Coffee grinding machine with filter-holder detection system
US-2024065480-A1 · Feb 29, 2024 · US
US10010220B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10010220-B2 |
| Application number | US-201514823374-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 11, 2015 |
| Priority date | Aug 12, 2014 |
| Publication date | Jul 3, 2018 |
| Grant date | Jul 3, 2018 |
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What is described is a new grinder, which serves to grind coffee beans and which is embodied as conical grinder. To improve the grinding process, the grinding cones and/or grinding ring encompass grinding surfaces that may define an angle of inclination, which may be in each case greater than 90° and smaller than 180°, relative to a tool reference plane.
Opening claim text (preview).
The invention claimed is: 1. A grinder, which serves to grind coffee beans, comprising: a grinding cone, which has a number of teeth, which are spaced apart from one another and which are separated from one another by grinding grooves and which in each case encompass a grinding edge and a first grinding surface, which adj oins the grinding edge, a grinding ring, which has a number of teeth, which are spaced apart from one another and which are separated from one another by grinding grooves and which in each case encompass a grinding edge and a second grinding surface, which adjoins the grinding edge, wherein the grinding cone and the grinding ring are arranged coaxially along a common axis of rotation by forming a grinding slit, which extends between the grinding cone and the grinding ring, wherein the grinding cone and the grinding ring are configured to be rotated relative to one another about the common axis of rotation, so that, in response to a rotation of the grinding cone relative to the grinding ring, each first grinding surface of the grinding cone is in each case moved in a grinding direction relative to the grinding ring, so as to transport the coffee beans, which are to be ground, from an entrance slit of the grinder in the grinding grooves of the grinding cone and of the grinding ring through the grinding slit to an exit slit, which is arranged below the entrance slit, and to comminute them by means of the first grinding surfaces of the grinding cone, wherein each first grinding surface is arranged such that it defines one of the grinding grooves of the grinding cone at a rear side of the respective grinding groove relative to the grinding direction, wherein each of the first grinding surfaces of the grinding cone encompasses an angle of inclination φ at an arbitrary point at the respective first grinding surface, relative to a tool reference plane, measured at an assumed working plane in the grinding direction of the respective first grinding surface, wherein the tool reference plane is a plane in the arbitrary point, which is embodied parallel to the grinding direction and parallel to the common axis of rotation, and wherein the assumed working plane is a plane, which is oriented orthogonally to the axis of rotation and parallel to the grinding direction, through the arbitrary point, wherein the angle of inclination φ of at least one of the first grinding surfaces of the grinding cone fulfills the following condition: 90°<φ<180°. 2. The grinder according to claim 1 , wherein the number of the teeth of the grinding cone and/or of the grinding ring is arranged so as to be distributed evenly across its respective circumference. 3. The grinder according to claim 1 , wherein the grinding cone and/or the grinding ring encompasses a number of teeth, which differs from one another. 4. The grinder according to claim 1 , wherein the number of the teeth of the grinding cone and/or of the grinding ring increases from the entrance slit of the respective grinder to the exit slit thereof. 5. The grinder according to claim 1 , wherein the height of the teeth of the grinding cone and/or of the grinding ring decreases from the entrance slit of the respective grinder to the exit slit thereof. 6. The grinder according to claim 1 , wherein the angles of inclination φ of the grinding cone and/or of the grinding ring differ from one another. 7. The grinder according to claim 1 , wherein the teeth of the grinding cone and/or of the grinding ring are in each case arranged spirally in the direction of the axis. 8. The grinder according to claim 7 , wherein the teeth of the grinding cone and/or of the grinding ring are in each case arranged as logarithmic spiral in the direction of the axis. 9. A coffee machine comprising a grinder according to claim 1 . 10. A grinder, which serves to grind coffee beans, comprising: a grinding cone, which has a number of teeth, which are spaced apart from one another and which are separated from one another by grinding grooves and which in each case encompass a grinding edge and a first grinding surface, which adjoins the grinding edge, a grinding ring, which has a number of teeth, which are spaced apart from one another and which are separated from one another by grinding grooves and which in each case encompass a grinding edge and a second grinding surface, which adjoins the grinding edge, wherein the grinding cone and the grinding ring are arranged coaxially along a common axis of rotation by forming a grinding slit, which extends between the grinding cone and the grinding ring, wherein the grinding cone and the grinding ring are configured to be rotated relative to one another about the common axis of rotation, so that, in response to a rotation of the grinding ring relative to the grinding cone, each second grinding surface of the grinding ring is in each case moved in a grinding direction relative to the grinding cone, so as to transport the coffee beans, which are to be ground, from an entrance slit of the grinder in the grinding grooves of the grinding cone and of the grinding ring through the grinding slit to an exit slit, which is arranged below the entrance slit, and to comminute them by means of the second grinding surfaces of the grinding ring, wherein each second grinding surface is arranged such that it defines one of the grinding grooves of the grinding ring at a rear side of the respective grinding groove relative to the grinding direction, wherein each of the second grinding surfaces of the grinding ring encompasses an angle of inclination φ at an arbitrary point at the respective second grinding surface, relative to a tool reference plane, measured at an assumed working plane in the grinding direction of the respective second grinding surface, wherein the tool reference plane is a plane in the arbitrary point, which is embodied parallel to the grinding direction and parallel to the axis of rotation, and wherein the assumed working plane is a plane, which is oriented orthogonally to the axis of rotation and parallel to the grinding direction, through the arbitrary point, wherein the angle of inclination φ of at least one of the second grinding surfaces of the grinding ring fulfills the following condition: 90°<φ<180°. 11. The grinder according to claim 10 , wherein the number of the teeth of the grinding cone and/or of the grinding ring is arranged so as to be distributed evenly across its respective circumference. 12. The grinder according to claim 10 , wherein the grinding cone and/or the grinding ring encompasses a number of teeth, which differs from one another. 13. The grinder according to claim 10 , wherein the number of the teeth of the grinding cone and/or of the grinding ring increases from the entrance slit of the respective grinder to the exit slit thereof. 14. The grinder according to claim 10 , wherein the height of the teeth of the grinding cone and/or of the grinding ring decreases from the entrance slit of the respective grinder to the exit slit thereof. 15. The grinder according to claim 10 , wherein the angles of inclination φ of the grinding cone and/or of the grinding ring differ from one another. 16. The grinder according to claim 10 , wherein the teeth of the grinding cone and/or of the grinding ring are in each case arranged spirally in the direction of the axis. 17. The grinder according to claim 16 , wherein the teeth of the grinding cone and/or of the grinding ring are in each case arranged as logarithmic spiral in the direction of the axis. 18. A coffee machine comprising a g
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