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11篇 您的检索式:作者名="Brunatto"
    题名 作者 年代 出处 被引量
1查看详情显示文摘Brunatto S F Kühn I Klein A N 0,,:1
2查看详情显示文摘Brunatto S F Muzart J L R 0,,:1
3查看详情显示文摘Brunatto S F Kühn I Klein A N 0,,:1
4查看详情显示文摘Brunatto S F Kühn I Muzart J L R 0,,:1
5查看详情显示文摘Brunatto S F Klein A N Muzart J L R 0,,:1
6查看详情显示文摘Brunatto S F 0,,:1
7查看详情显示文摘Brunatto S F 0,,:1
8Sintering iron using a hollow cathode discharge显示文摘Brunatto S F Kuhn I Klein A N 2002Materials Science and Engineering2002,343,:1
9DC Plasma Technology Applied to Powder Metallurgy: an Overview显示文摘DC plasma is a very promising technology for processing different materials, and is becoming especially interesting when low environmental impact and high-performance treatments are needed. Some of the intrinsic characteristics of DC plasma technology, which make it suitable for powder metallurgy (PM) and powder injection molding (PIM) parts production, are low- pressure processing and plasma environment high reactivity. Moreover it can be considered as a highly competitive green technology. In this work, an overview of some of the important DC plasma techniques applied to PM and PIM parts processing is presented. Emphasis is given to the descriptions of the main characteristics and the technique potentials of plasma-assisted nitriding, plasma-assisted thermal debinding, plasma-assisted sintering, and simultaneously plasma-assisted sintering and surface alloying. The aspects presented and discussed in this paper indicate that DC plasma processes are promising and competitive techniques for PM and PIM parts processing.A. N. KLEIN R. P. CARDOSO H. C. PAVANATI C. BINDER A. M. MALISKA G. HAMMES D. FUSAO A. SEEBER S. F. BRUNATTO J. L. R. MUZART 2013Plasma Science and Technology2013,15,1:1
10Low-temperature plasma nitrocarburizing of the AISI 420 martensitic stainless steel: Microstructure and process kinetics显示文摘Anjos A D Scheuer C J Brunatto S F 2015Surface and Coatings Technology2015,275,:1
11Influence of the Iron Anisothermal Sintering on the Characteristic of the Hollow Cathode Discharge显示文摘This work studies the influence of anisothermal iron sintering process on hollow cathode discharge characteristics. Two independent cathodes form an annular discharge. The pressed cylindrical iron powder sample, acting as central cathode, was placed concentrically in the interior of an external cathode. The external cathode, machined from an AISI 310 steel bar, besides acting to confine the geometry of the plasma, can also acts as a source of alloying elements. The sample heating is a function of the ion bombardment energy and, so, of the discharge electrical parameters: current (or current density) and the effective potential applied to the cathode. Successive anisothermal sintering is performed in a same sample until the reproducibility of the electrical parameters being obtained. The heating experiments up to 1250 °C, in a gas mixture of 80% Ar + 20% H2, at pressure of 133 Pa, at flow of 2xlO'6 mV, with an inter-cathode radial space of 5.8 mm, were carried out. It was verified the metallurgical evolution of the iron sample sintering process influences the current-?0n (time switched-on of the pulse) characteristics of the discharge.BRUNATTO Silvio Francisco MUZART Joel Louis Rene 2004材料热处理学报2004,25,5:0
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