1. Field of the Invention
This invention relates to the field of covers for tool handles, and more particularly, this invention relates to the field of sliding and rotating tool handle covers whereby the cover cooperatively interacts with user-selected features of the handle.
2. Background of the Invention
There are numerous patents disclosing tool handles with a telescopic implement such as a magnetic wand stored therein. Often such handles are intended to enable a multiplicity of functions. For example, U.S. Pat. No. 6,435,065, awarded to the instant inventor, provides a means for simultaneously accessing all tool bits displayed and stored in a tool handle.
However, there are instances where it is desired that not all bits be accessible simultaneously. For example, electrically isolating ferrous-based bits stored in a handle is desirous to minimize arcing, particularly in situations where electricians are using the tool. Such a handle would be combined with a cover to allow certain tasks while protecting implements stored in the handle. For example, the cover should provide access and to a selected bit while the other bits are shielded. The cover would also provide access to certain portions of the handle while keeping other portions out of sight.
An object of this invention is to provide a combination of an implement-storing tool-handle with a sliding cover therefor that overcomes deficiencies in the prior art.
Another object of this invention is to provide a combination of an implement-storing tool-handle with a sliding cover therefor to selectively provide access to all regions of the handle. A feature of this invention is apertures in the cover allowing use of a nut-setter and extension of a telescopic implement such as a magnetic wand from the heel of the handle at all times, but retrieval of a specific bit only when the cover is in a specific pre-determined position. An advantage of this invention is that while the telescopic implement and the nut-setter can be used at all times, bits stored in the heel or elsewhere in the handle are not accessible so as to not be accidentally dislodged, dropped and/or lost.
A further object of the present invention is to provide means to give selective access to a wide array of certain drill bits stored in the heel of the handle, while also providing means to retain other bits in place. A feature of this invention is that a cover for an implement-storing tool-handle will hold drill bits in fixed positions during use of the tool. An advantage of the invention is that the tool may be used in environments where a wide array of different bits is required, but also where lost bits or exposed bits would pose a hazard due to the presence of moving parts or electric voltage.
Yet another object of the present invention is to provide a cover for an implement-holding heel of a tool handle where the heel contains apertures for bits yet bits do not protrude from the heel of the handle during use. A feature of this invention is that the cover includes springing means attached to the heel of the tool handle or the cover of the tool handle that allows the cover to adjust axially in relation to the longitudinal axis of the handle, in response to applied pressure. An advantage of the present invention is that weight may be applied to the cover of the tool handle without coming in contact with the possibly sharp edges of the bits stored in the tool handle. An additional advantage of the present invention is that the implements stored in the heel of the tool handle are easily removed from the tool handle because upon removal of the spring-loaded cover the implements protrude from the tool handle.
An additional object of the invention is to provide a cover for an implement-storing tool-handle where the heel of the tool handle allows the position of the cover to be changed without complete removal of the cover. A feature of the present invention is that the heel of the tool handle is divided in two regions, wherein a cross section of a first, distal, or a topmost region of the handle is cylindrical while a cross section of second, proximal or lower region of the handle is hexagonal or of another shape that allows for torque to be applied through the cover to the tool handle without slipping. An advantage of the invention is that in order to move the cover to a different position the cover need not be removed completely. In the present invention, in order to move the cover to a new position, the cover which is in slidable communication with the handle, is moved up from the hexagonal second region into the cylindrical first region where it can be rotated freely.
Yet another object of the present invention is to prevent the loss of the cover by allowing the cover to be adjusted over a wide gamut of positions while providing means to prevent the complete removal of the cover from the heel of the tool-handle. A feature of the present invention is that the cover is attached to the heel of the tool handle using springing means. An advantage of the present invention is that the cover may be moved and its position adjusted, but the cover cannot be misplaced as the springing means prevent the cover's complete removal from the heel of the tool-handle.
Thus the present invention provides a combination of an implement-storing tool-handle and a sliding cover therefor where the implement-storing tool-handle heel comprises one or more first apertures in the cover conformed to allow extension of a telescopic implement such as a pick-up magnetic wand stored in the handle heel when the cover is in any of one or more first predetermined positions. The sliding cover for the implement-storing tool-handle heel may further comprise one or more second apertures in the cover conformed to allow retrieval of a bit stored in the handle only when the cover is in any of one or more second predetermined positions, where the second predetermined positions coincide with one or more of the first predetermined positions. The sliding cover also comprises a third aperture allowing uninterrupted access to a nut-setter socket formed as an integral part of the heel of the tool handle.
In brief, the present invention provides a combination of an implement-storing tool-handle and a sliding cover therefor where a number of implements are stored in the heel of the tool handle.
The foregoing and other objects, aspects and advantages of this invention will be better understood from the following detailed description of the preferred embodiments of the invention with reference to the drawing, in which:
The present invention provides a combination of an implement-storing tool-handle and a sliding cover therefor where a telescopic implement such as a magnetic wand is stored in the tool handle. A preferred embodiment of the cover both slidably communicates with an underlying handle (whereby the cover extends and slides along a longitudinal axis of the handle), while simultaneously being in rotatable communication with the handle (whereby the cover rotates about the periphery of the handle.
In one embodiment, this invention provides a combination of an implement-storing tool-handle and a sliding cover therefor that allows selective access to bits stored in the handle heel simultaneously with immediate access to a telescopic implement such as a magnetic pick-up wand also stored in the handle heel. For the sake of specificity the telescopic implement would be referred to as a magnetic pick-up wand throughout the remainder of this application.
In an exemplary embodiment of the present invention the sliding cover contains a region defining an aperture that allows retrieval of a bit only when the cover is in a specific position. The heel of the cover allowing extension of the pick-up wand regardless of what bit is also exposed. The invented handle cover may also include an aperture allowing continuous use of a nut-setter socket formed in the heel of the tool handle.
A first embodiment of the invented combination of an implement-storing tool-handle and a sliding cover is shown in
In another embodiment (not shown), the body of the cover 15 and of the tool handle 25 feature a shape other than a cylindrical shape. It should be appreciated that the body of the cover 15 and tool handle 25 can be of any shape so long as the shapes facilitate sliding communication between the cover 10 and the longitudinally extending side periphery wall 28 of the tool handle 25. For instance, in one embodiment, the tool handle 25 can be of hexagonal shape and the cover 10 is of complementary hexagonal shape to sliding communication with the outer wall 28 of the tool handle 25.
Turning now to
In an embodiment of the present invention, both a distal or top portion of the side periphery 28 of the heel of the handle 25 and the inner wall 18 of the cover 10 are of cylindrical shape. In this embodiment the handle cover 10 is pulled distally a short distance away from the top surface of the heel of the handle 25 and then rotated until a desired bit 35 is facing a second aperture 38 while a magnetic wand 39 is facing a first aperture 33.
An inwardly directed surface of the handle-heel overlaying surface of the cover 10 is in opposition to the surface of the heel of the handle 25. This inwardly directed surface is adapted to removably attach a first end of a spring, while a second end of the spring is removably attached to the heel of the handle 25. As such, the springs are positioned intermediate the inwardly directed surface and the handle heel. Fully compressed, the springs provide support of the inwardly directed surface such that a head space is formed between the heel of the handle 25 and the inwardly directed surface. This enables the tips of the stored wands and bits 35 to remain below the top surface 30 of the cover 10 when the tool handle 25 is grasped. As bits 35 remain below surface 30, pressure can be applied on the top surface 30 of the cover 10 without coming in contact with the potentially sharp end points of tool bits 35.
In an embodiment of the invention as shown, the handle-heel top surface 30 of the cover is depicted as generally flat. However, other topographies, such as convex topographies are envisioned to accommodate over-long hardware protruding past the head-space allowance discussed supra.
Fully extended, the springs provide a retracting mechanism so as to spring bias the cover, pulled in a distal direction along the longitudinal axis of the handle, back to a fully nested position upon release of the distally-directed pressure.
Further, in another embodiment of the invention spring-like elements 53 are attached to the flat surface of the tool handle 25. In an alternative embodiment, the spring-elements 53 are attached to the inner wall 18 of the cover body 15 instead. In this alternative embodiment, the spring elements do not obscure access to tool bits 35 when the cover 10 is removed from the top region of the heel of the tool handle 25.
In yet another embodiment of the invention (not shown), one spring-like element 53 is connected to both the top region of the heel of the to handle 25 and also to the inner wall 18 of the body 15 of the cover 10. The spring-like element 53 is attached so as to be permanently fixed to the top surface of the tool handle 25. However, it is attached to a channel in the inner wall 18 of the cover 10 so as to allow the top of the spring-like element 53 to rotate. In this embodiment, the spring-like element 53 allows rotation of the cover 10 by allowing the cover 10 to be lifted off of the heel of the handle 25. However, the spring-like element 53 prevents complete removal of the cover 10 from the handle 25. As such, the spring-like element allows the movement of the cover 10 while preventing loss of said cover.
It should be appreciated that spring-like means 53 may be comprised of any compressible material such as metal as a traditional spring. However, the spring-like means 53 could also be comprised of material such as plastic, rubber, or even fabric that is capable of returning to a predefined shape following a stretching of the material.
Another embodiment is depicted in
The cooperation of the flutes 29 and protrusions 58 of the tool handle 25 with the ridges 19 of the cover 10 of one embodiment are depicted in detail in
In an alternative embodiment of the invention (not shown), the six of the first apertures on top of the cover and all of the second apertures on top of the cover are evenly distributed on circumference of a single circle whose center is point α. In this alternative design, for a specific cover/handle orientation, the first implement remains accessible regardless of the position of the cover. However, only as many of the second implements are accessible as there are second apertures. In this alternative embodiment, it is possible to arrange the cover such that the first implement is always accessible, while the second implements are kept in place by the cover.
A variety of materials are suitable for fabrication of the invented handle cover. A transparent plastic material is most suitable. In addition to its use in conjunction with the tool handle described herein, the invented handle cover can be used in conjunction with a myriad of presently available tool handles.
The present invention is a combination of an implement-storing tool-handle and a sliding cover for a heel of the tool handle comprising a tool-handle comprising means for storing one or more first implements in the heel of the handle; and a sliding cover for said heel comprising one or more first apertures in the cover each conformed to allow access to a first implement stored in the heel.
While the inventions has been described in the foregoing with reference to details of the illustrated embodiments, these details are not intended to limit the scope of the invention as defined in the appended claims.
The present application claims the benefit of U.S. Provisional Application Ser. No. 60/822,587 filed on Aug. 18, 2006.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US2007/018429 | 8/20/2007 | WO | 00 | 4/14/2008 |
Publishing Document | Publishing Date | Country | Kind |
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WO2008/021508 | 2/21/2008 | WO | A |
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