IP Library › Granted Patent US 11,261,637
Granted Patent B2
US 11,261,637 · App. 16/467,970 · Granted Mar 1, 2022

Hinge for the rotatable movement of a door, a shutter or the like

Inventor: Luciano Bacchetti (Nave, IT)
E05F3/104E05F1/1253E05F3/16E05F3/20E05Y2201/638E05Y2900/132
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Quick Facts
Patent No.
US 11,261,637
App. No.
16/467,970
Granted
Mar 1, 2022
Kind
B2
Abstract

A hinge for the rotatable movement of a closing element, such as a door, a window, a shutter or the like, includes a fixed element anchorable to a stationary support structure and a mobile element anchorable to the closing element. The fixed and movable elements are mutually coupled so as to rotate with respect to each other between an open position and a closed position. One of the fixed or movable element includes a working chamber, with a plunger disposed to slide along a longitudinal axis and operatively coupled with the other one of the fixed or movable elements so that the sliding of the plunger corresponds to a rotation of the movable element.

Claims (34)

1. A hinge for rotatable movement of a closing element between at least one closing position and at least one opening position, the closing element being adapted to be anchored to a stationary support structure, the hinge comprising:

a hinge body adapted to be anchored to the stationary support structure; and

a pin adapted to be anchored to the closing element, said hinge body and said pin being coupled to each other, the pin having a cam defined thereon, the pin being rotatable with respect to the hinge body around a first longitudinal axis,

wherein said hinge body includes a working chamber defining a second longitudinal axis, said working chamber having a plunger sliding therein, the plunger being caused to slide by the cam, along said second longitudinal axis, between a first end-stroke position, corresponding to one of the at least one closing position or the at least one opening position, and a second end-stroke position, corresponding to the other one of the at least one closing position or the at least one opening position,

wherein said working chamber includes a stop element that interacts with said plunger to limit the sliding thereof at said first or said second end-stroke position, so as to correspondingly limit the rotation of the closing element at the at least one closing position or at least one opening position,

wherein the plunger comprises a cylindrical portion and a plate-shaped portion that extends from the cylindrical portion toward the pin,

wherein the plate-shaped portion abuts the cam so that the rotation of the pin causes the sliding of the plunger, and

wherein said plate-shaped portion further includes an elongated slot having a pair of opposite ends, said stop element being inserted through said slot to abut against at least one of said opposite ends as soon as said plunger reaches at least one of said first or said second end stroke positions.

2. The hinge according to claim 1 , wherein said elongated slot defines the stroke of said plunger, said stop element abutting against one of said opposite ends as soon as said plunger reaches one of said first or said second end stroke position and abutting against the other one of said opposite ends once said plunger reaches the other one of said first or said second end stroke position.

3. The hinge according to claim 1 ,

further comprising a spring abutting the cylindrical portion of the plunger, the spring being movable between a minimum compression position and a maximum compression position to act on said plunger,

wherein, when said spring is in said minimum compression position, the closing element is in one of the at least one closing position or the opening position,

wherein, when said spring is in said maximum compression position, the closing element is in the other one of the at least one closing position or the at least one opening position, and

wherein said spring, said stop element, and said elongated slot are arranged so that, when said spring is in the maximum compression position, said stop element engages one of the opposite ends of said elongated slot, and when said spring is in the minimum compression position, said stop element engages another one of the opposite ends of said elongated slot.

4. The hinge according to claim 3 , wherein said plate-shaped portion is integrally coupled to said cylindrical portion.

5. The hinge according to claim 1 , wherein a face of said plate-shaped portion abuts the cam, said cam including a first working surface that engages said face when the closing element is in said one of the at least one closing position or the at least one opening position and a second working surface that engages said face when the closing element is in said other one of the at least one closing position or the at least one opening position, said cam further including a damping portion configured to come into contact with said face upon any further rotation of said cam.

6. The hinge according to claim 1 , wherein said pin defines said first longitudinal axis.

7. The hinge according to claim 4 , wherein the rotation of the closing element during opening or closing is hydraulically damped.

8. The hinge according to the claim 7 , further comprising a working liquid entirely contained in said cylindrical portion.

9. A hinge for rotatable movement of a closing element between at least one closing position and at least one opening position, the closing element being adapted to be anchored to a stationary support structure, the hinge comprising:

a hinge body adapted to be anchored to the stationary support structure; and

a pin adapted to be anchored to the closing element, said hinge body and said pin being coupled to each other, the pin having a cam defined thereon, the pin being rotatable with respect to the hinge body around a first longitudinal axis,

wherein said hinge body includes a working chamber defining a second longitudinal axis, said working chamber having a plunger sliding therein, the plunger being caused to slide by the cam, along said second longitudinal axis, between a first end-stroke position, corresponding to one of the at least one closing position or the at least one opening position, and a second end-stroke position, corresponding to the other one of the at least one closing position or the at least one opening position,

wherein said working chamber includes a stop element that interacts with said plunger to limit the sliding thereof at said first or said second end-stroke position, so as to correspondingly limit the rotation of the closing element at the at least one closing position or at least one opening position,

wherein the plunger comprises a cylindrical portion and a plate-shaped portion that extends from the cylindrical portion toward the pin,

wherein the plate-shaped portion abuts the cam so that the rotation of the pin causes the sliding of the plunger, and

wherein said plate-shaped portion further includes an elongated slot having a pair of opposite ends, said stop element being inserted through said slot to abut against at least one of said opposite ends as soon as said plunger reaches at least one of said first or said second end stroke positions; and

a spring abutting the cylindrical portion of the plunger, the spring being movable between a minimum compression position and a maximum compression position to act on said plunger,

wherein, when said spring is in said minimum compression position, the closing element is in one of the at least one closing position or the at least one opening position,

wherein, when said spring is in said maximum compression position, the closing element is in the other one of the at least one closing position or the at least one opening position,

wherein said spring, said stop element, and said elongated slot are arranged so that, when said spring is in the maximum compression position, said stop element engages one of the opposite ends of said elongated slot, and when said spring is in the minimum compression position, said stop element engages another one of the opposite ends of said elongated slot,

wherein said plate-shaped portion is integrally coupled to said cylindrical portion,

wherein the rotation of the closing element during opening or closing is hydraulically damped, and

further comprising a working liquid entirely contained in said cylindrical portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2019
From: BACCHETTI, LUCIANO
To: IN & TEC S.R.L.
Reel/Frame 049422/0086 →
Priority Claims (5)
IT 102016000126563 · Dec 15, 2016 · national
IT 102016000126588 · Dec 15, 2016 · national
IT 102016000126612 · Dec 15, 2016 · national
IT 102016000126630 · Dec 15, 2016 · national
IT 102016000126661 · Dec 15, 2016 · national
Continuity (1)
Related Publication 20200115943A1 · Apr 16, 2020
Cited By (2)
US 12,644,327 US 12,687,060