Konstantellos B, Lagoudakis M, Toutountzakis N
Orthod Epitheor. 1990 Dec;2(3):101-11.
Orthodontic forces are applied to the teeth basically by means of different types of orthodontic wires. Knowledge of the mechanical properties of such wires are very helpful to the clinician in design and application of optimal force systems during orthodontic treatment. The basic mechanical properties were studied for 17 types of orthodontic wires (all rectangular and of the same size), in tension. Modulus of elasticity (E), yield strength (YS) and maximum elastic strain (Springback) (YS/E) were calculated for each type of wires. Stainless steel wires have demonstrated higher modulus of elasticity (and yield strength) in comparison with wires of nickel-titanium and beta titanium alloys. B-titanium wires showed higher modulus of elasticity than nickel-titanium ones. In addition stainless steel wires were found to have higher values for springback than cobalt-chromium ones and lower values (for the same variable) than nickel-titanium and B-titanium wires.
正畸力基本上是通过不同类型的正畸钢丝施加于牙齿的。了解此类钢丝的力学性能,对临床医生在正畸治疗期间设计和应用最佳力系非常有帮助。对17种正畸钢丝(均为矩形且尺寸相同)进行了拉伸状态下基本力学性能的研究。计算了每种钢丝的弹性模量(E)、屈服强度(YS)和最大弹性应变(回弹)(YS/E)。与镍钛合金丝和β钛合金丝相比,不锈钢丝表现出更高的弹性模量(和屈服强度)。β钛丝的弹性模量高于镍钛丝。此外,发现不锈钢丝的回弹值高于钴铬丝,而(对于相同变量)低于镍钛丝和β钛丝。