Abstract:
In one general aspect, a computing device can include a lid, and a base coupled to the lid by a hinge. The hinge can include a first disc including a first pin coupled to the lid and an inner surface. The hinge can include a second disc including a second pin coupled to the base and an outer surface. The first disc can be concentric with and can partially surround the second disc. The hinge can further include a friction element disposed between the inner surface of the first disc and the outer surface of the second disc. The first disc can be configured to rotate about the second disc.
Abstract:
A hinge for pivotally joining a first frame member and a second frame member of a frame of a stroller may include a first housing portion, a second housing portion, a release actuator and a locking member. The first housing portion may be operably coupled to the first frame member. The second housing portion may be operably coupled to the second frame member. The release actuator may be configured to operate to enable the hinge to shift between a locked state and an unlocked state. The locking member may be configured to move in an axial direction responsive to shifting between the locked state and the unlocked state. The external periphery of the locking member may include a first incline surface that engages both the first housing portion and the second housing portion in the locked state.
Abstract:
An Anuba concealed hinge for rotatable moving a door, in particular a reinforced door, connected to a tubular support structure, which includes a rear counterframe anchored to a wall and a front frame anchored to the counterframe The hinge includes a lower fixed half-hinge and an upper movable half-hinge rotatably coupled to each other for rotating about a first longitudinal axis between an open position and a closed position. The lower fixed half-hinge includes a box-shaped hinge body to be concealedly inserted within the tubular support structure. The upper movable half-hinge includes a connecting plate connected to the door to extend from the tubular support structure in the open position and to concealedly retract within the tubular support structure in the closed position. The movable half-hinge includes a pivot defining the first axis unitarily connected to the connecting plate. The hinge body includes a seat internally housing the pivot.
Abstract:
A door hinge including a fixed element coupled to a wall; and a movable element coupled to the door. The fixed and movable elements are rotatably coupled to rotate between open and closed positions about a first axis. One of the movable and fixed elements includes a hinge body; the other of the movable and fixed elements includes a pivot and cam means. The hinge body includes a working chamber defining a second axis, which includes follower means interacting with the cam means to slide between first and second end-stroke positions. The cam means includes a flat face parallel to the first axis. The follower means includes an elastic element and an interface element having a first end interacting with the elastic element and a second end including a planar operating surface to come in contact with the flat face of the cam means to remain in contact and parallel.
Abstract:
A piston device for the controlled rotatable movement of a closing element anchored to a stationary support structure includes a tubular body removably insertable into at least one seat of a hinge device, an actuating head external to the tubular body, a plunger member slidably movable unitarily with the actuating head between a retracted end position and an extended end position, an elastic contrast member acting on the plunger member for the returning thereof from the retracted end position to the extended end position, and a working fluid acting on the plunger member to hydraulically counteract the action thereof. A hinge device, in which a piston device according to the invention is removably insertable.
Abstract:
A locking hinge that includes a first hinge element including a body defining a first hole and a second hinge element including a body defining a second hole. The locking hinge also includes a dowel assembled through the first hole in the first hinge element and the second hole in the second hinge element defining a hinge joint axis permitting translation of the second hinge element relative to the first hinge element along a first axis and a second axis, and rotation of the second hinge element relative to the first hinge element.
Abstract:
An adjustable hinge is mounted on a doorframe, holds a glass door and has a stationary bracket and a clamp assembly. The stationary bracket is mounted securely on the doorframe and has a sliding actuator. The clamp assembly is mounted rotatably on the stationary bracket and has a first clamp assembly and a second clamp securely holding the glass door and two pairs of pivot pin clamp bolts. The first clamp assembly has a body, a pivot pin mounted rotatably through the stationary bracket and two pivot pin clamps securely holding the body on the pivot pin. The pivot pin clamp bolts securely hold the pivot pin clamps on the body of the first clamp assembly. The glass door is aligned with the doorframe by releasing the pivot pin clamp bolts and loosing the pivot pin clamps to align the sliding actuator and the pivot pin.
Abstract:
A non-glass-cutting and adjustable hinge has a doorframe mount, a securing base, a spindle, a door bracket assembly, at least one positioning device and an adjusting assembly. The securing base is securely attached to the doorframe mount. The door bracket assembly is pivotally connected to the securing base with the spindle to attach to a glass panel and has a door bracket, two resilient plates, a pushing plate and multiple pushing bolts. The door bracket is constructed of a single body and has an engaging recess and multiple pushing threaded holes. The resilient plates are mounted inside the engaging recess and located respectively at two sides of the engaging recess. The pushing plate is mounted inside the engaging recess and abuts against one of the resilient plates. The pushing bolts are screwed respectively into the pushing threaded holes and push against the pushing plate.
Abstract:
In one general aspect, a computing device can include a lid, and a base coupled to the lid by a hinge. The hinge can include a first disc including a first pin coupled to the lid and an inner surface. The hinge can include a second disc including a second pin coupled to the base and an outer surface. The first disc can be concentric with and can partially surround the second disc. The hinge can further include a friction element disposed between the inner surface of the first disc and the outer surface of the second disc. The first disc can be configured to rotate about the second disc.
Abstract:
A door hinge including a fixed element coupled to a wall; and a movable element coupled to the door. The fixed and movable elements are rotatably coupled to rotate between open and closed positions about a first axis. One of the movable and fixed elements includes a hinge body; the other of the movable and fixed elements includes a pivot and cam means. The hinge body includes a working chamber defining a second axis, which includes follower means interacting with the cam means to slide between first and second end-stroke positions. The cam means includes a flat face parallel to the first axis. The follower means includes an elastic element and an interface element having a first end interacting with the elastic element and a second end including a planar operating surface to come in contact with the flat face of the cam means to remain in contact and parallel.