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Ion Beam and Plasma Technology Development for Surface Modification at Los Alamos National Laboratory

Ion Beam and Plasma Technology Development for Surface Modification at Los Alamos National Laboratory
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Total Pages:
Release: 2006
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We are developing two high-throughput technologies for materials modification. The first is a repetitive intense ion beam source for materials modification through rapid surface melt and resolidification (up to 10[sup 10] deg/sec cooling rates) and for ablative deposition of coatings. The short range of the ions (typically 0.1 to 5 micrometers) allows vaporization or melting at moderate beam energy density (typically 1-50 J/cm[sup 2]). A new repetitive intense ion beam accelerator called CHAMP is under development at Los Alamos. The design beam parameters are: E=200 keV, I=15 kA, [tau]=1 [micro]s, and 1 Hz. This accelerator will enable applications such as film deposition, alloying and mixing, cleaning and polishing, corrosion and wear resistance, polymer surface treatments, and nanophase powder synthesis. The second technology is plasma source ion implantation (PSII) using plasmas generated from both gas phase (using radio frequency excitation) and solid phase (using a cathodic arc) sources. We have used PSII to directly implant ions for surface modification or as method for generating graded interfaces to enhance the adhesion of surface coatings. Surfaces with areas of up to 16 m[sup 2] and weighing more than a thousand kilograms have been treated in the Los Alamos PSII chamber. In addition, PSII in combination with cathodic source deposition has been used to form highly adherent, thick Er[sub 2]O[sub 3] coatings on steel for reactive metal containment in casting. These coatings resist delamination under extreme mechanical and thermal stress.


Plasma and Ion Beam Processing at Los Alamos

Plasma and Ion Beam Processing at Los Alamos
Author:
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Total Pages: 4
Release: 1994
Genre:
ISBN:

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Efforts are underway at Los Alamos National Laboratory to utilize plasma and intense ion beam science and technology of the processing of advanced materials. A major theme involves surface modification of materials, e.g., etching, deposition, alloying, and implantation. In this paper, we concentrate on two programs, plasma source ion implantation and high-intensity pulsed ion beam deposition.


Ion Sources for Surface Treatments of Materials . Final Report on the Contract 0248U0016-35 Between the Los Alamos National Laboratory and the Institute of Electrophysics

Ion Sources for Surface Treatments of Materials . Final Report on the Contract 0248U0016-35 Between the Los Alamos National Laboratory and the Institute of Electrophysics
Author:
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Total Pages: 6
Release: 1998
Genre:
ISBN:

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Treatment of materials by accelerated ions causes considerable changes in the microstructure and properties of the surface layer of these materials. Results of numerous laboratory studies show that ion beams are highly efficient in surface modification of materials. However, development and commercial use of ion beam technologies is hampered due to the lack of inexpensive, reliable and efficient ion sources. One of the promising directions in development of commercial ion sources is the use of cold-cathode discharges for producing ion emitting plasma. The main objectives of the contract works were as follows: (1) analyze discharge characteristics in the electrode system of the inverted magnetron type, parameter and emission properties of the discharge plasma, and formation of broad beams in an ion optics system; (2) create a laboratory prototype ion source, deliver the prototype ion source to Los Alamos, and perform joint experiments on ion beam surface modification of materials; (3) use results of the investigations and tests of the laboratory ion source as the basis for development of a commercial ion source with the beam up to 1,000 cm2 in cross-section area. Results of the research are summarized.


Plasma Source Ion Implantation Research and Applications at Los Alamos National Laboratory

Plasma Source Ion Implantation Research and Applications at Los Alamos National Laboratory
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Total Pages: 5
Release: 1996
Genre:
ISBN:

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Plasma Source Ion Implantation research at Los Alamos Laboratory includes direct investigation of the plasma and materials science involved in target surface modification, numerical simulations of the implantation process, and supporting hardware engineering. Target materials of Al, Cr, Cu-Zn, Mg, Ni, Si, Ti, W, and various Fe alloys have been processed using plasmas produced from Ar, NH3, N2, CH4, and C2H2 gases. Individual targets with surface areas as large as (approximately)4 m2, or weighing up to 1200 kg, have been treated in the large LANL facility. In collaboration with General Motors and the University of Wisconsin, a process has been developed for application of hard, low friction, diamond-like-carbon layers on assemblies of automotive pistons. Numerical simulations have been performed using a 21/2-D particle- in-cell code, which yields time-dependent implantation energy, dose, and angle of arrival for ions at the target surface for realistic geometries. Plasma source development activities include the investigation of pulsed, inductively coupled sources capable of generating highly dissociated N with ion densities n{sub i} (approximately) 1011/cm3, at (approximately)100 W average input power. Cathodic arc sources have also been used to produce filtered metallic and C plasmas for implantation and deposition either in vacuum, or in conjunction with a background gas for production of highly adherent ceramic coatings.


Ion Beam Treatment of Polymers

Ion Beam Treatment of Polymers
Author: Alexey Kondyurin
Publisher: Newnes
Total Pages: 268
Release: 2014-09-25
Genre: Technology & Engineering
ISBN: 0080999182

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Ion Beam Treatment of Polymers, Second Edition presents the results of polymer investigations and technique development in the field of polymer modification by high-energy ion beams. It shows how to use ion beam equipment in the polymer industry, as well as how to use it to produce new polymer materials. The authors, scientists and researchers active in the field, provide analysis and data from their work, and give an overview of related work by others. The authors focus on wetting, adhesion, hardness, chemical activity, environmental stability, biocompatibility, new synthesis methods, and space flight construction. The technologies of material modification by a beam of high energy ions have wide applications in different fields, from microelectronics to medicine. Historically, ion beam treatment of polymers had fewer applications due to high costs of ion beam equipment and low costs of polymer materials. The modern development of new pulse sources with a high current density and wide ion beams increase the effectiveness of ion beam technology for polymers. Collates data from many scientists working in polymer chemistry, physics of ion beam implantation, and in development and production of ion beam equipment Covers industrial and scientific applications of ion beam implanted polymers Integrates physical and chemical aspects of the processes in polymers treated by ion beams


Fusion Energy Update

Fusion Energy Update
Author:
Publisher:
Total Pages: 160
Release: 1986
Genre: Controlled fusion
ISBN:

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Energy Research Abstracts

Energy Research Abstracts
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Total Pages: 1032
Release: 1994
Genre: Power resources
ISBN:

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Semiannual, with semiannual and annual indexes. References to all scientific and technical literature coming from DOE, its laboratories, energy centers, and contractors. Includes all works deriving from DOE, other related government-sponsored information, and foreign nonnuclear information. Arranged under 39 categories, e.g., Biomedical sciences, basic studies; Biomedical sciences, applied studies; Health and safety; and Fusion energy. Entry gives bibliographical information and abstract. Corporate, author, subject, report number indexes.