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    • 2. 发明申请
    • COMPOSITE STRUCTURES HAVING EMBEDDED MECHANICAL FEATURES
    • 具有嵌入式机械特性的复合结构
    • WO2015066546A1
    • 2015-05-07
    • PCT/US2014/063564
    • 2014-10-31
    • RODMAN, William, L.
    • RODMAN, William, L.
    • B29C43/00
    • B29C70/70B29C70/48B29C70/865B29L2031/3076Y10T156/1002
    • A complex-shaped, three-dimensional fiber reinforced composite structure may be formed by using counteracting pressures applied to a structural lay-up of wetted fibers with mechanical features embedded or encapsulated therein. The mechanical features may be located on or at least partially between two or more pressurizable members, which may be internally pressurized within a mold. The mechanical features may operate as bearing plates, attachment fittings, or other structural elements. Assemblies of pressurizable members, fiber plies and mechanical features may be arranged to create complex composite structures with predefined load paths, enhanced structural capability or both.
    • 复杂形状的三维纤维增强复合结构可以通过使用施加到具有嵌入或封装在其中的机械特征的润湿纤维的结构层叠的反作用压力来形成。 机械特征可以位于或至少部分地在两个或更多个可加压构件之间,其可以在模具内部被加压。 机械特征可以作为轴承板,附件配件或其它结构元件来操作。 可加压构件,纤维层和机械特征的组件可以被布置成产生具有预定义的负载路径,增强的结构能力或两者的复杂复合结构。
    • 3. 发明申请
    • ALIGNMENT SYSTEM AND METHODS FOR COMPOSITE ASSEMBLIES
    • 复合组装的对准系统和方法
    • WO2009073890A1
    • 2009-06-11
    • PCT/US2008/085931
    • 2008-12-08
    • RODMAN, William, L.
    • RODMAN, William, L.
    • B29C45/00B32B5/12
    • B29C70/443B29C33/76B29C70/48Y10T428/13Y10T428/1352
    • A complex-shaped, three-dimensional fiber reinforced composite assembly may be formed by aligning complex-shaped, three-dimensional, pressurizable members to form fiber reinforced composite assemblies. More specifically, the pressurizable members may include indexing and interlocking features for alignment with one another and possibly with other structural components that may be embedded in the assembly. In one embodiment, the indexing features permit the pressurizable members to be snap fit together. In another embodiment, an interlocking member is received in grooves formed in the macro-cellular cores. The interlocking member and thus the grooves may be selected to create uniquely shaped stiffeners for the composite assembly.
    • 复杂形状的三维纤维增强复合组件可以通过对准复杂形状的三维可加压构件以形成纤维增强复合组件来形成。 更具体地,可加压构件可以包括用于彼此对准的分度和互锁特征,并且可能具有可嵌入组件中的其它结构部件。 在一个实施例中,分度特征允许可加压构件卡扣配合在一起。 在另一个实施例中,互锁构件被容纳在形成在宏蜂窝芯中的槽中。 可以选择互锁构件和因此的凹槽来为复合组件创建独特的成形加强件。
    • 4. 发明申请
    • COMPOSITE STRUCTURES HAVING EMBEDDED MECHANICAL FEATURES
    • 具有嵌入式机械特征的复合结构
    • WO2015066546A9
    • 2015-07-09
    • PCT/US2014063564
    • 2014-10-31
    • RODMAN WILLIAM L
    • RODMAN WILLIAM L
    • B29C43/00
    • B29C70/70B29C70/48B29C70/865B29L2031/3076Y10T156/1002
    • A complex-shaped, three-dimensional fiber reinforced composite structure may be formed by using counteracting pressures applied to a structural lay-up of wetted fibers with mechanical features embedded or encapsulated therein. The mechanical features may be located on or at least partially between two or more pressurizable members, which may be internally pressurized within a mold. The mechanical features may operate as bearing plates, attachment fittings, or other structural elements. Assemblies of pressurizable members, fiber plies and mechanical features may be arranged to create complex composite structures with predefined load paths, enhanced structural capability or both.
    • 复杂形状的三维纤维增强复合结构可以通过使用施加到具有嵌入或封装在其中的机械特征的湿润纤维的结构叠层的反作用压力来形成。 机械特征可以位于或者至少部分地位于两个或更多个可加压构件之间,这些可加压构件可以在模具内部被加压。 机械特征可以用作支承板,连接配件或其他结构元件。 可加压构件,纤维层和机械特征的组件可以被布置成产生具有预定负载路径,增强的结构能力或两者的复杂复合结构。
    • 6. 发明申请
    • HOLLOW COMPOSITE STRUCTURE AND METHOD OF AMKING SAME
    • 中空复合结构及其相似方法
    • WO2009020466A1
    • 2009-02-12
    • PCT/US2007/081748
    • 2007-10-18
    • INVISION CONSULTANTS, LLCRODMAN, William, L.
    • RODMAN, William, L.
    • B29C70/44B29C70/46B29L22/00
    • B29C70/44B29C70/443B29C70/46B29C70/547B29C70/548B29K2105/246B29L2022/00
    • A complex- shaped, three-dimensional fiber reinforced composite structure may be formed by using counteracting pressures applied to a structural lay-up of fiber plies. The fiber plies (104) are arranged on a pressurizable member (106) that may become an integral part of the final product, or may be removed before the product is finalized. The pressurizable member may take the form of a hollow blow molded or rotomolded thermoplastic component or a superplastic formed metallic component having an opening such that the pressurizable member may be vented or pressurized and thus expanded against the fiber plies. In addition, a number of the pressurizable members may be joined in fluid communication, where they may each have different configurations, yet be arranged to form a large, complex- shaped lay-up surface for the fiber plies. The arrangement of the fiber plies onto the pressurizable members may produce integral I-Beam stiffeners, ribs, flanges, and other complex shaped structural components.
    • 复杂形状的三维纤维增强复合结构可以通过使用施加到纤维层的结构层叠上的抵抗压力来形成。 纤维层(104)布置在可以成为最终产品的组成部分的可加压构件(106)上,或者可以在产品最终确定之前被移除。 可加压构件可以采用中空吹塑或滚塑热塑性组分或具有开口的超塑性成形金属部件的形式,使得可加压构件可以排出或加压,从而相对于纤维层膨胀。 此外,多个可加压构件可以流体连通地连接,其中它们可以具有不同的构造,而被布置成形成用于纤维层的大的复杂形状的铺层表面。 纤维层在可加压构件上的布置可以产生一体的I型梁加强件,肋,凸缘和其它复杂形状的结构部件。