The invention pertains to the general field of socket driving tools, and more particularly to a socket driving tool having a drive shaft that has attached a pair of sockets that can be arranged to provide four different fastener cavities.
In numerous trades, it is often necessary to install and remove fasteners such as hex head fasteners in rapid succession. Adding difficulty is the fact that the fasteners must often be inserted and removed while a person is in an awkward position, such as when the person is on a roof or ladder. Various tools exist in the prior art for driving hex head fasteners. However, these tools are often limiting and encumbering, are designed to accommodate a single size or type of hex fastener, do not have a magnetic tip, and are typically only hand-driven. Therefore, at present, tradesmen must purchase and carry many different tools to perform various jobs. This situation increases the risk of being injured while performing the jobs as well as increasing the time to complete each job.
The socket driving tool of the instant invention eliminates the deficiencies present in prior art tools by producing a tool that: uses two sockets that are retained on a tool drive shaft and that can be arranged to provide four different fastener cavities, includes a magnetic tip that allows a fastener to be held while inserting or removing a fastener, and allows a fastener to be inserted or removed quickly and easily with only one hand.
A search of the prior art did not disclose any literature or U.S. patents that read directly on the claims of the instant invention. However, the following U.S. patents are considered related:
The U.S. Pat. No. 6,354,175 patent discloses a tool for driving headed fasteners that includes an opening that is defined by a wall of the tool. The wall has a plurality of flat planar surfaces that are connected at the ends of each planar surface to define the opening. Each connection surface includes a convex surface that is continuous with the planar surface, and a concave surface that is continuous with the convex surface. The convex and concave surfaces define arcs having the same radius.
The U.S. Pat. No. 6,330,844 patent discloses a self-contained multi-use tool for tightening or loosening a range of screws, nuts and bolts. The tool consists of various screw bits and an adapter that includes a holder and a nut driver set. All the tool elements fit together in a decreasing order and can be stored on the back or inside of the handle. Each socket head is dimensioned to allow threaded bolts or rods of the associated nuts to extend through.
The U.S. Pat. No. 5,048,379 patent discloses a multi-functional, double-ended socket wrench. The wrench is designed to accept an English or metric sized nut and bolt engaging means on one socket cavity and the closest English or metric sized nut engaging means in an opposite socket cavity. Both cavities are designed to engage and rotate hexagonal nuts attached on bolt studs.
For background purposes and as indicative of the art to which the invention relates, reference may be made to the following remaining patents found in the search:
The socket driving tool disclosed herein is designed to utilized in combination with a chuck that is attached to an electric drill or that is attached to a handle. In its basic design configuration, the socket driving tool is comprised of a drive shaft and a pair of sockets.
The drive shaft is further comprised of a polygon cross-section that preferably consists of a hexagon cross-section, a first end, a rear end, a magnet that is attached to the first end of the drive shaft, a socket stop, and a detent located between the first end and the socket stop. The magnet allows a fastener to be held at the front end of the drive shaft during the insertion or the removal of a fastener.
The pair of sockets are comprised of a first socket and a second socket. Each of the sockets has a hexagonal shaft bore and two different fastener cavities. The socket pair is designed to be arranged on the drive shaft in four different configurations. The four different configurations provide four fastener gripping diameters that allow four different fastener diameters to be tightened or loosened by the socket driving tool.
In view of the above disclosure, the primary object of the invention is to provide a socket driving tool that includes a drive shaft with two sockets attached thereto. The two sockets can be arranged on the drive shaft to provide four different fastener gripping diameters.
In addition to the primary object of the invention it is also an object of the invention to provide a socket driving tool that:
These and other objects and advantages of the present invention will become apparent from the subsequent detailed description of the preferred embodiment and the appended claims taken in conjunction with the accompanying drawings.
The best mode for carrying out the invention is presented in terms of a preferred embodiment for a socket driving tool which utilizes a drive shaft that is inserted into a pair of sockets or the socket pair can be inserted into the drive shaft as herein described.
The sockets can be arranged on the drive shaft to allow four fasteners having different diameters to be tightened or loosened. The preferred embodiment of the socket driving tool 10, as shown in
The drive shaft 12, as shown in
The disc magnet 20, as shown in
The drive shaft 12, as shown in
As shown in
The socket pair 50 are comprised of a first socket 52 and a second socket 54. A typical preferred socket design, which applies to both the first and second sockets 52, 54, is shown in the cross-sectional side view in
The typical preferred socket, as shown in
The typical preferred socket also includes a detent 78 located on the drive shaft bore 76. The detent 78 is dimensioned and aligned with the detent 46 located on the drive shaft 12. Also, to facilitate the insertion of a fastener 90 into a socket, the inner edge of the first end 58 and the inner edge of the second end 70 have a radiused edge 80.
Additionally, the first fastener cavity 62 and the second fastener cavity 72 are color coded 82 to indicate to a user the gripping diameter of the first and second fastener cavities 62, 72.
The basic inventive concept of the socket driving tool 10 is that by having a socket pair 50 consisting of a first socket 52 and a second socket 54, four fasteners 90 having different diameters can be tightened or loosened. A typical fastener 90 consisting of a hexagon bolt, is shown in
To use the socket driving tool 10, two sockets 52, 54 are inserted into the drive shaft 12. Several socket dimensions with various fastener cavities can be utilized that read within the scope of the claims. However, for purpose of example and explanation, a first socket 52, as shown in
The four fastener gripping diameters, as shown in
The socket driving tool 10, which is shown fully assembled in
While the invention has been described in detail and pictorially shown in the accompanying drawings it is not to be limited to such details, since many changes and modifications may be made to the invention without departing from the spirit and the scope thereof. Hence, it is described to cover any and all modifications and forms which may come within the language and scope of the claims.
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