首页> 外文会议>Conference on Optomechanics 2003; Aug 7-8, 2003; San Diego, California, USA >Statically determined structures: Tension between classical and modern design
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Statically determined structures: Tension between classical and modern design

机译:静态确定的结构:古典与现代设计之间的张力

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The two most important characteristics of opto-mechanical structures used in space or for astronomy are high accuracy and stability. Much time, money and energy is invested in achieving this. However, because resources are limited, it is important to realize that the cost of an instrument is mainly determined during the design process. Three factors can influence the design to a great extent. These are: creativity, design rules and analysis. The most important tool for analysis nowadays is the computer. This has become so powerful that even large structures are no problem to analyse in detail using finite elements. It is even tempting to spend much time and effort in optimising structures with the computer. However, basis for the best result is creativity during the design phase and the application of design rules. Although design rules are used extensively, it is surprising to see that one of the most important ones is so little used. This paper therefore deals specifically with the rule to make structures statically determined. The importance is invaluable because to apply this rule means much less need for computers. Furthermore its application often results in non-conventional structures and it helps to clearly define the basics of the structure. It also provides simple qualitative results that help to make decisions concerning alternatives. Results of computer models can be verified on their validity. Some interesting results of the application of this design rule are shown. Examples are the linear guiding system for an optical delay line and the design of a telescope. Also, existing structures, like the secondary mirror mount of the VLT, will be analysed and it will be shown what they would have looked like had they been statically determined.
机译:在空间或天文学中使用的光机械结构的两个最重要的特征是高精度和稳定性。为了实现这一目标,需要花费大量时间,金钱和精力。但是,由于资源有限,重要的是要意识到仪器的成本主要是在设计过程中确定的。三个因素可以在很大程度上影响设计。它们是:创造力,设计规则和分析。当今最重要的分析工具是计算机。它已经变得如此强大,以至于大型结构都可以使用有限元进行详细分析。甚至很想花费大量时间和精力在计算机上优化结构。但是,获得最佳结果的基础是设计阶段的创造性和设计规则的应用。尽管设计规则被广泛使用,但是令人惊讶的是,最重要的规则之一却很少使用。因此,本文专门处理使结构静态确定的规则。重要性是无价的,因为应用此规则意味着对计算机的需求要少得多。此外,它的应用经常导致非常规的结构,并且有助于清晰地定义结构的基础。它还提供简单的定性结果,有助于做出有关替代方案的决策。可以验证计算机模型的结果的有效性。显示了应用该设计规则的一些有趣结果。例如,用于光学延迟线的线性导向系统和望远镜的设计。同样,将对现有结构(例如VLT的辅助镜架)进行分析,并显示如果静态确定它们的外观。

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