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A Parametric Finite-Element Model for Evaluating Segmented Mirrors with Discrete, Edgewise Connectivity

机译:参数化有限元模型,用于评估具有离散边缘连接的分段镜

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Since future astrophysics missions require space telescopes with apertures of at least 10 meters, there is a need for on-orbit assembly methods that decouple the size of the primary mirror from the choice of launch vehicle. One option is to connect the segments edgewise using mechanisms analogous to damped springs. To evaluate the feasibility of this approach, a parametric ANSYS model that calculates the mode shapes, natural frequencies, and disturbance response of such a mirror, as well as of the equivalent monolithic mirror, has been developed. This model constructs a mirror using rings of hexagonal segments that are either connected continuously along the edges (to form a monolith) or at discrete locations corresponding to the mechanism locations (to form a segmented mirror). As an example, this paper presents the case of a mirror whose segments are connected edgewise by mechanisms analogous to a set of four collocated singledegree-of-freedom damped springs. The results of a set of parameter studies suggest that such mechanisms can be used to create a 15-m segmented mirror that behaves similarly to a monolith, although fully predicting the segmented mirror performance would require incorporating measured mechanism properties into the model.
机译:由于未来的天体物理学任务需要孔径至少为10米的太空望远镜,因此需要在轨组装方法,以将主镜的尺寸与运载火箭的选择脱钩。一种选择是使用类似于阻尼弹簧的机制沿边沿连接分段。为了评估这种方法的可行性,已经开发了一种参数ANSYS模型,该模型可以计算这种反射镜以及等效的整体反射镜的模式形状,固有频率和干扰响应。该模型使用六边形环的环构造反射镜,这些环沿着边缘连续连接(以形成整体)或在与机械位置相对应的离散位置(以形成分段镜)连接。作为示例,本文介绍了一种镜子的情况,该镜子的各段通过类似于一组四个并置的单自由度阻尼弹簧的机制在边缘进行连接。一组参数研究的结果表明,尽管要完全预测分段镜的性能将需要将测得的机构特性纳入模型中,但是可以使用此类机制创建行为类似于整体的15米分段镜。

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