The disclosure relates to an electric door lock, and more particularly to a reversible electric door lock adapted for a left-hand door and a right-hand door.
Referring to
With the internal and external cam members 121, 122 respectively coupled with the internal and external handles 141, 142 to rotate in a fixed rotational direction, the conventional electric door lock cannot be applied to both a left-hand door and a right-hand door, which results in inconvenience to use.
Therefore, an object of the disclosure is to provide a reversible electric door lock that can alleviate at least one of the drawbacks of the prior art.
According to the disclosure, the reversible electric door lock includes a housing unit, a clutch unit, a dead bolt unit, a handle unit and an electric driving unit. The housing unit has first and second base plates spaced apart from each other in an axial direction to define a receiving space therebetween, and a lock plate disposed normal to the first and second base plates and interconnecting lateral sides of the first and second base plates. The first and second base plates respectively have first and second through holes which are aligned with each other in the axial direction. The lock plate has a bolt hole. The clutch unit has an external driving member which is disposed in the receiving space and rotatable relative to the housing unit about an axis that extends through the first and second through holes and in the axial direction and which has two mounting sides that are opposite to each other along the axis, two driving plates which are respectively mounted on the mounting sides of the external driving member and each of which has a pivot portion that is rotatably disposed in a respective one of the first and second through holes, and an internal driving member which is disposed in and rotatable relative to the external driving member about the axis. Each of the driving plates has an external spline hole which extends therethrough along the axis. The internal driving member has an internal spline hole which extends therethrough along the axis and which has a cross-section less than that of the external spline hole. The clutch unit further has a clutch pin which is disposed in and movable radially relative to the external driving member between an engaged position, where the clutch pin is engaged with the internal driving member so as to allow synchronous rotation of the external driving member with the internal driving member, and a disengaged position, where the clutch pin is disengaged from the internal driving member so as to allow an idle rotation of the internal driving member relative to the external driving member. The dead bolt unit has a dead bolt member which is disposed in the receiving space and movable through the bolt hole, and a transmitting module which is disposed to transmit a torque generated as a result of rotation of the external driving member to move the dead bolt member. The handle unit includes an internal operating handle and an external operating handle. The internal operating handle has an internal driving section which is configured to be in spline engagement with the external spline hole of one of the driving plates so as to rotate the one of the driving plates about the axis, and an operating section which is connected with the internal driving section to be manually operable. The external operating handle has an external driving section which is configured to extend through the external spline hole of the other one of the driving plates and to be in spline engagement with the internal spline hole of the internal driving member so as to rotate the internal driving member about the axis, and an operating section which is connected with the external driving section to be manually operable. The electric driving unit has a motor which is disposed in the receiving space, and an actuating member which is driven by the motor to actuate movement of the clutch pin between the engaged and disengaged positions.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
The housing unit 2 has first and second base plates 21, 22 spaced apart from each other in an axial direction to define a receiving space 20 therebetween, and a lock plate 23 disposed normal to the first and second base plates 21, 22 and interconnecting lateral sides of the first and second base plates 21, 22. The first and second base plates 21, 22 respectively have first and second through holes 211, 221 which are aligned with each other in the axial direction. The lock plate having a bolt hole 231. Specifically, the first base plate 21 has a first inner circular wall 212 which surrounds an axis (L) in the axial direction to define the first through hole 211, and a first recessed portion 213 which is recessed radially from the first inner circular wall 212 and which extends around the axis (L) to terminate at two stop ends. The second base plate 22 has a second inner circular wall 222 which surrounds the axis (L) to define the second through hole 221, and a second recessed portion 223 which is recessed radially from the second inner circular wall 222 and which extends around the axis (L) to terminate at two stop ends. The first and second recessed portions 213, 223 are aligned with each other in the axial direction.
With reference to
The external driving member 31 has a surrounding wall 312 which is disposed between the mounting sides 310 and which surrounds the axis (L) to define an accommodation space 311 therein, two driving protrusions 313 which extend radially and outwardly from the surrounding wall 312 and which are angularly spaced apart from each other, and two engaging pins 314 which are telescopically disposed on the mounting sides 310, respectively, in the axial direction. The surrounding wall 312 has a communicating hole 315 extending radially to communicate the receiving space 20 with the accommodation space 311.
Each of the driving plates 32 is disposed to be adjustable relative to the external driving member 31 in a circumferential direction around the axis (L), and has a mounting portion 321 which is opposite to the pivot portion 322 in the axial direction and which is mounted on the respective mounting side 310 of the external driving member 31. Each driving plate 32 has an external spline hole 323 extending through the mounting and pivot portions 321, 322 along the axis (L), a limit portion 324 extending radially and outwardly from the pivot portion 322, and two adjusting holes 325 spaced apart from each other in the circumferential direction.
The pivot portion 322 of each driving plate 32 is rotatably and fittingly inserted into a respective one of the first and second inner circular walls 212, 222 to orient the rotation of the driving plate 32 about the axis (L) such that the limit portion 324 is slidable in a respective one of the first and second recessed portions 213, 223 between the stop ends. Each of the engaging pins 314 is telescopically engaged in a selected one of the adjusting holes 325 of the respective driving plate 32 so as to position the respective driving plate 32 to the external driving member 31. Hence, the rotatable angle of the external driving member 31 is predetermined and limited.
With reference to
The clutch unit 30 further has a spring-biased clutch pin 34 which is disposed in and movable radially relative to the communicating hole 315 of the external driving member 31. The clutch pin 34 has a pin end movable in the moving channel 35 to be inserted into the connecting hole 332 for placing the clutch pin 34 in an engaged position, where the clutch pin 34 is engaged with the internal driving member 33 so as to allow synchronous rotation of the external driving member 31 with the internal driving member 33, and to be retreated in the communicating hole 315 for placing the clutch pin 34 in a disengaged position, where the clutch pin 34 is disengaged from the internal driving member 33 so as to allow an idle rotation of the internal driving member 33 relative to the external driving member 31.
With reference to
Referring to
The electric driving unit 6 has a motor 61 which is disposed in the receiving space 20, and an actuating member 62 which is driven by the motor 61 to actuate the movement of the clutch pin 34 between the engaged and disengaged positions.
With reference to
With reference to
In the same state, when the external operating handle 52 is operated to rotate the internal driving member 33, an idle rotation of the internal driving member 33 is made relative to the external driving member 31 such that the external driving member 31, the transmitting module 42 and the dead bolt member 41 are not driven to prevent opening door from the exterior of the door panel.
With reference to
The operation of the motor 61 can be controlled and actuated in a variety of manners, such as by an external connection lock, a wireless electric lock, etc. Since the motor 61 is of a known type, a detailed description thereof is dispensed with herein.
When it is desired to assemble the electric door lock of the embodiment to a door panel with a different opening side (e.g. the electric door lock of the embodiment is to be removed from a left-hand door to a right-hand door), the internal operating handle 51 and the external operating handle 52 are exchanged in their positions to keep the internal operating handle 51 at the interior of the door panel, and the external operating handle 52 at the exterior of the door panel. Additionally, the engaging pins 314 of the external driving member 31 can be adjusted to be engaged in the selected adjusting holes 325 of the driving plates 32 so as to vary the operating direction of the internal and external operating handles 51, 52. Thus, the reversible electric door lock can be applied to different door panels, such as a left-hand door and a right-hand door.
As illustrated, with the clutch unit 3 having the internal driving member 33 coupled with one driving plate 32 to rotate the external driving member 31, the external operating handle 52 coupled with the internal driving member 33, and the clutch pin 34 movable between the engaged position to allow the synchronous rotation of the internal and external driving members 33, 31, and the disengaged position to allow the idle rotation of the internal driving member 33 relative to the external driving member 31, the positions of the internal and external operating handles 51, 52 can be exchanged to reverse the assembling direction of the electric door lock so as to render the electric door lock suitable for different door panels.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.