IP Library › Granted Patent US 10,923,331
Granted Patent B1
US 10,923,331 · App. 15/791,353 · Granted Feb 16, 2021

Plasma cleaning device and process

Inventors: Thomas Scott Williams (Los Angeles, CA); Quoc Dinh Truong (Norwalk, CA); Robert F. Hicks (Los Angeles, CA)
Assignee: Surfx Technologies LLC
H01J37/32568B08B7/0035H01J37/32532H01J37/32541H01J37/32825H05H1/46
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Quick Facts
Patent No.
US 10,923,331
App. No.
15/791,353
Granted
Feb 16, 2021
Kind
B1
Abstract

Atmospheric pressure plasma devices and methods for preparing the surfaces of fasteners, e.g. nutplates, for adhesive bonding are disclosed. A device supports a fastener to dispose a contact surface of the fastener to receive an atmospheric pressure plasma flow, thereby activating the contact surface to be bonded. A spacer is used to properly support the fastener to receive the plasma treatment. A spacer can comprise beveled edges of a grounded enclosure which electrically connects the contact surface of the fastener to the plasma generator where plasma is formed in a gas flow along the electrodes. Alternately, a spacer can comprise a plurality of standoffs on a showerhead port comprising a ground electrode of the plasma generator where plasma is formed in a gas flow across the electrodes.

Claims (18)

1. An apparatus for treating a mechanical fastener with atmospheric pressure plasma comprising:

an atmospheric pressure plasma generator receiving a gas flow and electrical power and directing the gas flow through a gap between a powered electrode and a grounded electrode of the atmospheric pressure plasma generator while applying the electrical power across the powered electrode and the grounded electrode to generate an atmospheric pressure plasma flow in the gap;

wherein the grounded electrode comprises a housing enclosure having a central rectangular opening and the powered electrode comprises a central indexing hole for receiving an extended portion of the mechanical fastener and thereby aligning the mechanical fastener in the central rectangular opening so that a contact surface of the mechanical fastener is uniformly impacted with the atmospheric pressure plasma flow; and

a spacer comprising opposing beveled edges of the central rectangular opening for supporting the edges of the contact surface of the mechanical fastener above the atmospheric pressure plasma flow in order to expose the contact surface of the mechanical fastener to the atmospheric pressure plasma flow and activate the mechanical fastener surface for bonding.

2. The apparatus of claim 1 , wherein the contact surface of the mechanical fastener is electrically conductive and makes electrical contact with the opposing beveled edges such that a portion of the atmospheric pressure plasma is generated directly between the powered electrode and the contact surface of the mechanical fastener.

3. The apparatus of claim 1 , wherein the grounded electrode comprising the housing enclosure is cylindrical and the powered electrode is circular and disposed within the cylindrical housing enclosure, the circular powered electrode supported by an electrical insulator between the cylindrical housing enclosure and the circular powered electrode in order to form the gap between the circular powered electrode and the cylindrical housing enclosure.

4. The apparatus of claim 3 , wherein the gap between the circular powered electrode and the cylindrical housing enclosure begins as a circumferential passage which turns to a planar passage and ends at the central rectangular opening of the cylindrical housing enclosure, the contact surface of the mechanical fastener being disposed at the central opening.

5. The apparatus of claim 4 , wherein the circular powered electrode comprises a central indexing hole for receiving an extended portion of the mechanical fastener and thereby aligning the contact surface of the mechanical fastener such that the contact surface of the mechanical fastener is uniformly contacted with the atmospheric pressure plasma flow.

6. The apparatus of claim 1 , wherein the contact surface of the mechanical fastener is impacted with reactive species from an atmospheric pressure plasma containing an inert gas, and a molecular gas selected from the group comprising oxygen, nitrogen, hydrogen, carbon dioxide, and nitrous oxide.

7. An apparatus for treating a mechanical fastener with atmospheric pressure plasma comprising:

an atmospheric pressure plasma generator receiving a gas flow and electrical power and directing the gas flow through a gap between a powered electrode and a grounded electrode of the atmospheric pressure plasma generator while applying the electrical power across the powered electrode and the grounded electrode to generate an atmospheric pressure plasma flow in the gap; and

a spacer for supporting the mechanical fastener above the atmospheric pressure plasma flow in order to expose a contact surface of the mechanical fastener to the atmospheric pressure plasma flow and activate the mechanical fastener surface for bonding;

wherein the grounded electrode comprises a cylindrical housing enclosure and the powered electrode is circular and disposed within the cylindrical housing enclosure, the circular powered electrode supported by an electrical insulator between the cylindrical housing enclosure and the circular powered electrode in order to form the gap between the circular powered electrode and the cylindrical housing enclosure which comprises the grounded electrode;

wherein the gap between the circular powered electrode and the cylindrical housing enclosure begins as a circumferential passage which turns to a planar passage and ends at a central rectangular opening of the cylindrical housing enclosure, the contact surface of the mechanical fastener being disposed at the central rectangular opening;

wherein the circular powered electrode comprises a central indexing hole for receiving an extended portion of the mechanical fastener and thereby aligning the contact surface of the mechanical fastener such that the contact surface of the mechanical fastener is uniformly contacted with the atmospheric pressure plasma flow.

8. The apparatus of claim 7 , wherein the spacer comprises opposing beveled edges of the central rectangular opening for supporting edges of the contact surface of the mechanical fastener.

9. The apparatus of claim 8 , wherein the contact surface of the mechanical fastener is electrically conductive and makes electrical contact with the opposing beveled edges such that a portion of the atmospheric pressure plasma is generated directly between the powered electrode and the contact surface of the mechanical fastener.

10. The apparatus of claim 7 , wherein the contact surface of the mechanical fastener is impacted with reactive species from an atmospheric pressure plasma containing an inert gas, and a molecular gas selected from the group comprising oxygen, nitrogen, hydrogen, carbon dioxide, and nitrous oxide.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2018
From: AEROSPACE MATERIALS PROCESSING, LLC
To: SURFX TECHNOLOGIES LLC
Reel/Frame 046921/0777 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2018
From: WILLIAMS, THOMAS SCOTT; TRUONG, QUOC DINH; HICKS, ROBERT F.
To: AEROSPACE MATERIALS PROCESSING, LLC
Reel/Frame 046844/0933 →
Continuity (1)
Provisional Application 62411564 · Oct 22, 2016
Cited By (4)
US 12,262,877 US 12,408,256 US 12,446,764 US 12,745,901