Abstract: Composite projectiles include various material compositions, diameters, and cavities within the projectiles having a variety of cavity diameters, sidewalls, and bottoms selected and formed to induce different levels of penetration and disintegration of the composite projectiles upon impact with targets.
Abstract: A projectile has a particulate filler distributed in a toughened polymer resin and composite mixture in which the composite mixture is melted or mixed with a curative agent or foaming agent prior to injection or pouring into a mold, usually under pressure. The particulate filler has a density greater than a density of the resin and can include metals and additives to add weight and other mechanical properties to the composite mixture. The polymer resin can be about 3% to about 30% by weight of the total projectile composition having an average density less than the density of lead. The particulate filler can be about 70% to 97% by weight of the total projectile composition and can include copper, tungsten, lead, brass, iron, bismuth, and/or steel.
Type:
Application
Filed:
May 31, 2024
Publication date:
August 20, 2026
Applicant:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard Kent, Jennifer Folaron
Abstract: Composite projectiles include various material compositions, diameters, and cavities within the projectiles having a variety of cavity diameters, sidewalls, and bottoms selected and formed to induce different levels of penetration and disintegration of the composite projectiles upon impact with targets.
Abstract: Composite projectiles include various material compositions, diameters, and cavities within the projectiles having a variety of cavity diameters, sidewalls, and bottoms selected and formed to induce different levels of penetration and disintegration of the composite projectiles upon impact with targets.
Type:
Grant
Filed:
October 18, 2023
Date of Patent:
October 14, 2025
Assignee:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard D. Kent, Jennifer Folaron
Abstract: Composite projectiles include various material compositions, diameters, and cavities within the projectiles having a variety of cavity diameters, sidewalls, and bottoms selected and formed to induce different levels of penetration and disintegration of the composite projectiles upon impact with targets.
Type:
Application
Filed:
October 18, 2023
Publication date:
February 29, 2024
Applicant:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard D. Kent, Jennifer Folaron
Abstract: The present invention is directed to composite projectiles and the manufacture thereof for a wide range of purposes and applications through variation of the composite makeup of such composite projectiles. Embodiments of the invention include composite projectiles configured for manufacture using melt-flow manufacturing methods use-cases and composite projectiles having specialized performance for more effective use in specific use-cases.
Type:
Grant
Filed:
July 22, 2020
Date of Patent:
November 21, 2023
Assignee:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard D. Kent, Jennifer Folaron
Abstract: The present invention is directed to composite projectiles and the manufacture thereof for a wide range of purposes and applications through variation of the composite makeup of such composite projectiles. Embodiments of the invention include composite projectiles configured for manufacture using melt-flow manufacturing methods use-cases and composite projectiles having specialized performance for more effective use in specific use-cases.
Type:
Application
Filed:
July 22, 2020
Publication date:
April 15, 2021
Applicant:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard D. Kent, Jennifer Folaron
Abstract: The present invention surrounds an apparatus and method for the use in injection molding of articles of manufacture using an injection molding apparatus having a valve-gate pin or a plurality of valve-gate pins for actuation to extend and retract from a cavity within an injection mold. The valve-gate pin may have a retention feature or retention features configured for the retention of molded parts such that the retraction or extension of the valve-gate pin provides part removal from an associated injection mold. Further, the valve-gate pin may have a feature or features to facilitate the injection of fluids, gases or particles during or after the primary injection process. Additionally, a plurality of such valve-gate pins may be employed within each mold cavity, or within each valve-gate actuation system.
Abstract: The present invention is directed to composite projectiles and the manufacture thereof for a wide range of purposes and applications through variation of the composite makeup of such composite projectiles. Embodiments of the invention include composite projectiles configured for manufacture using melt-flow manufacturing methods use-cases and composite projectiles having specialized performance for more effective use in specific use-cases.
Type:
Application
Filed:
October 16, 2018
Publication date:
April 18, 2019
Applicant:
Smart Nanos, LLC
Inventors:
Robert Folaron, Howard D. Kent, Jennifer Folaron