Blade member and structural member
US-2024102389-A1 · Mar 28, 2024 · US
US2016168997A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016168997-A1 |
| Application number | US-201414906585-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 23, 2014 |
| Priority date | Jul 30, 2013 |
| Publication date | Jun 16, 2016 |
| Grant date | — |
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A wind turbine blade and an associated method of manufacture is described, wherein a structural bond line of the blade is positioned to be adjacent to a sandwich panel construction of the blade. By locating the structural bond line nest to a sandwich region of the blade, the buckling strength of the joint is improved and the risk of crack initiation in the adhesive joint is reduced considerably. This allows for a reduction in the amount of structural adhesive used in the blade, and/or a reduction in the amount of core material which is required in the sandwich panel to maintain the required blade stiffness. A particular advantage is provided in the region of the trailing edge of the blade, wherein the relocated structural joint considerably reduces the risk of buckling in the trailing edge side of the blade.
Opening claim text (preview).
1 . A wind turbine blade formed from a pressure-side blade shell and a suction-side blade shell joined to form a blade body having an airfoil profile with a leading edge and a trailing edge, said blade comprising at least one sandwich panel construction in said blade shells, wherein a core is disposed between an inner skin and an outer skin of said blade shells, wherein said at least one sandwich panel construction comprises a core having a tapered end portion, preferably arranged at the trailing edge side of said core, wherein a structural bond line is arranged adjacent said at least one sandwich panel construction to join a portion of said pressure-side blade shell and a portion of said suction-side blade shell, wherein said structural bond line is spaced from the leading edge and the trailing edge of the wind turbine blade, wherein said at least one sandwich panel construction is arranged to provide parallel bonding surfaces between said pressure-side blade shell and said suction-side blade shell, wherein said structural bond line is arranged between said parallel bonding surfaces, and wherein said structural bond line is arranged adjacent said tapered end portion of said core of said at least one sandwich panel. 2 . The wind turbine blade of claim 1 , wherein said structural bond line is arranged between a pair of sandwich panel constructions to join said pressure-side blade shell to said suction-side blade shell. 3 . The wind turbine blade of claim 1 , wherein said blade comprises at least one trailing edge sandwich panel construction in said blade shells, wherein a core is disposed between an inner skin and an outer skin of said blade shells, said trailing edge sandwich panel construction located in the trailing edge side of the wind turbine blade, wherein a structural trailing edge bond line is arranged adjacent said at least one trailing edge sandwich panel construction to join said pressure-side blade shell and said suction-side blade shell, said structural trailing edge bond line spaced from the actual trailing edge of the wind turbine blade. 4 . The wind turbine blade of claim 3 , wherein said pressure-side blade shell comprises a pressure-side trailing edge sandwich panel construction and said suction-side blade shell comprises a suction-side trailing edge sandwich panel construction, and wherein said structural trailing edge bond line is arranged between at least a portion of said pressure-side and suction side trailing edge sandwich panel constructions. 5 . The wind turbine blade of claim 1 , wherein the wind turbine blade further comprises a non-structural sealant provided at the actual trailing edge of the blade, between opposed trailing edge ends of the pressure- and suction-side shells. 6 . The wind turbine blade of claim 5 , wherein said non-structural sealant comprises a polyeurethane-based adhesive. 7 . The wind turbine blade of claim 1 , wherein the wind turbine blade comprises a reflective element or marker provided adjacent said structural bond line, such that said reflective element or marker is arranged to measure the thickness of said structural bond line using a non-destructive testing procedure, for example a magnetically-based scanning technique. 8 . A wind turbine having at least one wind turbine blade as claimed in claim 1 . 9 . A method of manufacturing a part of wind turbine blade, comprising: providing a first blade component having a sandwich panel construction in said first blade component, wherein a core is disposed between an inner skin and an outer skin of said first blade component, said core having a tapered end portion, providing a second blade component, applying a structural adhesive to at least one of said first and second blade components; joining said first and second blade components such that said structural adhesive is arranged adjacent at least a portion of the sandwich panel construction of said first blade component, said structural adhesive arranged adjacent said tapered end portion of said core of said at least one sandwich panel construction; and curing said structural adhesive to form a part of a wind turbine blade, wherein the cured adhesive forms a structural bond line arranged adjacent said at least one sandwich panel construction to join said first blade component and said second blade component, wherein said structural bond line is spaced from the leading edge and the trailing edge of the wind turbine blade and wherein said at least one sandwich panel construction is arranged to provide parallel bonding surfaces between said first blade component and said second blade component, wherein said structural bond line is arranged between said parallel bonding surfaces. 10 . The method of claim 9 , wherein the method comprises the step of providing a second blade component having a sandwich panel construction in said second blade component, wherein a core is disposed between an inner skin and an outer skin of said second blade component, and wherein said structural adhesive is applied to at least one of said first and second blade components adjacent at least a portion of the sandwich panel construction. 11 . The method of claim 9 , wherein said step of joining comprises joining said first and second blade components such that said structural adhesive is arranged between at least a portion of the sandwich panel constructions of said first and second blade components. 12 . The method of claim 9 , wherein said first and second blade components comprise wind turbine blade shells.
Shape, i.e. outer, aerodynamic form (F01D5/148 - F01D5/20 take precedence; blade construction F01D5/147) · CPC title
Manufacturing or production processes characterised by the final manufactured product · CPC title
Wind turbines with rotation axis in wind direction · CPC title
said joint lines being multiple and parallel, i.e. the joint being formed by several parallel joint lines · CPC title
comprising at least one bevelled joint-segment · CPC title
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