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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Preparation and evaluation of acrylic acid, itaconic acid, and N-methacryloylglutamic acid copolymers for use in glass-ionomer type dental restoratives
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Preparation and evaluation of acrylic acid, itaconic acid, and N-methacryloylglutamic acid copolymers for use in glass-ionomer type dental restoratives

机译:用于玻璃离聚物型牙齿修复剂的丙烯酸,衣康酸和N-甲基丙烯酰谷氨酸共聚物的制备和评估

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A series of copolymers containing various molar ratios of acrylic acid, itaconic acid and N-methacryloylglutamic acid were prepared in aqueous solution, using standard free-radical polymerization conditions. Specimens for mechanical property studies were prepared by mixing water solutions of the copolymers (50:50, wt:wt) with a commercial, calcium-fluoroaluminosilicate glass powder, with curing or hardening achieved by salt-bridge formation. The glass powder used in the formulation(s) was the same as that used in Fuji II (GC America) glass-ionomer. The working and setting times df the various formulations were evaluated. The compressive strength was used as the basic screening property to find the optimum molar ratio of the three monomers. The diametral tensile strength, flexural strength and Knoop surface hardness of the cured materials were also determined. All mechanical properties were measured after the specimens were conditioned in distilled water for 7 days at 37 degrees C. Based on the compressive strength (CS), poly (AA-co-IA-co-MGA) with a monomers ratio of 8:1:1, respectively, showed the highest CS (269.9 MPa). The 8:1:1 copolymer with different molecular weights were also prepared to evaluate the effect of MW on the compressive strength. The optimum MW copolymer gave a glass-ionomer having the compressive strength improved by 30%, compared to Fuji II (293.9 MPa vs. 224.9 MPa). The same polymer solution was also mixed with glass powders used in other commercial glass-ionomers, i. e., Ketac-Molar (ESPE, Seefeld, Germany), alpha-Fil and alpha-Silver (DMG, Hamburg, Germany) to produce conventional glass-ionomers test specimens. The mechanical properties of these materials were also obtained and compared to the Fuji II, Ketac-Molar, alpha-Fil and alpha-Silver controls. [References: 17]
机译:使用标准的自由基聚合条件,在水溶液中制备了一系列包含各种摩尔比的丙烯酸,衣康酸和N-甲基丙烯酰基谷氨酸的共聚物。通过将共聚物的水溶液(50:50,wt:wt)与市售的氟铝硅酸钙玻璃粉末混合,并通过盐桥形成实现固化或硬化,从而制得用于力学性能研究的样品。配方中使用的玻璃粉与Fuji II(GC America)玻璃离聚物中使用的玻璃粉相同。评估了各种配方的工作时间和凝固时间。抗压强度用作基本筛选性能,以找到三种单体的最佳摩尔比。还测定了固化材料的径向拉伸强度,挠曲强度和努氏表面硬度。所有样品的机械性能均在将样品在37℃的蒸馏水中调理7天后进行。基于抗压强度(CS),单体比例为8:1的聚(AA-co-IA-co-MGA) 1:1分别显示出最高的CS(269.9 MPa)。还制备了具有不同分子量的8:1:1共聚物,以评估MW对压缩强度的影响。与Fuji II(293.9 MPa对224.9 MPa)相比,最佳的MW共聚物得到的玻璃离聚物的抗压强度提高了30%。还将相同的聚合物溶液与用于其他市售玻璃离聚物的玻璃粉末混合,即例如Ketac-Molar(ESPE,德国Seefeld),alpha-Fil和alpha-Silver(DMG,德国汉堡)生产常规的玻璃离聚物测试样品。还获得了这些材料的机械性能,并与Fuji II,Ketac-Molar,alpha-Fil和alpha-Silver对照进行了比较。 [参考:17]

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