Vuorinen Anne-Maria, Dyer Scott R, Lassila Lippo V J, Vallittu Pekka K
Department of Prosthetic Dentistry & Biomaterials Science, Institute of Dentistry, University of Turku, Lemminkäisenkatu 2, 20520 Turku, Finland.
Dent Mater. 2008 May;24(5):708-13. doi: 10.1016/j.dental.2007.07.003. Epub 2007 Sep 20.
The aim of this study was to evaluate the mechanical properties of denture base material with rigid rod polymer (RRP) particulate fillers.
Specimens were fabricated from autopolymerized polymethylmethacrylate denture base resin (Palapress Heraus-Kulzer) and RRP particles were used as fillers (Parmax Mississippi Polymer Technologies, Inc.). Five groups were tested: 0 wt% RRP, 10 wt% RRP, 20 wt% RRP, 30 wt% RRP, and 100 wt% RRP. Specimens were stored dry at room temperature for 2 days or in water at 37 degrees C for 44 days before testing until failure at a three point bending test (ISO 1567) for measuring flexural properties. The surface microhardness, water sorption, and solubility were also measured. Existence of interpenetrating polymer network (IPN) between filler and denture resin was examined using solvent treatment and scanning electron microscopy (SEM).
Specimens with RRP filler revealed higher flexural modulus, but the flexural strength decreased. Specimens with 30% RRP filler showed flexural strength of 67.4 MPa, whereas specimens without fillers gave strength of 93.9 MPa. The 100% RRP group revealed the highest flexural strength (305 MPa). Flexural strength of water-stored test specimens decreased in most groups when compared to dry specimens. Microhardness increased as a function of RRP filler. SEM micrographs revealed no IPN-network on the surface of RRP fillers. Addition of RRP fillers decreased the water sorption, whereas solubility was not affected.
This study revealed that although RRP polymer has good mechanical properties, addition of RRP to denture base resin as fillers did not increase mechanical properties. This was explained by lack of IPN-formation between RRP fillers and polymer matrix.
本研究旨在评估含刚性棒状聚合物(RRP)颗粒填料的义齿基托材料的力学性能。
自凝甲基丙烯酸甲酯义齿基托树脂(Palapress Heraus-Kulzer)制作标本,RRP颗粒用作填料(Parmax Mississippi Polymer Technologies, Inc.)。测试五组:0 wt% RRP、10 wt% RRP、20 wt% RRP、30 wt% RRP和100 wt% RRP。测试前,标本在室温下干燥保存2天或在37℃水中保存44天,直至在三点弯曲试验(ISO 1567)中破坏以测量弯曲性能。还测量了表面显微硬度、吸水性和溶解性。使用溶剂处理和扫描电子显微镜(SEM)检查填料与义齿树脂之间互穿聚合物网络(IPN)的存在情况。
含RRP填料的标本显示出较高的弯曲模量,但弯曲强度降低。含30% RRP填料的标本弯曲强度为67.4 MPa,而无填料标本的强度为93.9 MPa。100% RRP组显示出最高弯曲强度(305 MPa)。与干燥标本相比,大多数组中储水测试标本的弯曲强度降低。显微硬度随RRP填料增加而增加。SEM显微照片显示RRP填料表面没有IPN网络。添加RRP填料降低了吸水性,而溶解性未受影响。
本研究表明,尽管RRP聚合物具有良好的力学性能,但将RRP作为填料添加到义齿基托树脂中并未提高力学性能。这是由于RRP填料与聚合物基体之间缺乏IPN形成所致。