Abstract:
Disclosed herein are a substrate sorter, an inspection and sorting system having the substrate sorter, and a method for the inspection and sorting system. The substrate sorter includes an annular gripper comprising a rotator and a plurality of vacuum applicators concyclically disposed around an axis, a carrier operable to move a substrate towards the rotator and into a loading region below the rotator, and an actuator coupled with the annular gripper and operable to rotate the rotator about the axis relative to the plurality of vacuum applicators while one or more of the plurality of vacuum applicators hold the substrate against the rotator.
Abstract:
Two methods or apparatuses for separating two enantiomorphs of a chiral object. First, the apparatus includes a bended channel, for which the first opening is the orthogonal projection of one enantiomorph in a certain orientation, and the second opening is a different orthogonal projection of the same orientation. At the bend, the channel surface is complementary to the three-dimensional shape of the enantiomorph, which permits one enantiomorph to pass through the second opening, but blocks the other enantiomorph. Second, the apparatus includes a single asymmetric opening that is a small orthogonal projection of the chiral object. Both enantiomorphs of the chiral object can pass through the opening by manual manipulation. By free falling, one enantiomorph will pass through while the other will be blocked. These separation apparatuses are applied to toys, puzzles, and educational tools.
Abstract:
A component sorting mechanism is disclosed. The component sorting mechanism includes a vibrating plate, a feeding tray having a plurality of grooves in an inner bottom surface thereof, the feeding tray mounted on the vibrating plate, and a first driving device connected to the feeding tray. The first driving device drives the feeding tray to swing within a predetermined angle range.
Abstract:
The invention relates to a ballistic separator for separating mixed waste materials, wherein at least two adjacent paddles, strips, or a sheet metal plate are arranged in a frame so as to be movable and form a base, said base being arranged in the frame with a gradient with respect to the mounting surface of the separator, and the base being mounted on at least one side of a shaft on a paddle holder so that the base can. be set in rotation, a drive unit for generating the rotational movement being provided and driving at least one shaft. The shaft is designed as an eccentrically mounted outer tube, eccentric disks being fastened or immobilized in the eccentric tube on an inner shaft, a bearing being provided between the eccentric disk and the eccentric tube and the paddle holder being mounted on the eccentric tube.
Abstract:
Provided is a dry separation apparatus including: a main body; a first deck; a plurality of guides; a supply part; an air blow fan; and a vibration part. A dry separation method includes: supplying an object to be separated to a top surface of a first deck provided with a plurality of punches; sending, by an air blow fan, air to the punches (first punches); and horizontally vibrating, by a vibration part, the first deck so as to discharge particles which have different specific gravities of the object to be separated and a moveable force exerted by air passing the first punches through different passages.
Abstract:
An aggregate processing assembly is provided. The processing assembly includes a separator assembly having a central member extending from a first end to a second end, the central member supporting at least one helical flight provided between the first and second ends, the helical flight having a width provided between a proximal end and a distal end. An assembly housing is provided around a portion of the separator assembly, the assembly housing includes a collection portion for receiving processed feed stock which exits the separator assembly radially away from the central member outward past the distal end, and the collection portion includes a first outlet. A second outlet is coupled to the separator assembly for receiving processed feed stock which exits the separator assembly at the second end of the at least one helical flight. A proppant, an aggregate, a system for processing feed stock to produce a proppant or aggregate, and a method of producing a proppant or aggregate is also provided.
Abstract:
A method for sorting balls to separate those having a sphericity defect from spherical balls includes depositing the balls to be sorted on a support having a conical surface, applying vibrations to the support to cause the balls having a sphericity defect to follow an upward trajectory on the conical surface while the spherical balls roll downwards on the surface, evacuating the balls having a sphericity defect via a first orifice arranged in the upper part of the support, and evacuating the spherical balls via a second orifice arranged in the lower part of the support. Also provided is a device for implementing the sorting method.
Abstract:
A separating device that separates particulate superabsorbent polymers and liquid absorbent fibers included in a material of an absorbent article. The device includes: a belt member that moves along a predetermined moving direction while receiving the falling material on an upper surface; and an airflow supply mechanism that supplies an airflow in a direction opposite to the moving direction of the belt member, along the upper surface from a downstream side of the moving direction relative to a position where the material falls. In a case the superabsorbent polymers are sent to the downstream side of the moving direction by movement of the belt member, the airflow rolls the liquid absorbent fibers on the upper surface of the belt member and forms fiber balls while regulating movement of the liquid absorbent fibers to the downstream side of the moving direction, to separate the liquid absorbent fibers and the superabsorbent polymers.
Abstract:
A sifting device for workpieces includes a box, an electric cabinet, a sifting assembly, an air blower, and an collector. The box receives the workpieces. The sifting assembly is received in the box, and includes a baffle and a guiding board, the guiding board defines a plurality of gaps, and a slit is formed between the baffle and the guiding board, and communicates with the plurality of gaps. The air blower is directed by the electric cabinet and communicates with the gap to adjust a direction of the workpieces to allow the workpieces to pass through the gap and the slit. The collector communicates with the slit to output the workpieces.
Abstract:
Apparatus and method for processing materials such as granular matter mined from deposits, comprising a tubular container disposed upright and an axle device provided centered therein. A processing chamber for receiving the material to be processed is provided between the axle device and the inner wall of the tubular container. The tubular container is driven rotatingly. Engaging dogs are provided in the processing chamber as working elements.