The Influence of Materials on the Development of Sailplane Design

C. Kensche
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引用次数: 5

Abstract

The evolution of sailplanes in the past century is a product of both the progress in aerodynamics as well as the usage of new materials including constructive and technological solutions. The focus of this contribution is to highlight the importance of new materials and their application in the development of sailplane design. Three periods are classified. The first beginning with the flights of O. Lilienthal in 1891 is characterized by wire braced, cloth covered willow, bamboo and wood constructions of the wings with thin airfoils. New possibilities were discovered in 1921 with the Vampyr where by means of plywood a cantilever single beam design including a D-tube leading edge of high torsion stiffness allowed a thick airfoil wing without wire braces. In this period also some important metal designs can be found. The end of this period which culminated in the HKS and KA6 constructions was rung in with the Phoenix in 1957 which was completely designed in glass fiber reinforced plastics (GFRP). The introduction of high strength and high modulus carbon fibers finally enabled further possibilities to increase the glider per-formance. Composite materials have been dominating the development of sailplanes now for nearly 50 years. Nevertheless, there are still problems to be solved such as the missing confidence in the very good fatigue properties of FRP. Thus, also lifetime certification and evaluation items are discussed, too.
材料对滑翔机设计发展的影响
在过去的一个世纪里,滑翔机的发展是空气动力学进步和新材料(包括建设性和技术解决方案)使用的产物。这篇文章的重点是强调新材料及其在滑翔机设计发展中的应用的重要性。分为三个时期。1891年O. liilienthal的第一次飞行以钢丝支撑、布覆盖柳、竹和薄翼型的木材结构为特征。新的可能性被发现在1921年与吸血鬼,其中通过胶合板的手段悬臂单梁设计,包括一个高扭转刚度的d管前缘允许厚翼型机翼没有钢丝支撑。在这一时期也可以找到一些重要的金属图案。这一时期的结束在HKS和KA6的建造中达到高潮,在1957年的凤凰号上,它完全是用玻璃纤维增强塑料(GFRP)设计的。高强度和高模量碳纤维的引入最终使滑翔机性能的进一步提高成为可能。复合材料主导了滑翔机的发展近50年。然而,仍有一些问题需要解决,如对FRP良好的疲劳性能缺乏信心。因此,也讨论了终身认证和评估项目。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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