Editorial Type:
Article Category: Research Article
 | 
Online Publication Date: 01 Dec 1991

Comparison of the frictional coefficients for selected archwire-bracket slot combinations in the dry and wet states

PhD,
BS, and
DDS
Page Range: 293 – 302
DOI: 10.1043/0003-3219(1991)061<0293:COTFCF>2.0.CO;2
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Abstract

Coefficients of friction were evaluated in the dry and wet (saliva) states for stainless steel, cobalt-chromium, nickel titanium, and beta-titanium wires against either stainless steel or polycrystalline alumina brackets. For both operators' experiments, an 0.010″ stainless steel ligature wire pressed each archwire into the 0.018″ or 0.022″ bracket slot at 34°C.

In the dry state and regardless of slot size, the mean kinetic coefficients of friction were smallest for the all-stainless steel combinations (0.14) and largest for the beta-titanium wire combinations (0.46). The coefficients of the polycrystalline alumina combinations were generally greater than the corresponding combinations that included stainless steel brackets. In the wet state, the kinetic coefficients of the all-stainless steel combinations increased up to 0.05 over the dry state. In contrast, all beta-titanium wire combinations in the wet state decreased to 50% of the values in the dry state. The mixed reports that saliva may promote adhesive and lubricious behaviors may have some substance.

Copyright: Edward H. Angle Society of Orthodontists

Contributor Notes

R.P. Kusy is a Professor in the Department of Orthodontics, Biomedical Engineering and in the Applied Sciences Curriculum at the University of North Carolina at Chapel Hill

J.Q. Whitley is a Research Technician in the Dental Research Center at the University of North Carolina at Chapel Hill

M.J. Prewitt is an orthodontic resident at Baylor University in Dallas, Texas

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