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An investigation of the structure-property relationships for high performance thermoplastic matrix, carbon fiber composites with a tailored polyimide interphase.

机译:高性能热塑性基体,定制的聚酰亚胺相间碳纤维复合材料的结构-性能关系的研究。

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摘要

The aqueous suspension prepregging technique was used to fabricate PEEK and PPS matrix composites with polyimide interphases of tailored properties. The structure-property relationships of Ultem-type polyimide and BisP-BTDA polyimide which were made from various water soluble polyamic acid salts were studied. The molecular weight of the polyimides was shown to be dependent upon the selection of the base used for making the polyamic acid salt. The development of an Ultem-type polyimide with controlled molecular weight and properties similar to commercial Ultem 1000 was accomplished with the Ultem-type TPA+ polyamic acid salt. Both the Ultem-type polyimides and the BisP-BTDA polyimides derived from the NH4 + salt and the TMA+ salt were shown to crosslink at elevated temperatures.; Blends of Ultem-type polyimide with PEEK and BisP-BTDA polyimide with PEEK were prepared to study the structure-property relationships of model composite matrices. Since both polyimides are miscible with PEEK, interdiffusion of the polyimides with PEEK is expected, however, the interdiffusion behavior is complicated by the crosslinking mechanism of the polyimides.; Ultem-type polyimide interphase, PEEK matrix composites and BisP-BTDA polyimide interphase, PEEK matrix composites were fabricated using the aqueous suspension prepregging technique and evaluated to determine the effects of the interphase properties on the bulk composite performance and durability. Three different Ultem-type polyimides from the NH4+, TMA+ and TPA+ polyamic acid salts were used and two different BisP-BTDA polyimides from the NH4+ and TMA+ polyamic acid salts were used. The transverse flexure strength was used to qualitatively rank the composites by level of interfacial shear strength. The longitudinal tensile strength of the composites was shown to vary with relative interfacial shear strength. The trend of these data qualitatively support the existence of a maximum longitudinal tensile strength at an optimum interfacial shear strength. Notched fatigue testing of the Ultem-type polyimide interphase, PEEK matrix composites showed that the initial split growth rate increased with decreasing relative interfacial shear strength.; Ultem-type polyimide interphase, PPS matrix composites were fabricated using the aqueous suspension prepregging technique and evaluated to determine the effects of the interphase properties on the bulk composite performance. Three different Ultem-type polyimides from the NH4+, TMA+ and TPA+ polyamic acid salts were used. The transverse flexure strength was used to qualitatively rank the composites by level of interfacial shear strength. The longitudinal tensile strength of the composites was shown to vary with relative interfacial shear strength. The trend of these data qualitatively support the existence of a maximum longitudinal tensile strength at an optimum interfacial shear strength.; Grant information. The work for this thesis was supported by the National Science Foundation Science and Technology Center for High Performance Adhesives and Composites under Grant #DMR 91-20004.
机译:水性悬浮液预浸技术用于制造具有定制性能的聚酰亚胺中间相的PEEK和PPS基质复合材料。研究了由各种水溶性聚酰胺酸盐制成的Ultem型聚酰亚胺和BisP-BTDA聚酰亚胺的结构-性质关系。聚酰亚胺的分子量显示出取决于用于制备聚酰胺酸盐的碱的选择。用Ultem型TPA + 聚酰胺酸盐完成了分子量可控,性能与市售Ultem 1000相似的Ultem型聚酰亚胺的研制。 NH 4 + 盐和TMA + 盐衍生的Ultem型聚酰亚胺和BisP-BTDA聚酰亚胺均在以下位置交联高温。制备了Ultem型聚酰亚胺与PEEK的共混物和BisP-BTDA聚酰亚胺与PEEK的共混物,以研究模型复合基质的结构-性质关系。由于两种聚酰亚胺都可以与PEEK混溶,因此可以预料聚酰亚胺与PEEK的相互扩散,但是,由于聚酰亚胺的交联机理,使得相互扩散行为变得复杂。使用水悬浮液预浸技术制备了Ultem型聚酰亚胺中间相,PEEK基复合材料和BisP-BTDA聚酰亚胺中间相,PEEK基复合材料,并进行了评估,以确定中间相性能对整体复合材料性能和耐久性的影响。使用了来自NH 4 + ,TMA + 和TPA + 聚酰胺酸盐的三种不同的Ultem型聚酰亚胺分别使用了NH 4 + 和TMA + 聚酰胺酸盐制备的两种不同的BisP-BTDA聚酰亚胺。横向挠曲强度用于通过界面剪切强度水平对复合材料进行定性排名。显示复合材料的纵向拉伸强度随相对界面剪切强度而变化。这些数据的趋势定性地支持在最佳界面剪切强度下最大纵向拉伸强度的存在。 Ultem型聚酰亚胺中间相,PEEK基复合材料的缺口疲劳测试表明,初始分裂生长速率随相对界面剪切强度的降低而增加。使用水悬浮液预浸技术制备了Ultem型聚酰亚胺相间PPS基复合材料,并进行了评估,以确定相间性能对整体复合材料性能的影响。使用了来自NH 4 + ,TMA + 和TPA + 聚酰胺酸盐的三种不同的Ultem型聚酰亚胺。横向挠曲强度用于通过界面剪切强度水平对复合材料进行定性排名。显示复合材料的纵向拉伸强度随相对界面剪切强度而变化。这些数据的趋势定性地支持在最佳界面剪切强度下最大纵向拉伸强度的存在。 授予信息。本论文的工作得到了美国国家科学基金会高性能胶粘剂和复合材料科学技术中心的支持,批准号为DMR 91-20004。

著录项

  • 作者

    Gardner, Slade Havelock.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 538 p.
  • 总页数 538
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化工过程(物理过程及物理化学过程);
  • 关键词

  • 入库时间 2022-08-17 11:48:46

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