Door hinge
10641027 ยท 2020-05-05
Assignee
Inventors
Cpc classification
E05F5/02
FIXED CONSTRUCTIONS
E06B3/36
FIXED CONSTRUCTIONS
E05D11/06
FIXED CONSTRUCTIONS
International classification
E05F1/08
FIXED CONSTRUCTIONS
E06B3/36
FIXED CONSTRUCTIONS
E05D11/06
FIXED CONSTRUCTIONS
E05F5/02
FIXED CONSTRUCTIONS
Abstract
A door hinge includes a damper attached to a back side of the actuating member, a shaft mounted on the fixing member configured to be movable forward and backward while one end of the shaft is exposed in a direction to the fixing member and moved horizontally backward when contacting with the bumper of the actuating member according to closing of the door, a slide fixed on an upper side of the shaft and moves horizontally backward according to a movement of the shaft, an inclined plane portion provided an upper side of the slide, a platform configured to vertically move up and down on the inclined plane portion of the slide according to the horizontal movement of the slide, and a damper disposed at an upper portion of the platform configured to be pushed up to generate a resistance force to attenuate the closing speed of the door.
Claims
1. A door hinge having a fixing member fixedly mounted on the door frame and an actuating member, connected by a connecting member fixedly installed on the fixing member and a hinge shaft, installed on the door, wherein the actuating member rotates about hinge shaft for opening and closing the door, the door hinge comprising: a bumper attached to a back side of the actuating member; a shaft mounted on the fixing member configured to be movable forward and backward while one end of the shaft is exposed in a direction to the fixing member and moved horizontally backward when contacting with the bumper of the actuating member according to closing of the door; a slide fixed on an upper side of the shaft and moves horizontally backward in accordance with movement of the shaft; an inclined plane portion provided an upper side of the slide; a platform including an inclined bottom portion which is in surface contact with the inclined plane portion of the slide configured to vertically move up and down on the inclined plane portion of the slide according to the horizontal movement of the slide; and a damper disposed at an upper portion of the platform configured to be pushed up to generate a resistance force to attenuate the closing speed of the door while being contacted with the upper portion of the platform by the lifting operation of the platform.
2. The hinge door of claim 1, wherein the hinge door further comprises an elongated hole formed in a central portion of the shaft and a guide roller inserted in the elongated hole configured to guide a backward movement of the shaft.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
BRIEF EXPLANATION OF SYMBOLS
(5) TABLE-US-00001 10: actuating member 20: fixing member 30: damping apparatus 40: bumper 50: shaft 60: slider 70: platform 72: inclined bottom portion 80: damper
BEST MODE
(6) According to aspect(s) of present embodiment, a door hinge having a fixing member fixedly mounted on the door frame and an actuating member, connected by a connecting member fixedly installed on the fixing member and a hinge shaft, installed on the door, wherein the actuating member rotates about hinge shaft for opening and closing the door, the door hinge including: a bumper attached to a back side of the actuating member; a shaft mounted on the fixing member configured to be movable forward and backward while one end of the shaft is exposed in a direction to the fixing member and moved horizontally backward when contacting with the bumper of the actuating member according to closing of the door; a slide fixed on an upper side of the shaft and moves horizontally backward in accordance with movement of the shaft; an inclined plane portion provided an upper side of the slide; a platform including an inclined bottom portion which is in surface contact with the inclined plane portion of the slide configured to vertically move up and down on the inclined plane portion of the slide according to the horizontal movement of the slide; and a damper disposed at an upper portion of the platform configured to be pushed up to generate a resistance force to attenuate the closing speed of the door while being contacted with the upper portion of the platform by the lifting operation of the platform.
DESCRIPTION OF EMBODIMENTS
(7) Hereinafter, the preferred embodiments of the present invention will be described in detail as follows. A representative embodiment of the present invention will be given in the following detailed description for the sake of accomplishing the above specified technical objects of the present invention. The other embodiments available in the present invention are replaced by the description of the present invention.
(8)
(9) As shown in
(10) The door hinge may include a fixing member 20 fixed to a door frame 200 and an actuating member 10 mounted on the door 100, which is connected to the fixing member 20 using a connecting member 22.
(11) The actuating member 10 is mounted on the door 100, connected to the connecting member 22 fixed to the fixing member 20 by the hinge shaft 24 so that the actuating member 10 may open and close the door 100 by way of pivotably rotating about the hinge shaft 24.
(12) A linker (not shown) may be installed in an internal space of the actuating member 10 to open the door 100 stably.
(13) Such the link may include a actuating frame, a rod, and a spring, and the actuating frame, which is installed in the actuating member, slides and pulls the rod to tension the spring while rotating together with the actuating member at the opening and closing action of the door, thereby flexibly supporting the opening operation of the door.
(14) Explanation of such link structure may be omitted because the technology is widely known in the technical field of the door hinge.
(15) In the meantime, the damping apparatus 30 may be installed in the inside of the fixing member 20 to reduce an impact noise by attenuating a closing speed of the door 100 just before closing the door 100. The impact noise may occur when the door is closed with high speed.
(16) The damping apparatus 30 may include a bumper 40, a shaft 50, a slide 60, a platform 70, and a damper 80.
(17) The bumper 40 is fixedly installed at a rear side of the actuating member 10 installed at the door 100 and is directly contacted with the shaft 50 installed at the fixing member 20 to primarily absorb the impact transmitted to the actuating member 10, thereby reducing or preventing a noise.
(18) A pair of stoppers 42 is provided both sides of the bumper 40, wherein the pair of stoppers is combined both sides of the actuating member 10 to fix the bumper 40 to the actuating member 10.
(19) The shaft 50, the slider 60, the platform 70, and the damper 80 are fixedly installed on the fixing member 20 fixed on the door frame 200.
(20) The shaft 50 may include one end of the shaft 50 is partially exposed to a front side of the fixing member 20 and a middle portion of the shaft having an elongated hole 52 with a predetermined length. A guide roller 54 fixed to the fixing member 20 is inserted into the elongated hole of the shaft 50.
(21) The shaft 50 is moved backward together with the slide 60 by the closing pressure of the door 100 while contacting with the damper 40 mounted on the back side of the actuating member 10 according to closing operation of the door 100.
(22) At this time, the guide roller 54 while being inserted in the elongated hole 52 of the shaft 50 may guide a backward movement of the shaft 50.
(23) The slide 60 is installed at the upper end of the shaft 50 and slides to a horizontal direction with the shaft 50 when the shaft moves to the backward with a closing pressure transmitted through the shaft 50 of the door 100.
(24) The inclined bottom portion 72 formed on a lower side of the platform 70 is in surface contact with the inclined plane portion 62 so that the platform 70 can vertically up and down according to the sliding movement of the slide 60.
(25) It is understood that an angle of the inclined plane portion 62 of the slide 60 may be varied according to an aspect of the present invention.
(26) It is also understood that a control of a damper working distance may be easily facilitated through the angle change of inclined plane portion 62.
(27) The platform 70 vertically moves up and down according to the sliding movement of the slide 60 in the horizontal direction and transmits the closing pressure of the door 100 to the damper 80.
(28) The platform 70 may have an inclined bottom portion 72 with a predetermined angle. The platform 70 may transmit a closing pressure of the door 100 to the damper 80 with vertically up and down according to a horizontal direction sliding movement of the slide 60 while the inclined bottom portion 72 in surface contacting with an inclined plane portion 62 formed on the upper side of the slide 60.
(29) A damper 80 is disposed at the upper portion of the platform 70 and generates a resistance force to slow a rotation speed of the door 100 in accordance with the lifting operation of the platform 70.
(30) The damper 80 may include a cylinder 82, a spring installed in the cylinder, and a piston rod 84 which contacts the upper surface of the platform 70 while being exposed to the outside of the cylinder 82, configured to be pushed upwardly according to lifting operation of the platform 70, and generate a resistance force while the spring 86 being compressed.
(31) As described above, the damping apparatus 30 according to aspects of the present invention may not directly transmit the closure pressure of the door 100 to the piston rod 84 of the damper 80 but indirectly transmit to the damper 80 via the shaft 50, the slide 60, and the platform 70. Thus, the damage of the damper 80 can be prevented. In addition, the damper 80 can be used for a long time. Furthermore, the closing speed of the door 100 can be steadily progressed.
(32) Hereinafter, the operation of the damper will be described according to the closing operation of the door according to an aspect of the present invention.
(33) In case of closing the door 100 when it is opened, a user may grasp and push a door handle (not shown), the actuating member 10 mounted on the door 100 is rotating around the hinge shaft 24, thereby closing the door 100.
(34) At this time, the damping apparatus 30 may operate when the door enters between 0 and 20, just before completing closing the door 100, a closing speed of the door 100 is reduced to alleviate an impact and a noise generated while closing the door 100.
(35) That is, if the closing angle of the door 100 begins to enter between 0-20, the bumper 40 of the actuating member 10 mounted on the door 100 may contact the shaft 50 mounted on the fixing member 20, thereby the shaft 50 is moved backward by the closing pressure of the door 100 transmitted to the shaft 50.
(36) Simultaneously, the slide 60 installed at the upper side of the shaft 50 slides in a horizontal direction.
(37) The platform 70 having an inclined bottom portion 72 in surface contact with an inclined side of the slide 60 is vertically moved up and down in accordance with the horizontal movement of the slide 60 and pushes the piston rod 84 of the damper 80 to resist the closing pressure of the door 100, so that the closing operation of the door 100 can be performed gradually.
(38) The closing speed of the door 100 is gradually attenuated after the closing of the door 100 between 0 and 20, thereby alleviating the shock and noise generated in the closing process.
(39) It would be appreciated by a person skilled in the art that numerous variations and/or modifications may be made to the present disclosure as shown in the specific embodiments. The present embodiments are, therefore, to be considered in all respects to be illustrative and not restrictive.
(40) The various embodiments described above can be combined to provide further embodiments. All of the U.S. patents, U.S. patent application publications, U.S. patent applications, foreign patents, foreign patent applications and non-patent publications referred to in this specification and/or listed in the Application Data Sheet are incorporated herein by reference, in their entirety. Aspects of the embodiments can be modified, if necessary to employ concepts of the various patents, applications and publications to provide yet further embodiments.
(41) These and other changes can be made to the embodiments in light of the above-detailed description. In general, in the following claims, the terms used should not be construed to limit the claims to the specific embodiments disclosed in the specification and the claims, but should be construed to include all possible embodiments along with the full scope of equivalents to which such claims are entitled. Accordingly, the claims are not limited by the disclosure.