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ZERODUR for stressed mirror polishing II: improved modeling of the material behavior

机译:ZERODUR用于应力镜抛光II:改善了材料性能的建模

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In the preceding part I of this paper stressed mirror polishing was stated as one of the processes assumed for the polishing ofnon-axisymmetric mirror blanks like those for the two ELT projects (the ESO E-ELT and the TMT). For this process it isimportant to have a precise knowledge of the elastic behavior of the glass ceramic mirror substrate materials. In realityglasses and glass ceramics do not react instantaneously to stresses at room temperature. This effect is called "delayedelasticity".It was shown that the delayed elasticity effect of ZERODURsup®/sup is small in size (less than approximately 1% of the applieddeformation) and fully reversible in time. A mathematical model on the relaxation of shear modulus and bulk modulus ofZERODURsup®/sup has been introduced to predict the delayed elasticity at room temperature and different load cases. This secondpaper is focusing on an updated model approach with the target to improve the model prediction accuracy. The modelresults will be compared to measurements of the effect on a 1.5 m E-ELT mirror blank at L-3 Communications, Tinsley.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在本文的第一部分中,强调镜抛光被认为是非轴对称镜毛坯抛光的假定工艺之一,就像两个ELT项目(ESO E-ELT和TMT)一样。对于此过程,重要的是要精确了解玻璃陶瓷镜面基板材料的弹性性能。在现实中,玻璃和玻璃陶瓷在室温下不会立即对应力产生反应。该效应被称为“延迟弹性”。研究表明,ZERODUR ® 的延迟弹性效应尺寸小(小于所施加变形的大约1%),并且在时间上是完全可逆的。为了预测室温和不同载荷工况下的延迟弹性,引入了一个关于ZERODUR ® 的剪切模量和体积模量松弛的数学模型。该第二篇论文集中在针对目标的更新模型方法上,以提高模型预测的准确性。模型结果将与在Tinsley的L-3 Communications的1.5 m E-ELT反射镜毛坯上的效果测量进行比较。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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