The present invention relates to a lock having a rotatable auxiliary positioning structure which contains the guide seat and the at least one guiding extension to facilitate the alignment of the first locking assembly with the second locking assembly easily in the rotatable direction, when connecting the lock.
Conventionally, doors are fixed in a building so that users walk into and out of the building, wherein the doors are made of various materials in different sizes and thicknesses, and a conventional lock is mounted on the doors to lock and unlock the doors.
The conventional lock contains two locking assemblies fixed on two sides of the door and locked and unlocked by a key, wherein the locking assembly is a locking knob or a locking core. When connecting the lock, a lock bolt is mounted behind a receiving orifice of the door, and the two locking assemblies are connected by using at least one screw. However, the two locking assemblies are shielded by the door and are not limited when being moved in a rotatable direction, thus trying to connect the two locking assemblies repeatedly. Then, the at least one screw is screwed with one locking assembly via the other locking assembly, thus having troublesome and time-consuming connection. Also, when trying to connect the two locking assemblies repeatedly, the two locking assemblies are damaged by the at least one screw easily.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a lock having a rotatable auxiliary positioning structure which is capable of overcoming the shortcomings of the conventional lock.
To obtain above-mentioned objective, a lock having a rotatable auxiliary positioning structure provided by the present invention is adapted to connect with a latch element which includes a drive orifice, and the lock contains: a first locking assembly and a second locking assembly.
The first locking assembly includes a transmission unit and a guide seat connected on an end of the transmission unit. The guide seat has at least one guiding extension which extends from the guide seat.
The second locking assembly includes a driving element connected with the transmission unit, a connecting position being defined when the first locking assembly and the second locking assembly are connected in a rotatable direction, and the transmission unit and the driving element are rotated in an axial direction.
At least one of the transmission unit and the driving element is rotatably received in and drives the drive orifice of the latch element. The at least one guiding extension is configured to be connected with the latch element and to guide the first locking assembly to be positioned on the connecting position along the rotatable direction opposite to the latch element.
Preferably, a respective one of the at least one guiding extension has a contact face formed on an end of the respective one guiding extension and corresponding to a profile of the latch element, and the respective one guiding extension contacts with the latch element by using the contact face so that the transmission unit is located on the connecting position.
Preferably, the first locking assembly includes a first body configured to drive the transmission unit, and the first body has at least one connection portion formed on an end thereof facing the latch element. The guide seat includes an abutting portion corresponding to the first body and having a coupling portion corresponding to the at least one connection portion, hence the guide seat is connected with the at least one connection portion by using the coupling portion so that the guide seat is connected with the first body.
Preferably, the first body has a first core element, and the abutting portion has an accommodation orifice corresponding to the first core element.
Preferably, the first body includes at least one locking orifice, and the guide seat has at least one positioning orifice defined on the abutting portion and corresponding to the at least one locking orifice. The second locking assembly includes at least one third connecting orifice corresponding to the at least one locking orifice and the at least one positioning orifice, and a defining element is configured to connect with the at least one locking orifice via the at least one third connecting orifice and the at least one positioning orifice when the first locking assembly and the second locking assembly are located on the connecting position.
Preferably, the guide seat further includes a leading element, and the second locking assembly includes a fixer. The fixer has a conducting portion corresponding to the leading element so that the conducting portion is connected with the leading element, when the first locking assembly and the second locking assembly are located on the connecting position.
Preferably, when the leading element is a slide rail, the conducting portion is a slider. When the leading element is a slider, the conducting portion is a slide rail.
Preferably, when the guide seat includes the two guiding extensions, the two guiding extensions are located beside two sides of the leading element.
Preferably, the second locking assembly further includes a locating lid, and the locating lid has at least one joining portion. The driving element is inserted through the locating lid, and the fixer further has at least one securing element corresponding to and connected with the at least one joining portion so that the fixer is connected with the locating lid.
Preferably, the second locking assembly further includes a knob, an end of which the driving element is mounted, and the driving element is inserted through the locating lid to connect with the transmission unit.
Preferably, the fixer further has a fitting portion corresponding to the driving element, the fitting portion has at least one mounting projection facing the knob, and the fitting portion has an affix ring received in the at least one mounting projection and connected with the driving element.
Preferably, the second body includes at least one recessed portion, at least one disposing face formed on an end of the at least one recessed portion, and the fixer has at least one engagement arm configured to abut against the at least one disposing face.
Preferably, the second body includes three recessed portions formed on two sides of a top of the second body and a bottom of the second body, and the at least one engagement arm is columnar.
Preferably, the second body has a second core element, a distal end of which is connected with the driving element, and the fixer further has a passing aperture defined thereon and fitting with the second core element.
Preferably, the transmission unit is intersected with the driving element, and the transmission unit is perpendicular to and is connected with the driving element on the connecting position.
In another embodiment, a lock having a rotatable auxiliary positioning structure is adapted to connect with a latch element which includes a drive orifice, and the lock contains: a first locking assembly and a second locking assembly.
The first locking assembly includes a transmission unit and a guide seat connected on an end of the transmission unit, and the guide seat has at least one guiding extension which extends from the guide seat.
The second locking assembly includes a driving element connected with the transmission unit, a connecting position is defined between the first locking assembly and the second locking assembly in a rotatable direction so that when the first locking assembly and the second locking assembly are connected on the connecting position, the first locking assembly is rotated along the transmission unit and the second locking assembly is rotated along the driving element.
At least one of the transmission unit and the driving element is rotatably received in and drives the drive orifice of the latch element. The at least one guiding extension is configured to be connected with the latch element and to guide the first locking assembly to be positioned along the rotatable direction opposite to the latch element so that the transmission unit is located on the connecting position.
The guide seat further includes a leading element, the second locking assembly includes a fixer, the fixer has a conducting portion corresponding to the leading element, and the leading element and the conducting portion are connected when locating on the connecting position.
The first locking assembly includes a first body, the first body has at least one locking orifice, and the guide seat has at least one positioning orifice defined on the abutting portion and corresponding to the at least one locking orifice, the second locking assembly includes at least one third connecting orifice corresponding to the at least one locking orifice and the at least one positioning orifice. A defining element is configured to connect with the at least one locking orifice via the at least one third connecting orifice, the at least one positioning orifice, and a through hole of the fixer when locating on the connecting position.
Preferably, the second locking assembly further includes a locating lid, and the locating lid has the at least one third connecting orifice and at least one joining portion. The driving element is inserted through the locating lid. The fixer further has at least one securing element corresponding to and connected with the at least one joining portion so that the fixer is connected with the locating lid.
In another embodiment, a lock having a rotatable auxiliary positioning structure is connected with a latch element which includes a drive orifice, and the lock contains: a first locking assembly and a second locking assembly.
The first locking assembly includes a transmission unit and a guide seat connected on an end of the transmission unit. The guide seat has at least one guiding extension which extends from the guide seat.
The second locking assembly includes a driving element connected with the transmission unit, and a connecting position is defined between the first locking assembly and the second locking assembly in a rotatable direction so that when the first locking assembly and the second locking assembly are connected on the connecting position, the first locking assembly is rotated along the transmission unit and the second locking assembly is rotated along the driving element.
At least one of the transmission unit and the driving element is rotatably received in and drives the drive orifice of the latch element. The at least one guiding extension is configured to be connected with the latch element and to guide the first locking assembly to be positioned along the rotatable direction opposite to the latch element so that the transmission unit is located on the connecting position.
The guide seat further includes a leading element, the second locking assembly includes a fixer, the fixer has a conducting portion corresponding to the leading element, and the leading element and the conducting portion are connected when locating on the connecting position.
The first locking assembly includes a first body, and the second locking assembly includes a second body. The second body has at least one recessed portion, at least one disposing face formed on an end of the at least one recessed portion, and the fixer has at least one engagement arm configured to abut against the at least one disposing face.
The first body has at least one locking orifice, and the guide seat has at least one positioning orifice defined on the abutting portion and corresponding to the at least one locking orifice. The second locking assembly includes at least one third connecting orifice corresponding to the at least one locking orifice and the at least one positioning orifice. A defining element is configured to connect with the at least one locking orifice via the at least one third connecting orifice, and the at least one positioning orifice when locating on the connecting position.
Thereby, the lock of the present invention has advantages as follows:
With reference to
At least one of the transmission unit 11 and the driving element 31 is rotatably received in and drives the drive orifice 41 of the latch element 4, wherein the latch element 4 is configured to lock and unlock a lock bolt, and the at least one of the transmission unit 11 and the driving element 31 is rotatably received in the drive orifice 41 to lock and unlock the lock bolt. Since the latch element 4 is a well-known prior art, further remarks are omitted. In one embodiment, the transmission unit 11 is a non-cylindrical rod, and the driving element 31 has a receiving orifice configured to receive and drive the transmission unit 11.
The at least one guiding extension 21 is configured to be connected with the latch element 4 and to guide the transmission unit 11 to locate on the connecting position. In this embodiment, the at least one guiding extension 21 is connected or contacts with the latch element 4 upward. As shown in
The first locking assembly 1 and the second locking assembly 3 are a knob or a lock bore which is arranged outside or in a door (not shown). In this embodiment, the first locking assembly 1 includes a first body 5 having a first core element 51 and is configured to drive the transmission unit 11 and to connect with the guide seat 2, wherein the first body 5 further has at least one connection portion 52 formed on an end thereof facing the latch element 4, and the guide seat 2 includes an abutting portion 22 corresponding to the first body 5 and having a coupling portion 221 corresponding to the at least one connection portion 52, hence the guide seat 2 is connected with the at least one connection portion 52 by using the coupling portion 221 so as to connect with the first body 5. Referring to
As illustrated in
The first body 5 further has at least one locking orifice 54, and the guide seat 2 has at least one positioning orifice 23 defined on the abutting portion 22 corresponding to the at least one locking orifice 54. The second locking assembly 3 includes at least one third connecting orifice 32 corresponding to the at least one locking orifice 54 and the at least one positioning orifice 23. A defining element 6 is configured to connect with the at least one locking orifice 54 via the at least one third connecting orifice 32 and the at least one positioning orifice 23 when the first locking assembly 1 and the second locking assembly 3 are located on the connecting position, wherein the at least one locking orifice 54 is a threaded orifice, and the defining element 6 is a screw. With reference to
Thereby, the lock is connected by using the guide seat 2 easily. For example, the first locking assembly 1 and the second locking assembly 3 are connected, and the defining element 6 is screwed with the first body 5 and the second locking assembly 3 without holding the first locking assembly 1 or the second locking assembly 3. Thus, the guide seat 2 further includes a leading element 24, and the second locking assembly 3 includes a fixer 7, wherein the fixer 7 has a conducting portion 71 corresponding to the leading element 24 so that the conducting portion 71 is connected with the leading element 24 when the first locking assembly 1 and the second locking assembly 3 are located on the connecting position, such that when the first locking assembly 1 is connected with the latch element 4 as shown in
Referring to
The fixer 7 further has a fitting portion 73 corresponding to the driving element 31, wherein the fitting portion 73 has at least one mounting projection 731 facing the knob 34, and the fitting portion 73 has an affix ring 732 received in the at least one mounting projection 731 and connected with the driving element 31, thus fixing the driving element 31 firmly.
To connect the first locking assembly 1, the second locking assembly 3 and the fixer 7, the fixer 7 further has a through hole 74 corresponding to the at least one locking orifice 54, the at least one positioning orifice 23, and the at least one third connecting orifice 32, such that when the first locking assembly 1 and the second locking assembly 3 are connected by the defining element 6 on the connecting position, the defining element 6 is inserted through the through hole 74 to connect the first locking assembly 1, the second locking assembly 3, the fixer 7, and the guide seat 2 securely.
With reference to
The second body 8 has a second core element 83, a distal end of which is connected with the driving element 31, and the fixer 7′ further has a passing aperture 76 defined thereon and fitting with the second core element 83, such that when the fixer 7′ is connected with the second body 8, the fixer 7′ does not interfere with the second core element 83 and the driving element 31. An end of the second body 8 opposite to the latch element 4 is connected with a decoration shell 84 for protecting and decorating the second body 8. The second body 8 further has a casing 85 in which a support portion 86 is mounted, and the support portion 86 has a bottom cover 87 facing the latch element 4, wherein the bottom cover 87, the support portion 86, and the casing 85 have an opening configured to correspond to and connect with the second body 8. Alternatively, the second body 8 is connected with the bottom cover 87, the support portion 86, and the casing 85 the same as the first body 5 of the first embodiment, so further remarks are omitted.
In this embodiment, the transmission unit 11 is intersected with the driving element 31, and the transmission unit 11 is perpendicular to and is connected with the driving element 31 on the connecting position.
To connect the first locking assembly 1 with the second locking assembly 3′, the second body 8 has the at least one third connecting orifice 32 corresponding to the at least one locking orifice 54 and the at least one positioning orifice 23 so that when the first locking assembly 1 and the second locking assembly 3 are located on the connecting position, the first locking assembly 1, the second locking assembly 3, and the guide seat 2 are connected by the defining element 6 securely.
Thereby, the first locking assembly 1 is rotated toward the connecting position arcuately by using the guide seat 2 so as to align and connect with the second locking assembly 3. Likewise, the second locking assemblies 3, 3′ include the fixers 7, 7′ so that the leading element 24 is connected with the conducting portion 71, and the second locking assemblies 3, 3′ are connected with the first locking assembly 1 on the connecting position exactly and easily.
While the preferred embodiments of the invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the invention and other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.
Number | Date | Country | Kind |
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110212616 | Oct 2021 | TW | national |
Number | Name | Date | Kind |
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11306510 | Cheng | Apr 2022 | B2 |
11408197 | Chen | Aug 2022 | B2 |
Number | Date | Country | |
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20230127753 A1 | Apr 2023 | US |