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Study Orientation Ply of Fiberglass on Blade Salt Water Pump Windmill using Abaqus

机译:使用ABAQUS的刀片盐水泵风车研究玻璃纤维帘布层

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Windmill is one tool to generate energy from wind energy is converted into energy motion, salt production process still using traditional process by utilizing windmill to move sea water to salt field With a windmill driven water system, a horizontal axis type windmill with an average windmill height of 3-4 m, with a potential wind speed of 5-9 m / s, the amount of blade used for salt water pumps as much as 4 blades, one of the main factor of the windmill component is a blade, blade designed for the needs of a salt water pump by using fiberglass material. On layer orientation 0°,30o,45o,60o and 90° with layer number 10 and layer thickness 2 mm, the purpose of this study was to determine the strength of fiberglass that was influenced by the orientation of the layer, and to determine the orientation of fiberglass layer before making. This method used Finite Element Analysis method using ABAQUS, with homogenous and heterogeneous layer parameters. The simulation result shows the difference in von misses value at an angle of 0°, 30° ,45°,60° homogeneous value is greater than heterogeneous value, whereas in orientation 90 heterogeneous values have value l,689e9 Pa, greater than homogenous 90 orientation value of l,296e9 Pa.
机译:风车是一种从风能产生能量的工具被转化为能量运动,盐生产过程仍然使用传统过程利用风车将海水移动到盐场,用风车驱动的水系统,水平轴型风车平均风车高度3-4米,潜在的风速为5-9米/秒,用于盐水泵的刀片量多达4片叶片,风车部件的主要因素之一是刀片,设计为刀片使用玻璃纤维材料的盐水泵的需求。在层定向0°,300,45o,60o和90°,层数10和层厚度2mm,本研究的目的是确定受层面取向影响的玻璃纤维的强度,并确定制作前的玻璃纤维层的取向。该方法使用ABAQUS的有限元分析方法,具有均匀和异质层参数。仿真结果表明,von错失值的差异为0°,30°,45°,60°,60°均值大于异质值,而在取向90中,异质值具有值L,689e9 pa,大于均匀90 L,296E9 PA的方向值。

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