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首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >Conical Roll-Twist-Bending Process for Fabrication of Metallic Archimedes Spiral Blade Used in Small Wind Power Generator
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Conical Roll-Twist-Bending Process for Fabrication of Metallic Archimedes Spiral Blade Used in Small Wind Power Generator

机译:小型风力发电机用金属阿基米德螺旋叶片的圆锥形辊-扭转-弯曲工艺

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摘要

We propose a novel conical roll-twist-bending (RTB) process to fabricate a metallic Archimedes spiral blade which has variable curvatures on its surface, and it is a key element of a novel wind power generator having a remarkably higher efficiency of about 34% compared with conventional wind power systems. The RTB system consists of a pair of conical rollers (upper and lower sides) and cylindrical twist-bending rollers in the both lateral sides. With the help of forming analysis results, multi-step regional forming method was utilized to fabricate the blade. Also, the process parameters were optimized by a response surface methodology. In this work, we installed the experimental equipment of RTB process, and it was experimentally proven that the developed RTB process was capable of producing a spiral blade with a shape error less than approximately 5%. Furthermore, we believe that the RTB process can be utilized to fabricate diverse sheet metal structures having continuously changing curvatures for various applications.
机译:我们提出了一种新颖的锥形辊扭弯曲(RTB)工艺来制造金属阿基米德螺旋叶片,该叶片的表面具有可变的曲率,这是新型风力发电机的关键要素,其效率显着提高了约34%与传统的风力发电系统相比。 RTB系统由一对锥形辊(上下)和在两侧的圆柱弯曲辊组成。借助成形分析结果,利用多步骤区域成形方法来制造叶片。而且,通过响应面方法对工艺参数进行了优化。在这项工作中,我们安装了RTB工艺的实验设备,并通过实验证明了开发的RTB工艺能够生产形状误差小于约5%的螺旋叶片。此外,我们相信RTB工艺可用于制造曲率连续变化的各种钣金结构,以用于各种应用。

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