Claims
- 1. A valve, comprising:
a chamber having, a first chamber opening and a second chamber opening, the chamber having a first chamber portion and a second chamber portion delineated by a chamber edge, the first chamber opening adapted to receive a fluid pressure source; a chamber shuttle comprising, a chamber shuttle cavity having a chamber shuttle cavity wall and a shuttle cavity wall opening edge, the chamber shuttle cavity wall opening accessible at the second chamber opening, the chamber shuttle cavity wall having at least a first cavity wall portion alongside the second chamber portion forming an fluid flow deterrent therewith, and a second cavity wall portion with an aperture therein, the second cavity wall portion movable between the second chamber portion, forming an fluid flow deterrent therewith, and the first chamber portion forming a fluid flow channel between the chamber and the chamber shuttle cavity through the aperture; and a force applied between the chamber and the chamber shuttle to bias the second cavity wall portion into the first chamber portion.
- 2. The valve in claim 1 further comprising,
a suction head connected to the shuttle cavity wall, wherein forceful contact between the suction head and a work piece surface opposes and overcomes the force applied between the chamber and the chamber shuttle and moves the second cavity wall portion into the first chamber portion.
- 3. The valve in claim 1 wherein,
the chamber and the chamber shuttle cavity are substantially cylindrically shaped, and the first chamber portion has a larger diameter than the second chamber portion.
- 4. The valve in claim 3 wherein,
the fluid flow deterrent formed between the first cavity wall portion alongside the first chamber portion is augmented by an O-ring positioned within a well in the second chamber portion.
- 5. The valve in claim 3 wherein,
the fluid flow deterrent formed between second cavity wall portion and the second chamber portion is augmented by an O-Ring positioned circumferentially around the chamber shuttle cavity wall.
- 4. The valve in claim 2 wherein,
the force applied between the chamber and the chamber shuttle is applied by a spring encircling the chamber shuttle cavity wall and biased between the suction head and the chamber.
- 5. The valve in claim 2 wherein,
a fluid flow channel is interposed between the chamber shuttle cavity wall and the suction head.
- 6. A valve construction, comprising:
a chamber housing having, a first chamber opening and a second chamber opening, the chamber having a first chamber portion delineated from a second chamber portion by a chamber edge, the first chamber opening adapted to receive a fluid pressure source; a tubular chamber shuttle comprising a tubular cavity wall having,
a first distal end having a positive edge positionable, in contact with the chamber edge forming an fluid flow deterrent therewith in a valve closed state, and apart from the chamber edge in a valve open state, a middle portion with an aperture therein and at least partially positionable, alongside the second chamber portion forming an fluid flow deterrent therewith in a valve closed state, and within the first chamber portion forming a fluid flow channel between the chamber and the chamber shuttle cavity through the aperture in a valve open state, and a second distal end having an opening edge and protruding through the second chamber opening; and a spring, biased between the chamber housing and a position fixed relative to the tubular chamber shuttle.
- 7. The valve construction in claim 6 wherein,
a suction head is connected to the second distal end and the spring is biased between the chamber housing and a surface on the suction head.
- 8. The valve construction in claim 7 wherein,
an fluid flow channel is interposed between the second distal end and the suction head.
- 9. The valve construction in claim 6 wherein,
the fluid flow deterrent formed between the shuttle cavity wall middle portion and the second chamber portion is augmented by an O-ring interposed there between.
- 10. The valve construction in claim 9 wherein,
the second chamber portion has a receiving well for the O-ring.
- 11. The valve construction in claim 6 wherein,
the fluid flow deterrent formed by the positive edge in contact with the chamber edge forming an fluid flow deterrent therewith is augmented by an O-ring interposed there between.
- 12. The valve construction in claim 6 wherein,
the first distal end has an opening edge therein and a plug is biased against a tubular cavity wall edge to contact the opening edge and form an air deterrent junction therewith.
- 13. The valve construction in claim 12 further comprising,
an O-ring is attached to the opening edge to augment the air deterrent junction with the plug.
- 14. A method of operating a valve:
the valve comprising a chamber having, a first chamber opening and a second chamber opening, a first chamber portion and a second chamber portion delineated by a chamber edge, the first chamber opening adapted to receive a fluid pressure source; a chamber shuttle comprising, a chamber shuttle cavity having a chamber shuttle cavity wall, the chamber shuttle cavity wall protruding through the second chamber opening and having at least a first cavity wall portion alongside the second chamber portion forming an fluid flow deterrent therewith, and a second cavity wall portion with an aperture therein, the second cavity wall portion movable between the second chamber portion, forming an fluid flow deterrent therewith, and the first chamber portion forming a fluid flow channel between the chamber and the chamber shuttle cavity through the aperture; and a force applied between the chamber and the chamber shuttle to bias the second cavity wall portion into the first chamber portion; the method comprising:
applying negative pressure to the first chamber opening; positioning a suction head coupled to the chamber shuttle cavity wall adjacent to a work piece; contacting the suction head to the work piece to overcome the force applied between the chamber and the chamber shuttle thereby, moving the second cavity wall portion with an aperture therein into the first chamber portion to permit fluid-flow between the first chamber opening and the chamber shuttle cavity wall.
Parent Case Info
[0001] This application is a continuation-in-part from earlier filed application Ser. No. 09/966,862 filed Sep. 28, 2001.
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
09966862 |
Sep 2001 |
US |
| Child |
10267168 |
Oct 2002 |
US |