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Thermomechanical behaviour of airfield concrete pads supporting joint strike fighter F-35B

机译:支撑联合打击战斗机F-35B的机场混凝土护垫的热力学行为

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摘要

The Lockheed Martin F-35B Lightning II is the Short Take-Off/Vertical Landing (STOVL) aircraft variant of the joint strike fighter. The new dual-cycle propulsion system, which permits the STOVL operations, exposes the airfield pavements to extremely critical thermal conditions (temperatures exceeding 930 degrees C and heating rate of about 85 degrees C s(-1)). This study permitted to analyse the thermomechanical behaviour of an ordinary concrete pad during the F-35B aircraft vertical landing. The numerical analysis provided a detailed picture of the pavement stress state generated by the jet gases, opening the scenario to different planning solutions. The results highlighted how the damage, in the form of thermomechanical spalling, occurred in the top 2-5 mm of the pavement surface. One of the possible design solutions for high-performance vertical landing pads, supporting the F-35B aircraft, could be a two-layered pavement characterised by a thin (2.5 cm) fibre-reinforced Very High-Strength Concrete overlay.
机译:洛克希德·马丁公司的F-35B Lightning II是联合打击战斗机的短距起飞/垂直着陆(STOVL)飞机变体。新的双循环推进系统允许STOVL操作,使飞机场路面处于极端关键的热条件下(温度超过930摄氏度,加热速率约为85摄氏度s(-1))。这项研究可以分析F-35B飞机垂直降落期间普通混凝土垫的热机械行为。数值分析提供了由喷射气体产生的路面应力状态的详细图片,为不同的规划解决方案提供了方案。结果突出表明,损坏是如何以热机械剥落形式发生在路面顶部2-5 mm处的。支持F-35B飞机的高性能垂直着陆垫的可能设计解决方案之一可能是两层路面,其特征是薄(2.5厘米)纤维增强的超高强度混凝土覆盖层。

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