Blade assembly
US-D783353-S · Apr 11, 2017 · US
US10064520B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10064520-B2 |
| Application number | US-201213261801-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 26, 2012 |
| Priority date | Jul 26, 2011 |
| Publication date | Sep 4, 2018 |
| Grant date | Sep 4, 2018 |
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A blender system includes a container having a rotatable blade assembly therein, a lid covering an open end of the container, and a base with a motorized unit. When the container is coupled with the base, the motorized unit is adapted to drive rotation of the rotatable blade assembly. The lid includes a hinged actuator lever adapted to actuate the motorized unit. A detent extends from the hinged actuator lever and passes through a series of apertures and presses against a slidable actuator shaft disposed in the container and maintained in its position by a spring force, thereby depressing a switch for the motorized unit. A rotatable blade system includes cutting blade(s) and crushing blade(s). The crushing blade extends longitudinally outwardly from a hub. When the hub rotates in a first direction or second direction opposite the first direction, a face of the crushing blade is leading or trailing, respectively.
Opening claim text (preview).
What is claimed is: 1. A blade assembly for a blender, comprising: a hub having a central axis about which the blade assembly rotates; a plurality of cutting blades extending radially outwardly from the hub, each of the plurality of cutting blades having a sharp cutting edge, a blunt spine edge, and a cutting blade face therebetween; at least one crushing blade extending vertically upwardly in a direction parallel to the central axis from the hub, the at least one crushing blade having a first edge, a second edge, and a crushing blade face therebetween; the plurality of cutting blades oriented such that the sharp cutting edge of each cutting blade of the plurality of cutting blades is a leading surface and the blunt spine edge of each cutting blade of the plurality of cutting blades is a trailing surface when the hub rotates in a first direction about the central axis, and the blunt spine edge of each cutting blade of the plurality of cutting blades is the leading surface and the sharp cutting edge of each cutting blade of the plurality of cutting blades is the trailing surface when the hub rotates in a second direction opposite the first direction about the central axis; and the at least one crushing blade oriented such that the crushing blade face is a leading surface when the hub rotates in a first direction about the central axis and a trailing surface when the hub rotates in a second direction about the central axis. 2. The blade assembly of claim 1 , wherein each sharp cutting edge is sharper than each blunt spine edge. 3. The blade assembly of claim 1 , wherein the sharp cutting edge of a first of the plurality of cutting blades has a first radius of curvature and the sharp cutting edge of a second of the plurality of cutting blades has a second radius of curvature, the second radius of curvature being smaller than the first radius of curvature. 4. The blade assembly of claim 3 , wherein the sharp cutting edge of a third of the plurality of cutting blades has a third radius of curvature and the sharp cutting edge of a fourth of the plurality of cutting blades has a fourth radius of curvature, the fourth radius of curvature being smaller than the third radius of curvature. 5. The blade assembly of claim 1 , wherein the blade assembly is operable to crush food products with the leading surface of the at least one crushing blade when the hub rotates about the central axis. 6. The blade assembly of claim 1 , wherein when the hub is rotating in a first direction, the leading surface of at least one of the plurality of cutting blades is the sharp cutting edge and the leading surface of the at least one crushing blade is the crushing blade face. 7. The blade assembly of claim 1 , wherein when the hub is rotating in a first direction the leading surface of at least one of the plurality of cutting blades is the blunt spine edge and the leading surface of the at least one crushing blade is the crushing blade face. 8. A blender system, comprising: a blender container, comprising: a bottom section; and one or more container walls extending upward from the bottom section and defining an interior volume of space forming a work chamber for processing one or more food products, the one or more walls terminating at a top section opposite the bottom section and having an opening providing access to the work chamber; wherein the one or more container walls include a plurality of ledge surface features sized, dimensioned, and oriented, to hinder vortex formation by food contents within the work chamber during a blending operation; and a blade assembly, comprising: a hub having a central axis about which the blade assembly rotates; a plurality of cutting blades extending radially outwardly from the hub, each of the cutting blades having a sharp cutting edge, a blunt spine edge, and a cutting blade face therebetween; at least one crushing blade extending vertically upwardly in a direction parallel to the central axis, the at least one crushing blade having a first edge, a second edge, and a crushing blade face therebetween; the plurality of cutting blades oriented in such a way as to cause the sharp cutting edge of each blade to be a leading surface and the blunt spine edge to be a trailing surface when the hub rotates in a first direction, and the blunt spine edge of each blade to be a leading surface and the sharp cutting edge to be a trailing surface when the hub rotates in a second direction opposite the first direction; and the at least one crushing blade oriented in such a way as to cause the crushing blade face to be a leading surface when the hub rotates in a first direction and a trailing surface when the hub rotates in a second direction. 9. The blender system of claim 8 , further comprising: a motorized unit disposed in a base configured to receive and couple with the container in such a way as to mechanically couple the motorized unit with the hub of the blade assembly to supply rotational energy to the blade assembly.
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