首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >DESIGN OF A ROBUST, MULTIFUNCTIONAL THERMAL PROTECTION SYSTEM INCORPORATING ZERO EXPANSION LATTICES
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DESIGN OF A ROBUST, MULTIFUNCTIONAL THERMAL PROTECTION SYSTEM INCORPORATING ZERO EXPANSION LATTICES

机译:包含零膨胀格的鲁棒多功能热保护系统的设计

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On hypersonic vehicles flying within the atmosphere, viscous drag on acreage surfaces, even far from the hot leading edges, generates high temperatures, and, consequently, high thermal stresses and strains. This leads to two significant problems in the design of hypersonic airbreathers: insulation of the cool internal volume of the vehicle from the inclement exterior conditions, and reducing geometric changes in the vehicle surface to preserve aerodynamic shapes and to make it possible to connect the aeroshell to the cool structure within. A multifunctional sandwich structure incorporating very low density insulation as the core, with the structural stiffness provided by a hot face consisting of a low (or zero) thermal expansion lattice, fulfills these requirements. Here we analyze the feasibility of such a structure and discuss design and manufacturing issues, concentrating particularly on bonded joints in the lattice and connections between the hot face and the cool internal structure.
机译:在大气中飞行的高超音速飞行器上,粘性阻力甚至在远离热前缘的面积表面上产生高温,并因此产生高热应力和应变。这在高超声速空气呼吸器的设计中导致两个重大问题:使车辆的冷内部容积与恶劣的外部条件隔绝,以及减少车辆表面的几何变化以保持空气动力学形状并使其能够将航空器壳体连接至里面很酷的结构。以低密度绝缘材料为核心的多功能夹心结构,通过由低(或零)热膨胀晶格组成的热面提供的结构刚度,满足了这些要求。在这里,我们分析了这种结构的可行性,并讨论了设计和制造问题,尤其着重于晶格中的粘结接缝以及热面与冷内部结构之间的连接。

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