Jedliński Maciej, Krupa Jolanta, Janiszewska-Olszowska Joanna
Department of Interdisciplinary Dentistry, Pomeranian Medical University in Szczecin, 70-111 Szczecin, Poland.
Department of Machine Design and Maintenance, Faculty of Mechanical Engineering and Robotics, AGH University of Krakow, al. A. Mickiewicza 30, 30-059 Krakow, Poland.
Materials (Basel). 2024 Jul 11;17(14):3431. doi: 10.3390/ma17143431.
Despite the large variety of retainer wires available, no studies could be found comparing the micromechanical properties and surface roughness of different retainer wires. Such characteristics affect the survival of the fixed retainer in terms of both fracture resistance and resistance to debonding from the tooth. Therefore, the aim of the present study was to examine and compare those characteristics in popular retainer wires.
six different popular orthodontic retainer wires were subjected to instrumental indentation based on the Oliver and Pharr method. The geometric surface structure was analysed using a non-contact profilometer.
stainless steel wires had a higher hardness and a higher elastic modulus compared to titanium wires and white gold chain. The titanium wire and the white gold chain showed much more roughness than other wires.
stainless steel wires are the most resistant, considering both the shape retention capacity and the ability to resist abrasive wear. The titanium wire showed the lowest hardness and, thus, the highest susceptibility to deformation. Bond-a-braid, Retainium and Orthoflex white gold are more resistant to fracture than other steel wires. Titanium wire and chain retainer wires have more roughness, which is a great advantage in terms of mechanical adhesion to composite materials.
尽管有各种各样的固位丝可供选择,但未发现有研究比较不同固位丝的微观力学性能和表面粗糙度。这些特性在抗断裂性和抗与牙齿脱粘方面都会影响固定矫治器的使用寿命。因此,本研究的目的是检测并比较常用固位丝的这些特性。
基于奥利弗和法尔方法,对六种不同的常用正畸固位丝进行仪器压痕测试。使用非接触式轮廓仪分析其几何表面结构。
与钛丝和白金链相比,不锈钢丝具有更高的硬度和更高的弹性模量。钛丝和白金链比其他丝表现出更多的粗糙度。
考虑到形状保持能力和抗磨损能力,不锈钢丝是最耐用的。钛丝硬度最低,因此最易变形。Bond-a-braid、Retainium和Orthoflex白金比其他钢丝更抗断裂。钛丝和链状固位丝粗糙度更大,这在与复合材料的机械粘附方面是一个很大的优势。