Aerogenerator blade composite material
A technology for wind turbines and composite materials, applied in the field of wind turbines, can solve the problems of non-renewable utilization, environmental and operator hazards, and overflow of harmful substances such as styrene, and achieves solutions to brittleness, poor wear resistance, and production environment. The effect of non-toxic and harmless, excellent ductility and strength
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2016-11-23
- Estimated Expiration
- Not applicable · inactive patent
Abstract
Description
technical field
[0001] The invention relates to the technical field of wind power generators, in particular to a composite material for wind power generator blades. Background technique
[0002] Wind is one of the energy sources without pollution. And it is inexhaustible and inexhaustible. Wind energy as a clean Renewable Energy , has received more and more attention from all over the world. For coastal islands, grasslands, pastoral areas, mountainous and plateau areas that lack water, fuel, and inconvenient transportation, the use of wind power generation according to local conditions is very suitable and promising. Among the utilization forms of wind energy, wind power generation technology is the most mature and has the most prospect of commercial development. Large-scale use of wind power generation is also one of the effective measures to reduce harmful gas emissions.
[0003] Blades are the most basic and critical components of wind turbines. Harsh environment an...
Examples
Embodiment 1
[0018] In an embodiment of the present invention, a composite material for a wind generator blade is composed of a fiber part, a resin part, and a metal part. The fiber part includes 40 kg of glass fiber and 30 kg of carbon fiber, and the resin part is made of polyamide resin, antioxidant, and antiaging agent. Composed with corrosion inhibitor, and the weight of each component: polyamide resin 15kg, antioxidant 4kg, antiaging agent 2kg and corrosion inhibitor 1kg; the composition of the metal part according to weight includes: Cu3kg, Al2kg, Ti1kg, during preparation, the fiber Part, the metal part is dissolved in the resin part in turn.
Embodiment 2
[0020] In an embodiment of the present invention, a composite material for a wind turbine blade is composed of a fiber part, a resin part, and a metal part. The fiber part includes 50 kg of glass fiber and 35 kg of carbon fiber. The resin part is made of polyamide resin, antioxidant, Composed of aging agent and corrosion inhibitor, and the weight of each component: polyamide resin 22kg, antioxidant 9kg, antiaging agent 6kg and corrosion inhibitor 5kg; the composition of the metal part according to weight includes: Cu8kg, Al6kg, Ti4kg, during preparation, The fiber part and the metal part are sequentially dissolved in the resin part.
Embodiment 3
[0022] In an embodiment of the present invention, a composite material for a wind generator blade is composed of a fiber part, a resin part, and a metal part, and the fiber part includes 43kg of glass fiber and 32kg of carbon fiber. The resin part is composed of polyamide resin, antioxidant, antiaging agent and corrosion inhibitor, and each component includes by weight: polyamide resin 18kg, antioxidant 6kg, antiaging agent 3kg and corrosion inhibitor 2kg. The composition of the metal part by weight includes: Cu5kg, Al3kg, Ti2kg.