The present invention relates generally to floor jacks and, more particularly, to floor jacks having a tool kit.
A jack is a device for lifting a heavy object and has the properties of easy moving and operation, so the jack is widely used in various industries, and vehicle maintenance in particular. Therefore, almost each vehicle is prepared for a jack.
The underlining reason to lift a vehicle is enable a mechanic to inspect or fix components of the vehicle. To do so, tools are often required. Thus, the user must first raise the vehicle with the jack. Then, find the appropriate tools from a tool kit, carrying those tools underneath the vehicle. When a vehicle is in a remote location, the user must bring both the floor jack and separate tool kit.
Briefly, and in general terms, the invention provides a floor jack having integrated tool kit having a jack body and a tool kit assembly disposed on the jack body for housing tools. The tool kit assembly includes a storage assembly configured to house a plurality of tools such as a socket wrench and a plurality of sockets such that they are exposed and readily assessable for use.
More specifically, by way of example and not limitation, the tool kit assembly is pivotally mounted to a first sidewall of the jack body. The storage housing defines a plurality of recesses configured each configured to receive a single wrench socket. The assembly can further include a plurality of wrench sockets. The storage housing is further configured to receive the socket wrench in a conforming recess via snap-fit configuration.
In a detailed aspect of an exemplary embodiment, the a floor jack having integrated tool kit can include a first tool kit assembly mounted on a first side wall of the jack body and a second tool kit assembly mounted on a second side wall of the jack body. In such configurations, the first tool kit assembly can include metric-sized sockets, and the second tool kit assembly can include inch-sized (SAE) sockets.
In yet another detailed aspect of an exemplary embodiment, the tool kit assembly, (or assemblies) is configured to be attached to the sidewall of the jack body in a removable manner and is pivotally attached. In this manner, the assembly can pivot away from the sidewall to facilitate access to the tools. For example, the assembly can include attachments located a bottom portion of a tool housing that interfaces with attachments on the sidewall of the jack body.
The upper end of the tool kit assembly can include a deflectable portion configured to couple to the jack assembly to maintain the tool kit in an upright orientation. For example, the floor jack can include a handle pivotally attached to the jack body. The deflectable portion can couple to the pivot attachment of the handle.
For purposes of summarizing the invention and the advantages achieved over the prior art, certain advantages of the invention have been described herein. Of course, it is to be understood that not necessarily all such advantages may be achieved in accordance with any particular embodiment of the invention. Thus, for example, those skilled in the art will recognize that the invention may be embodied or carried out in a manner that achieves or optimizes one advantage or group of advantages as taught herein without necessarily achieving other advantages as may be taught or suggested herein.
All of these embodiments are intended to be within the scope of the invention herein disclosed. These and other embodiments of the present invention will become readily apparent to those skilled in the art from the following detailed description of the preferred embodiments having reference to the attached figures, the invention not being limited to any particular preferred embodiment disclosed.
Embodiments of the present invention will now be described, by way of example only, with reference to the following drawings in which:
Referring now to the drawings, and particularly
The body 12 includes a front portion 22, an intermediate region 24, and an end portion 26. The body comprises first and second sidewalls 16, 20 spaced apart from each other. A lift arm 28 is coupled to the body. The lift arm has a first end 30 pivotally coupled to the intermediate region of the body and a second end 32 proximate to the front portion. The floor jack further includes a top plate 34 coupled to the second end of the lift arm. The top plate configured to engage a lifting location of an object to be lifted. In the exemplary embodiment, the top plate is configured to engage a lifting location of an automobile; however, in other embodiments the top plate can be configured in various other forms to lift other objects such as a motorcycle via, e.g., spaced apart parallel bars such as those commonly known in the art.
A hydraulic system 36 of the floor jack is housed within the body and configured to raise the lift arm. The hydraulic system is operated by the driving head 38, which is pivotally coupled to the end portion 26 of the body. In use, an engaging portion of a driving lever (not shown) is inserted into an aperture of the driving head to operate a hydraulic system.
The tool assemblies 14, 18 house at least one wrench socket 40. In the exemplary embodiment, the tool assemblies each include a storage housing 13, 15 coupled a corresponding sidewall (16, 20) of the body. The first tool kit assembly includes metric-sized sockets 45, and the second tool kit assembly includes inch-sized (SAE) sockets 47. In this manner, a user has convenient access to wrench sockets commonly used. The storage bodies define a plurality of recesses (41), each configured to receive a single wrench socket of a prescribed size. In the exemplary embodiment, recesses are disposed along an upper edge of the storage bodies.
The floor jack 10 further includes a handle 42 attached to the sidewalls 16, 20 in the intermediate region 24 of the body via pivot attachments 44. The upper edges 46 of the storage bodies include deflectable portions 48 configured to engage the pivot attachments 44 in snap fit arrangement and a detachable manner to maintain the storage bodies in an upright configuration, which can be generally flush with the sidewalls. The deflectable portions are disposed in a curved portion 50 of the upper edge sized to conform to the pivot attachments. The curved portion is located between recesses 41 of the storage housing. The pivot attachments 44 define an annular lip 58 (
A front wall 52, 53 of each storage housing 13, 15 is configured to receive a plurality of tools, such as a wrench 54 and an extender 56. In the exemplary embodiment, the front walls include a plurality of opposing arms 77, 79 (
With reference now to
With reference to
The floor jack 10 further includes a pair of wheels 70 at the front portion 22 of the body, with an axle extending therebetween. Two caster wheels 72 are positioned in the end portion 26 of the body, attached to extensions from the sidewalls. The storage bodies 13, 15 are sized to be disposed between the front wheels 70 and the caster wheels 72.
Although the invention has been disclosed in detail with reference only to the exemplary embodiments, those skilled in the art will appreciate that various other embodiments can be provided without departing from the scope of the invention. Accordingly, the invention is defined only by the claims set forth below.
This application claims priority to U.S. Application No. 61/302,075, filed Feb. 5, 2010, which is herein incorporated by reference.
Number | Date | Country | |
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61302075 | Feb 2010 | US |