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    • 7. 发明申请
    • PHOTOELASTIC COATING FOR STRUCTURAL MONITORING
    • 用于结构监测的光泽涂料
    • US20090310121A1
    • 2009-12-17
    • US12481573
    • 2009-06-10
    • Duhane LamMark Ellens
    • Duhane LamMark Ellens
    • G01B11/16G01N33/00
    • G01B11/168
    • In accordance with an aspect of the present invention, there is provided a photoelastic coating for structural monitoring comprising an optically translucent or transparent photoelastic layer. The photoelastic coating is applied to the structure as a solvent-based liquid or gel that can be cured without heating. The photoelastic properties of the photoelastic layer can be used to detect stress and strain or plastic deformation in the structure using photoelastic techniques.In accordance with another aspect of the invention, there is provided a method of structural monitoring using a photoelastic structural monitoring coating. The method comprises the steps of providing a structure for which structural monitoring is desired, applying a photoelastic layer to said structure as a solvent-based liquid or gel, and curing said photoelastic layer in place on said structure. The method further comprises subjecting the structure to a load and inspecting the structure using photoelastic techniques to detect for stress and strain in the photoelastic layer. Presence of fringe patterns in the reflected light from said photoelastic layer indicates the presence of stress and strain in said photoelastic layer. Stress and strain in said photoelastic layer indicates stress and strain or plastic deformation in the underlying structure.
    • 根据本发明的一个方面,提供了一种用于结构监测的光弹性涂层,其包括光学半透明或透明的光弹性层。 将光弹性涂层作为溶剂型液体或凝胶施加到结构上,其可以在不加热的情况下固化。 光弹性层的光弹性能可用于使用光弹性技术检测结构中的应力和应变或塑性变形。 根据本发明的另一方面,提供了一种使用光弹性结构监测涂层进行结构监测的方法。 该方法包括以下步骤:提供需要结构监测的结构,将光弹性层作为溶剂基液体或凝胶施加到所述结构,并将所述光弹性层固化在所述结构上的适当位置。 该方法还包括对结构进行负载并使用光弹性技术检查结构以检测光弹层中的应力和应变。 来自所述光弹性层的反射光中的条纹图案的存在表明在所述光弹性层中存在应力和应变。 所述光弹性层中的应力和应变指示下面结构中的应力和应变或塑性变形。
    • 10. 发明授权
    • Compact fuel cell layer
    • 紧凑型燃料电池层
    • US07067217B2
    • 2006-06-27
    • US10818611
    • 2004-04-06
    • Gerard Francis McLeanDuhane LamOlen Vanderleeden
    • Gerard Francis McLeanDuhane LamOlen Vanderleeden
    • H01M2/14
    • H01M8/004H01M4/8626H01M8/0247H01M8/04201H01M8/2475H01M8/249
    • The fuel cell layer with a central axis includes a first and a second unit fuel cell, an oxidant plenum comprising an oxidant; and a fuel plenum comprises a fuel; and each unit fuel cell comprises: a first and second process layer; a first cavity and second cavity formed between the first and second process layer and a first process layer of an adjacent unit fuel cell; a first perimeter barrier disposed on the second process layer substantially surrounding the second cavity; a second perimeter barrier disposed on the first process layer substantially surrounding the first cavity forming a unit fuel cell comprising a front face and back face; the first cavity is in communication with the oxidant plenum; the second cavity is in communication with the fuel plenum; wherein at least one of the process layers transports ions between the first and second cavities.
    • 具有中心轴线的燃料电池层包括第一和第二单元燃料电池,包含氧化剂的氧化剂气室; 以及包括燃料的燃料增压室; 并且每个单元燃料电池包括:第一和第二处理层; 形成在第一和第二处理层之间的第一空腔和形成在相邻单元燃料电池的第二处理层和第一处理层之间的第二空腔; 设置在第二处理层上的基本上围绕第二腔的第一周边屏障; 设置在所述第一处理层上的第二周边屏障基本上围绕所述第一腔体,形成包括正面和背面的单元燃料电池; 第一腔与氧化剂气室连通; 第二腔与燃料增压室连通; 其中所述处理层中的至少一个在所述第一和第二空腔之间传送离子。