Exact(5)
Surfaces of engineering parts which are produced by different processes are not completely flat and have different non-homogeneities.
We demonstrate the capabilities of the proposed approach for a number of surfaces of engineering relevance.
Micro-dimple arrays on the surfaces of engineering parts play an important role in the behaviour of these parts.
In this contribution, a thermal treatment process is introduced that can induce solid-state precipitation also on the surfaces of engineering alloys, resulting in patterned surfaces.
The ability to cheaply pattern the surfaces of engineering alloys with compounds that may themselves exhibit interesting functional properties highlights an opportunity for alloy designers and functional materials researchers to collaborate for the long-term goal of functionalizing structural engineering alloys.
Similar(55)
We utilize the subsurface structure model of the Chukyo area proposed by Horikawa et al. (2008) and apply the model from the upper surface of the seismic bedrock to the upper surface of engineering bedrocks.
The need for protection and improvement of the mechanical characteristics of the surface of engineering parts can be to some extent satisfied by coatings.
The synthesis of Fe TiC metal matrix composite during metal deposition with laser and arc welding techniques is of technical and economic interest for hard surfacing of engineering components.
The present paper deals with a new methodology for predicting surface roughness of engineering surfaces.
Comparison between model-simulated output and measurement results of three-dimensional surface roughness of engineering surface show a good match, supporting the validity of the model.
The surface topography of engineering rough surfaces has an enormous influence on contact mechanics of the interface and further the dynamics of the contact system.
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