[미국특허]
Composite tank, wing, and method for manufacturing composite tank
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B64D-015/04
B64D-037/06
B64C-003/34
B64D-037/32
출원번호
US-0258179
(2010-03-17)
등록번호
US-9090355
(2015-07-28)
우선권정보
JP-2009-083366 (2009-03-30)
국제출원번호
PCT/JP2010/054520
(2010-03-17)
§371/§102 date
20110921
(20110921)
국제공개번호
WO2010/113640
(2010-10-07)
발명자
/ 주소
Yamaguchi, Hiroaki
Kamino, Yuichiro
Nakamura, Koichi
Hashigami, Tooru
출원인 / 주소
MITSUBISHI HEAVY INDUSTRIES, LTD.
대리인 / 주소
Wenderoth, Lind & Ponack, L.L.P.
인용정보
피인용 횟수 :
1인용 특허 :
5
초록▼
A composite tank that can suppress electrification, corrosion and strength degradation, a wing comprising the composite tank, and a method for manufacturing the composite tank. The composite tank comprises: a tank body inside which a combustible material is stored, having a first resin portion (11,
A composite tank that can suppress electrification, corrosion and strength degradation, a wing comprising the composite tank, and a method for manufacturing the composite tank. The composite tank comprises: a tank body inside which a combustible material is stored, having a first resin portion (11, 12) formed from a fiber reinforced resin and a metal portion formed from a metal material, a second resin portion (22) formed from a fiber reinforced resin, which covers at least those regions on the inner surface of the tank body where the first resin portion (11, 12) adjoins the metal portion, and a plurality of conductive portions (23) that enable charge transfer through the second resin portion (22), from the surface that contacts the combustible material to the first resin portion (11, 12), wherein the fiber in the second resin portion (22) has a higher electrical resistivity than fiber in the first resin portion (11, 12), and the second resin portion (22) forms a layer that isolates the first resin portion (11, 12) from the metal portion.
대표청구항▼
1. A composite tank comprising: a tank body inside which a combustible material is stored, the tank body having a first resin portion formed from a fiber reinforced resin, and a metal portion formed from a metal material,a second resin portion formed from a fiber reinforced resin, which covers at le
1. A composite tank comprising: a tank body inside which a combustible material is stored, the tank body having a first resin portion formed from a fiber reinforced resin, and a metal portion formed from a metal material,a second resin portion formed from a fiber reinforced resin, which covers at least those regions on an inner surface of the tank body where the first resin portion adjoins the metal portion, the second resin portion including a combustible-material-contacting surface that contacts the combustible material, anda plurality of conductive portions that are provided within the second resin portion in such a way as to enable charge transfer through the second resin portion, from the combustible-material-contacting surface of the second resin portion through to the first resin portion,wherein fiber incorporated within the second resin portion has a higher electrical resistivity that fiber incorporated within the first resin portion, and the second resin portion forms a layer that isolates the first resin portion from the metal portion, andwherein the conductive portions are portions without the fibers in the second resin portion, are formed solely of the resin, and extend from the combustible-material-contacting surface through to the resin portion. 2. The composite tank according to claim 1, wherein the second resin portion is formed by arranging the fibers in a planar pattern and then impregnating the fibers with the resin. 3. A wing, which is provided with the composite tank according to claim 1, wherein the first resin portion of the composite tank constitutes at least a portion of a wing box. 4. The composite tank according to claim 1, wherein when the amount of charge in the vicinity of the conductive portions in the second resin portion reaches a certain value, the conductive portions transfers the charge borne by the second resin portion to the first resin portion via the conductive portions.
Yamamoto Tetsuya (Nagoya JPX) Nishiyama Shigeru (Nagoya JPX) Saito Kouichi (Nagoya JPX), Method of manufacturing a multi-holed surface plate made of a composite material and a raw forming element of the compos.
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