Results 151 to 160 of about 1,035 (205)

Modelling of the abrasive water jet cutting process

Wear, 2004
Abstract A model for predicting the shape of the cut profile in industrial cutting processes has been developed and applied to abrasive water jet cutting. The well-known physics of abrasive wear is used in the process model, which is cast in intrinsic coordinates.
Deam, Rowan, Lemma, Engida, Ahmed, Dewan
exaly   +3 more sources

The optimal cutting times of multipass abrasive water jet cutting

International Journal of Advanced Manufacturing Technology, 2018
Cutting is one of the most important applications of abrasive water jet. However, there are always some quality defects in the cross section cut by abrasive water jet. It is found that multipass abrasive water jet cutting can effectively improve the cutting quality.
Meiping Wu   +2 more
exaly   +2 more sources

Water jet and abrasive water jet cutting of unidirectional graphite/epoxy composite

Composites, 1993
Abstract Unidirectional graphite/epoxy composite material has been machined by water jet and abrasive water jet cutting processes. Topography and morphology of the machined surfaces were evaluated with surface profilometry and scanning electron microscopy.
Dwayne Arola, M Ramulu
exaly   +2 more sources

The effect of cutting jet variation on surface striation formation in abrasive water jet cutting

Journal of Materials Processing Technology, 2003
Abstract Abrasive water jet machining is an emerging technology which can shape almost all engineering materials, but also produces a characteristic striated surface finish which limits its potential applications. In this study, the characterisation of different materials’ cut surfaces is investigated using a scanning electron microscope.
E Siores
exaly   +3 more sources

A Review on Abrasive Water Jet Cutting

International Journal of Recent advances in Mechanical Engineering, 2014
The development of high performance material such as composites and advanced ceramics has a variety of manufacturing challenges. It is known that many of these materials cannot be effectively machined by conventional machining methods. Apart from economics, the process selection is based on the machined surface integrity.
Sreekesh K, Govindan P
openaire   +1 more source

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