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The diffusion of lead toward the interface of a rapidly solidified carbon fiber reinforced aluminum-lead matrix composite.

机译:铅向快速凝固的碳纤维增强铝-铅基复合材料界面的扩散。

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摘要

The controlled precipitation of lead from a supersaturated aluminum-lead alloy was investigated as a means of controlling interface properties in aluminum/carbon fiber metal matrix composite. To this end, carbon fiber reinforced aluminum-lead metal matrix composites were produced using three techniques, namely, hot pressing (diffusion bonding), single-roller rapid solidification processing, and double-roller rapid solidification processing.; Composites formed by hot pressing fibers between strips of rapidly solidified aluminum-lead ribbon showed lead precipitation at the fiber/matrix interface when examined in cross-section with Energy Dispersive X-ray Spectroscopy.; Single-roller rapid solidification of composites was carried out by attaching fibers to a single rotating chill surface upon which a molten aluminum-lead solution would be ejected. Such rapidly solidified composite ribbons contained only a very few fibers, due to poor wetting of the fibers by the melt. Wavelength Dispersive X-ray Spectroscopy showed that the precipitation of lead was suppressed. Subsequent thermal annealing could, however, initiate precipitation.; To increase the volume fraction of fibers, an apparatus with two contacting chill surfaces was constructed. Composites produced with it included more fibers than those produced with the single-surface apparatus, while still suppressing the precipitation of lead. Thermal processing of these composites was investigated as a means of increasing the amount of lead at the fiber/matrix interface in a controlled manner. The lead concentration at the interface was found to increase, but the increase did not continue with further thermal processing.; Indentation tests on composite cross-sections showed some improvement in the fiber/matrix bond as a result of this thermal processing, compared to the composite as prepared. Dissolution of the matrix material showed that the lead coating on the fiber is not uniform.; Modeling of precipitation using a numerical solution of Ham's diffusion theory was carried out. It showed that if lead precipitation at the fiber/matrix interface was fed by migration of lead toward the fiber, then the region from which the lead was drawn must be small, much less than 75 {dollar}mu{dollar}m in radius.
机译:研究了过饱和铝铅合金中铅的可控析出,作为控制铝/碳纤维金属基复合材料界面性能的一种手段。为此,使用热压(扩散结合),单辊快速凝固处理和双辊快速凝固处理这三种技术来生产碳纤维增强铝铅金属基复合材料。当用能量色散X射线光谱法进行横截面检查时,在快速凝固的铝-铅带之间的热压纤维之间形成的复合材料在纤维/基质界面处显示出铅沉淀。复合材料的单辊快速固化是通过将纤维附着到一个旋转的冷却表面上来进行的,在该表面上喷射出熔融的铝-铅溶液。这种快速固化的复合带仅包含很少的纤维,这是由于熔体对纤维的润湿性差。波长色散X射线光谱法显示铅的沉淀被抑制。然而,随后的热退火可能引发沉淀。为了增加纤维的体积分数,构造了具有两个接触冷却表面的设备。用它生产的复合材料比单表面设备生产的纤维包含更多的纤维,同时仍能抑制铅的沉淀。研究了这些复合材料的热处理,以此作为以受控方式增加纤维/基质界面处铅含量的手段。发现界面处的铅浓度增加,但是这种增加并没有随着进一步的热处理而继​​续。与所制备的复合材料相比,对复合材料横截面的压痕测试表明,由于进行了这种热处理,纤维/基体的粘合性有所改善。基质材料的溶解表明纤维上的铅涂层不均匀。使用汉姆扩散理论的数值解法对降水进行了建模。结果表明,如果纤维/基体界面处的铅沉淀是由于铅向纤维的迁移而引起的,那么引出铅的区域必须很小,半径要小于75 {μm}美元。

著录项

  • 作者

    Murray, Eric Roger.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:50:18

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