IP Library Granted Patent US 9,205,595
Granted Patent B2
US 9,205,595 · App. 12/522,891 · Granted Dec 8, 2015

Method and apparatus for treating an elongated object with plasma

Inventors: Marcel Simor (Rijswijk, NL); Ales Fiala (Rotterdam, NL)
Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk Onderzoek TNO
B29C59/142C08J7/18D06M14/18H05H1/2406B29C2059/145H05H2001/2412H05H2001/2431
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Quick Facts
Patent No.
US 9,205,595
App. No.
12/522,891
Granted
Dec 8, 2015
Kind
B2
Abstract

The invention relates to a method for treating an elongated object using a plasma process. The method comprises the steps of providing an elongated object in a planar electrode structure, and applying potential differences between electrodes of an electrode structure to generate the plasma process. Further, the method comprises at least partially surrounding the elongated object by a unitary section of the guiding structure, the electrode structure being associated with the unitary section.

Claims (36)

1. A method for treating an elongated object using a plasma process, comprising:

providing at least one elongated object and a planar electrode structure, wherein the at least one elongated object has a structure that extends along a longitudinal direction of the elongated object;

providing at least one outlet port, on either side of the planar electrode structure, and in series with the planar electrode structure;

treating, via the at least one outlet port and the planar electrode structure, the at least one elongated object with a flow and plasma process, wherein the flow process further comprises:

supplying a polymerization material and nanomaterial simultaneously, via the at least one outlet port; and

applying potential differences between electrodes of the electrode structure to generate the plasma process, wherein the at least one elongated object is positioned near or on the electrode structure.

2. A method for treating an elongated object using a plasma process, comprising:

providing at least one elongated object and a planar electrode structure, wherein the at least one elongated object has a structure that extends along a longitudinal direction of the elongated object;

providing at least one outlet port, on either side of the planar electrode structure, and in series with the planar electrode structure;

treating, via the at least one outlet port and the planar electrode structure, the at least one elongated object with a flow and plasma process, wherein the flow process further comprises:

supplying a polymerization material and nanomaterial, wherein the polymerization material and nanomaterial are provided consecutively, in time, via the at least one outlet port; and

applying potential differences between electrodes of the electrode structure to generate the plasma process, wherein the at least one elongated object is positioned near or on the electrode structure.

3. A method for treating an elongated object using a plasma process, comprising:

providing at least one elongated object and a planar electrode structure, wherein the at least one elongated object has a structure that extends along a longitudinal direction of the elongated object;

providing at least one outlet port, on either side of the planar electrode structure, and in series with the planar electrode structure;

treating, via the at least one outlet port and the planar electrode structure, the at least one elongated object with a flow and plasma process, wherein the flow process further comprises:

supplying a polymerization material via the at least one outlet port provided on a first side of the planar electrode structure; and

supplying a nanomaterial via the at least one outlet port provided on a second side of the planar electrode structure; and

applying potential differences between electrodes of the electrode structure to generate the plasma process, wherein the at least one elongated object is positioned near or on the electrode structure.

4. A method for treating an elongated object using a plasma process, comprising:

providing at least one elongated object and a planar electrode structure, wherein the at least one elongated object has a structure that extends along a longitudinal direction of the elongated object;

providing at least one outlet port, on either side of the planar electrode structure, and in series with the planar electrode structure;

treating, via the at least one outlet port and the planar electrode structure, the at least one elongated object with a flow and plasma process, wherein the flow and plasma process further comprises:

blowing a carrier gas over a surface of the at least one elongated object via the at least one outlet port;

activating the surface of the at least one elongated object with a plasma process via the planar electrode structure;

applying potential differences between electrodes of the electrode structure to generate the plasma process, wherein the at least one elongated object is positioned near or on the electrode structure;

depositing a polymerization material and nanomaterial at the activated surface of the at least one elongated object via one or more of the at least one outlet port; and

wherein the polymerization material and nanomaterial are deposited simultaneously.

5. A method for treating an elongated object using a plasma process, comprising:

providing at least one elongated object and a planar electrode structure, wherein the at least one elongated object has a structure that extends along a longitudinal direction of the elongated object;

providing at least one outlet port, on either side of the planar electrode structure, and in series with the planar electrode structure;

providing at least one top outlet port above the planar electrode structure, wherein the at least one elongated object is positioned between the at least one top outlet port and the planar electrode structure:

treating, via the at least one outlet port and the planar electrode structure, the at least one elongated object with a flow and plasma process;

applying potential differences between electrodes of the electrode structure to generate the plasma process, wherein the at least one elongated object is positioned near or on the electrode structure;

supplying a polymerization material via the at least one outlet port; and

supplying a nanomaterial via the at least one top outlet port.

Assignments (6)
CHANGE OF NAME Recorded Mar 17, 2023
From: DSM PROTECTIVE MATERIALS B.V.
To: AVIENT PROTECTIVE MATERIALS B.V.
Reel/Frame 063115/0134 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2022
From: DSM IP ASSETS B.V.
To: DSM PROTECTIVE MATERIALS B.V.
Reel/Frame 061897/0987 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2018
From: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
To: DSM IP ASSETS B.V.
Reel/Frame 047647/0701 →
CHANGE OF ADDRESS OF ASSIGNEE Recorded Feb 28, 2018
From: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
To: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
Reel/Frame 046023/0096 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME TO INCLUDE THE HYPHEN IN TOEGEPAST-NATUURWETENSCHAPPELIJK, PREVIOUSLY RECORDED ON REEL 023276 FRAME 0886. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 16, 2010
From: NEDERLANDSE ORGANISATIE VOOR TOEGEPASTNATUURWETENSCHAPPELIJK ONDERZOEK TNO
To: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
Reel/Frame 024695/0991 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2009
From: SIMOR, MARCEL; FIALA, ALES
To: NEDERLANDSE ORGANISATIE VOOR TOEGEPASTNATUURWETENSCHAPPELIJK ONDERZOEK TNO
Reel/Frame 023276/0886 →
Priority Claims (1)
EP 07075023 · Jan 10, 2007 · regional
Continuity (1)
Related Publication 20100203257A1 · Aug 12, 2010