Abstract:
A food processor attachment assembly for a stand mixer includes a coupling hub adapted to be received in an attachment hub of the stand mixer. A gear housing includes a gearing mechanism disposed therein to translate an output drive from the attachment hub to the coupling hub to drive an output shaft along a vertical rotational axis. The output drive is accessible at a coupling portion for attaching to various food processing discs as housed within a top housing assembly. The output drive is further accessible for coupling to the food processing attachment at a lower coupling portion for powering food processing attachments within a bowl assembly.
Abstract:
A juicing system with a drive mechanism and a juicer assembly, where the juicer assembly includes a main housing defining a cavity. A lid encloses a top portion of the cavity and has an opening therethrough. An auger is disposed within the cavity and has a top portion and a bottom portion. The auger is operably connected at one of the top portion or the bottom portion to the drive mechanism to rotate the auger. A rotatable cutting blade is disposed at the top portion of the auger. The rotatable cutting blade cuts foods inserted into the cavity through the opening. A juicing basket is disposed within the cavity, radially outwardly from the auger. The juicing basket has at least one screen with apertures therethrough of varying sizes. Food is pressed by the auger against the juicing basket to squeeze juice and pulp through the apertures.
Abstract:
A blending appliance having a housing includes a motor compartment and a jar receiving portion spaced laterally from the motor compartment. The housing includes an upper retaining member and a support pad extending outwardly from the housing, such that a jar receiving portion is defined therebetween. A motor is disposed in the motor compartment. A jar includes a lid with a feed chute. Together, the jar and lid are configured for reception in the jar receiving portion of the housing. The lid is vertically secured onto the jar by the upper retaining member upon reception of the jar into the jar receiving portion.
Abstract:
A clutch mechanism includes first and second shafts having a drive system disposed therebetween, wherein the first shaft is coupled to a drive mechanism. A fixed clutch plate is disposed on the second shaft and includes a plurality of ramped members disposed thereon. An attachment shaft includes a slip clutch plate disposed on a first end and having a plurality of ramped members adapted to releasably couple with the plurality of ramped members disposed on the fixed clutch plate. The slip clutch plate is operable between engaged and disengaged positions relative to the fixed clutch plate and a biasing mechanism is disposed on the attachment shaft and configured to bias the slip clutch plate towards the engaged position. The biasing mechanism is further configured to be overcome when a torque force of a predetermined load is realized on the attachment shaft.