Abstract:
The present disclosure provides an apparatus for dispensing powdered material, including container for storing powdered material. The container includes inlet for receiving powdered material and outlet for dispensing powdered material. A screw conveyor member disposed within container, which includes a first end rotatably mounted on wall of container and a second end abuttingly positioned to outlet and is operable by actuator for conveying powdered material through outlet. A scattering member, which includes at least one obstruction, is coupled to outlet, for scattering powdered material from outlet during dispensing operation. A load sensor adapted to support container for measuring weight of container. A control module adapted to control operating speed of actuator to operate screw conveyor member in a plurality of rotating modes based on weight readings received from load sensor. The apparatus prevents formation of chunks while dispensing powdered substance and thereby ensure precise dispensing of powdered material.
Abstract:
The instant invention discloses an apparatus, system and method of manufacturing edible, biodegradable containers for hot and cold beverages and food.
Abstract:
Apparatuses and methods for preparation of breads are described. The apparatuses include a press unit that can receive a dough ball and flatten the dough ball. The press unit includes a top plate and a bottom plate, each of which is in an inclined arrangement. The top plate swivels towards and away from the bottom plate. A dough ball is flattened between the top plate and the bottom plate. The bottom plate is heated, thereby heating a first face of the flattened dough in contact with the bottom plate. A flipper connected to at least one of the top plate and the bottom plate guides the flattened dough to a heated cooking surface. The guiding enables a second face of the flattened dough to come in contact with the cooking surface, thereby heating the flattened dough and forming the bread.
Abstract:
An automated production system is disclosed herein. One aspect of the present technology, for example, is directed toward an automated system for the continuous production of baked bread. The system can include a priming assembly having a dry ingredients priming unit and a wet ingredients priming unit. The dry ingredients priming unit can include a vertically-oriented hopper and a screw positioned within an interior region of the hopper, wherein the first screw extends along the central longitudinal axis of the hopper and is configured to rotate about its own central longitudinal axis. The system can also include a mixing assembly, a forming assembly, an oven, and a controller. The controller can be coupled to the priming assembly and configured to adjust the amount of dry ingredients delivered from the hopper to the mixing chamber by controlling rotation of the screw.
Abstract:
The self-making bread method includes: weighing a certain amount of ingredients according to a bread recipe and placing them in a bread ingredient box; putting the bread ingredient box into the corresponding containing region of the top portion of the bread machine; using the jagged ring of the bottom portion of said containing region to open the thin film of the bottom portion of the bread ingredient box, so the ingredients will fall into the mixing container in the bread machine; controlling the water delivering mechanism inside the bread machine to deliver a certain amount of water into said mixing container; starting the mixing device inside the bread machine, which mixes the ingredients into an appropriate dough; turning off the mixing device; energizing the electric heating tube in the bread machine, to bake the dough inside the mixing container into bread.
Abstract:
A door mechanism for disposing on a bin body, which has an inner periphery defining an opening, includes a door panel unit configured to be pivoted to the inner periphery of the bin body to openably close the opening, a hinge unit configured to pivotally connect the door panel unit to the inner periphery of the bin body, a rotary wheel unit for controlling rotation of the hinge unit, a drive unit pivoted between the rotary wheel unit and the hinge unit, and a motor unit for driving rotation of the rotary wheel unit. When the rotary wheel unit is driven by the motor unit to rotate, the rotary wheel unit drives rotation of the drive unit which in turn drives the hinge unit to rotate said door panel unit to an open or a closed position.
Abstract:
The invention relates to an automatic milk foamer having a container for receiving milk and a base body on which or in which the container can be placed. The milk foamer also includes a stirring device that can be placed in the container for foaming the milk, a motor provided in the base body for driving the stirring device, and a heating device for warming the milk present in the container. The heating device includes an alternating magnetic field generator provided in the base body for generating an alternating magnetic field. The container is designed such that it heats up due to the alternating magnetic field.
Abstract:
The self-making bread method includes: weighing a certain amount of ingredients according to a bread recipe and placing them in a bread ingredient box; putting the bread ingredient box into the corresponding containing region of the top portion of the bread machine; using the jagged ring of the bottom portion of said containing region to open the thin film of the bottom portion of the bread ingredient box, so the ingredients will fall into the mixing container in the bread machine; controlling the water delivering mechanism inside the bread machine to deliver a certain amount of water into said mixing container; starting the mixing device inside the bread machine, which mixes the ingredients into an appropriate dough; turning off the mixing device; energizing the electric heating tube in the bread machine, to bake the dough inside the mixing container into bread.
Abstract:
An automatic bread maker (1) comprises a body (10) in which a bread container (50) is accommodated; a grinding mechanism (54, 64) for grinding cereal grains in the container (50) accommodated in the body (10); a kneading mechanism (72, 60) for kneading into dough the bread ingredients in the bread container (50) accommodated in the body (10); and a bread ingredients storage container (80) for storing powdered bread ingredients to be automatically fed to the bread container (50) after the cereal grains have been ground by the grinding mechanism (54, 64).
Abstract:
Disclosed is an automatic bread making machine (1) equipped with a bread container (50) into which bread making materials are placed, a baking chamber (40) that is disposed within a main body (10) and that receives the bread container (50), a blade rotation shaft (52) that is disposed on the bottom of the bread container (50), a grinding blade (54) and a mixing blade (72) that are disposed so as to be rotatable by the rotation of the blade rotation shaft (52), and a motor (60) that is disposed within the body (10) and that provides rotating power to the blade rotation shaft (52). Grinding is performed with the grinding blade (54) when the blade rotation shaft (52) is rotated in one direction, and mixing is performed with the mixing blade (72) when the blade rotation shaft (52) is rotated in the opposite direction to the aforementioned direction.