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Laboratory evaluation of modern plastic brackets

机译:现代塑料支架的实验室评估

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The aim of the study was to evaluate some properties of modern orthodontic plastic brackets. Seven bracket brands [Aesthetik-Line (AL), Avalon (AV), Brillant (BR), Elegance (EL), OrthoFlex (OF), Silkon Plus (SL), and Spirit MB (SP)] were included in the study. The properties tested were chemical composition, base morphology, slot roughness, Vickers hardness (VH), and shear bond strength (SBS) with enamel.According to the results, the brackets were composed of polyurethane (AV and OF), polyoxymethylene (BR), and Ca-Al-silicate fibre glass-reinforced polycarbonate (AL, EL, SL, and SP). Metallic slots were composed of austenitic stainless steel (EL and SP) and Ag-Cu alloy (AV). The base morphology exhibited distinct designs, employing parallel retentive canals (AV, EL, and OF) or round-angled square protrusions with major retentive elements (AL, BR, and SP) or a combination of both (SL). The SP metallic slot demonstrated the lowest Sz values. No significant differences were found in VH among the brackets before water immersion (19.6-16.9 VH). After 12 weeks immersion, the brackets showed a significant hardness reduction (16.6-12.9 HV). SBS ranged between 111 and 193 N (8-14 MPa) for all brackets, except from SP (59 N/5 MPa). The predominant failure mode was mixed adhesive and cohesive. Most of the plastic brackets presented a base structure capable of adequate bonding to enamel, regardless of their differences in composition. Slot roughness showed differences among groups. All the brackets demonstrated plasticization after prolonged water storage.
机译:该研究的目的是评估现代正畸塑料托槽的某些性能。这项研究包括七个支架品牌[Aesthetik-Line(AL),Avalon(AV),Brillant(BR),Elegance(EL),OrthoFlex(OF),Silkon Plus(SL)和Spirit MB(SP)]。测试的性能包括化学成分,基本形貌,缝隙粗糙度,维氏硬度(VH)和与搪瓷的剪切粘结强度(SBS)。结果,托槽由聚氨酯(AV和OF),聚甲醛(BR)组成,以及钙铝硅酸盐玻璃纤维增​​强聚碳酸酯(AL,EL,SL和SP)。金属槽由奥氏体不锈钢(EL和SP)和Ag-Cu合金(AV)组成。基本形态表现出独特的设计,采用平行的保持管(AV,EL和OF)或带有主要保持元件(AL,BR和SP)或两者的组合(SL)的圆角方形突起。 SP金属插槽显示出最低的Sz值。浸水前支架之间的VH没有发现显着差异(19.6-16.9 VH)。浸泡12周后,托架显示出明显的硬度降低(16.6-12.9 HV)。除了SP(59 N / 5 MPa)以外,所有支架的SBS范围在111至193 N(8-14 MPa)之间。主要的失效模式是混合粘合和内聚。大多数塑料支架都具有能够与瓷釉充分粘合的基础结构,无论其成分如何不同。槽粗糙度显示各组之间的差异。长时间储水后,所有支架均显示出增塑作用。

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