CPC

CPC Class B33Y

40 patents in CPC class B33Y

40 Patents
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Updated 3/14/2026

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An electrical heater assembly, an exhaust treatment assembly, and method of manufacture. The electrical heater assembly includes a heater body including a plurality of slots disconnecting portions of the heater body from each other. Each slot includes a first end portion that extends to a second end portion, and a receptacle portion located between the first end portion and the second end portion. Portions of the heater body not disconnected by the plurality of slots form a serpentine current-carrying path through the heater body. The first end portion of each slot has a first width, the second end portion of each slot has a second width, and the receptacle portion of each slot has a third width, and the third width is larger than both the first width and the second width.

An article of footwear may include a sole and an upper connected to the sole. The sole may include a first solid component and a second solid component. The sole may further include an additively manufactured mesh component that is arranged between the first solid component and the second solid component. The mesh component may be connected to each of the first solid component and the second solid component.

A last for forming an upper of an article of footwear includes a first portion including a lateral side and a medial side that opposes the lateral side, and a second portion connected with and extending upward and transversely outward in an angled manner away from the first portion such that a terminal end of the second portion is distanced from the first portion. An exterior surface of the last can include a plurality of three dimensional structural surface components disposed over at least 50% of the exterior surface of the last.

Implants and methods for stabilizing bone fractures are provided. In one embodiment, the implants are spheres. In another embodiment, the implants are rods. The rods can be used to stabilize peripheral portions of a bone fracture. The rods can be shaped and configured to correspond to the shape of a region of bone against which the rod will be deployed. The rods can be provided with surface features for engaging adjacent rods and/or adjacent regions of bone to further stabilize the rods. The spheres can be inserted to fill a remaining volume of the fracture cavity. The implants can be made from orthobiologic materials.

Methods and systems for digitally designing a plurality of aligners are provided. In some embodiments, a method includes receiving an intraoral scan of the patient's teeth, and generating 3D dental model of the patient's teeth using the intraoral scan. The method can include identifying a movement path to move the patient's teeth from an initial arrangement toward a target arrangement through a plurality of intermediate arrangements in accordance with a treatment plan. The method can also include identifying one or more appliance features of at least one aligner, the one or more appliance features including one or more feature regions having one or more feature thicknesses. The method can further include instructing an additive manufacturing machine to directly fabricate the at least one aligner in a layer-by-layer fashion.

An implant for insertion into a patient is provided. The implant includes a three-dimensionally printed structure of layers. Each layer comprises an infill pattern of the three-dimensionally printed structure, the infill pattern of each layer comprising a set of infill lines. The implant includes a plurality of hollow channels. The layers are arranged on top of one another such that the plurality of hollow channels are formed within the implant, wherein the walls of each channel are formed by sections of the infill lines of a plurality of layers of the printed structure of layers. At least one hollow channel extends between a first outer surface of the implant and a second outer surface of the implant. At least one hollow channel is oriented in a direction which is tilted with respect to a reference axis perpendicular to the first outer surface of the implant.

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