Composite-material blade, rotary machine, and method for forming composite-material blade

公开(公告)号:
GB202212799D0
公开(公告)日:
2022-10-19
申请号:
GB2022012799
申请日:
2021-01-25
授权日:
-
受理局:
英国
专利类型:
发明申请
简单法律状态:
有效
法律状态/事件:
授权
IPC分类号:
-
战略新兴产业分类:
航空装备产业
国民经济行业分类号:
-
当前申请(专利权)人:
MITSUBISHI HEAVY INDUSTRIES, LTD.
原始申请(专利权)人:
MITSUBISHI HEAVY INDUSTRIES, LTD.
当前申请(专利权)人地址:
2-3, Marunouchi 3-Chome, Chiyoda-ku, Tokyo 100-8332, Japan
工商统一社会信用代码:
-
工商登记状态:
-
工商注册地址:
-
工商成立日期:
2006
工商企业类型:
-
发明人:
-
代理机构:
-
代理人:
-
摘要:
This composite-material blade formed by using a fiber-reinforced resin containing a resin and reinforcing fibers is provided with: a base material part provided on the inner surface of the composite-material blade; and a first cover part for covering the outer surface of the base material part. The base material part is formed by using a carbon fiber-reinforced resin containing a first resin and carbon fibers. The first cover part is formed from an elastic polymer fiber-reinforced resin containing a second resin and elastic polymer fibers, and has more resistance to impact than the base material part.
技术问题语段:
-
技术功效语段:
-
权利要求:
Claims [Claim 1] A composite blade formed by using a fiber reinforced resin containing a resin and reinforcing fibers, the composite blade comprising: a preform portion provided on an inner surface of the composite blade; and a first covering unit that covers an outer surface of the preform portion, wherein the preform portion is formed by using a carbon fiber reinforced plastic containing a first resin and carbon fibers, and the first covering unit is formed of an elastic polymer fiber reinforced resin containing a second resin and elastic polymer fibers, and has more impact resistance than the preform portion. [Claim 2] The composite blade according to claim 1, wherein the first covering unit is laminated at least in a range of 5% to 10% of a chord length from both ends of the chord length of the composite blade and in a range of 5% to 10% of a blade height from a tip of the composite blade, over a thickness of 50% or more of a blade thickness of the composite blade. [Claim 3] The composite blade according to claim 1, wherein the elastic polymer fiber is any one of aramid fiber, polyarylate-based fiber, and liquid crystal fully aromatic polyester fiber. [Claim 4] The composite blade according to any one of claims to 3, wherein the first covering unit is provided in an entire range of a blade surface of the preform portion. [Claim 5] The composite blade according to any one of claims to 3, wherein the first covering unit is provided at a part where a blade thickness of the preform portion is thinner than a part where the blade thickness is the thickest. [Claim ©] The composite blade according to any one of claims to 3, wherein the preform portion has a pressure-side blade surface which is one blade surface in a blade thickness direction, a suction-side blade surface which is the other blade surface in the blade thickness direction, and a neutral portion provided between the pressure-side blade surface and the suction-side blade surface, and the neutral portion is formed by using the same material as the first covering unit. [Claim 7] The composite blade according to any one of claims to 3, wherein the preform portion has a pressure-side blade surface which is one blade surface in a blade thickness direction, a suction-side blade surface which is the other blade surface in the blade thickness direction, and a neutral portion provided between the pressure-side blade surface and the suction-side blade surface, and the neutral portion is formed by using any one of a material obtained by adding an elastomer to a resin-based material and a foam resin. [Claim 8] The composite blade according to any one of claims to 3, wherein the preform portion has a pressure-side blade surface which is one blade surface in a blade thickness direction, a suction-side blade surface which is the other blade surface in the blade thickness direction, and a neutral portion provided between the pressure-side blade surface and the suction-side blade surface, and the neutral portion is formed of a foaming agent to which a highly elastic filler is added. [Claim 9] The composite blade according to any one of claims to 3, wherein the preform portion has a pressure-side blade surface which is one blade surface in a blade thickness direction, a suction-side blade surface which is the other blade surface in the blade thickness direction, and a neutral portion provided between the pressure-side blade surface and the suction-side blade surface, and the neutral portion is formed by using the same composite material as the first covering unit, and has a second covering unit that covers each of an inner surface side facing the suction-side blade surface on the pressure-side blade surface, and an inner surface side facing the pressure-side blade surface on the suction-side blade surface, and a cushioning unit provided between the second covering unit of the pressure-side blade surface and the second covering unit of the suction- side blade surface. [Claim 10] The composite blade according to claim 9, wherein the cushioning unit is formed by using any one of a material obtained by adding an elastomer to a resin-based material and a foam resin. [Claim 11] The composite blade according to claim 7 or 10, wherein a thermoplastic resin is used as a resin used for the foam resin. [Claim 12] The composite blade according to claim 9, wherein the cushioning unit is formed in a shape of a lattice structure and is formed by using any one of a metal, a composite material, and a thermoplastic resin. [Claim 13] The composite blade according to any one of claims to 12, wherein a direction of elastic polymer fibers on an outermost layer of the first covering unit has an inclination of less than 90 degrees with respect to a direction of fibers on a surface layer of the preform portion. [Claim 14] The composite blade according to claim 13, wherein the direction of the elastic polymer fibers on the outermost layer of the first covering unit has an inclination of 45 degrees with respect to the direction of fibers on the surface layer of the preform portion. [Claim 15] The composite blade according to any one of claims to 12, wherein elastic polymer fibers of the first covering unit form a woven fabric having an inclination of 45 degrees with respect to a direction of the fibers on a surface layer of the preform portion, and the woven fabric is a plain weave woven fabric in which elastic polymer fiber bundles are formed with an inclination of 90 degrees. [Claim 16] A rotary machine comprising: the composite blade according to any one of claims to 15. [Claim 17] A method for forming a composite blade, which is for forming the composite blade according to claim 4, wherein the preform portion is formed by laminating reinforcing fiber sheets and has a pressure-side blade surface which 1s one end surface in a blade thickness direction, and a suction-side blade surface which is the other end surface in the blade thickness direction, and the method comprises: a step of arranging the first covering unit on a suction side in a suction-side molding tool for forming the suction-side blade surface, and forming a suction-side laminate by laminating the reinforcing fiber sheets; a step of arranging the first covering unit on a pressure side in a pressure-side molding tool for forming the pressure-side blade surface, and forming a pressure-side laminate by laminating the reinforcing fiber sheets; a step of assembling the suction-side molding tool and the pressure-side molding tool such that the suction-side laminate and the ©pressure-side laminate overlap each other; and a step of heating the suction-side laminate and the pressure-side laminate.
技术领域:
-
背景技术:
-
发明内容:
-
具体实施方式:
-
返回