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Cost Effective Aluminum Beryllium Mirrors for Critical Optics Applications

机译:适用于关键光学应用的经济高效的铝铍镜

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The unique performance of aluminum-beryllium frequently makes it an ideal material for manufacturing precision optical-grade metal mirrors. Traditional methods of manufacture utilize hot-pressed powder block in billet form which is subsequently machined to final dimensions. Complex component geometries such as lightweighted, non-piano mirrors require extensive tool path programming, fixturing, and CNC machining time and result in a high buy-to-fly ratio (the ratio of the mass of raw material purchased to the mass of the finished part). This increases the cost of the mirror structure as a significant percentage of the procurement cost is consumed in the form of machining, tooling, and scrap material that do not add value to the final part. Inrad Optics, Inc. and IBC Advanced Alloys Corp. undertook a joint study to evaluate the suitability of investment-cast Beralcast® 191 and 363 aluminum-beryllium as a precision mirror substrate material. Net shape investment castings of the desired geometry minimizes machining to just cleanup stock, thereby reducing the recurring procurement cost while still maintaining performance. The thermal stability of two mirrors, (one each of Beralcast® 191 and Beralcast® 363), was characterized from -40°F to +150°F. A representative pocketed mirror was developed, including the creation of a relevant geometry and production of a cast component to validate the approach. Information from the demonstration unit was used as a basis for a comparative cost study of the representative mirror produced in Beralcast® and one machined from a billet of AlBeMet® 162 (AlBeMet® is a registered trademark of Materion Corporation). The technical and financial results of these studies will be discussed in detail.
机译:铝铍合金的独特性能使其经常成为制造精密光学级金属镜的理想材料。传统的制造方法利用坯料形式的热压粉末块,随后将其加工成最终尺寸。复杂的零件几何形状,例如轻质的非钢琴镜,需要大量的刀具路径编程,固定和CNC加工时间,并导致高的买入-卖出比率(所购买原材料的质量与成品质量的比率)部分)。这增加了后视镜结构的成本,因为采购成本的很大一部分都以加工,工具和报废材料的形式消耗,而这并没有增加最终零件的价值。 Inrad Optics,Inc.和IBC Advanced Alloys Corp.进行了一项联合研究,以评估投资浇铸的Beralcast®191和363铝铍作为精密镜面基材的适用性。所需几何形状的净形状精铸件可最大程度地减少机加工,仅清理库存,从而降低了重复采购成本,同时仍保持性能。在-40°F至+ 150°F的温度范围内,确定了两个反射镜的热稳定性(分别为191和363)。开发了一个有代表性的口袋镜,包括创建相关的几何形状和生产铸造零件以验证该方法。来自演示单位的信息被用作对Beralcast®生产的代表性镜子进行比较成本研究的基础,该镜子由AlBeMet®162坯料加工而成(AlBeMet®是Materion Corporation的注册商标)。这些研究的技术和财务结果将详细讨论。

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