首页> 外文学位 >The large deformation behavior of woven fabric and microstructural evolution in formed textile composites.
【24h】

The large deformation behavior of woven fabric and microstructural evolution in formed textile composites.

机译:机织织物的大变形行为和成形的纺织品复合材料的微观结构演变。

获取原文
获取原文并翻译 | 示例

摘要

Specific performance advantages are routinely demonstrated with advanced composites in structural applications. An inability to efficiently manufacture these materials however, is greatly impeding their widespread implementation in engineering design. Resin transfer molding processes have a potential to provide increased volume production of formed textile composites. These processes rely on the unique ability of fabric materials to achieve the large deformations required in forming operations. Many of the issues that remain to be resolved with such processes, particularly for components with multiple curvature, are related to the initial step of forming dry fabric about the mold surface. Simulation of this procedure would provide a tool with which designers may anticipate the forming induced evolution of microstructure and the development of defects such as wrinkles.; Development of a simulation tool for fabric forming requires characterization of the mechanical properties of fabrics. To date, the constitutive behavior of fabric at large deformation has not been understood. In this dissertation, a method of predicting the deformation dependent average properties for plain weave fabrics is presented. Further, the effect of fabric architecture on these properties is demonstrated. The fabric behavior is characterized by an initial highly compliant response followed by rapid stiffening. At levels of deformation for which rapid stiffening occurs, defects such as wrinkling are a necessary concern.; A predictive description of the evolution of fabric microstructure is also provided. If the mold geometry and initial, undeformed fabric architecture is known, the forming induced evolution of local microstructure may be defined. In components with multiple curvature, the configuration of representative microstructural elements will vary from cell to cell within a ply. Average properties of formed fabrics or formed fabric composites will then vary slowly in the macroscale. The slow variation of composite mechanical properties and of preform permeability are investigated as examples. Through investigation of the effect of fabric architecture, and its evolution, on the fabric response in forming operations, fabric selection and tool design may be guided.
机译:通常在结构应用中使用高级复合材料展示出特定的性能优势。然而,无法有效地制造这些材料极大地阻碍了它们在工程设计中的广泛实施。树脂传递模塑工艺具有提高成型纺织品复合材料批量生产的潜力。这些过程依靠织物材料的独特能力来实现成型操作所需的大变形。用这种方法仍需解决的许多问题,特别是对于具有多个曲率的部件,都与在模具表面上形成干织物的初始步骤有关。该过程的仿真将提供一种工具,设计者可以使用该工具来预测成形过程中微观结构的演变以及缺陷(例如皱纹)的发展。开发用于织物成形的仿真工具需要表征织物的机械性能。迄今为止,尚未了解织物在大变形下的本构行为。本文提出了一种预测平纹织物变形相关平均性能的方法。此外,证明了织物结构对这些性能的影响。织物性能的特征是最初的高度顺应性响应,然后迅速变硬。在发生快速硬化的变形水平上,诸如皱纹之类的缺陷是必须考虑的。还提供了织物微观结构演变的预测性描述。如果已知模具的几何形状和初始的,未变形的织物结构,则可以定义成型诱导的局部微观结构的演变。在具有多个曲率的组件中,典型的微结构元素的配置将在层中的每个单元之间变化。然后,成形织物或成形织物复合材料的平均性能在宏观上将缓慢变化。以复合材料力学性能和预成型坯渗透性的缓慢变化为例。通过研究织物结构的影响及其发展,对成型操作中织物的响应,可以指导织物选择和工具设计。

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