Title of article :
Generation of transfer film and its effects on wear mechanisms in alumina conveying pipeline of mild stee
Author/Authors :
A.A. Cenna، نويسنده , , K.C. Williams، نويسنده , , M.G. Jones، نويسنده , , N.W. Page، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2009
Pages :
6
From page :
362
To page :
367
Abstract :
Pipeline wear is a very complex problem and at present there is limited understanding of the wear mechanisms responsible for the reduction of wall thickness in severe wear regions of alumina conveying pipelines. The ability to determine the wear mechanisms in these areas holds the key in determining the service life of pneumatic conveying pipelines in these industries. In a previous paper it was revealed that delamination and subsequent cracking and spalling of a thin layer plays a major role in material removal in the severe wear regions in the pipeline. The thin surface layer is believed to be the transfer film of alumina generated in the internal pipe surface. In this paper, the transfer film developed in these areas of the pipeline have been analysed to determine its mechanical properties and to correlate the properties with the wear mechanisms observed earlier. In this work, the transfer film formed on mild steel pipes during pneumatic conveying is investigated by using a UMIS nanoindenter. The benefit of using the nanoindenter lies in the very small force that can be applied so that only the properties of the transfer film are measured. The mechanical properties of the film such as the hardness and Youngʹs modulus at different loads are measured. Attempts are also made to measure the fracture behaviour of the film. The elemental analysis of the surface as well as the through depth was conducted using the SEM microanalytical technique EDS (energy dispersive X-ray spectroscopy) and XPS (X-ray photoelectron spectroscopy). The study found that the top layer of the surface is primarily aluminium with hardness value similar to that of sintered alumina.
Keywords :
Abrasive , Wear , Pneumatic conveying , Alumina , Erosive , Transfer film
Journal title :
Wear
Serial Year :
2009
Journal title :
Wear
Record number :
1090848
Link To Document :
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