Patent classifications
B29C41/06
Method of casting gradient density spheres
Devices and methods are disclosed for the centrifugal casting of spheres, particularly solid and hollow spheres having a gradient internal density. Molten or self-hardening casting material is introduced into a hollow spherical mold and the mold made to rotate about two axes intersecting at the center of the mold. The resulting centrifugal forces cause the casting material to be evenly distributed about the inner surface of the mold. If a mixture of casting materials of different densities is used, the densest material will settle closer to the walls of the mold, while less dense materials will move closer to the center. The casting material is hardened and the resulting sphere is removed from the mold. One or more valves may be employed to transport fluent materials into and out of the mold. If gas is removed from a partially-filled mold prior to casting, the product will be a hollow sphere having an interior pressure less than ambient. Spheres made according to the present invention have a wide range of uses including insulation and bearing balls.
Method of casting gradient density spheres
Devices and methods are disclosed for the centrifugal casting of spheres, particularly solid and hollow spheres having a gradient internal density. Molten or self-hardening casting material is introduced into a hollow spherical mold and the mold made to rotate about two axes intersecting at the center of the mold. The resulting centrifugal forces cause the casting material to be evenly distributed about the inner surface of the mold. If a mixture of casting materials of different densities is used, the densest material will settle closer to the walls of the mold, while less dense materials will move closer to the center. The casting material is hardened and the resulting sphere is removed from the mold. One or more valves may be employed to transport fluent materials into and out of the mold. If gas is removed from a partially-filled mold prior to casting, the product will be a hollow sphere having an interior pressure less than ambient. Spheres made according to the present invention have a wide range of uses including insulation and bearing balls.
Mold device for a rotational molding device
A mold device configured for use in a rotational molding device configured to perform a rotational molding process by rotating the mold device by means of a robot arm is provided. The mold device generally includes a connector part for connecting to the robot arm, first and second mold parts configured to assemble to each other for enclosing a mold cavity in an assembled state. The mold device includes a magnet gripper for releasably attaching the mold parts and heating and cooling elements integrated in at least one of the mold parts for respectively heating and cooling the mold part. The heating elements may be arranged in first grooves positioned in an exterior face of the respective mold part. The cooling elements may be arranged in second grooves positioned in the exterior face of the respective mold part in between the first grooves.
Mold device for a rotational molding device
A mold device configured for use in a rotational molding device configured to perform a rotational molding process by rotating the mold device by means of a robot arm is provided. The mold device generally includes a connector part for connecting to the robot arm, first and second mold parts configured to assemble to each other for enclosing a mold cavity in an assembled state. The mold device includes a magnet gripper for releasably attaching the mold parts and heating and cooling elements integrated in at least one of the mold parts for respectively heating and cooling the mold part. The heating elements may be arranged in first grooves positioned in an exterior face of the respective mold part. The cooling elements may be arranged in second grooves positioned in the exterior face of the respective mold part in between the first grooves.
Reflective helium-free balloon system
The current inventive technology described methods and apparatus for the production of a helium-free balloon having customizable reflective features.
Reflective helium-free balloon system
The current inventive technology described methods and apparatus for the production of a helium-free balloon having customizable reflective features.
Intensive Use Furniture
The invention is an intensive use furniture item made by a two step molding process using heat zone control in the mold to dispense different plastic charges into the mold while controlling zones of the mold with heat being applied and thermal insulators separating mold zones for molding the bed or part of plastics differing in characteristics such as color, durability, surface finish and chemical resistance.
Intensive Use Furniture
The invention is an intensive use furniture item made by a two step molding process using heat zone control in the mold to dispense different plastic charges into the mold while controlling zones of the mold with heat being applied and thermal insulators separating mold zones for molding the bed or part of plastics differing in characteristics such as color, durability, surface finish and chemical resistance.
Acid resistant polyethylene containers
Rotomolded polyethylene containers that are used to store sulfuric acid can become discolored on the interior surface which is in contact with the acid. This problem may be mitigated by the use of an additive package that contains two primary antioxidants.
Systems and Methods for Altering Rotation of a Solar Rotational Manufacturing System
A solar rotational manufacturing system having a monitoring device, a controller, a heliostat having a heliostat controller, a rotational apparatus having a rotational controller, and a mold, wherein the monitoring device is configured to collect actual data regarding a characteristic of the solar rotational heating system and transmit actual data to the controller, the controller is configured to receive a reference parameter, an affecting parameter, and linking instructions, receive actual data from the monitoring device, compare actual data with a reference parameter, determine an affecting parameter to alter, and transmit alteration instructions to the heliostat controller and/or the rotational controller, the heliostat controller is configured to receive the alteration instructions from the controller and execute the alteration instructions, and the rotational controller is configured to receive the alteration instructions from the controller and execute the alteration instructions.