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首页> 外文期刊>Brazilian Dental Journal >Physical Properties of Glass Ionomer Cement Containing Pre-Reacted Spherical Glass Fillers
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Physical Properties of Glass Ionomer Cement Containing Pre-Reacted Spherical Glass Fillers

机译:含有预反应球形玻璃填料的玻璃离聚物水泥的物理性质

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The aim of this study was to assess the effect of different commercial liquid phases (Ketac, Riva, and Fuji IX) and the use of spherical pre-reacted glass (SPG) fillers on cement maturation, fluoride release, compressive (CS) and biaxial flexural strength (BFS) of experimental glass ionomer cements (GICs). The experimental GICs (Ketac_M, Riva_M, FujiIX_M) were prepared by mixing SPG fillers with commercial liquid phases using the powder to liquid mass ratio of 2.5:1. FTIR-ATR was used to assess the maturation of GICs. Diffusion coefficient of fluoride (DF) and cumulative fluoride release (CF) in deionized water was determined using the fluoride ion specific electrode (n=3). CS and BFS at 24 h were also tested (n=6). Commercial GICs were used as comparisons. Riva and Riva_M exhibited rapid polyacrylate salt formation. The highest DF and CF were observed with Riva_M (1.65x10-9 cm2/s) and Riva (77 ppm) respectively. Using SPG fillers enhanced DF of GICs on average from ~2.5x10-9 cm2/s to ~3.0x10-9 cm2/s but reduced CF of the materials on average from ~51 ppm to ~42 ppm. The CS and BFS of Ketac_M (144 and 22 MPa) and Fuji IX_M (123 and 30 MPa) were comparable to commercial materials. Using SPG with Riva significantly reduced CS and BFS from 123 MPa to 55 MPa and 42 MPa to 28 MPa respectively. The use of SPG fillers enhanced DF but reduced CF of GICs. Using SPG with Ketac or Fuji IX liquids provided comparable strength to the commercial materials.
机译:本研究的目的是评估不同商业液相(Ketac,Riva和Fuji IX)的影响,以及使用球形预反应玻璃(SPG)填料在水泥成熟,氟化物释放,压缩(Cs)和双轴上实验玻璃离聚物水泥(GICS)的抗弯力(BFS)。通过使用粉末与液体质量比混合与商业液相将SPG填料与2.5:1混合,通过将SPG填料与商业液相混合来制备实验性GICS(Ketac_M,Riva_M,Fujiix_M)。 FTIR-ATR用于评估GIC的成熟。使用氟离子特异性电极(n = 3)测定去离子水中的氟化物(DF)和累积氟化物释放(CF)的扩散系数。还测试了24小时的Cs和BFS(n = 6)。商业网上物流仪用作比较。 RIVA和RIVA_M表现出快速的聚丙烯酸盐盐。用RIVA_M(1.65x10-9cm2 / s)和RIVA(77ppm)观察最高DF和CF。使用SPG填料平均增强了GIC的DF,平均从〜2.5x10-9cm 2 / s至〜3.0x10-9 cm2 / s,但平均降低了材料的〜51ppm至〜42ppm。 ketac_m(144和22MPa)和Fuji IX_M(123和30MPa)的CS和BFS与商业材料相当。使用具有RIVA的SPG显着将CS和BFS显着减少123MPa至55MPa和42MPa至28MPa。使用SPG填料增强DF但GICS的CF减少。使用SPG与Ketac或Fuji IX液体提供了商业材料的相当强度。

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