The present disclosure relates to a lock apparatus, and, in particular, relates to a small portable lock apparatus adapted to transform between single cable loop and double cable loop configurations to selectively secure one or more personal articles.
Portable locks are utilized to secure items and/or articles to prevent theft of the internal components therein. For example, one portable lock may be used with luggage to secure the zipper ends to prevent the luggage from being opened during travel. Portable locks may be “key operated” or “combination” locks incorporating combination dials which are selectively rotated to assume a desired combination to release the locking components.
Although generally useful for their intended purposes, these known locks are deficient with regard to their adaptability in accommodating a variety of different sized or arranged articles, and often necessitate the use of multiple locks to appropriately secure the article(s).
Accordingly, the present disclosure is directed to further improvements in portable locks. In general, the lock apparatus of the present disclosure is adaptable to readily transform between a single cable loop configuration or a double cable loop configuration, and incorporates a locking mechanism permitting selective release and securement of one or more cable ends to achieve either configuration. The lock apparatus may secure multiple components particularly, when the double cable loop configuration, thereby removing the need for multiple locks for securing a single article. In one exemplary embodiment, the lock apparatus includes a lock housing defining at least one opening and having a channel extending at least partially therethrough, cable selectively attachable to the lock housing and having a cable end positionable within the at least one opening, and being maneuverable between a first orientation where the cable is disposed external of the channel of the lock housing to define a single loop configuration and a second orientation where the cable extends through the channel to define a double loop configuration, a lock member at least partially disposed within the lock housing and positioned adjacent the at least one opening, and being movable between a secured condition securing the first cable end to thereby retain the cable in either the single loop or double loop configuration, and an unsecured condition releasing the first cable end, and a manually movable member operatively coupled to the lock member and movable to permit movement of the lock member between the secured condition and the unsecured condition.
In another exemplary embodiment, the lock apparatus includes a lock housing defining a first opening and a second opening in opposition to the first opening, and having a channel extending at least partially therethrough, a cable having a first cable end positionable within the first opening and a second cable end positionable within the second opening, and being maneuverable between a first orientation where the cable is disposed external of the channel of the lock housing to define a single loop configuration and a second orientation where the cable extends through the channel to define a double loop configuration, a first lock member positioned adjacent the first opening of the lock housing, a second lock member positioned adjacent the second opening of the lock housing, and a manually movable member operatively coupled to the first lock member and to the second lock member. The manually movable member is movable to permit movement of the first and second lock members between respective secured conditions securing the first and second cable ends relative to the lock housing and respective unsecured conditions permitting release of the first and second cable ends relative to the lock housing.
The manually movable member may be a dial configured for rotational movement about an axis, and being rotatable between a locked position corresponding to the secured condition of each of the first and second lock members and an unlocked position corresponding to the unsecured condition of each of the first and second lock members.
A lock shaft may be disposed within the lock housing. The lock shaft is configured to translate generally along the axis when the dial is in the unlocked position to permit movement of the first lock member from the secured condition to the unsecured condition thereof. A lock gear may be disposed within the lock housing and coaxially arranged about the lock shaft. The lock gear is configured to translate generally along the axis when the dial is in the unlocked position to permit movement of the second lock member from the secured condition to the unsecured condition thereof. The lock shaft and the lock gear include cooperating gear structure which is in general axial alignment when the dial is in the unlocked position to permit translating movement of the lock shaft and the lock gear.
The dial may be engageable with the lock gear whereby rotational movement of the dial causes corresponding rotational movement of the lock gear. At least three individual dials and corresponding first, second and third individual lock gears may be provided. Each of the at least three lock gears including gear structure which is in general axial alignment with the gear structure of the lock shaft when the at least three dials are in the respective unlocked positions thereof.
The first and second lock members may be normally biased to respective secured conditions thereof.
The channel of the lock housing may define a serpentine path configured to facilitate frictional engagement with the cable passing through the channel.
The lock apparatus may include a second cable where the second cable has a length different than a length of the first-mentioned cable.
A method for converting a lock apparatus is disclosed. The method includes providing a lock housing having first and second lock members disposed therein and defining a channel therethrough, securing first and second ends of the cable to the respective first and second lock members whereby the cable defines a single loop configuration, releasing at least one of the first and second cable ends from the respective first or second lock member, passing the cable through the channel of the housing to define a double loop configuration and securing the at least one of the first and second cable ends relative to the first or second lock member with the cable in the double loop configuration. The method may include securing at least one item with the cable in the single loop configuration, or alternatively, securing first and second items within individual loops of the cable in the double loop configuration.
Other features of the present disclosure will be appreciated from the following description of same.
Various embodiments of the present disclosure are described hereinbelow with references to the drawings, wherein:
Referring now to the drawing figures wherein like reference numerals identify similar or like components throughout the several views,
With reference to
With reference to
With particular reference to
With continued reference to
In the secured condition, the first lock 52 (e.g., the lock shelf 56 of the first lock 52) securely engages the first cable end 14a of the cable 14, e.g., a first ball segment 64 of the first cable end 14a. The first ball segment 64 may reside within a correspondingly dimensioned recess 66 within the lock housing 12. The first lock 52 moves at least in an axial direction with respect to the axis “k” to an unsecured condition to release the first ball segment 64 and thus the first cable end 14a of the cable 14.
The second lock 54 also may define a ramp segment 68 and is configured, in the secured condition thereof, to securely engage the second cable end 14b of the cable 14, e.g., a second ball segment 70 of the cable 14. The second ball segment 70 may reside within a correspondingly dimensioned arcuate recess 72 within the lock housing 12. The second lock 54 is positioned adjacent the lower lock gear 28, and also moves in an axial direction with respect to the axis “k” to an unsecured condition thereof to release the second ball segment 70 and thus the second cable end 14b of the cable 14.
In operation, and with reference to
With reference to
With reference to
The use of the lock apparatus 10 will now be discussed. When it is desired to utilize the lock apparatus 10 in a single cable loop configuration, either the first cable end 14a or the second cable end 14b, or both, may be released from the lock housing 12 in the aforedescribed manner, e.g., via rotating the dials 24 to the predefined combination. The cable 14 may then be looped about or within an item such as loops “l” of adjacent zipper heads 100 of a zipper 102 of luggage 104 as depicted in
When it is desired to utilize the lock apparatus 10 in a double loop configuration, the first and second cable ends 14a, 14b are released from the lock housing 12. The cable 14 is then introduced within the channel 20 of the lock housing 12 as depicted in
The lock apparatus 10 may be provided as a kit including at least two cables 14 of different lengths and the lock housing 12 to enhance flexibility for the user. In addition, the predefined combination of the dials 24 may be changed as desired by the user. In particular, with the first and second cable ends 14a, 14b removed from the lock housing 12 and with the lock gears 28 and the lock shaft 26 in the aligned and unlocked orientation, the user may push upwardly on the second lock 54 to displace the lock gears 28 along the axis “k” such that the external teeth 42 of the lock gears 28 are disengaged from the internal teeth 46 of the dials 24. In this position, the dials 24 may be rotated to a desired alpha or numeric combination and the second lock is released permitting the lock gears 28 to return under the influence of the cod spring 50 to their normal position with the new combination intact.
It is further envisioned that one of the first and second cable ends 14a, 14b may be permanently secured to the lock housing 12. For example, the second cable end 14b may be secured through conventional methodologies to the lock housing 12 and the first cable end 14a may be releasably secured to the lock housing 12 via the first lock 52. In this embodiment, the lock gears 28 do not need to translate along the axis “k”. The lock apparatus 10 of this embodiment may be utilized to secure the cable in either the single loop or double loop configuration.
Although the illustrative embodiments of the present disclosure have been described herein with reference to the accompanying drawings, the above description, disclosure, and figures should not be construed as limiting, but merely as exemplifications of particular embodiments. It is to be understood, therefore, that the disclosure is not limited to those precise embodiments, and that various other changes and modifications may be effected therein by one skilled in the art without departing from the scope or spirit of the disclosure.
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Number | Date | Country | |
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20190186174 A1 | Jun 2019 | US |