首页> 外文期刊>Dental materials >Effects of strain rate and temperature on the mechanical properties of resin composites
【24h】

Effects of strain rate and temperature on the mechanical properties of resin composites

机译:应变速率和温度对树脂复合材料力学性能的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Objective. To evaluate the effects of strain rate and temperature on the mechanical properties of resin composite restorative materials (RCs) and to investigate the construction of temperature-strain rate equivalence 'master curves'. Methods. Four visible light-cured resin composite RCs, all of shade A3, were used: Heliomolar Radiopaque (HR) and Tetric Ceram (TC) (Ivoclar, Schaan, Liechtenstein), Filtek Z250 (FZ) (3M, St Paul, MN, USA) and Prodigy Condensable (PR) (Kerr, Orange, CA, USA). Bar specimens (1.0 x 1.5 x 16.0 mm~3) were cured for 50 s at an irradiance of 500mWcm~(-2) and were randomly distributed into groups of six for each type of material. All specimens were stored in artificial saliva at pH 6, for 7 d. The specimens tested at 12, 24 and 37℃ were stored at the corresponding temperature but those tested at 0℃ were stored at 24℃. Three-point bend tests for flexural strength (F), flexural modulus of elasticity (E) and total energy to failure (W) were performed at cross-head speeds (XHS) of 0.1, 1.0,10, 50 and 100 mm min~(-1) for all materials as well as at 0.01, 0.03, 0.2 and 0.5 mm min~(-1) for some materials. Results. There was a common pattern of behavior across materials. At constant temperature, F showed a slight variation with cross-head speed, with a broad peak in the region of 1 -10 mm min~(-1). F, on the other hand, showed a more marked and steady increase with XHS at all temperatures except at 0℃, where it tended to level off above about 10 mm min~(-1). In contrast, the values of W showed a decline with increasing XHS, except at 37℃ where an initial rise followed by a decline was observed. At constant XHS, increase in temperature caused a small, but highly significant (P < 10~(-3)) decline in F but a marked decline in F. W, again in contrast to F and F, showed a general increase with temperature. A master curve model for the temperature-strain-rate equivalence was fitted to the F and W data (all P < 10~(-5)) and the fitted parameters interpreted in terms of strain rate and temperature sensitivity. Significance. The mechanical properties of RCs are very sensitive to the test conditions of strain rate and temperature. This implies that properties determined at any temperature other than 37℃, or at only one cross-head speed (or only one strain rate) are inadequate to describe their behavior in service. The master curve principle is applicable to RCs and can be used, inter alia, to determine property values under other than tested conditions. Conditions of testing in regard to XHS and temperature, as well as other factors, should clearly be stated to enable proper comparisons between studies, but more importantly the use of standardized test conditions is overdue.
机译:目的。评估应变速率和温度对树脂复合修复材料(RCs)力学性能的影响,并研究温度-应变速率等效“主曲线”的构造。方法。使用了四个可见光固化树脂复合材料RC,全部为A3阴影:Heliomolar不透射线(HR)和Tetric Ceram(TC)(Ivoclar,沙迦,列支敦士登),Filtek Z250(FZ)(3M,美国明尼苏达州圣保罗) )和Prodigy Condensable(PR)(美国加利福尼亚州奥兰治的克尔)。将条形试样(1.0 x 1.5 x 16.0 mm〜3)在500mWcm〜(-2)的辐射下固化50 s,并针对每种材料随机分为六组。将所有标本在pH 6的人工唾液中保存7天。在12、24和37℃下测试的标本分别保存在相应的温度下,而在0℃下测试的标本则在24℃下保存。在十字头速度(XHS)为0.1、1.0、10、50和100 mm min〜的情况下,进行了三点弯曲测试,以测试弯曲强度(F),弯曲弹性模量(E)和总破坏能量(W) (-1)适用于所有材料,以及0.01、0.03、0.2和0.5 mm min〜(-1)适用于某些材料。结果。跨材料存在一种常见的行为模式。在恒定温度下,F随头速度的变化很小,在1 -10 mm min〜(-1)范围内有一个宽峰。另一方面,F在除0℃以外的所有温度下均随XHS表现出更明显和稳定的增加,在0℃以上趋于稳定,趋于稳定在10 mm min〜(-1)以上。相反,W值随XHS的增加而下降,除了在37℃观察到先上升后下降的情况。在XHS不变的情况下,温度的升高导致F的下降幅度很小,但高度显着(P <10〜(-3)),但F却显着下降。与F和F相反,W随温度总体升高。将温度-应变率当量的主曲线模型拟合到F和W数据(所有P <10〜(-5)),并将拟合的参数解释为应变率和温度敏感性。意义。 RC的机械性能对应变率和温度的测试条件非常敏感。这意味着在除37℃以外的任何温度下或仅以一种十字头速度(或仅一种应变速率)测定的性能不足以描述其使用性能。主曲线原理适用于RC,除其他条件外,还可用于确定性能值。应当明确说明有关XHS和温度的测试条件以及其他因素,以便能够在研究之间进行适当的比较,但是更重要的是,标准化测试条件的使用已经过时了。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号