Laser cutting system
First Claim
Patent Images
1. A laser cutting system, comprising:
- a laser source for providing a laser beam; and
a chamber for maintaining a controlled environment, the chamber having an optical element disposed in one surface of the chamber for allowing access by the laser beam to an internal volume of the chamber, the chamber also having an input port and an exhaust port;
a fixture for holding an article to be cut by the laser beam, the fixture disposed within the chamber;
a laser nozzle through which the laser beam shines to fall upon the article held by the fixture, the laser nozzle having an opening disposed at a distal end of the nozzle and located adjacent the fixture such that the laser beam exits the opening to fall upon the article held by the fixture;
a vacuum nozzle disposed around the laser nozzle and positioned adjacent the fixture such that a first opening disposed at a distal end of the vacuum nozzle at least partially surrounds the article to be cut without touching the article to be cut; and
a channel defined by an outer surface of the laser nozzle and an inner surface of the vacuum nozzle, the channel in fluid communication with the first opening of the vacuum nozzle and the exhaust port such that gas flowing through the input port into the chamber is drawn over the article to be cut and into the first opening and through the channel by a vacuum source applied to the exhaust port.
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Abstract
A laser cutting system including a chamber configured to provide a controlled environment while the laser is being used to cut a pattern into a material to reduce or eliminate heat and oxygen related changes to the mechanical characteristics of the material. A system for providing a gas to the controlled environment within the chamber, as well as a means for exhausting gas and cutting debris from the chamber is also described. A cutting mandrel that provides for flow of a shielding gas and also provides a means for dispersing a laser beam before it can produce unwanted damage to a section of tubing is also described.
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Citations
6 Claims
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1. A laser cutting system, comprising:
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a laser source for providing a laser beam; and a chamber for maintaining a controlled environment, the chamber having an optical element disposed in one surface of the chamber for allowing access by the laser beam to an internal volume of the chamber, the chamber also having an input port and an exhaust port; a fixture for holding an article to be cut by the laser beam, the fixture disposed within the chamber; a laser nozzle through which the laser beam shines to fall upon the article held by the fixture, the laser nozzle having an opening disposed at a distal end of the nozzle and located adjacent the fixture such that the laser beam exits the opening to fall upon the article held by the fixture; a vacuum nozzle disposed around the laser nozzle and positioned adjacent the fixture such that a first opening disposed at a distal end of the vacuum nozzle at least partially surrounds the article to be cut without touching the article to be cut; and a channel defined by an outer surface of the laser nozzle and an inner surface of the vacuum nozzle, the channel in fluid communication with the first opening of the vacuum nozzle and the exhaust port such that gas flowing through the input port into the chamber is drawn over the article to be cut and into the first opening and through the channel by a vacuum source applied to the exhaust port. - View Dependent Claims (2, 3, 4, 5)
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6. A laser cutting system, comprising:
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a laser source for providing a laser beam; and a chamber for maintaining a controlled environment, the chamber having an optical element disposed in one surface of the chamber for allowing access by the laser beam to an internal volume of the chamber, the chamber also having an input port and an exhaust port; a fixture for holding an article to be cut by the laser beam disposed within the chamber, the fixture including a mandrel for supporting the article to be cut while the article is cut by the laser beam; a laser nozzle through which the laser beam shines to fall upon the article held by the fixture, the laser nozzle having an opening disposed at a distal end of the nozzle and located adjacent the fixture such that the laser beam exits the opening to fall upon the article held by the fixture; a vacuum nozzle disposed around the laser nozzle and positioned adjacent the fixture such that a first opening disposed at a distal end of the vacuum nozzle at least partially surrounds the article to be cut without touching the article to be cut; and a channel defined by an outer surface of the laser nozzle and an inner surface of the vacuum nozzle, the channel in fluid communication with the first opening of the vacuum nozzle and the exhaust port such that gas flowing through the input port into the chamber is drawn over the article to be cut and into the first opening and through the channel by a vacuum source applied to the exhaust port.
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Specification