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Effect of Aerogel Particle Concentration on Mechanical Behavior of Impregnated RTV 655 Compound Material for Aerospace Applications

机译:气凝胶颗粒浓度对航空应用的浸渍RTV 655复合材料力学行为的影响

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摘要

Aerogels are a unique class of materials with superior thermal and mechanical properties particularly suitable for insulating and cryogenic storage applications. It is possible to overcome geometrical restrictions imposed by the rigidity of monolithic polyurea cross-linked silica aerogels by encapsulating micrometer-sized particles in a chemically resistant thermally insulating elastomeric “sleeve.” The ultimate limiting factor for the compound material’s performance is the effect of aerogel particles on the mechanical behavior of the compound material which needs to be fully characterized. The effect of size and concentration of aerogel microparticles on the tensile behavior of aerogel impregnated RTV655 samples was explored both at room temperature and at 77 K. Aerogel microparticles were created using a step-pulse pulverizing technique resulting in particle diameters between 425 μm and 90 μm and subsequently embedded in an RTV 655 elastomeric matrix. Aerogel particle concentrations of 25, 50, and 75 wt% were subjected to tensile tests and behavior of the compound material was investigated. Room temperature and cryogenic temperature studies revealed a compound material with rupture load values dependent on (1) microparticle size and (2) microparticle concentration. Results presented show how the stress elongation behavior depends on each parameter.
机译:Aerogels是一种独特的材料,具有出色的热和机械性能,特别适用于绝缘和低温储存应用。可以通过将微米尺寸的颗粒封装在化学耐热绝缘弹性体“套筒中来克服整体脲交联二氧化硅气凝胶刚性施加的几何限制。复合材料性能的最终限制因素是气凝胶颗粒对需要完全表征的复合材料的力学行为的影响。在室温和77k时探讨了气凝胶微粒的尺寸和浓度对气凝胶浸渍RTV655样品的拉伸行为的影响。使用阶梯脉冲粉碎技术产生气凝胶微粒,导致粒径为425μm和90μm。随后嵌入RTV 655弹性体基质中。对25,50和75wt%的气凝胶颗粒浓度进行拉伸试验,并研究了化合物材料的行为。室温和低温温度研究显示了具有破裂载荷值的复合材料,依赖于(1)微粒尺寸和(2)微粒浓度。结果显示了应力伸长行为如何取决于每个参数。

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