B01F7/30

Mixing machine system

A mixing machine includes a head extending over a bowl receiving location, the head including a downwardly extending rotatable output shaft for receiving a mixer tool. A drive train including a motor having an output operatively connected to drive a planetary gear system that effects rotation of the rotatable output shaft about its axis and orbiting of the shaft axis about another axis. A control system includes a master control unit and a slave control unit, the master control unit connected with a first sensor located along the drive train between the motor and the planetary gear system, the slave control unit connected with a second sensor, wherein both the slave control unit and the second sensor rotate with a part of the planetary gear system, wherein the master control unit and the slave control unit are configured for wireless communication with each other.

METHOD FOR PRODUCING SEALANT
20200316539 · 2020-10-08 ·

A method for producing a sealant includes a weighing and mixing step, a kneading step, a stirring and defoaming step, and a filling step. In the weighing and mixing step, a main component and a curing agent are weighed and mixed together. In the kneading step, the mixture mixed in the weighing and mixing step is kneaded. In the stirring and defoaming step, the kneaded product kneaded in the kneading step is stirred and defoamed. In the filling step, the kneaded product defoamed in the stirring and defoaming step is filled into a container. In the stirring and defoaming step, the kneaded product is stirred under a condition wherein a stirring rotational speed at which the kneaded product is stirred and a stirring time for which the kneaded product is stirred are within a range from a product lower limit value to a product upper limit value.

MIXER

A mixer, particularly a dual planetary mixer, for mixing a liquid with a dry material in a mixing vessel has improved fluid introduction. The mixer includes a drive shaft rotatable about a main axis of rotation and at least a first mixing element rotatable about a first mixing element axis. The mixer further includes drive means for driving the first mixing element about the first mixing element axis in response to rotation of the drive shaft about the main axis of rotation and at least one injection nozzle for injecting a liquid. A fluid path extends between a liquid inlet and the at least one injection nozzle. The fluid path extends longitudinally through the drive shaft.

Bevel planetary gear mechanism applied to stand mixer
10660476 · 2020-05-26 ·

The disclosure discloses a bevel planetary gear mechanism applied to a stand mixer, including a center bevel gear (2), a first bevel planetary gear (10), a second bevel planetary gear (3), a third bevel planetary gear (4), an internal bevel gear (5) and a bevel planetary gear bracket (11), wherein, the center bevel gear (2) is mounted on a spindle (1); the first bevel planetary gear (10), the second bevel planetary gear (3) and the third bevel planetary gear (4) are all engaged with the center bevel gear (2); the internal bevel gear (5) surrounds the first bevel planetary gear (10), the second bevel planetary gear (3) and the third bevel planetary gear (4) and are engaged with such three gears. By using the bevel planetary gear mechanism provided by the disclosure, the stand mixer has a pitched kneading hook, thereby improving the kneading effect of the stand mixer.

Apparatus for transferring a viscous material

An apparatus for transferring a viscous material comprising: a) a first container capable of containing a viscous material; b) a transfer piston insertable in the first container so that the piston forms a circumferential seal with respect to the container, the transfer piston including a hole; and c) a mechanism for attaching an aperture of a second container to the hole in the transfer piston wherein insertion of the transfer piston into the first container causes the viscous material to pass through the aperture into the second container.

DEVICE AND METHOD FOR AERATING A FOOD SUBSTANCE
20200078748 · 2020-03-12 ·

A device and method for aerating a food substance. The device includes: an aerator, a vessel, a drive unit and a mounting. The aerator includes a plurality of filaments attached at their proximal ends and being free at their distal ends. Every filament has a first state and a second state. The filament undergoes a reversible elastic deformation when being bent by a transverse force from the first state to the second state. The filament performs a spring-back action from the second state to the first state, lowering the spring tension, when the transverse force acting on the filament drops to zero. The aerator is attachable to and rotatable by the drive unit thereby defining an axis of rotation. The vessel defines a space for holding the food substance being bordered at the sides by an inner wall. The vessel and the drive unit are attachable to the mounting. The mounting defines a spatial relationship between the axis of rotation and the inner wall of the vessel such that the distal ends of a fraction of the filaments contact the inner wall of the vessel, wherein the inner wall bends the fraction of the filaments by applying the transverse force.

Protein blender cup
10556209 · 2020-02-11 ·

Present invention creatively makes convenient for any person using beverage to blend powder with liquid uniformly without use of shaking motion or battery and thereby preventing from spilling and running out batteries. Invention of unique reverse planetary gears system and side arm stirrer with window paddle has made possible convert torque of finger to multiple rotation of stirrer in order achieve efficient uniform blending. Moreover, this invention takes full advantage of removable snap mechanism to assemble and disassemble protein blender cup which is very necessary for washing every single parts to achieve highest sanitization. In short, this invention helps consumer to have protein blender cup which doesn't require shaking or battery and can be completely sanitized without any struggle.

PRODUCTION PLANT AND METHOD
20190381467 · 2019-12-19 ·

A production plant for processing a suspension and a method for dispersing suspensions. The production plant comprises an extractor or a planetary roller mixer (1), a conveying device and a metering device. The planetary roller mixer (1) comprises at least one central spindle (2) with a toothing (3), at least one planetary spindle (4) with a toothing (5) and a housing (6) with an inner toothing (7) or a housing comprising at least one bushing (8) with an inner toothing (7). The planetary roller mixer (1) further comprises at least one product inlet (9) and at least one product outlet (10). During normal operation, the product outlet (10) is above the product inlet (9) and/or comprises an overflow (14) in the product discharge line (13) provided at the product outlet (10) so that the processing zone of the planetary roller mixer (1) can be substantially completely filled with the suspension.

Mixing of Extrudable Plastics with Small Amounts of Other Substances
20190366281 · 2019-12-05 ·

A main extruder and a side arm extruder are used in the extrusion of plastics with small amounts of additives or other small substances to be admixed. A minor portion of the plastic material is premixed with small quantity additive substances in a side arm extruder. The premixed material is discharged from the side arm extruder into the main extruder and there mixed with a major portion of feed material.

Fluid delivery system

A fluid delivery system for dispensing a liquid from a sealed container directly into a closed chamber comprises a container containing a liquid component of bone cement and plugged with a plug, and a closed chamber comprising a receiving port for receiving the sealed container, wherein the receiving port is configured to receive the liquid component in direct response to manual insertion of the sealed container through the receiving port using an open loop system.