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An empirical and analytical investigation of the cure related distortion of flat composite laminates.

机译:平面复合材料层压板固化相关变形的经验和分析研究。

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摘要

Manufacturing distortion of autoclave-processed symmetric composites has historically been difficult to predict, resulting in multiple tooling design iterations, increased cost, and delayed product development time. Previous research has identified two potential sources of distortion of autoclave cured, symmetric laminates laid up on flat tooling: part-tool interaction and a through-the-thickness resin volume fraction gradient. Part-tool interaction theory suggests that tooling strains caused by thermal expansion of the tool during autoclave heatup are transferred into the laminate fibers in layer(s) adjacent to the tooling. These tensile strains become "locked in" to the tool side layer(s) of the laminate after resin cure and subsequently result in laminate curvature once the laminate is released from the tooling after processing. A through-the-thickness resin volume fraction gradient in a laminate, characterized by higher resin volume fractions in tool side layer(s) than in bag side layer(s), can also result in laminate curvature. Such an asymmetric laminate will exhibit post-cure curvature because resin rich regions will shrink more than resin poor layers. The first phase of the present investigation determined the relative contributions of these two potential sources of distortion by (1) performing extensive acid digestion and optical photomicroscopy analyses on laminates to accurately characterize the through-the-thickness constituent content, and (2) manufacturing laminates under different experimental conditions proposed to affect the magnitude of part-tool interaction. Curvature results indicated strong effects of tooling material, part thickness, ply orientation, and presence of intermediate layer of Teflon film on measured curvature of cured laminates. Conclusions of the first phase of this investigation are that (1) the absence of any through-the-thickness resin volume fraction gradient indicates that laminate constituent content does not contribute to laminate distortion, and (2) part-tool interaction can result in substantial laminate curvature. The second phase of the present investigation involved empirical and analytical efforts to further understand part-tool interaction. Processing factors empirically investigated included magnitude of autoclave pressure and when in the processing cycle autoclave pressure was applied. Analytical analyses were aided by surface grinding studies that have allowed for the determination of a nonlinear function capable of describing the actual part-tool interaction related strain through the laminate thickness.
机译:高压釜加工的对称复合材料的制造变形历来难以预测,导致多次模具设计迭代,成本增加和产品开发时间延迟。先前的研究已经确定了高压灭菌器固化的对称层压板在平面模具上形成的两种潜在变形源:零件与工具之间的相互作用以及整个厚度的树脂体积分数梯度。零件工具相互作用理论表明,在高压釜加热过程中,由工具的热膨胀引起的工具应变会转移到与工具相邻的层中的层压纤维中。在树脂固化后,这些拉伸应变“锁定”在层压板的工具侧面层上,一旦层压板在加工后从模具中释放出来,随后就会导致层压板弯曲。层压材料中的整个厚度的树脂体积分数梯度,其特征在于,工具侧层中的树脂体积分数高于袋侧层中的树脂体积分数,也会导致层压件弯曲。由于树脂富集区的收缩程度将比树脂贫乏层的收缩幅度大,因此这种不对称层压板将显示出后固化曲率。本研究的第一阶段通过(1)对层压板进行广泛的酸消化和光学显微镜分析以准确表征整个厚度的成分含量,以及(2)制造层压板,确定了这两种潜在变形源的相对贡献。建议在不同的实验条件下影响零件工具相互作用的幅度。曲率结果表明,工装材料,零件厚度,板层取向以及特氟龙薄膜中间层的存在对固化层压板的曲率影响很大。该研究第一阶段的结论是:(1)没有任何厚度的树脂体积分数梯度,表明层压板成分含量不会导致层压板变形,(2)零件-工具的相互作用可能导致层压板变形。层压板曲率。本研究的第二阶段涉及经验和分析工作,以进一步了解零件工具的相互作用。经验研究的处理因素包括高压釜压力的大小,以及在处理周期中何时施加高压釜压力。表面研磨研究有助于进行分析分析,从而确定了非线性函数,该函数能够描述层压板厚度上与零件-工具相互作用的实际应变。

著录项

  • 作者

    Cann, Michael Townsend.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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