首页> 美国卫生研究院文献>Polymers >Bonding and Thermal Cycling Performances of Two (Poly)Aryl–Ether–Ketone (PAEKs) Materials to an Acrylic Denture Base Resin
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Bonding and Thermal Cycling Performances of Two (Poly)Aryl–Ether–Ketone (PAEKs) Materials to an Acrylic Denture Base Resin

机译:两个(聚)芳基 - 醚 - 酮(Paeks)材料的粘合和热循环性能与丙烯酸义齿基础树脂

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摘要

Poly(aryl–ether–ketone) materials (PAEKs) are gaining interest in everyday dental practices because of their natural properties. This study aims to analyze the bonding performance of PAEKs to a denture acrylic. Testing materials were pretreated by grinding, sandblasting, and priming prior to polymerization with the denture acrylic. The surface morphologies were observed using a scanning electron microscope and the surface roughness was measured using atomic force microscopy. The shear bond strength (SBS) values were determined after 0 and 2500 thermal cycles. The obtained data were analyzed using a paired samples t-test and Tukey’s honestly significant difference (HSD) test (α = 0.05). The surface characteristics of testing materials after different surface pretreatments showed obvious differences. PAEKs showed lower surface roughness values (0.02–0.03 MPa) than Co-Cr (0.16 MPa) and zirconia (0.22 MPa) after priming and sandblasting treatments (p < 0.05). The SBS values of PAEKs (7.60–8.38 MPa) met the clinical requirements suggested by ISO 10477 (5 MPa). Moreover, PAEKs showed significantly lower SBS reductions (p < 0.05) after thermal cycling fatigue testing compared to Co-Cr and zirconia. Bonding performance is essential for denture materials, and our results demonstrated that PAEKs possess good resistance to thermal cycling fatigue, which is an advantage in clinical applications. The results imply that PAEKs are potential alternative materials for the removable of prosthetic frameworks.
机译:由于其自然特性,聚(芳基 - 醚 - 酮)材料(Paeks)在日常牙科实践中获得感兴趣。本研究旨在分析对牙本质丙烯酸的糖尿剂的粘合性能。通过在与牙本质丙烯酸胶中聚合之前研磨,喷砂和引发预处理测试材料。使用扫描电子显微镜观察表面形态,使用原子力显微镜测量表面粗糙度。在0和2500个热循环之后测定剪切粘合强度(SBS)值。使用配对样品T检验和Tukey的诚实显着差异(HSD)测试(α= 0.05)分析所获得的数据。不同表面预处理后测试材料的表面特性表明了明显的差异。 Paeks在引发和喷砂处理后的CO-Cr(0.16MPa)和氧化锆(0.22MPa)显示下表面粗糙度值(0.02-0.03MPa)(P <0.05)。 PAEK的SBS值(7.60-8.38MPa)符合ISO 10477(5MPa)建议的临床要求。此外,与CO-Cr和氧化锆相比热循环疲劳试验后,Paeks显着降低了SBS减少(P <0.05)。粘接性能对于义齿材料至关重要,我们的结果表明,PAEK具有良好的热循环疲劳性,这是临床应用的优势。结果意味着Paek是假肢框架可拆卸的潜在替代材料。

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