Lock body
11214982 ยท 2022-01-04
Assignee
Inventors
Cpc classification
E05B2015/0437
FIXED CONSTRUCTIONS
Y10T292/0999
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E05B55/00
FIXED CONSTRUCTIONS
Y10T292/0969
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E05B53/00
FIXED CONSTRUCTIONS
E05B65/1086
FIXED CONSTRUCTIONS
Y10T292/0977
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
E05B53/00
FIXED CONSTRUCTIONS
E05C1/12
FIXED CONSTRUCTIONS
E05B55/00
FIXED CONSTRUCTIONS
Abstract
The parts forming the force transmission connection from the spindle shaft of the handle of the lock body to the bolt include a spring, which is also arranged to transfer force. The spring is used to eliminate the protrusion of the bolt caused by tolerance variations, when the handle installed into the lock body is turned to its extreme position to open the door.
Claims
1. A lock body comprising: a body; a bolt, positioned in the body; a spindle shaft of a handle, positioned in the body; a driver positioned on the spindle shaft of the handle; a follower positioned on the driver and pivotable with respect to the spindle shaft of the handle; a force transmission linkage configured to transfer a turning force applied to the spindle shaft of the handle through the follower to the bolt to move the bolt linearly inside the lock body, said parts forming a force transmission connection from the spindle shaft of the handle to the bolt, the force transmission connection comprising freedom of action among its parts; a biased spring configured to transfer said turning force to the bolt, through which the turning force applied to the spindle shaft of the handle is arranged to transfer to the bolt, and which spring is arranged to bias further if the bolt is moved inside the lock body, and there remains travel distance of the follower towards the pivoted position of the follower; and a limiter part configured to limit linear movement of the bolt inside the lock body without limiting the travel distance of the follower, wherein the bolt comprises a borehole, into which the spring is positioned, and which spring is a coil spring, and into which borehole is also partially positioned a pin surrounded by the spring, the first end of which pin has an outer flange, which pin is part of the force transmission linkage, and the outer flange of its first end is in connection with an end of the spring, and the another end of which spring abuts the rear part of the bolt.
2. The lock body according to claim 1, wherein the other end of the pin also has an outer flange, which is arranged into a force transmission connection with the rest of the force transmission linkage.
3. The lock body according to claim 2, wherein force transmission linkage comprises a rocker arm, which is in a force transmission connection with the outer flange of the other end of the pin, and which rocker arm has a space for the outer flange of the other end of the pin and is arranged to pivot, when the follower moves away from its basic position, and which rocker arm comprises a rear arm, which is arranged to abut a deadbolting support of the lock body, when the follower is in its basic position.
4. The lock body according to claim 3, wherein the rocker arm has a rocker surface, which is curved or comprises at least one curve, and which rocker surface is arranged to abut the rear part of the bolt.
5. The lock body according to claim 4, wherein the end of the rocker arm on the rocker surface side is wide in relation to the rest of the rocker arm.
6. The lock body according to claim 5, wherein the wide end of the rocker arm on the rocker surface side comprises a control surface for other functions of the lock body.
Description
LIST OF FIGURES
(1) In the following, the invention is described in more detail by means of the accompanying figures, in which
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DESCRIPTION OF THE INVENTION
(9)
(10) The handle and the spindle shaft of the handle are in the basic position, when there is no turning force applied to them from the handle to open the locking of the lock body, in order that the door can be opened. In this case, the bolt 2 is protruded in the manner shown in
(11) The force transmission linkage 5 further comprises a biased spring 14, through which a turning force applied to the spindle shaft 3 of the handle is arranged to transfer to the bolt 2. The spring is arranged to bias further if the bolt 2 is moved inside the lock body and there remains travel distance of the follower 4 towards the pivoted position of the follower. The pivoted position of the follower means the position, in which the handle and thus also the spindle of the handle, its axis and the follower are pivoted into the extreme position, i.e. as much as possible, to move the bolt inside the lock body.
(12) As can be observed from
(13) In the example of
(14)
(15) The first end of the pin 16 has an outer flange 16B, and the pin is part of the force transmission linkage 5, and the outer flange 16B of its first end is in connection with the first end of the spring. The other end of the spring 14 abuts the rear part 14A of the bolt. The other end of the pin is in a force transmission connection with the rest of the force transmission linkage 5. The other end of the pin 16 can also have an outer flange 16A, which is arranged into a force transmission connection with the rest of the force transmission linkage 5.
(16) The force transmission linkage 5 of the embodiment of
(17) The pivoting of the rocker arm is significant, as the deadbolting of the bolt can thus be disengaged and respectively engaged. For the purpose of deadbolting, the rocker arm 18 can comprise a rear arm 18B, which is arranged to face towards the deadbolting support 20 in the lock body, when the follower 4 is in its basic position. When one begins to turn the handle from the basic position towards the pivoted position, the rocker arm pivots and the rear arm no longer faces towards the deadbolting support 20. The bolt can, in this case, move inside the lock body.
(18) As it can be noticed from
(19) The rocker arm has a rocker surface 21, which is curved or comprises at least one curve. The rocker surface is arranged to abut the rear part 14A of the bolt. Thus, the rocker arm is able to pivot, when one begins to turn the handle from the basic position such that the spring 14 does not resist the turning or does not resist very much. The end of the rocker arm 18 on the rocker surface side can be wide in relation to the rest of the rocker arm. The wide end of the rocker arm 18 on the rocker surface side can also be used for other functions of the lock body. The wide end can comprise a control surface, for example, for the draw plate 8.
(20) According to the example of the figures, the force transmission connection can comprise a lever 17, which is in a force transmission connection with the follower 4 and arranged into a force transmission connection with the rocker arm 18. A force transmission connection to the rocker arm can be created such that between the lever 17 and the rocker arm 18 is an arm 22, which is pivotally journaled 24, 25 from one end to the lever and from the other end to the arm. The journaling can be a pin, which is positioned into the holes of the arm 22 and the lever/rocker arm.
(21) The follower 4 can be implemented such that it has a control surface 4B, and the lever 17 has a counter surface 17A, which abuts the control surface 4B. The control surface can be, for example, a roll journaled to the follower. The lever 17 comprises a pivoting axis 17C. It is practical to attach the pivoting axis to the body 1.
(22)
(23) If the tolerance variation of the parts comprising the force transmission linkage and the follower is small, the spring 14 compresses relatively slightly. The more tolerance variation, the more the spring compresses. When the bolt has moved inside the lock body, it no longer moves any deeper due to the limiter part 50. It can be stated that, when the bolt abuts the limiter part 50, the more tolerance variation, the more will remain travel distance of the follower 4.
(24) In other words, if the tolerance variation formed somewhere in the lock body unit during force transmission remains smaller, the spring is armed less and if tolerance variation during force transmission is greater, the spring is armed more. Due to the spring 14, 27, the tolerance requirements of the individual force transmission linkage and the follower parts can thus be loosened such that the level of quality of the lock body remains high. The bolt is always inside the lock body when turned inwards and it does not remain protruded. Production is also less expensive.
(25) In light of the examples presented above, it is obvious that the embodiment according to the invention can be achieved by various solutions. The invention can thus be implemented by various embodiments within the scope of the independent claim.