Exact(2)
The effects of factors and interactions on the coefficient of friction (COF) and the wear rate values of both composite specimens and counter materials were studied.
Wear tests were carried out on modified UHMWPE and PEEK against CoCrMo and Al2O3 counter materials, in an adult bovine serum (ABS) medium at 37 °C.
Similar(58)
Friction and wear tests were carried out using a pin-on-disk tribometer with steel balls as the counter material.
It was found that the resistances of G2 titanium, transport wire and counter material appeared as ohmic impedance (R0).
We suggest that adhesion of the counter material has been prevented in the wear track by the chlorine ion implantation.
Friction and wear tests were carried out by a ball-on-disk tribometer with stainless steel and cemented carbide balls as a counter material, with and without lubricant.
The wear of the counter material has increased in these coatings without the occurrence of any wear damage on the coating side.
Friction and wear tests were carried out by a pin-on-disk tribometer with stainless steel balls as a counter material.
Adhesion of the counter material could be prevented by the carbon-ion implantation into TiN film, leading to a drastic decrease of the friction coefficient.
Representing a material difficult to form, austenitic stainless steel was used as a counter-material.
Investigation was concentrated on the effect of running-in, contact pressure, sliding speed and counter-material type and surface treatment on the tribological behaviour of hydrogenated DLC coatings when running‐in in helium.
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