The present invention pertains generally to tool assemblies and, more particularly, to the construction and assembly of magnetic tools with a releasing device to separate collected ferrous material from the magnetic tool.
Magnetic tools, such as hand tools, ferrous object pickup tools and magnetic sweepers, are widely used for commercial and consumer applications. One popular form of a magnetic hand tool has a magnetic head, which is generally disk shaped, made with speaker magnets in the form of, generally, circular rings. Ferrous steel plates are placed on opposite sides of the disk. The magnetic flux is concentrated in the two plates. The central hole in the, generally, but not limited to, ring-shaped magnet is relatively large, e.g. approximately one third the size of the outer dimensions of the magnet. The magnet is held between upper and lower steel plates, by which the magnet is polarized across the width of the ring between the opposite planar sides. The plates are configured to match the outer dimensions of the magnet, so that the magnet is completely sandwiched between the plates. Assembling the tool requires that the edges of the upper and lower plates be nearly perfectly aligned with the outer perimeter of the magnet and permanently held in this position. A rivet or other fastener is passed through the plates and through a hole in the magnet to keep the assembly tightly stacked together. Because the hole in the magnet is larger than the diameter of the fastener, an alignment insert with guide hole is positioned inside the hole in the magnet to coaxially align the fastener with the upper plate guide hole and the lower plate guide hole.
As the magnetic hand tool was invented and created, it was missing the benefit of a release lever device so that the operator would not be hurt in the removal of the picked up ferrous materials. As such, a release device is part of the assembly by means of a self-adhering or hinged cap with a lip, square or any other shape, to aid in the separation of ferrous material from the magnetic tool by pushing away the cap from the magnetic hand tool using the lip for that purpose.
The present invention overcomes the aforementioned disadvantages of removing ferrous material by hand as it facilitates the easy removal of ferrous materials from the magnetic hand tool by means of a release lever device/cap. By providing a magnetic tool with a self-adhering, using pressure stubs, or hinged release lever device/cap, which can be quickly attached, and which is held in alignment without the use of adhesives, the tool becomes very user friendly to and safer for the operator when it comes to the removal of ferrous material. The magnetic tool assembly includes an alignment insert element, which permanently aligns the magnet with upper and lower plates, eliminating the need for adhesive.
In accordance with one general aspect of the invention, there is provided a generally circular magnet tool assembly having upper and lower generally circular plates on respective opposite planar sides of a circular generally disk-shaped magnet, the magnet having a control opening larger than an outer diameter of a fastener, which passes through the upper and lower plates and the magnet, and an alignment insert element positioned in the central opening in the magnet, an outer dimension of the insert dimensioned to occupy substantially all of the central opening of the magnet, and a through-hole in the insert dimensioned to allow passage of the fastener through the insert after which the release lever device/cap is manually positioned on the bottom of the magnetic assembly by pressure or the use of hinges. The method of assembly includes the steps of:
These and other aspects of the invention are herein described in detail with reference to the accompanying Figures.
As shown in the Figures, the invention is a magnet tool assembly, generally indicated at
The invention is the release device/cap, that is part of the assembly by means of a self-adhering or hinged cap with a lip, square, circular or other shape, to aid in the separation of ferrous material from the magnetic tool by pushing away the cap from the magnetic hand tool by holding the lip for that purpose. The divots make it that the release lever device/cap is held onto the magnetic hand tool assembly. The separation allows for the ferrous material to fall in the drop collection box by ways of gravitational pull.
As shown in the Figures, the invention is a magnetic hand tool assembly
An alignment insert 3 has a shape dimensioned to fit within the opening 13 of the magnet 4, with the insert oriented in a plane parallel with an outer diameter or dimension, which fits closely within the opening 13. The insert 3 is made of a non-ferrous material, which does not interact with the poles flux of the magnet 4. The insert further includes a fastener guide hole 14, which is generally coaxially aligned with the opening 13 in the magnet 4.
An upper plate 2 has a perimeter, which is dimensioned preferably closely similar to the perimeter of the magnet 4, and a centrally disposed fastener guide hole 14, which is generally coaxially aligned with the guide hole 14 of the alignment insert 3 when the perimeter of the upper plate 2 is generally aligned with the perimeter of the magnet 4.
A lower plate 5 is configured similarly to the upper plate 2, and positioned flush against the lower surface of the magnet 4, with the perimeter and fastener guide hole 14 similarly aligned. The fastener 1, such as a rivet or other suitable device, is passed through the respective guide holes 14 of the parts and through the opening of the magnet 4, whereby the assembly of the upper 2 and lower 5 plates and the magnet 4 are held tightly together and in vertical alignment. As further shown
In a related method of assembly of the magnetic hand tool, the alignment insert 3 is placed within the opening 13 of the magnet 4 prior to positioning of the plates 2 and 5 on the opposing planar surfaces of the magnet. Because the outer diameter of the magnet is substantially equal to the inner dimension or diameter of the opening, the insert 3 is generally oriented parallel with the upper and lower surfaces of the magnet, with the fastener guide hole 14 of the insert 3 generally coaxially aligned with the center axis of the opening 13. Therefore, when the perimeters of the upper and lower plates 2 and 5 are aligned with the perimeter of the magnet, the guide holes 14 are aligned with the guide hole of the insert 3, and the fastener 1 can be easily inserted through the assembly. The assembly process is very quick and does not require the use of any adhesive or preparation of parts prior to assembly.
Once the entire magnet assembly is complete, the circular or square cap with divots is positioned by clipping it onto and over the lower planar surface 5 and the lower circular portion of the magnet 4. Once the cap 6 is positioned the entire assembly is ready for the operator to utilize. Although the invention has been described with reference to a particular embodiment, it will be appreciated that the invention is not limited to magnetic hand tool assemblies of this exact shape and configuration, and that in fact the invention pertains to any type of magnetic hand tool assembly with a release device/cap, that is part of the assembly by means of a self-adhering or hinged cap with a lip, square, circular or any other shape, to aid in the separation of ferrous material from the magnetic tool by pushing away the cap from the magnetic hand tool by holding the lip for that purpose. The separation allows for the ferrous material to fall in the drop collection box by ways of gravitational pull.
Number | Name | Date | Kind |
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3384408 | Furzey | May 1968 | A |
4105239 | Akczinski, Sr. | Aug 1978 | A |
4802702 | Bownds | Feb 1989 | A |
6158792 | Snider | Dec 2000 | A |
6669024 | Ottens | Dec 2003 | B2 |
7124617 | Satterlee | Oct 2006 | B2 |
9016739 | Mondano | Apr 2015 | B2 |
Number | Date | Country | |
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20180147697 A1 | May 2018 | US |
Number | Date | Country | |
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62428483 | Nov 2016 | US |