Exact(6)
The material yielded at 390 MPa – 10 times the flow stress of the coarse-grained counterpart material.
For the analysis of the tribological behavior, unhardened AISI 5115 (DIN 1.7131) was used as counterpart material.
The influence of having a coated counterpart material as opposed to an uncoated steel ball was also examined.
The influence of a normal load, sliding speed and a counterpart material on the friction coefficient and the specific wear rate of the coatings were studied.
The wear test showed that the superhard CrAlSiN coating has a very low friction coefficient (0.1 0.2) against the counterpart material of WC/Co.
It is shown that the ratio of hardness of the counterpart material and of the nanocomposite coating is crucial in determining the influence of roughness on the tribological properties of these coatings.
Similar(54)
Similar trends were observed regardless of counterpart materials and applying load in this work.
In the physical approach, one-dimensional perovskite manganite nanostructures are patterned from bulk or film counterpart materials by a combination of lithography and etching.
The counterpart materials were 405 stainless steel used as tube support materials (anti-vibration bar) in the power plants, which were cut into plate specimens with 8 mm × 8 mm × 25 mm size.
From our experimental results, it was found that the tribological behavior of Ti Si N coating layers was affected by factors such as Si content, sliding speed, and type of counterpart materials.
The friction and wear behaviour of a-C and a-C H coa-C Hs in ambient air are highly dependent on kind of coatingsarts materinl.
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