FIELD: door stoppers.
SUBSTANCE: invention relates to hidden devices for fixing a door in an open position and is used to lock an opening door in a given position. Magnetic hidden stopper for fixing the door leaf contains a part placed in the door leaf. The part placed in the door leaf is configured to interact magnetically with the part placed in the floor to lift the engaging element of the part placed in the floor when the door leaf moves above it in a given direction. The part placed in the door leaf includes a magnet, which is installed inside the hole at the lower end of the door leaf, as well as a strike plate having holes for fasteners, through which it is attached to the lower end of the door leaf. The magnetic hidden stopper for fixing the door leaf also includes a part located in the floor, which contains an engaging element, which is a pin located in the housing. The magnet is located in a cylindrical blind bushing, from the side of the mounted surface of the strike plate to the bottom of the door leaf. The strike plate is made in the form of a plate with a cylindrical blind bushing, in the body of which a magnet is located, and with the possibility of fixing it on the lower end of the door leaf. The plate contains a locking part, which is made in the form of a conical recess, and the inner part of the side surface has a roll onto the radial surface of the bottom of the recess in such a way that on one side the side surface of the conical recess forms a tide. The body of the part placed in the floor is made dismountable and contains an inner part in the form of a bushing with an external thread, which is located in the floor, and an outer part in the form of an annular flange with a thread, which is fixed on the bushing. The outer part of the housing holds the engaging element. The engaging element is made in the form of a pin with a collar, which prevents the pin from falling out of the cavity of the inner part of the body.
EFFECT: ensuring the ease of installation, increasing functional reliability and reducing injuries during operation.
6 cl, 11 dwg
Authors
Dates
2023-12-11—Published
2023-02-20—Filed