Structure and Worn Surface Morphology on Copper Containing Composites under Dry Sliding with High Contact Current Density; Key Engineering Materials; Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016)

Detaylı Bibliyografya
Parent link:Key Engineering Materials: Scientific Journal
Vol. 712 : Advanced Materials for Technical and Medical Purpose (AMTMP 2016).— 2016.— [P. 137-142]
Müşterek Yazar: Национальный исследовательский Томский политехнический университет (ТПУ) Институт физики высоких технологий (ИФВТ) Кафедра физики высоких технологий в машиностроении (ФВТМ)
Diğer Yazarlar: Fadin V. V. Viktor, Aleutdinova M. I. Marina, Rubtsov V. E. Valery Evgenjevich, Aleutdinova V. A. Valeriya
Özet:Title screen
Dry sliding of the sintered composites of compositions Cu-graphite-Fe and Cu-Fe against steel at the contact current density higher 100 A/cm{2} has been carried out. The presence of FeO oxide in surface layer was shown. The low content of FeO oxide resulted in high wear intensity. Formation of a liquid phase on a sliding surface was observed. Wear intensity was low in the presence of a liquid phase on the worn surface.
Режим доступа: по договору с организацией-держателем ресурса
Dil:İngilizce
Baskı/Yayın Bilgisi: 2016
Seri Bilgileri:Design of Multiscale Composites and Polymers of New Generation
Konular:
Online Erişim:http://dx.doi.org/10.4028/www.scientific.net/KEM.712.137
Materyal Türü: Elektronik Kitap Bölümü
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=651275

MARC

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200 1 |a Structure and Worn Surface Morphology on Copper Containing Composites under Dry Sliding with High Contact Current Density  |f V. V. Fadin [et al.] 
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300 |a Title screen 
330 |a Dry sliding of the sintered composites of compositions Cu-graphite-Fe and Cu-Fe against steel at the contact current density higher 100 A/cm{2} has been carried out. The presence of FeO oxide in surface layer was shown. The low content of FeO oxide resulted in high wear intensity. Formation of a liquid phase on a sliding surface was observed. Wear intensity was low in the presence of a liquid phase on the worn surface. 
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