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In this study, the mechanism underlying axial vibration assisted drilling is analyzed using a scratch experiment with a single cutter.
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Scratch experiments and AFM imaging were carried out in an ambient condition using a vector scan method.
In this paper we describe the scratch experiments used to compare the mar resistance of the coatings.
To validate the present model, scratch experiments were conducted on glass ceramics using an ultra-precision machine.
The morphology evolution depending on the bias is studied and the brittle interface is assessed by scratch experiments.
The simulation results were compared with scratch experiments and a very good agreement between them was found.
Scratch experiments on the systems revealed a strong adhesion of the multilayered coatings on steel substrates, and delamination at layer interfaces.
This is evident from simple scratch experiments as well as experiments using focused ion beam (FIB) implantation of Si2+ to write defined surface damage/implant patterns into n-type InP(100) substrates.
Moreover, two different models were used to characterise the coating according to x Al content: calculations of film fracture toughness KIC from microindentation tests and crack propagation resistance CPRs from scratch experiments.
By adopting the stepwise decreased bias, the 4.5 μm thick TiAlN/DLC multi-layer coating is fabricated and does not exhibit interfacial failure at any interface between TiAlN and DLC in the scratch experiments up to a load of 100 N.
Fig. 1 (a) Principle of scratching experiment setup, (b) spherical indenter and (c) Vickers indenter.
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