Grinder adaptor assembly
US-9969053-B2 · May 15, 2018 · US
US11458595B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11458595-B2 |
| Application number | US-201816194879-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 19, 2018 |
| Priority date | Nov 19, 2018 |
| Publication date | Oct 4, 2022 |
| Grant date | Oct 4, 2022 |
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A tool driver for a power trowel, the tool driver comprising a combination of a magnetic fastening arrangement and a hook and loop based fastening arrangement for releasably holding an abrasive tool to the tool driver, wherein the magnetic fastening arrangement is configured symmetrically around a rotational center of the tool driver, wherein the hook and loop based fastening arrangement is adapted to provide increased shear strength during abrasive operation of the tool, and wherein the magnetic fastening arrangement is adapted to provide increased pull strength during lifting of the tool driver.
Opening claim text (preview).
The invention claimed is: 1. A tool driver for a power trowel, the tool driver comprising: a magnetic fastening arrangement comprising a tool driver fastening component that is configured to align with an abrasive tool fastening component of a complementary magnetic fastening arrangement of an abrasive tool to cause a first releasable holding of the abrasive tool to the tool driver; and a hook and loop based fastening arrangement configured to engage with a complementary hook and loop based fastening arrangement of the abrasive tool to cause a second releasable holding of the abrasive tool to the tool driver; wherein the magnetic fastening arrangement is configured symmetrically around a rotational center of the tool driver, wherein the hook and loop based fastening arrangement is adapted to provide increased shear strength during abrasive operation of the tool driver, and wherein the magnetic fastening arrangement is adapted to provide increased pull strength during lifting of the tool driver. 2. The tool driver according to claim 1 , wherein the hook and loop based fastening arrangement comprises a material with hooks for holding respective loops on the abrasive tool. 3. The tool driver according to claim 1 , wherein the magnetic fastening arrangement comprises a plurality of magnets arranged symmetrically around a rotational center of the tool driver. 4. The tool driver according to claim 1 , wherein the magnetic fastening arrangement comprises a metal element responsive to a magnetic force from the abrasive tool. 5. The tool driver according to claim 1 , wherein the tool driver comprises centering means for centering the abrasive tool with respect to the rotational center of the tool driver. 6. The tool driver according to claim 1 , having a diameter between 7 and 25 inches. 7. The tool driver according to claim 1 , wherein the hook and loop based fastening arrangement comprises a material with loops for holding respective hooks on the abrasive tool. 8. The tool driver according to claim 7 , wherein the material with loops is a felt-like cloth, a fibrous material, a foam, rubber, and/or a non-synthetic material. 9. An abrasive tool for a power trowel, the abrasive tool comprising: a combination of: a magnetic fastening arrangement comprising an abrasive tool fastening component that is configured to align with a tool driver fastening component of a complementary magnetic fastening arrangement of a tool driver of the power trowel to cause a first releasable holding of the abrasive tool to the tool driver; and a hook and loop based fastening arrangement configured to engage a first side of the abrasive tool with a complementary hook and loop based fastening arrangement of the tool driver to cause a second releasable holding of the abrasive tool to the tool driver, wherein the magnetic fastening arrangement is configured symmetrically around a rotational center of the abrasive tool, wherein the hook and loop based fastening arrangement is adapted to provide increased shear strength during abrasive operation of the abrasive tool, and wherein the magnetic fastening arrangement is adapted to provide increased pull strength during lifting of the abrasive tool. 10. The abrasive tool according to claim 9 , wherein the hook and loop based fastening arrangement comprises a material with hooks for holding respective loops on the tool driver. 11. The abrasive tool according to claim 9 , wherein the magnetic fastening arrangement comprises a plurality of magnets arranged symmetrically around a rotational center of the abrasive tool. 12. The abrasive tool according to claim 9 , wherein the magnetic fastening arrangement comprises a metal element responsive to a magnetic force from the tool driver. 13. The abrasive tool according to claim 9 , wherein the abrasive tool comprises centering means for centering the abrasive tool with respect to a rotational center of the tool driver. 14. The abrasive tool according to claim 9 , having a diameter between 7 and 25 inches. 15. The abrasive tool according to claim 9 , wherein the magnetic fastening arrangement comprises a metal ring having a diameter smaller than an outer diameter of the abrasive tool. 16. The abrasive tool according to claim 9 , wherein the hook and loop based fastening arrangement comprises a material with loops for holding respective hooks on the tool driver. 17. The abrasive tool according to claim 16 , wherein the material with loops is a felt-like cloth, a fibrous material, and/or a non-synthetic material. 18. The abrasive tool according to claim 9 , comprising an abrasive component or compound arranged on a second side of the abrasive tool opposite to the first side. 19. The abrasive tool according to claim 18 , wherein the abrasive component is supported at least partly by a flexible supporting element. 20. An abrasive tool comprising: a fibrous pad including an upper surface, a floor-facing lower surface, and a peripheral surface, the fibrous pad being configured to engage the upper surface with a hook and loop based fastening arrangement of a tool driver of a power trowel to cause a first releasable holding of the abrasive tool to the tool driver; a reinforcement layer attached to the bottom surface of the pad, the reinforcement layer including an internal edge defining a hole therethrough; abrasive disks attached to a floor-facing surface of the reinforcement layer; a central area of the pad being exposed through the hole of the reinforcement layer such that a linear dimension of the central area within the hole is greater than a linear dimension of one side of the reinforcement layer between the hole and a periphery thereof; and a magnetic ring arranged on the upper surface, wherein the magnetic ring has an outer diameter smaller than an outer diameter of the reinforcement layer, the magnetic ring being configured to align with a tool driver fastening component of a magnetic fastening arrangement of the tool driver to cause a second releasable holding of the abrasive tool to the tool driver.
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