Receptor for wind turbine blade lightning protection
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F01D-005/14
F03D-009/00
출원번호
US-0176922
(2011-07-06)
등록번호
US-8727723
(2014-05-20)
발명자
/ 주소
Flemming, Matthew
Caie, Matthew
Kay, Ethan
Ambrogio, Nicholas J.
출원인 / 주소
ERICO International Corporation
대리인 / 주소
Renner, Otto, Boisselle & Sklar, LLP
인용정보
피인용 횟수 :
2인용 특허 :
10
초록▼
A receptor assembly for lightning protection of an object, such as a wind turbine blade, includes a receptor disk configured to be placed on a surface of the object, a receptor block insulator with an integral receptor block, a cover that engages the receptor block insulator, and a cap that engages
A receptor assembly for lightning protection of an object, such as a wind turbine blade, includes a receptor disk configured to be placed on a surface of the object, a receptor block insulator with an integral receptor block, a cover that engages the receptor block insulator, and a cap that engages the cover. The receptor disk and the receptor block may be made of electrically conductive materials, and the cover, and the cap, and the receptor block insulator may define a chamber among them that is lined with an electrically-conductive coating sandwiched between relatively high dielectric media to electrically isolate and shield internal parts of the receptor assembly from receiving a lightning strike directly.
대표청구항▼
1. A receptor assembly for lightning protection of an object comprises: a receptor disk configured to be placed on a surface of the object;a receptor block insulator having a hole therethrough;a receptor block in the hole; anda cover that engages the receptor block insulator;wherein the receptor and
1. A receptor assembly for lightning protection of an object comprises: a receptor disk configured to be placed on a surface of the object;a receptor block insulator having a hole therethrough;a receptor block in the hole; anda cover that engages the receptor block insulator;wherein the receptor and the receptor block are made of electrically conductive materials;wherein the cover and the receptor block insulator define a chamber between them; andwherein the chamber is surrounded by an electrically-conductive coating on an inside surface of the cover, on a surface of the receptor block that faces the chamber, and on a surface of the receptor block insulator that faces the chamber. 2. The receptor assembly of claim 1, further comprising an electrically-nonconducting filler material in the chamber. 3. The receptor assembly of claim 2, wherein the filler material is an epoxy. 4. The receptor assembly of claim 2, further comprising a cap that engages the cover;wherein the cap acts as a reservoir when filling the chamber with the filling material. 5. The receptor assembly of claim 4, wherein the electrically-conductive coating is also on an inside surface of the cap. 6. The receptor assembly of claim 1, wherein the receptor disk is threadedly engaged with the receptor block. 7. The receptor assembly of claim 1, wherein the receptor disk is the only externally-accessible electrically-conductive component of the receptor assembly, with the receptor and the receptor block insulator preventing access to other electrically-conductive parts of the receptor assembly. 8. The receptor assembly of claim 1, wherein the receptor disk threadedly engages with the receptor block. 9. The receptor assembly of claim 8, wherein surfaces of the receptor disk and the receptor block are flush with one another. 10. The receptor assembly of claim 1, further comprising a lug that is received in an opening of the cover;wherein the lug is electrically coupled to the receptor and the receptor block. 11. The receptor assembly of claim 10, further comprising a threaded fastener that mechanically couples the lug to the receptor block. 12. The receptor assembly of claim 11, wherein a portion of the conductive coating is between the lug and the receptor block, making an electrical connection between the lug and the receptor block. 13. The receptor assembly of claim 1, wherein the receptor has a disk-shape surface facing away from the receptor block. 14. The receptor assembly of claim 13, wherein the receptor disk has a curved edge, having a curvature of from 0.4 mm to 2 mm, around the perimeter of the disk-shape surface. 15. The receptor assembly of claim 1, wherein the receptor block insulator is a molded plastic piece that is molded around the receptor block. 16. The receptor assembly of claim 1, wherein the receptor block insulator has a circular perimeter; andwherein the receptor block insulator has tabs outside of where the cover engages the receptor block insulator, with the tabs aiding in preventing dislodgement of the receptor assembly when the receptor assembly is installed on an internal wall of a wind turbine blade. 17. The receptor assembly of claim 1, wherein the receptor block insulator has a polygonal perimeter. 18. The receptor assembly of claim 1, in combination with a wind turbine blade that the receptor assembly is installed on. 19. A wind turbine blade comprising: a wind turbine blade body; anda lighting receptor assembly installed on the wind turbine blade body, wherein the lightning receptor assembly includes an electrically-conductive receptor disk, and wherein a face of the receptor disk is the only electrically-conductive part of the receptor assembly that is externally accessible to lightning that strikes the wind turbine blade;wherein there is a gap between the receptor disk and a receptor-receiving opening in the wind turbine blade body. 20. A method of installing a receptor assembly on a device, the method comprising: threading a set screw onto an installation plug that is then secured to a mold, wherein the installation plug has a plug threaded hole that threadedly engages the set screw;forming a wall of the device on the mold, around the installation plug;placing an alignment pin in the plug threaded hole;attaching a receptor block insulator and a receptor block of the device to the device, with the attaching including placing the receptor block around the alignment pin, with the alignment pin in a receptor block threaded hole of the receptor block;removing the device from the mold;rotating the set screw within the plug threaded hole, the rotating including 1) pushing the alignment pin to bottom out against a screw of the receptor block assembly, and 2) after the alignment pin is bottomed out, ejecting the installation plug, thereby leaving a receptor cavity in the device; andinserting a receptor disk into the receptor cavity, wherein the inserting includes threadedly engaging the receptor disk with the receptor block threaded hole. 21. The method of claim 20, wherein the receptor block insulator has a circular perimeter; wherein the receptor block insulator has tabs; andwherein the attaching includes using fiberglass strips and/or loose rovings that are laid across a surface of the receptor block insulator and an inner surface of the wall of the device. 22. The method of claim 20, wherein the device is a wind turbine blade.
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이 특허에 인용된 특허 (10)
Cline Jay D. (Ft. Lauderdale FL), Lightning arrester with improved spark gap structure.
Johansen,Oluf Peter Kaad; S첩rensen,Troels, Lightning protection system for a construction, method of creating a lightning protection system and use thereof.
Olsen, Kaj; M.o slashed.ller Larsen, Flemming; Grabau, Peter; Ellermann Jespersen, John, Wind turbine blade with a system for deicing and lightning protection.
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