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Mechanical Properties Comparing Composite Fiber Length to Amalgam

机译:机械性能比较复合纤维长度与汞齐

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摘要

Photocure fiber-reinforced composites (FRCs) with varying chopped quartz-fiber lengths were incorporated into a dental photocure zirconia-silicate particulate-filled composite (PFC) for mechanical test comparisons with a popular commercial spherical-particle amalgam. FRC lengths included 0.5-mm, 1.0 mm, 2.0 mm, and 3.0 mm all at a constant 28.2 volume percent. Four-point fully articulated fixtures were used according to American Standards Test Methods with sample dimensions of 2×2×50 mm3 across a 40 mm span to provide sufficient Euler flexural bending and prevent top-load compressive shear error. Mechanical properties for flexural strength, modulus, yield strength, resilience, work of fracture, critical strain energy release, critical stress intensity factor, and strain were obtained for comparison. Fiber length subsequently correlated with increasing all mechanical properties, p < 1.1×10−5. Although the modulus was significantly statistically higher for amalgam than all composites, all FRCs and even the PFC had higher values than amalgam for all other mechanical properties. Because amalgams provide increased longevity during clinical use compared to the standard PFCs, modulus would appear to be a mechanical property that might sufficiently reduce margin interlaminar shear stress and strain-related microcracking that could reduce failure rates. Also, since FRCs were tested with all mechanical properties that statistically significantly increased over the PFC, new avenues for future development could be provided toward surpassing amalgam in clinical longevity.
机译:将具有不同短切石英纤维长度的光固化纤维增强复合材料(FRC)掺入牙科光固化氧化锆-硅酸盐颗粒填充复合材料(PFC)中,以与流行的商业球形颗粒汞合金进行机械测试比较。 FRC长度包括0.5毫米,1.0毫米,2.0毫米和3.0毫米,体积百分比恒定为28.2。根据美国标准测试方法,使用四点全铰接固定装置,其样本尺寸为2×2×50 mm 3 ,跨度为40 mm,以提供足够的欧拉弯曲弯曲并防止顶部负载压缩剪切错误。为了比较,获得了抗弯强度,模量,屈服强度,回弹性,断裂功,临界应变能释放,临界应力强度因子和应变的机械性能。纤维长度随后与所有机械性能的提高相关,p <1.1×10 -5 。尽管银汞合金的模量在统计学上明显高于所有复合材料,但对于所有其他机械性能,所有FRC甚至PFC的值均高于银汞合金。由于与标准PFC相比,汞齐可在临床使用期间提供更长的使用寿命,因此模量似乎是一种机械性能,可以充分降低边缘层间剪切应力和应变相关的微裂纹,从而降低故障率。同样,由于FRC的所有机械性能均经过测试,统计上比PFC显着提高,因此可以为未来的发展提供新的途径,以期超过汞合金的临床寿命。

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  • 期刊名称 other
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  • 年(卷),期 -1(2016),-1
  • 年度 -1
  • 页码 3823952
  • 总页数 25
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