Abstract:
Un exprimidor de frutos cítricos que comprende una rampa de alimentación de mitades de frutos cítricos, dos rodillos giratorios con superficie cóncava y convexa complementarias respectivas, los rodillos ubicados uno encima del otro, el rodillo superior de superficie semi-esférica cóncava (hembra) con una pluralidad de pines en Ia misma, el rodillo inferior de superficie convexa (macho) con una pluralidad de pines en Ia misma, ambas superficies definen un espacio a través del cual se hacen pasar las mitades de frutos cítricos para ser exprimidos y expulsados por los rodillos giratorios; dichos rodillos son impulsados por una pluralidad de engranes de transmisión en forma de ruedas dentadas giratorias, las cuales a su vez son impulsadas por medio de un motor eléctrico, dichos elementos de transmisión y el motor se encuentran detrás de Ia tapa sobre Ia cual se montan los rodillos; todo el conjunto de transmisión y exprimido se encuentra dentro de una carcasa que aloja en su parte inferior interna una charola de recolección del jugo.
Abstract:
An article of cookware is assembled by the rivet attachment of a handle. The rivets are simultaneously attached to both the cookware vessel and the handle. The co-aligned holes for receiving the rivet in the wall of the cooking vessel and the handle flange are bevel such that exterior of the rivet is relatively flush with the interior of the cookware article and the exterior of the handle flange. Deformation of the rivet head also deforms the beveled edges of the through hole in the cookware article, locking it with the corresponding portion of the handle flange through hole.
Abstract:
A cooker with a three-layer composite plate and the manufacture method are disclosed. The cooker includes the cooker entity composed of a cooker body and a cooker bottom. The cooker body of the cooker entity is a three-layer composite metal plate composed of an intermediate layer made of the stainless steel 409 or 430 and an inner and an outer layer made of the aluminum alloy. The cooker bottom of the cooker entity is a two-layer composite metal plate composed of an inner layer made of the aluminum alloy and an bottom layer made of the stainless steel 409 or 430. The manufacture method includes the following steps. First, selecting the three-layer composite metal plate composed of the intermediate layer made of the stainless steel 409 or 430 and the inner and outer layer made of the aluminum alloy, stretching the composite metal plate and forming the cooker entity including the cooker body and the cooker bottom. Then, the inner and outer surfaces are under some surface treatments, such as oxidizing, spray painting, and so on. Finally, the outer-layer aluminum alloy on the bottom surface of the formed cooker is removed and dressed to expose the stainless steel layer.
Abstract:
Der mit einer Beschichtung (5; 21) versehene Gegenstandsgrundkörper kann metallisch oder nicht metallisch sein. Vorzugsweise ist er ein Grundkörper eines Küchengeräts. Wenigstens eine Schicht der Beschichtung (5; 21) hat ein Schichtmaterial mit einem Fasermaterial, wobei das Fasermaterial eine Oberfläche der Schicht mit Ortsfrequenzanteilen zwischen 3 µm -1 und 1000 µm -1 verformt. Ist die Oberfläche der Schicht eine freie Beschichtungsoberfläche, so bewirkt eine durch die Ortsfrequenzanteile erzeugte Rauigkeit einen Selbstreinigungseffekt und/oder erzeugt bzw. verbessert eine Antihaftwirkung. Ist die Oberfläche der Schicht eine Zwischenoberfläche zur einer weiteren Schicht, ergibt sich eine Schichtenverzahnung mit einer verbesserten Schichtenhaftigkeit zwischen der Schicht und der weiteren Schicht.
Abstract:
A baking pan system (100) is disclosed comprising an outer frame (110) and an attached baking sheet (114). The outer frame (110) comprises two side walls and two end portions. Each end portion connects corresponding ends of the side walls, and each end portion forms at least one fastening aperture. The baking sheet (114) includes a plurality of extruded portions. Each extruded portion aligns with and pierces a corresponding fastening aperture of the outer frame (110). Each extruded portion further curls around the outer frame (110). Methods for fastening a baking sheet to an outer frame and unfastening a baking sheet from an outer frame are also disclosed.
Abstract:
The invention relates to a method for the generation of steam, in particular for a cooking device, whereby a fluid within a steam generator container is brought to the boil, by the heating of at least one heatable wall surface (12) of the steam generator container. Said fluid is set in rotation by the heating and thus pressed against the heatable wall surface (12), due to centrifugal forces arising from the rotation. The steam generated as a result of the evaporation of at least a part of the fluid escapes from the steam generator container through a steam outlet and droplets of fluid entrained in the steam are separated out by at least one first rotor (8), rotatably mounted in the steam generator container, whereby the fluid is set in rotation by said rotor. The invention further relates to a device using the above method.
Abstract:
An incinerator or organic waste combustor which utilizes a multi-step arrangement. An elongated chamber (16) is positioned substantially vertically and is adapted to receive solid waste via a charging portal (10). A grate (12) within the elongated chamber (16) prevents the solid waste from passing to a lower end (15) of the elongated chamber (16). Using a heating mechanism, the solid waste within said elongated chamber (16) is heated in an oxygen lean environment to create combustible particulates and flammable gasses which are drawn away through a transfer tube (13) which communicates the materials to a cyclone burner (14). Within the cyclone burner (14), the combustible particulates and flammable gasses are burned in an oxygen fed environment.
Abstract:
Improved methods for the treatment of commingled wastes and process system for practicing those methods are provided. The methods are practiced by first treating the commingled waste material in a primary treatment unit (14) in the presence of a carrier fluid to separate the organic waste from the inorganic waste. The carrier fluid and the gaseous products from the primary unit (14) are then treated in a flameless oxidizer (20), which efficiently destroys any remaining organic compounds. In one embodiment, the process gases exiting the flameless oxidizer (20) are recycled to the primary treatment unit (14).
Abstract:
A portable soil decontamination and remediation system (10) comprising a high heat energy generator (14) that supplies high heat energy to a soil decontamination unit. The heat energy generator (14) comprises a closed chamber for gasifying used rubber tires for the production of volatile gases and high energy heat. The soil decontamination unit (10) comprises an elongate rotating cylinder (12) that rotates within a closed chamber. Contaminated soil is introduced into one end of the rotating cylinder (12) and is caused to migrate to the opposite end in a cascading fashion as the cylinder rotates. Vacuum pressure withdraws the vaporized hydrocarbons from the cylinder (12), and the decontaminated soil exits the collection end of the rotating cylinder and housing for redistribution. The vaporized hydrocarbons condense and are collected within a forced-air condenser (18) for recycling or proper disposal.