風力タービンブレード用エポキシ樹脂注入機

Epoxy Resin Pouring Machine For Wind Turbine Blade

製品パラメーター

パラメータ Model:HF-Epoxy-2A2B-WindPowerBlade
注入率 200~3000 g/s
原材料比率 Epoxy Resin : Curing Agent (Amine/Anhydride) = 100:20~30
タンク容量 220 / 300 L
ミキシングヘッド速度 5000~9000 r/min
ダイナミック測光の精度 ≤±0.5% (Full range)
タンク構成 2A2B two-component + reinforcing additive tank
材料の温度制御 Tank A: 40~85℃; Tank B (Curing Agent): 30~60℃
真空脱泡 High configuration (Vacuum ≤-0.098MPa)
洗浄システム High-pressure circulation cleaning + air purge cleaning
パワー 15~22 kW
制御システム PLC + touch screen + multi-formula storage
適用システム Epoxy resin + Amine/Anhydride curing agent
保証 1年
認証 CE, ISO9001, Special certification for wind power industry

アプリケーション・シナリオ

Specially designed for epoxy resin pouring of wind turbine blades, suitable for 1.5MW~10MW wind blades. It is used for resin pouring of key parts such as blade shell, web and root, compatible with glass fiber and carbon fiber reinforcements. It meets the core requirements of high strength, weather resistance, fatigue resistance and porosity-free for wind blades, and can withstand harsh outdoor conditions such as high/low temperature, strong wind and ultraviolet radiation for a long time, ensuring blade operation stability and service life, adapting to large-scale standardized production in wind power industry.

A large wind farm with turbines on a desert hill under a clear sky.

コアの利点

2A2B configuration with reinforcing additive tank, can add glass fiber and carbon fiber fillers. Blade tensile strength ≥350MPa, flexural strength ≥500MPa, excellent fatigue resistance, suitable for high-load wind power working conditions.

Large-flow stable pouring, suitable for 10~80m large-size blade molds, full filling without bubbles, uniform infiltration of resin and reinforcing materials, improving blade structural strength.

Compatible with amine/anhydride dual curing agents: amine for room temperature rapid pouring, anhydride for high-temperature high-strength molding, flexible process switching.

Precise temperature control and metering, uniform curing without deformation. The machine can run continuously for 24 hours to meet the mass production needs of wind turbine blades.

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