The invention relates to a lock for a trailer hitch, and more specifically to a keyless trailer ball lock.
Automobile trailers are secured to the back of vehicles by connecting to a trailer ball hitch located on a receiver bar. The trailer hitch coupler locks around the trailer ball hitch thereby securing the trailer for towing and preventing the theft of the trailer. Conventional trailer locks, however, either do not provide a means for securing the trailer ball hitch or do not provide a means that secures the trailer ball hitch in an anti-theft manner. For example, many of the conventional trailer ball hitches are locked with conventional padlocks. Once the padlock is removed, the trailer ball hitch can be removed thereby allowing the trailer to be stolen.
Therefore, it is desirable to provide a lock that can secure a trailer ball hitch to prevent theft. It is further desirable to provide such a lock that be economically manufactured.
A lock assembly for securing a trailer and a lock for securing a ball hitch are provided. The lock includes a housing portion that secures the threaded portion of the ball hitch and prevents removal of the ball hitch.
In one embodiment, the lock assembly includes a ball hitch, a lock body, a lock washer and a nut. The nut is threaded onto the threaded portion of the ball hitch and the lock body prevents the nut from rotating.
In one embodiment the lock includes a two side members and one cross-bar member that intersects the side members. The cross-bar member has a hole for receiving the threaded member of a ball hitch. The lock further includes a first recess, formed by the side members and the cross-bar member, which receives a portion of a vehicle receiver bar. In one embodiment, the lock includes a second recess, formed the side members and the cross-bar member, which receives a lock washer. The lock further includes two surfaces which are dimensioned to engage a nut placed on the end of a threaded member of a ball hitch. The engagement of the nut by the lock surfaces prevents the rotation of the nut and the removal of the ball hitch.
The trailer hitch lock of the present invention may be more readily understood by reference to the following drawings. While certain embodiments are shown as illustrative examples of the tool lock, the scope of this application should not be construed as limited to these illustrative examples.
The present invention is a lock assembly, generally referenced as 10, including a trailer hitch lock 20, a ball hitch 30, a lock washer 40 and a nut 42. The ball hitch 30 and the trailer hitch lock 20 engage one end of a vehicle receiver 46.
The trailer hitch lock 20, as best shown in
The trailer ball hitch 30 can be a variety of known trailer ball hitches providing it includes a ball portion 79 and a threaded portion 78. The ball portion 79 is engaged by the trailer coupler 80 and locked into such engagement by a trailer coupler lock (not shown). Preferably, the trailer ball hitch 30 has at least one drive surface that is not accessible when the trailer coupler 80 is engaged. In the embodiment shown is
To engage the lock assembly 10, the lock washer 40 is inserted into the recess 70 and the nut 42 is place between the interlocking surfaces 68 and both the lock washer 40 and the nut 42 are aligned with hole 74. Trailer hitch lock 20 is then positioned by sliding the sliding recess 65 around the vehicle receiver 46 and aligning the trailer hitch lock hole 74 with the receiver hole 88. The threaded portion 78 of the ball hitch 30 is placed through holes 74 and 88 and then driven through nut 42 preferably using drive surfaces 82 or 84. When a trailer coupler 80, with a trailer coupler lock, is secured to the ball portion 79 of the ball hitch 30, the trailer ball hitch 30 cannot be removed since the drive surfaces 82 and 84 are covered by the trailer coupler 80 and the nut 42 is engaged by the trailer hitch lock 20.
As shown in
In another embodiment, the lock washer 40 and nut 42 are replaced by a threaded hole in the bottom of the trailer hitch lock 20. This embodiment has less components than other embodiments, however, it does not take advantage of the joint pre-load that the lock washer 40 maintains during vibration of the lock assembly 10. In order to provide a similar joint pre-load, this embodiment may include a thread patch or insert into the threaded joint.
It should be appreciated that the lock assembly 10 may have different configurations and different designs and that such designs are apart of the invention as they are provided for within the scope of the claims.
This application is a continuation of U.S. patent application Ser. No. 10/209,291 filed Jul. 30, 2002, which claims priority to U.S. Provisional Patent Application Ser. No. 60/308,643, filed Jul. 30, 2001.
Number | Date | Country | |
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60308643 | Jul 2001 | US |
Number | Date | Country | |
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Parent | 10209291 | Jul 2002 | US |
Child | 11020831 | Dec 2004 | US |