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DECODING THE EVOLUTION OF REAR IMPACT MORPHOLOGIES ON THE HUBBLE SPACE TELESCOPE SOLAR ARRAY

机译:解码哈勃太阳能阵列堵塞外部撞击形态的进化

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Front-back impact damage on glass faced HST solar cells generated by rear-incident impactors, has remained relatively unexamined in preference to front-incident phenomena. Representing in excess of one-third of the total damage on the retrieved HST solar array, front-back impacts are an important phenomena in the study of hypervelocity impacts in terms of scale, directional flux and their physical impact process. Preliminary analysis and comparison of 215 space and 41 laboratory generated impacts was performed. All front-back morphology classes observed on HST solar array were successfully reproduced by experimentation and their theorised progressive evolution with impactor energy verified. The rear-incident ballistic limit of the target was established. Spallation demonstrated a dependence with cone crack angle implying relevance to indentation fracture mechanics. Provisional damage equations were formulated on a morphology class basis.
机译:玻璃面向玻璃的冲击损伤,由后事故撞击仪产生的暖和太阳能电池仍然相对未审视,优先于前面发生的现象。代表超过了检索到的HST太阳能阵列的总损坏的三分之一,前后影响是在规模,定向助焊剂和物理影响过程方面研究超额兴趣的重要现象。进行了215个空间和41个实验室产生的影响的初步分析和比较。在HST太阳能阵列中观察到的所有前后形态学课程通过实验和具有抗冲击能量的理论化渐进演变成功复制。建立了目标的后事故弹道极限。椎间介绍证明了锥形裂缝角依赖,这意味着与压痕骨折力学相关的相关性。临时损伤方程式在形态课程的基础上配制。

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