CPC

CPC Class B33Y

48 patents in CPC class B33Y

48 Patents
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Updated 3/16/2026

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A method of manufacturing a heater for an aerosol-generating device is provided, the method including: forming a heater body including a heater body frame and a heating element, the heater body defining at least a portion of a boundary of a heating chamber configured to receive an aerosol-generating article such that the heating element is configured to heat the heating chamber, at least part of the heater body frame being manufactured by additive manufacturing. A method of manufacturing an aerosol-generating device; and a heater; and an aerosol-generating device are also provided.

Dual-layered midsole
US-121147262024

A dual-layered midsole for footwear includes an internal midsole layer and an external midsole layer, which are coupled to and separated by a Strobel board. The internal midsole layer may compress and expand with the movement of a wearer of an article of footwear including the dual-layered midsole, while the external midsole may provide stability and cushion for the wearer. Materials selected for the internal and external midsole layers may provide tuned viscoelastic properties to different areas of the midsole as a function of midsole layer thickness at each sole area.

Flexible button
US-121147372024

Concepts provided are directed to a flexible button that is bendable when exposed to a force. The flexible button in accordance herein has a tapered perimeter portion such that a thickness of a peripheral edge of the perimeter portion is less than a thickness of remaining portions of the flexible button. The low-profile of the flexible button allows the flexible button to easily slip through a respective button hole and to be more easily gripped by a user. Further, the flexible button in accordance with aspects herein provides higher breathability than conventional buttons of the same size by having voided portions on its perimeter portion.

Compositions containing curable recombinant human collagen, and kits comprising same, which are usable in preparing modeling material formulations for additive manufacturing (e.g., 3D bioprinting) of 3D objects are provided. Methods utilizing such modeling material formulations in additive manufacturing of 3D objects having a collagen-based material in at least a portion thereof, are also provided. The formulations feature a desired viscosity at a temperature higher than 10° C. (e.g., room temperature or 37° C.) and allow performing the additive manufacturing without cooling the system or a part thereof.

Provided is a method for producing a metal solid, the method being capable of easily producing a metal solid. A method for producing a metal solid, the method comprising covering at least a portion of the periphery of a metal powder with a high-melting-point material having a melting point higher than the melting point of the metal powder; and irradiating the metal powder, at least a portion of the periphery of which is covered with the high-melting-point material, with microwaves to heat the metal powder, thereby sintering or melt-solidifying the metal powder.

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