Abstract:
A locating device for a slide is to install a locator at the rear end of an outer track. The locator is formed by blanking and bending a flexible metal piece, and its main body is to form a U-shaped base in cross-section with two vertical edges extending upwardly from respective sides. The base of the locator is formed with holes and riveted to the outer track. The base further extends a portion upwardly from the rear end to form a vertical plate comprising a pair of hooks extending from the top end of the vertical plate towards the front end. The hooks engaging with a buckle device of an inner track or of a middle track secures the inner track and the outer track together.
Abstract:
A positioning device for a drawer slide bearing carrier includes a bearing carrier having rollers located between a carrying rail and a sliding rail. The bearing carrier has a recess and a hook portion at a front end thereof. The carrying rail has a support at a front end thereof. The support comprises a hook unit which is pivotally connected to a block fixed on the carrying rail. An elastic force is formed between the support and the hook unit, urging the hook unit to restore its original position. Thereby, the front end of the bearing carrier is pressed by the block so that the hook portion engages with the hook unit to secure the bearing carrier in place. The carrying rail further comprises a releasing mechanism adapted to control the swing of the hook unit for the movement of different locations.
Abstract:
A slide assembly includes an outer slide member, an intermediate slide member, and an inner slide member. The outer slide member includes an opening for mounting a locking member. A lug is mounted on an end of the locking member and abuts against a side of a periphery delimiting the opening. A resilient plate includes a first end fixed on the outer slide member and a second end pressing against the lug of the locking member, thereby biasing the other end of the locking member away from an inner face of the outer slide member. An unlatching member includes an end fixed on the intermediate slide member. The unlatching member further includes a substantially U-shaped actuating section extendable through a slot in the intermediate slide member. Two downwardly extending stops are formed on two lateral sides delimiting the slot by pressing.
Abstract:
A positioning device for the multi-section slide track assembly includes an inner slide track, an intermediate slide track, and an outer slide track. The positioning device consists of a positioning member and an actuating member pivot-connected thereto. The positioning member provides with at least one engaging end while the actuating member providing with at least one bent guiding edge and a push button. The engaging end is adapted to engage with an oblique protrusion of the outer slide track for positioning the intermediate slide track. A return movement of the inner slide track can actuate the bent guiding edge for automatically unlocking the engagement of the intermediate slide track with the outer slide track. Alternatively, a user can manually press the push button to unlock the engagement of the intermediate slide track with the outer slide track.
Abstract:
A safe guard device for the multi-section slide track assembly of drawers includes an inner slide track, an intermediate slide track, a limit member mounted on the intermediate slide track and an outer slide track. The inner slide track and the intermediate slide track are nested in the outer slide track and the limit member is used to engage and to position an end of the inner slide track. The limit member is able to pivot with respect to the intermediate slide track for engaging with or disengaging from the inner slide track. In retracing operation, the engagement of the inner slide track with the limit member provides with a temporary space on the inner slide track for accommodating fingers of an operator.
Abstract:
A track device includes a first track, a second track slidably received in the first track, a stop member fixed on the first track, a limiting member pivotally mounted to the second track and including two cams for respectively releasably engaging with two stops of the stop member, and a connecting rod mounted on the second track. When a user manually operates the connecting rod to move the limiting member from the latching position to the unlatching position, a safety element on the limiting member comes in contact with one of the stops of the stop member when the second track is moved from the extended position into the first track and when the connecting rod is pulled, thereby preventing injury to the user's fingers that grasp the connecting rod.
Abstract:
A self-opening and self-closing slide assembly includes a first rail, a second rail, a third rail, a movable unit, a hooking member and a contact member. The movable unit is installed to the first rail and includes a movable member, a first resilient member and a second resilient member. The second rail is installed between the first and third rails. The hooking member and the contact member are connected to the third rail. When the third rail is pushed, the hooking member is disengaged from the movable member. The second rail extends relative to the first rail by the force from the first resilient member. When the third rail is retracted relative to the first rail, the hooking member is connected to the movable member and the second resilient member applies a force the movable member to retract the third rail relative to the first rail.
Abstract:
A self-opening and self-closing slide assembly includes a first rail, a second rail, a third rail, a movable unit, a hooking member and a contact member. The movable unit is installed to the first rail and includes a movable member, a first resilient member and a second resilient member. The second rail is installed between the first and third rails. The hooking member and the contact member are connected to the third rail. When the third rail is pushed, the hooking member is disengaged from the movable member. The second rail extends relative to the first rail by the force from the first resilient member. When the third rail is retracted relative to the first rail, the hooking member is connected to the movable member and the second resilient member applies a force the movable member to retract the third rail relative to the first rail.
Abstract:
A mount bracket includes a fixing frame, an installation unit, a movable member, a positioning member and a release member. The fixing frame includes a side wall and an end wall. The movable member has a first board movably connected to the side wall and a second board. The first board includes an engaging hole and a contact portion. The positioning member is fixed to the side wall and has an engaging portion. The movable member is movably connected to the first board. When in assembling, the contact portion and the second board contact the inside and outside of a post of a rack. The fixing frame is pushed toward the post to insert the installation unit into the holes of the post. The engaging portion of the positioning member is engaged with the engaging hole of the movable member to connect the movable member to the fixing frame.
Abstract:
A connection device of a cable management arm includes a fixing frame having a protrusion portion, a connection member having a contact portion, and a locking member pivotably connected to the connection member. The locking member includes a locking portion and a resilient portion which contacts the contact portion of the connection member. When the connection member is pivotally connected to the cable management arm, the fixing frame is fixed to a rail. When the connection member is connected to the fixing frame, the resilient portion provides a force to lock the locking portion to the protrusion portion of the fixing frame so as to securely connect the connection member to the fixing frame.