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E-glass/DGEBA/m-PDA Single Fiber Composites: The Effect of Strain Rate on Interfacial Shear Strength Measurements

机译:电子玻璃/ DGEBA / m-PDA单纤维复合材料:应变速率对界面剪切强度测量的影响

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Precise measurements of fiber break regions have been made during the single fiber fragmentation test (SFFT) procedure on E-glass/diglycidyl ether of bisphenol-A (DGEBA)/meta-phenylenediamine (m-PDA) test specimens. From these measurements, the location and size of each fiber fragment was determind, and the resulting information was used to construct fragmentation maps of the tested fiber. By comparing these maps, the fragmentation process supports random fragmentation along the length of the fiber. Since the interfacial shear strength (IFSS) or the interfacial shear stress transfer coefficient (I-STC) is obtained from the fragment length data at the end of the test (saturation), frequency histograms of the fragment length data were constructed to determine the repeatability of the fragmentation process, Since the SFFT is performed by sequential step-strains of the test specimen, test protocols were developed by controlling the step size of each strain increment and the time between each step-strain (dwell time). For the testing protocols used in this research, the E-glass/DGEBA/m-PDA frequency histograms of the fragment rate of the test was altered by changing the dwell time between strain increments, the fragment distribution at saturation of the E-glass/DGEBA/m-PDA SFFT specimens changed. The direction of hte change was found to be inconsistent with the effect one might expect when only the nonlinear viscoelastic behavior of the matrix is considered. However, the magnitude of the change observed in the E-glass/DGEBA/m-PDA SFFT specimens is not universal. Fragmentation data obtained on E-glass/polyisocyanurate SFFT specimens revealed a much smaller change in fragment length distributions with the same change in testing protocols. Consistent with the results obtained on the E-glass/DGEBA/m-PDA, fiber fragmentation occurs when the polyisocyanurate matrix exhibits nonlinear viscoelastic behavior. The implication of these results for interfacial shear strengrth measurements is discussed.
机译:在双酚A(DGEBA)/间苯二胺(m-PDA)测试样品的E-玻璃/二缩水甘油醚的单纤维断裂测试(SFFT)过程中,已对纤维断裂区域进行了精确测量。从这些测量中,确定每个纤维片段的位置和大小,并将所得信息用于构建测试纤维的片段图。通过比较这些图,碎裂过程支持沿光纤长度的随机碎裂。由于从测试(饱和)结束时的片段长度数据获得了界面剪切强度(IFSS)或界面剪切应力传递系数(I-STC),因此构建了片段长度数据的频率直方图来确定可重复性由于是通过测试样品的连续阶跃应变执行SFFT的,因此通过控制每个应变增量的步长大小和每个阶跃应变之间的时间(驻留时间)来开发测试方案。对于本研究中使用的测试规程,通过更改应变增量之间的停留时间,E-glass / D饱和时的碎片分布/ E-glass / DGEBA / m-PDA碎片率的频率直方图来更改DGEBA / m-PDA SFFT标本已更改。当仅考虑基质的非线性粘弹性行为时,发现这种变化的方向与人们可能期望的效果不一致。但是,在E-glass / DGEBA / m-PDA SFFT标本中观察到的变化幅度并不普遍。在电子玻璃/聚异氰脲酸酯SFFT样品上获得的碎片数据表明,在相同的测试方案变化下,碎片长度分布的变化小得多。与在E-glass / DGEBA / m-PDA上获得的结果一致,当聚异氰脲酸酯基质表现出非线性粘弹性行为时,发生纤维断裂。讨论了这些结果对界面剪切强度测量的意义。

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