The base slide box is comprised of a slotted template slidingly engaged with a frame, where the frame is mounted to the cabinet carcass. Slide rail assemblies connect the slotted template to the frame. A pin block on the underside of a fixed shelf of the drawer box automatically centers the drawer box on the slotted template. A face plate adjustment mechanism provides for three dimensional alignment of the face plate with surrounding cabinets. An alternate embodiment comprises a mounting bracket providing three dimensional adjustability of the upper drawer slide.