首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >NANOSCALE INTERPHASE CHARACTERIZATION OF POROUS CNT BUCKYPAPER COMPOSITES IN CORRELATION TO INTERLAMINAR MODE Ⅰ FRACTURE
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NANOSCALE INTERPHASE CHARACTERIZATION OF POROUS CNT BUCKYPAPER COMPOSITES IN CORRELATION TO INTERLAMINAR MODE Ⅰ FRACTURE

机译:多孔CNT抗扁平型复合材料与层间模式Ⅰ裂缝相关性的纳米级相互关节

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In this conference paper, nanoscale material property data and ASTM mode Ⅰ interlaminar fracture results for three-phase buckypaper samples are presented and analyzed. Vacuum filtration and surfactant-free methods were used to manufacture buckypaper membranes. Epoxy infused buckypaper membranes were placed in front of the crack tip in a stitch bonded carbon fiber polymer matrix composite. Peak Force Quantitative Nanomechanical Mapping (PFQNM), using probes with nominal tip radius in the range of 5 - 8 nm were used. PFQNM characterized the interphase region between a three-phase sample of carbon monofilament, epoxy resin, and multi-walled carbon nanotube (MWCNT) buckypaper. This experiment captured reproducible nanoscale morphological, viscoelastic, elastic and energy properties of porous MWCNT buckypaper samples. An enlarged interphase region surrounding the CNT buckypaper was found. The buckypaper and epoxy interphase thickness was found to be 50nm, higher than the 10-40nm reported for epoxy and carbon monofilaments. The observed MWCNT structure provides explanation of the increased surface roughness compared to the smooth carbon monofilaments. The increased surface roughness likely improves mechanical interlocking with the epoxy of adjacent lamina. The nanoscale interphase and subsurface characterization data provide explanation for a change in crack propagation toughness. Buckypaper exhibited inhomogeneous properties at micrometer length scales.
机译:在本次会议纸张中,提出和分析了三相鼠标蛋白样品的纳米级材料特性数据和ASTM模式Ⅰ型骨折结果。使用真空过滤和无表面活性剂的方法制造碎蛋白膜。将环氧浸渍的碎片膜膜置于针界粘结的碳纤维聚合物基质复合材料中的裂缝尖端的前面。峰值力定量纳米机械映射(PFQNM)使用探针,使用标称尖端半径在5-8nm范围内。 PFQNM以三相样品在碳单丝,环氧树脂和多壁碳纳米管(MWCNT)碳粉醛植物(MWCNT)的差异之间的差异区域。该实验捕获了多孔MWCNT抗植物样品的可重复的纳米级形态,粘弹性,弹性和能量。发现了CNT碎蛋白迹围绕CNT碎蛋白块的扩大间区域。发现蛋白块和环氧异相厚度为50nm,高于环氧和碳单丝的10-40nm。观察到的MWCNT结构提供了与平滑碳单丝相比增加的表面粗糙度的说明。增加的表面粗糙度可能改善了与相邻椎板的环氧树脂的机械互锁。纳米级相互作用和地下表征数据提供了裂纹传播韧性的变化的说明。 Buckypaper在千分尺长度下表现出非均匀性。

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