Comparative friction of orthodontic wires under dry and wet conditions

Jan G. Stannard Ph.D. , Jeanne M. Gau , Milford A. Hanna Ph.D.
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引用次数: 115

Abstract

Kinetic coefficients of friction for stainless steel, beta-titanium, nickel-titanium, and cobalt-chromium arch wires were measured on a smooth stainless steel or Teflon surface. A universal materials testing instrument was used to pull 0.017 × 0.025-inch rectangular arch wires through a pneumatically controlled binding surface. Classical friction relationships were evaluated by varying applied normal force—similar to ligature tie force—via this pneumatic control. Coefficients of friction were determined under dry and wet (artificial saliva) conditions. Frictional force values, and thus coefficients of friction, were found to increase with increasing normal force for all materials. Beta-titanium and stainless steel wires sliding against stainless steel, and stainless steel wire on Teflon consistently exhibited the lowest dry friction values. Artificial saliva increased friction for stainless steel, beta-titanium, and nickel-titanium wires sliding against stainless steel. Artificial saliva did not increase friction for cobalt chromium, stainless steel sliding against stainless steel, or stainless steel wire on Teflon compared to the dry condition. Stainless steel and beta-titanium wires sliding against stainless steel and stainless steel wire on Teflon showed the lowest friction values for the wet condition.

干湿条件下正畸丝的摩擦比较
在光滑的不锈钢或聚四氟乙烯表面上测量了不锈钢、钛、镍钛和钴铬弓丝的动力学摩擦系数。采用万能材料测试仪将0.017 × 0.025英寸的矩形拱丝通过气动控制的粘结面拉出。通过气动控制,通过改变施加的法向力(类似于结扎力)来评估经典摩擦关系。在干、湿(人工唾液)条件下测定摩擦系数。所有材料的摩擦力值和摩擦系数都随着法向力的增加而增加。钛丝和不锈钢丝对不锈钢丝滑动,而不锈钢丝对特氟龙的干摩擦值始终最低。人工唾液增加了不锈钢线、钛线和镍钛线与不锈钢线的摩擦。与干燥条件相比,人工唾液不会增加钴铬、不锈钢与不锈钢之间的摩擦或不锈钢丝与特氟龙之间的摩擦。在潮湿条件下,不锈钢丝和钛丝与不锈钢丝和不锈钢丝在铁氟龙上滑动的摩擦值最低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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