Polishing composition, method for producing same, and magnetic polishing method
US-2019119523-A1 · Apr 25, 2019 · US
US10632585B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10632585-B2 |
| Application number | US-201615568494-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 22, 2016 |
| Priority date | Apr 23, 2015 |
| Publication date | Apr 28, 2020 |
| Grant date | Apr 28, 2020 |
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Various examples are provided for hybrid tools including fixed-abrasive and loose-abrasive phases. In one example, a hybrid tool for finishing an internal surface of a workpiece includes a metallic rod and magnetic abrasive bonded to one or more defined portions of the metallic rod by an adhesive that dissolves when n contact with a lubricant used to finish the internal surface of the workpiece. In another example, a method for finishing an internal surface of a workpiece includes mounting the workpiece in a chuck of a lathe; positioning a hybrid tool inside an internal cavity of the workpiece using one or more pole-tips; providing an amount of the lubricant to the internal cavity; and rotating the workpiece with the lathe while controlling positioning of the hybrid tool inside the internal cavity using the one or more pole-types.
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Therefore, at least the following is claimed: 1. A hybrid tool for finishing an internal surface of a workpiece, the hybrid tool comprising: a metallic rod; and magnetic abrasive bonded to a plurality of defined portions of the metallic rod by an adhesive that dissolves when in contact with a lubricant used to finish the internal surface of the workpiece, where the magnetic abrasive bonded to the plurality of defined portions of the metallic rod is separated by one or more heat treated portions of the metallic rod. 2. The hybrid tool of claim 1 , wherein the magnetic abrasive transitions between a fixed-abrasive phase to a loose-abrasive phase based upon an amount of the adhesive that bonds the magnetic abrasive to the metallic rod. 3. The hybrid tool of claim 1 , wherein the magnetic abrasive comprises magnetic particles and magnetic abrasive grains. 4. The hybrid tool of claim 3 , wherein the magnetic abrasive comprises iron and the magnetic abrasive grains comprise alumina. 5. The hybrid tool of claim 4 , wherein a diameter of the magnetic particles is in a range from about 150 μm to about 700 μm. 6. The hybrid tool of claim 4 , wherein the abrasive particles have a mean diameter of about 10 μm or less. 7. The hybrid tool of claim 1 , wherein the adhesive is a water-soluble polyvinyl acetate based glue. 8. The hybrid tool of claim 1 , wherein the adhesive is a wax. 9. The hybrid tool of claim 1 , wherein the lubricant is water, a water-soluble liquid, or a non-water-soluble liquid. 10. The hybrid tool of claim 1 , wherein the workpiece is a needle. 11. A method for finishing an internal surface of a workpiece, the method comprising: mounting the workpiece in a chuck of a lathe; positioning a hybrid tool inside an internal cavity of the workpiece using one or more pole-tips, the hybrid tool comprising magnetic abrasive bonded to one or more defined portions of a metallic rod by an adhesive that dissolves when in contact with a lubricant used to finish a surface of the internal cavity; providing an amount of the lubricant to the internal cavity; and rotating the workpiece with the lathe while controlling positioning of the hybrid tool inside the internal cavity using the one or more pole-tips. 12. The method of claim 11 , wherein the hybrid tool transitions between a fixed-abrasive phase to a loose-abrasive phase based upon an amount of the adhesive that bonds the magnetic abrasive to the metallic rod. 13. The method of claim 11 , comprising providing an additional amount of the lubricant to the internal cavity after a predefined period of time. 14. The method of claim 13 , wherein the hybrid tool transitions between a fixed-abrasive phase to a loose-abrasive phase after the predefined period of time.
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