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    • 6. 发明申请
    • Method and Apparatus for Fabricating Fibers and Microstructures from Disparate Molar Mass Precursors
    • 用于从不同摩尔质量前体制造纤维和微结构的方法和装置
    • US20160369400A1
    • 2016-12-22
    • US14827752
    • 2015-08-17
    • Dynetics, Inc.
    • James L. MaxwellNicholas WebbJames Allen
    • C23C16/48C23C16/20C23C16/08D01F8/18C23C16/50C23C16/52
    • C23C16/483C04B35/58C04B35/58007C04B35/58028C04B35/62272C04B35/62277C04B35/62286C04B2235/5296C23C16/08C23C16/20C23C16/4418C23C16/486C23C16/50C23C16/52D01F8/18D01F9/127D04H1/4242
    • The disclosed methods and apparatus improve the fabrication of solid fibers and microstructures. In many embodiments, the fabrication is from gaseous, solid, semi-solid, liquid, critical, and supercritical mixtures using one or more low molar mass precursor(s), in combination with one or more high molar mass precursor(s). The methods and systems generally employ the thermal diffusion/Soret effect to concentrate the low molar mass precursor at a reaction zone, where the presence of the high molar mass precursor contributes to this concentration, and may also contribute to the reaction and insulate the reaction zone, thereby achieving higher fiber growth rates and/or reduced energy/heat expenditures together with reduced homogeneous nucleation. In some embodiments, the invention also relates to the permanent or semi-permanent recording and/or reading of information on or within fabricated fibers and microstructures. In some embodiments, the invention also relates to the fabrication of certain functionally-shaped fibers and microstructures. In some embodiments, the invention may also utilize laser beam profiling to enhance fiber and microstructure fabrication.
    • 所公开的方法和装置改善了固体纤维和微结构的制造。 在许多实施方案中,制造是使用一种或多种低摩尔质量前体与一种或多种高摩尔质量前体组合从气态,固体,半固体,液体,临界和超临界混合物。 所述方法和系统通常采用热扩散/反应效应将低摩尔质量前体浓缩在反应区,其中高摩尔质量前体的存在有助于该浓度,并且还可以有助于反应并使反应区绝缘 ,从而实现更高的纤维生长速率和/或降低的能量/热量支出以及减少的均匀成核。 在一些实施例中,本发明还涉及在制造的纤维和微结构之上或之内的信息的永久或半永久性记录和/或读取。 在一些实施例中,本发明还涉及某些功能形状的纤维和微结构的制造。 在一些实施例中,本发明还可以利用激光束轮廓来增强光纤和微结构的制造。