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Landing Gear Integration in an Industrial Multi-Disciplinary Optimization Environment

机译:工业多学科优化环境中的着陆齿轮集成

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A landing gear design automation tool has been developed and integrated in the conceptual multi-disciplinary optimization (MDO) environment at Bombardier Aerospace (BA). The tool allows an optimization to consider the landing gear integration at each design iteration. It uses design rules followed at BA to determine positions and ground contact points for the nose and main landing gears, while performing all necessary checks such as tip over, tail strike, and wing-tip strike angles. Subject to maximum loads from a set of predefined cases, the landing gear structure is sized and the tires and rims are selected from an embedded database. Once the landing gear is defined, a full kinematic analysis is performed to optimize the pivot axis and stowage of the gear in the fuselage. The tool was validated with actual data from several aircraft showing minimal errors in landing gear positioning and sizing (± 3%).
机译:在庞巴迪航空航天(BA)的概念多学科优化(MDO)环境中开发并集成了着陆齿轮设计自动化工具。 该工具允许优化考虑每个设计迭代的着陆齿轮集成。 它采用设计规则,遵循BA,以确定鼻子和主着陆齿轮的位置和地面接触点,同时执行诸如尖端,尾部打击和翼尖撞击角的所有必要检查。 在从一组预定义的情况下进行最大载荷,尺寸的着陆齿轮结构且轮胎和轮辋从嵌入式数据库中选择。 一旦定义着陆齿轮,就执行完整的运动学分析以优化枢转轴线并在机身中的齿轮的用途。 该工具用来自几架飞机的实际数据验证,显示着陆齿轮定位和尺寸的最小误差(±3%)。

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