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Indentation size effect on the Fe2B/substrate interface

delete2011-12-01
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PRE
AI
I
I. Campos-Silva *
E
Enrique Hernández-Sánchez
G
G.A. Rodríguez-Castro
A
Alicia Rodríguez-Pulido
C
C. López‐García
M
Martín Ortiz Domínguez
DOI:10.1016/j.surfcoat.2011.07.029delete
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摘要

摘要

En 中文
This study evaluated the indentation size effect on the Fe2B/substrate interface using the Berkovich nanoindentation technique. First, the Fe2B layers were obtained at the surface of AISI 1018 bonded steels by the powder-pack bonding method. The treatment was conducted at temperatures of 1193, 1243 and 1273 K for 4, 6 and 8 h at each temperature. The bonding of AISI 1018 steel resulted in the formation of saw-toothed Fe2B surface layers. The formation of a jagged boride coating interface can be attributed to the enhanced growth at the tips of the coating fingers, due to locally high stress fields and lattice distortions. Thus, the mechanical properties achieved at the tips of the boride layer are of great importance in the behavior of bonded steel. Applied loads in the range of 10 to 500 mN were employed to characterize the hardness in the tips of the Fe2B/substrate interface for the different conditions of the bonding process. The results showed that the measured hardness depended critically on the applied load, which indicated the influence of the indentation size effect (ISE). The load-dependence of the hardness was analyzed with the classical power-law approach and the elastic recovery model. The true hardness in the tips of the Fe2B/substrate interface was obtained and compared with the bonding parameters. Finally, the nanoindentation technique was used to estimate the state of residual stresses in this critical zone of the Fe2B/substrate interface. (C) 2011 Elsevier B.V. All rights reserved.
Keyword:
Boriding
Indentation size effect
Surface layers
Hardness
Residual stresses
Fracture toughness

期刊

Surface and Coatings Technology 封面图
Surface and Coatings Technology
IF:
6.1
论文数:
2.8W
被引数:
7.1W

机构

I
instituto politecnico nacional - mexico
学者数:
1.6W
论文数: 1.0W
被引数: 3
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