Door lock with handle
12180745 ยท 2024-12-31
Assignee
Inventors
Cpc classification
E05B3/003
FIXED CONSTRUCTIONS
E05C1/085
FIXED CONSTRUCTIONS
E05B13/004
FIXED CONSTRUCTIONS
E05B3/065
FIXED CONSTRUCTIONS
E05B63/14
FIXED CONSTRUCTIONS
E05B2001/0076
FIXED CONSTRUCTIONS
E05B63/146
FIXED CONSTRUCTIONS
E05C9/04
FIXED CONSTRUCTIONS
International classification
E05B1/00
FIXED CONSTRUCTIONS
E05B13/00
FIXED CONSTRUCTIONS
E05B3/00
FIXED CONSTRUCTIONS
E05B3/06
FIXED CONSTRUCTIONS
E05B63/04
FIXED CONSTRUCTIONS
E05B63/14
FIXED CONSTRUCTIONS
Abstract
A door lock for a handle, comprises a housing, a rotatable connector inside the housing, a first elastic element and a second elastic element both arranged inside the housing. The rotatable connector is interacted with the handle. The first elastic element is at least configured to provide a restoring force for the handle to return to its origin position when the handle is rotated upward to lock the door, and the second elastic element is configured to provide a restoring force for the handle to return to its origin position when the handle is rotated downward to unlock and open the door, as well as to provide enough resistance to remain handle at its origin position when the handle is released. The door lock is effort-saving for the users to rotate the handle upward, and also adapted for various handles having different weights, to be remained at the origin position when the handle is released.
Claims
1. A door lock with a handle, comprising: a housing; a monolithic rotatable connector inside the housing, the monolithic rotatable connector having a hole adapted to matingly receive a shaft of the handle, the monolithic rotatable connector having a groove extending substantially around the hole, and the monolithic rotatable connector having a protrusion extending radially outwardly beyond the groove; a first elastic element and a second elastic element both mounted inside the housing and both engaging the monolithic rotatable connector, wherein; the first elastic element is installed in the groove on the monolithic rotatable connector so as to extend around the hole and the shaft of the handle; a first end of the first elastic element is stressed against the housing during the upward rotation of the handle and a second end of the first elastic element is stressed against the housing during the downward rotation of the handle; the first elastic element is at least configured to provide a restoring force for the handle to return to its origin position after the handle is released from an upward rotation and after the handle is released from a downward rotation; and the second elastic element is installed offset from the monolithic rotatable connector and is stressed against the protrusion of the monolithic rotatable connector to provide a restoring force for the handle to return to its origin position after the handle is released from the downward rotation, and to provide enough resistance to maintain the handle at its origin position when the handle is released.
2. The door lock according to claim 1, wherein the housing is provided with a block adjacent to the monolithic rotatable connector, and the first end of the first elastic element abuts against one side of the block, while the second end of the first elastic element abuts against an opposite side of the block.
3. The door lock according to claim 2, wherein the first elastic element is in the form of a spring, the monolithic rotatable connector is provided with a first slot and a second slot, wherein the first slot and the second slot are arranged offset from each other and are in communication with the groove respectively; the first end of the first elastic element extending outwardly away from its axis, and the second end of the first elastic element extends outwardly away from its axis, wherein the first end extends across the first slot and abuts against the one side of the block, and the second end extends across the second slot and abuts against the opposite side of the block.
4. The door lock according to claim 1, wherein the second elastic element is in the form of a spring, and the one end of the second elastic element extends towards the monolithic rotatable connector, wherein the one end is stressed against the protrusion.
5. The door lock according to claim 4, wherein the one end of the second elastic element is configured to bend away from the protrusion.
6. The door lock of claim 1 wherein the first and second elastic elements are coil springs.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will be described hereinafter in details with reference to the figures and the embodiments for the sake of better understanding. Any non-substantive, obvious alterations or improvement by the technician of this technical field according to the present invention may be incorporated into ambit of claims of the present invention.
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LIST OF REFERENCE CHARACTERS
(10) 1 Housing 10 Handle 11 Block 2 Rotatable connector 21 Square hole 22 Protrusion 23 Groove for mounting spring 241 First slot 242 Second slot 3 First elastic element/spring 31 First extending end 32 Second extending end 4 Second elastic element/spring 41 Third extending end
DETAILED DESCRIPTION OF THE INVENTION
(11) The present invention will be described hereinafter in details with reference to the figures and the embodiments for the sake of clarity. It should be noted that the embodiments of the present invention and the features in different embodiments may be combined if they have not conflicted each other. Although certain embodiments are described in detail for a better understanding, it should be understood that there may be more embodiments. A various changes and modifications may be obtained by those skilled in the art on the basis of the present invention without creative works and without departing the scope of the appended claims.
(12) The technical terms used herein have the general meanings well understood by those skilled in the art unless otherwise defined. The terms in the description of the present invention have been presented for purposes of illustrating the embodiments, not limiting the present invention.
(13) Referring to
(14) The door lock with handle of this embodiment supplements the second elastic element 4 inside the housing 1 for cooperating with the first elastic element 3. During the operation of the handle 10 for door opening/locking, the first elastic element 3 will restore the handle when the handle was rotated upwardly, and the second elastic element 4 will restore the handle when the handle was rotated downward. The second elastic element 4 can also provide a resistance to the handle when the handle is back to the origin position, preventing the handle from swinging down or sagging due to the weight itself. In this way, even if a heavier replacement handle is substituted for a lighter original handle, in the case that the first elastic element 3 is designed with a typical elastic force, the heavier handle can still remain at the origin position due to the resistance from the second elastic element 4. Thus, the present invention applies to various handles having different weights because the resistance from the second elastic element 4 counteracts the gravity of the handles, regardless of their weights, and allows the handles to be remained at the origin position. As compared with the conventional solution to enhance an elastic force of the reset spring for fitting the handles having different weights, the door lock with handle according to the present invention is more effortless to rotate the handle up with a better operation experience the first elastic element 3 still has a typical elastic force.
(15) Further, as shown in
(16) In this embodiment, on the basis of the above described structure, one end of the first elastic element 3 will be retained by the housing 1 and thereby deform the spring 3 as the handle 10 rotates upward. Thus, the rotatable connector 2 along with the handle can be restored under the restoring force of the first elastic element 3 when the handle is released. During the upward rotation of the handle, for the handle, only the elastic force of the first elastic element 3 and the gravity of the handle need to be overcome by the operator, and the elastic force of the second elastic element 4 is not involved because the second elastic element 4 is not stressed by the rotatable connector 2 and not deformed. Therefore, it is effort-saving for the users to rotate the handle up.
(17) Further, as shown in
(18) In this embodiment, on the basis of the above described structure, the first elastic element 3 will be retained by the housing 1 and thereby be deformed as the handle 10 rotates either upward or downward. During the upward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring force of the first elastic element 3 when the handle is released. During the downward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring forces of the first elastic element 3 and the second elastic element 4 when the handle is released. In this way, the structure is not only effort-saving for the users to rotate the handle up, but also adapt for various handles having different weights, to be remained at the origin position when the handle is released.
(19) Further, as shown in
(20) In this embodiment, on the basis of the above described structure, the first elastic element 3 will be retained by the block 11 and thereby be deformed as the handle 10 rotates either upward or downward. During the upward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring force of the first elastic element 3 when the handle is released. During the downward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring forces of the first elastic element 3 and the second elastic element 4 when the handle is released. In this way, this structure is not only effort-saving for the users to rotate the handle up, but also make the first elastic element 3 and the second elastic element 4 working together to prevent the handle from swinging down from its origin position, e.g. a horizontal direction, when the handle is released (where the first elastic element 3 generates an elastic force that counteracts gravity and the downward weight of the handle, and the second elastic element 4 provide a resistance to the rotatable connector 2), such that the various handles having different weights can be thus remained at the origin position.
(21) Further, as shown in
(22) In this embodiment, on the basis of the above described structure, the first elastic element 3 will be retained by the housing 1 and thereby be deformed as the handle 10 rotates either upward or downward. During the upward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring force of the first elastic element 3 when the handle is released. During the downward rotation of the handle, the rotatable connector 2 along with the handle can be restored under the restoring forces of the first elastic element 3 and the second elastic element 4 when the handle is released. The first elastic element 3 and the second elastic element 4 can work together to prevent the handle from swinging down or sagging from its origin position, e.g., a horizontal direction, when the handle is released or not being actuated, i.e., the handle is at rest in a neutral position. In this way, this structure is not only effort-saving for the users to rotate the handle up, but also adapt for various handles having different weights, to be remained at the origin position when the handle is released.
(23) Further, as shown in
(24) In this embodiment, on the basis of the above described structure, the second elastic element 4 will be stressed by the protrusion 22 and thereby be deformed as the handle rotates downward, thus the rotatable connector 2 along with the handle can be restored under the restoring force of the second elastic element 4 when the handle is released.
(25) Further, as shown in
(26) In this embodiment, on the basis of the above described structure, the third extending end 41 will be stressed by the protrusion 22 and thereby be deformed as the handle 10 rotates downward, thus the rotatable connector 2 along with the handle can be restored under the restoring force of the second elastic element 4 when the handle is released. Meanwhile, the third extending end 41 is stressed against the protrusion 22 and thereby provide a resistance to prevent the rotatable connector 2 from rotating due to the weight of the handle when the handle was released. So, this structure adapts for various handles having different weights, to be remained at the origin position when the handle is released.
(27) Further, as shown in
(28) In this embodiment, on the basis of the above described structure, the elastic property of the third extending end 41 in the second elastic element 4 is strengthened in such manner that the resistance from the second elastic element 4 is greater to counteract the gravity of a heavier handle, therefore the present invention applies to various handles having different weights to be remained at the origin position when the handle is released.
(29) It should be noted that, the rest structure of the door lock with handle according to the present invention may be those disclosed in the cross referenced, co-pending patent applications, and will not be described in detail herein.
(30) The embodiment described hereinbefore is merely preferred embodiment of the present invention and not for purposes of any restrictions or limitations on the invention. It will be apparent that any non-substantive, obvious alterations or improvement by the technician of this technical field according to the present invention may be incorporated into ambit of claims of the present invention.