Patents by Inventor Corey Vasel
Corey Vasel has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250033678Abstract: Example embodiments relate to custom bearing adapters and techniques for retrofitting a railway vehicle with a bearing adapter to enable one or more accessories to be coupled to the axle of the railway vehicle. An example bearing adapter can include an upper structure configured to extend over an upper portion of a rail bearing coupled to an axle of the railway vehicle and one or more mounting elements located on the upper structure that are configured to enable the accessory to be coupled onto the railway vehicle. In some cases, the bearing adapter can further include a lower structure configured to extend below a lower portion and a set of fasteners configured to couple the structure and the lower structure in a fixed position around the rail bearing to form a mount for coupling the accessory to the drive axle of the railway vehicle. In some instances, the accessory is a motor, sensor, or braking component.Type: ApplicationFiled: July 24, 2023Publication date: January 30, 2025Inventors: Timothy Luchini, Alex Peiffer, Corey Vasel, Stephen Sommerlot
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Publication number: 20230174120Abstract: Example embodiments relate to implementing self-contained power sources for railcars. A railcar may include an air turbine that comprises a generator. The air turbine converts mechanical energy received from air to electrical energy by way of the generator. In some implementations, the air turbine is selectably coupled to the air brake system of the railcar and can convert mechanical energy received from pressurized air of the air brake system. The railcar can further include a pneumatic valve and a controller that can cause the pneumatic valve to open when the air pressure of the air brake system is at or above a predetermined level. Opening the pneumatic valve provides pressurized air to the air turbine from the air brake system and/or an exhaust pipe. The air turbine is a Wells turbine or a ram air turbine in some examples.Type: ApplicationFiled: December 8, 2022Publication date: June 8, 2023Inventors: Timothy Luchini, Corey Vasel, Alex Peiffer, Stephen Sommerlot
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Publication number: 20230174119Abstract: A self-propelled railcar having a structure; at least one bogie attached to the structure, a sensor suite; a propulsion motor; and an energy storage system. The at least one bogie having at least one powered axle. The sensor suite has a processor and a plurality of sensors. The energy storage system includes a controller and a power source, wherein the controller provides energy from the power source to the propulsion motor to the powered axle in a predetermined manner to control movement of the self-propelled railcar. The energy storage system may be off-board.Type: ApplicationFiled: December 8, 2022Publication date: June 8, 2023Inventors: Timothy Luchini, Corey Vasel, Alex Peiffer, Stephen Sommerlot
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Patent number: 11492095Abstract: An exterior panel is configured to accommodate high thermal stresses imposed on exterior surfaces of aerospace transport vehicles during hypersonic flight. The exterior panel is formed of a superplastic material such as a titanium alloy, and includes an exterior skin and a plurality of cooling tubes that extend through the panel. The exterior panel further includes an interior skin configured to be attached to a frame member such as a rib, stringer, or spar of the transport vehicle. The tubes pass through a multicellular core, which is sandwiched between the exterior and interior skins to impart tensile and compressive strength to the exterior panel. In one disclosed method, the core is superplastic formed and diffusion bonded to the exterior skin, the tubes, and the interior skin. A cooling fluid, which may be a gas or liquid, including a fuel, may be pumped through the tubes to cool the exterior panel.Type: GrantFiled: August 30, 2019Date of Patent: November 8, 2022Assignee: The Boeing CompanyInventor: Corey Vasel
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Patent number: 11260952Abstract: An exterior panel is formed of superplastic materials, including an exterior skin of titanium to accommodate high thermal stresses imposed on hypersonic transport vehicles during hypersonic flight. The exterior skin is fixed to an underlying reinforcing skeletal structure consisting of a superplastic formable reinforcement (SFR) layer, for example a titanium, zirconium, and molybdenum (TZM) alloy, which supports the exterior skin whenever the latter may be heated to temperatures exceeding 1200 degrees Fahrenheit. The exterior panel includes a separate interior skin configured for attachment to a frame member such as a rib, stringer, or spar of the hypersonic transport vehicle. A multicellular core is sandwiched between the exterior and interior skins to impart tensile and compressive strength to the exterior panel. In one disclosed method, the core is superplastic formed and diffusion bonded to the exterior and interior skins.Type: GrantFiled: September 26, 2019Date of Patent: March 1, 2022Assignee: The Boeing CompanyInventor: Corey Vasel
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Patent number: 11161590Abstract: An exterior panel for hypersonic transport vehicles is formed of a superplastic metal alloy such as titanium for accommodating high thermal stresses of hypersonic flight. The exterior panel, designed as re-usable on such transport vehicles, includes an exterior skin configured for atmospheric exposure, and an interior skin configured for attachment to structural frame members of the transport vehicles. An intermediate skin is situated between a pair of multicellular cores; each multicellular core is sandwiched between the exterior and interior skins, one core being situated between the exterior and intermediate skins, while the other is situated between the intermediate and interior skins. An airflow channel (AFC) extends through at least one of the multicellular cores for cooling of the exterior panel. Each multicellular core is superplastic formed and diffusion bonded to the other, as well as to its respective pair of skins to form an exterior panel having a unified structure.Type: GrantFiled: September 30, 2019Date of Patent: November 2, 2021Assignee: The Boeing CompanyInventor: Corey Vasel
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Publication number: 20210171184Abstract: An exterior panel is configured to accommodate high thermal stresses imposed on exterior surfaces of aerospace transport vehicles during hypersonic flight. The exterior panel is formed of a superplastic material such as a titanium alloy, and includes an exterior skin and a plurality of cooling tubes that extend through the panel. The exterior panel further includes an interior skin configured to be attached to a frame member such as a rib, stringer, or spar of the transport vehicle. The tubes pass through a multicellular core, which is sandwiched between the exterior and interior skins to impart tensile and compressive strength to the exterior panel. In one disclosed method, the core is superplastic formed and diffusion bonded to the exterior skin, the tubes, and the interior skin. A cooling fluid, which may be a gas or liquid, including a fuel, may be pumped through the tubes to cool the exterior panel.Type: ApplicationFiled: August 30, 2019Publication date: June 10, 2021Applicant: The Boeing CompanyInventor: Corey Vasel
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Publication number: 20210094671Abstract: An exterior panel for hypersonic transport vehicles is formed of a superplastic metal alloy such as titanium for accommodating high thermal stresses of hypersonic flight. The exterior panel, designed as re-usable on such transport vehicles, includes an exterior skin configured for atmospheric exposure, and an interior skin configured for attachment to structural frame members of the transport vehicles. An intermediate skin is situated between a pair of multicellular cores; each multicellular core is sandwiched between the exterior and interior skins, one core being situated between the exterior and intermediate skins, while the other is situated between the intermediate and interior skins. An airflow channel (AFC) extends through at least one of the multicellular cores for cooling of the exterior panel. Each multicellular core is superplastic formed and diffusion bonded to the other, as well as to its respective pair of skins to form an exterior panel having a unified structure.Type: ApplicationFiled: September 30, 2019Publication date: April 1, 2021Applicant: The Boeing CompanyInventor: Corey Vasel
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Publication number: 20210094670Abstract: An exterior panel is formed of superplastic materials, including an exterior skin of titanium to accommodate high thermal stresses imposed on hypersonic transport vehicles during hypersonic flight. The exterior skin is fixed to an underlying reinforcing skeletal structure consisting of a superplastic formable reinforcement (SFR) layer, for example a titanium, zirconium, and molybdenum (TZM) alloy, which supports the exterior skin whenever the latter may be heated to temperatures exceeding 1200 degrees Fahrenheit. The exterior panel includes a separate interior skin configured for attachment to a frame member such as a rib, stringer, or spar of the hypersonic transport vehicle. A multicellular core is sandwiched between the exterior and interior skins to impart tensile and compressive strength to the exterior panel. In one disclosed method, the core is superplastic formed and diffusion bonded to the exterior and interior skins.Type: ApplicationFiled: September 26, 2019Publication date: April 1, 2021Applicant: The Boeing CompanyInventor: Corey Vasel