发明名称 Wind turbine rotor blade components and methods of making same
摘要 Structural preform layers of multiple rigid unidirectional strength elements or rods are constructed and arranged for use in fabricating load-bearing support structures and reinforcements of wind turbine blades. Individual preform layers include multiple elongate unidirectional strength elements or rods arranged in a single layer along a longitudinal axis of the preform layer. Each preform layer includes one or more fibrous carrier layers to which the multiple strength elements or rods are joined and arranged in the single layer. Each strength element or rod is longitudinally oriented and adjacent to other elements or rods. Individual strength elements or rods include a mass of substantially straight unidirectional structural fibers embedded within a matrix resin such that the elements or rods have a substantially uniform distribution of fibers and high degree of fiber collimation. The relative straightness of the fibers and fiber collimation provide strength elements or rods and the preform layers with high rigidity and significant compression strength.
申请公布号 US9429140(B2) 申请公布日期 2016.08.30
申请号 US201313899141 申请日期 2013.05.21
申请人 SENVION GMBH 发明人 Gruhn Joel D.;Franklin Ethan;Narasimhan Kameshwaran
分类号 F04D29/38;B63H1/26;F03D1/06;B29B11/16;B29C70/02;B29C70/08;B29D99/00;B29L31/08 主分类号 F04D29/38
代理机构 ISUS Intellectual Property PLL 代理人 ISUS Intellectual Property PLL
主权项 1. A method for assembling a structural element for a wind turbine blade comprising the steps of: providing a composite beam including two or more preform layers, each preform layer including multiple elongate strength rods which are arranged longitudinally relative to one another in a single layer, and wherein each strength rod is positioned adjacent to and spaced from at least one adjacent strength rod; each strength rod including multiple unidirectional, substantially straight collimated structural fibers fixed in a solidified matrix resin so that each strength rod is rigid and defines a finished geometry including a selected length and width and a selected profile; providing, for each preform layer, a carrier layer and joining the multiple elongate strength rods to the carrier layer by an adhesive applied to at least one of the carrier layer and the strength rods; wherein the carrier layer locates adjacent strength rods a fixed distance apart, the fixed distance permitting the flow of liquid bonding resin between adjacent strength rods of a preform layer to its joined carrier layer; and wherein the carrier layer includes one or more permeable materials suitable to facilitate permeation and penetration to permit flow of liquid bonding resin between stacked preform layers; stacking each preform layer with one or more other preform layers; causing liquid bonding resin to flow between adjacent strength rods and through the carrier layer to which the strength rods are joined and to adjacent stacked preform layers; and solidifying the liquid bonding resin to fix the stacked preform layers to form the structural element.
地址 Hamburg DE