The present invention relates generally to an under hood service tray used for holding mechanics tools during work on an automobile. More particularly, the present application involves an under hood service tray capable of being positioned at locations convenient for a mechanic during work under a raised hood of the automobile.
Work on an automobile requires the use of a variety of different mechanic tools. A service garage may maintain tools in a storage location thus forcing the mechanic to travel from a working location of the automobile to the storage location in order to retrieve the necessary tools. This task consumes both time and labor of the mechanic and thus reduces efficiency of the servicing procedure and leads to increased costs. It is therefore the case that tool trays are sometimes used to hold necessary tools at a more convenient location for the mechanic next to the work area to save labor and time.
One such tool tray includes a bracket on the bottom that is capable of being mounted onto the neck of an automobile radiator. The mechanic removes the radiator cap, fastens the bracket to the exposed neck which positions the tool tray at a location convenient for the mechanic when working under the hood of the automobile. Other such tool trays are adapted to be attached to a tie plate hood element located between the grille and radiator of the automobile. Once attached, the tool tray holds mechanics tools at a location that is convenient for the mechanic during a repair or servicing procedure. Although suitable for their intended purposes, such tool trays are difficult to carry from one location to the next, require labor and time to effect attachment of the tool tray to the vehicle, and may not be capable of being connected to different makes and models of vehicles.
Another such tool tray includes a tray that can be attached to and removed from a vertical support member that is affixed to a base. The tray can hold mechanics tools and can be removed from the vertical support member and placed onto the same surface as the automobile. The tray includes a number of castors thereon so that a mechanic working under the automobile can position the tray next to himself or herself to easily access the tools. Alternatively, when the vehicle is elevated by a hydraulic lift the tray can be reattached to the vertical support member which can be adjusted to the necessary height. The mechanics tools in the tray are then likewise located at a convenient position for access by the mechanic. Although capable of working for its intended purpose, such a tool tray due to its design cannot be positioned at various locations with respect to the automobile for ease of access when the mechanic is standing on the ground and working under the hood of the automobile. As such, there remains room for variation and improvement in the art.
A full and enabling disclosure of the present invention, including the best mode thereof, directed to one of ordinary skill in the art, is set forth more particularly in the remainder of the specification, which makes reference to the appended Figs. in which:
Repeat use of reference characters in the present specification and drawings is intended to represent the same or analogous features or elements of the invention.
Reference will now be made in detail to embodiments of the invention, one or more examples of which are illustrated in the drawings. Each example is provided by way of explanation of the invention, and not meant as a limitation of the invention. For example, features illustrated or described as part of one embodiment can be used with another embodiment to yield still a third embodiment. It is intended that the present invention include these and other modifications and variations.
It is to be understood that the ranges mentioned herein include all ranges located within the prescribed range. As such, all ranges mentioned herein include all sub-ranges included in the mentioned ranges. For instance, a range from 100-200 also includes ranges from 110-150, 170-190, and 153-162. Further, all limits mentioned herein include all other limits included in the mentioned limits. For instance, a limit of up to 7 also includes a limit of up to 5, up to 3, and up to 4.5.
The present invention provides for an under hood service tray 10 used for holding mechanic tools 96 during servicing or repair of components in an engine compartment 80 of an automobile 76 by a mechanic. A tray 18 is included that is capable of holding a plurality of mechanic tools 96 and is supported by a vertical member 16. The tray 18 is not capable of being removed from the vertical member 16 and the height of the vertical member 16 can be adjusted so as to adjust the height of the tray 18. A base 12 that features a plurality of castors 14 that render the base mobile supports the vertical member 16. The base 12 is configured to define an opening 68 into which a tire 74 of the automobile 76 can be positioned. In this manner, the under hood service tray 10 can be more conveniently located with respect to the engine compartment 80 to hold mechanic tools 96 in a location for the mechanic so as to reduce labor and time necessary in performing the desired servicing or repair.
With reference now to both
Slip resistant material 44 can be included on the upper surface 42 in order to inhibit the sliding or movement of mechanic tools 96 located on the tray 18. The slip resistant material 44 may be a material that has a higher coefficient of friction than other portions of the tray 18 such as the walls 46, 48, 50 or 52. In this regard, the slip resistant material 44 may be made of a material such as rubber or plastic while other portions of the tray 18 are made of a metal such as steel or aluminum. As shown, the slip resistant material 44 is located within compartments 26, 28, 30, 32, 34, 36 and 38 and is not located within compartment 24. However, the slip resistant material 44 may be located within all or none of the compartments of the tray 18 in accordance with different exemplary embodiments. Additionally, the slip resistant material 44 may be located on the outside surfaces of the tray 18 such as on the outside surfaces of the walls 46, 48, 50 and 52. Placement of the slip resistant material 44 at these locations of the tray 18 may act as a guard against marring or scratching of the automobile 76 that would otherwise occur upon contact of the automobile 76 by harder or sharper portions of the tray 18.
The compartments may be provided so that compartment 32 that is located in the middle of the tray 18 is the largest compartment. Three smaller compartments 26, 28 and 30 may be located rearward of compartment 32 for the storage of smaller mechanic tools 96, and three smaller compartments 34, 36 and 38 may be located forward of compartment 32 for holding smaller mechanic tools 96. However, it is to be understood that the compartments can be variously sized and configured in accordance with other exemplary embodiments.
A plurality of apertures 40 are disposed through the tray 18 and are located in compartment 24. The apertures 40 can be used to hold various mechanic tools 96 such as pneumatic wrenches or drills. The apertures 40 may be located at the compartment 24 proximate to the rear wall 48 so that cords extending from mechanic tools 96 located in the apertures 40 are less likely to interfere with servicing or repair of the automobile 76 since they are located more remote from the automobile 76 during use of the tray 10. Although shown as being generally flat in shape, the upper surface 42 may include recesses or other features in accordance with other exemplary embodiments that may function to more securely hold mechanic tools 96 as desired. The upper surface 42 of tray 10 can be located a distance from 3 feet to 6 feet, from 3 feet to 4 feet, from 4 feet to 5 feet, from 5 feet to 6 feet, or from 2 feet to 4 feet from the base 12 or the surface 82 onto which the tray 10 rests. In other embodiments, the upper surface 42 may be located up to 4 feet, up to 5 feet, or up to 6 feet from the base 12 or the surface 82 onto which the tray 10 rests.
The tray 18 includes a pair of reinforcing members 56 and 58 that can be more easily seen with reference to
The vertical member 16 may be a fixed member so that its height is not capable of being adjusted. In accordance with other exemplary embodiments, the vertical member 16 may be capable of being adjusted so that its height, and consequently the height of the tray 16, can be varied as desired. Modification of the height of the vertical member 16 may allow the tray 18 to be located at a height that is more convenient for the mechanic. The vertical member 16 may be a telescoping member such that portions of the vertical member 16 nest within one another. The user may pull the innermost portion of the vertical member 16 upwards or downwards to a desired location, and a retaining pin 60 can be inserted therethrough in order to fix the height of the vertical member 16. The user can subsequently remove the retaining pin 60 should a readjustment of the height of the vertical member 16 be desired. The vertical member 16 may be arranged in a variety of manners so as to be rendered adjustable in the vertical direction. In accordance with one exemplary embodiment, the vertical member 16 may have a crank mechanism that can be actuated by the user so as to effect raising and lowering of the vertical member 16. In yet other exemplary embodiments, the vertical member 16 may include a hydraulic component that can be actuated by the user so as to effect an adjustment in the vertical direction.
The base 12 of the under hood service tray 10 is shown with reference to
The laterally extending leg 66 can be positioned in the base 12 so that it is not located at the longitudinal midpoint 70 of the longitudinally extending leg 62 or at the longitudinal midpoint 72 of the longitudinally extending leg 64. In this regard, the laterally extending leg 66 is located towards the rearward ends of the longitudinally extending legs 62 and 64. Laterally extending leg 66 can be attached to longitudinally extending legs 62 and 64 by way of bolts, screws, various mechanical fasteners or welding. In further exemplary embodiments, the laterally extending leg 66 may be integrally formed with the longitudinally extending legs 62 and 64. The base 12 may be arranged so that up to 25% of the length of the longitudinally extending legs 62 and 64 is located on one side of the laterally extending leg 66. In accordance with other exemplary embodiments, up to 5%, up to 10%, up to 15%, or up to 20% of the length of the longitudinally extending legs 62 and 64 may be located on one side of the laterally extending leg 66. The longitudinally extending legs 62 and 64 in addition to the laterally extending leg 66 may define an opening 68 on one end of the base 12. Opening 68 has an open front end and may not include material within the perimeter defined by the longitudinally extending legs 62 and 64 and the laterally extending leg 66 up to the tray 18. The opening 68 may have a width 98 of 12 inches in accordance with one exemplary embodiment. In accordance with other exemplary embodiments, the width 98 may be from 6 inches to 10 inches, from 10 inches to 15 inches, from 15 inches to 20 inches, or up to 36 inches. Opening 68 may have a length 100 that is 24 inches. In accordance with other exemplary embodiments, length 100 may be from 12 inches to 18 inches, from 18 inches to 24 inches, from 24 inches to 36 inches, or up to 48 inches. It is to be understood, however, that the disclosed widths 98 and lengths 100 are only exemplary and that others are possible in accordance with other exemplary embodiments of the under hood service tray 10.
With reference now to
Longitudinally extending leg 62 may be made out of steel or aluminum in accordance with certain exemplary embodiments. Portions 84, 86 and 88 may have a square tubular cross-sectional shape that are of the same size in accordance with certain exemplary embodiments. In yet other embodiments, the cross-sectional shape of the second portion 86 may be larger than the cross-sectional shape of the first portion 84.
Longitudinally extending leg 64 may be provided with a first portion 90, second portion 92, and an intermediate portion 94 that functions to connect the first portion 90 and second portion 92. The portions 90, 92 and 94 in addition to the longitudinally extending leg 64 may be arranged and provided in a manner similar to those disclosed with respect to portions 84, 86 and 88 and leg 62 as discussed above and a repeat of this information is not necessary.
The second portions 86 and 92 may be located at a height above that of the first portions 84 and 90 to effect a design of base 12 that is stronger towards the rear end thereof due to the positioning of the vertical member 16 and tray 18 thereto. The intermediate portions 88 and 94 are angled downwards from the second portions 86 and 92 to further strengthen the base 12 as a stronger load bearing portion of the base is located on one side of the intermediate portions 88 and 94.
Castors 14 are provided on base 12 and are attached to the longitudinally extending legs 62 and 64. A pair of castors 14 are located proximate to opposite ends of the longitudinally extending leg 62, and a pair of castors 14 are located proximate to the opposite ends of the longitudinally extending leg 64. The sizes of the castors 14 and their load bearing rating need not be identical. Elevation of the second portions 86 and 92 above the first portions 84 and 90 dictate that the circumference of the castors 14 attached to the second portions 86 and 92 be larger than the circumference of castors 14 attached to the first portions 84 and 90. The load bearing capacity of the castors 14 attached to the second portions 86 and 92 may be greater than that of those attached to the first portions 84 and 90 as these castors 14 are more closely positioned to the vertical member 16 and may hold more of the weight of the vertical member 16, tray 18 and carried mechanic tools 96. However, it is to be understood that in other exemplary embodiments the load bearing capacity and the size of all of the castors 14 of the under hood service tray 10 may be identical.
The exemplary embodiment illustrated in
The first portions 84 and 90 may be located a distance 106 from one another that can be 12 inches, from 12 inches to 18 inches, from 18 inches to 24 inches, or up to 36 inches in accordance with certain exemplary embodiments. Second portions 86 and 92 can be located a closer distance 108 that is less than the distance 106. Distance 108 may be up to 12 inches, up to 18 inches, or up to 24 inches in accordance with various exemplary embodiments. Distance 106 may be selected so that it is greater than the width of the tray 18 located along the same longitudinal length as the first portions 84 and 90. Distance 108 may be selected so that it is less than or equal to the width of the tray 18 that is along the same longitudinal length as the second portions 86 and 92.
The intermediate portions 88 and 94 extend in the lateral direction but not in the vertical direction so that all of the portions 84, 86, 90 and 92 are located at the same vertical height. In this arrangement, all of the castors 14 are identical to one another with respect to their circumference. However, castors 14 located closer to the vertical member 16 may have a higher load bearing capacity than the other castors 14 of the under hood service tray 10.
While the present invention has been described in connection with certain preferred embodiments, it is to be understood that the subject matter encompassed by way of the present invention is not to be limited to those specific embodiments. On the contrary, it is intended for the subject matter of the invention to include all alternatives, modifications and equivalents as can be included within the spirit and scope of the following claims.
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Number | Date | Country | |
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20110056898 A1 | Mar 2011 | US |