Patent classifications
Y10S29/011
METAL ALLOYS FOR MEDICAL DEVICES
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties.
MEDICAL DEVICE THAT INCLUDES A REFRACTORY METAL ALLOY
A medical device that is at least partially formed of a refractory metal alloy, and a method for inserting the medical device in a patient.
Metal alloys for medical devices
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties.
METAL ALLOYS FOR MEDICAL DEVICES
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties.
IMPROVED METAL ALLOYS FOR MEDICAL DEVICES
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties. The one or more improved physical properties of the novel metal alloy can be achieved in the medical device without having to increase the bulk, volume and/or weight of the medical device.
Metal alloys for medical devices
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties.
Metal alloys for medical devices
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties. The one or more improved physical properties of the novel metal alloy can be achieved in the medical device without having to increase the bulk, volume and/or weight of the medical device.
METAL ALLOYS FOR METAL DEVICES
A medical device and a method and process for at least partially forming a medical device, which medical device has improved physical properties.
Manufacturing process to produce metalurgically programmed terminal performance projectiles
The present invention in some aspects is directed to small arms ammunition and programmed upset characteristics thereof imparted to them using high energy beams. More particularly, the invention relates to ammunition and methods of making ammunition having predetermined patterns of engraving and/or cutting or hardening and/or annealing imparted in the ammunition's forward portion using a programming laser or electron beam system adapted for treating projectiles to effect predetermined and consistent upset configurations.
MANUFACTURING PROCESS TO PRODUCE METALURGICALLY PROGRAMMED TERMINAL PERFORMANCE PROJECTILES
The present invention in some aspects is directed to small arms ammunition and programmed upset characteristics thereof imparted to them using high energy beams. More particularly, the invention relates to ammunition and methods of making ammunition having predetermined patterns of engraving and/or cutting or hardening and/or annealing imparted in the ammunition's forward portion using a programming laser or electron beam system adapted for treating projectiles to effect predetermined and consistent upset configurations.