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Low Cost Infrared Glass for IR Imaging Applications

机译:用于红外成像应用的低成本红外玻璃

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With the advent of the uncooled detectors, the fraction of infrared (IR) imaging system cost due to lens elements has risen to the point where work was needed in the area of cost. Since these IR imaging systems often have tight packaging requirements which drive the optical elements to have complex surfaces, typical IR optical elements are costly to manufacture. The drive of our current optical material research is to lower the cost of the materials as well as the element fabrication for IR imaging systems. A low cost, moldable amorphous material, Amtir-4, has been developed and characterized. Ray Hilton Sr., Amorphous Materials Inc., Richard A. LeBlanc, Amy Graham and Others at Lockheed Martin Missiles and Fire Control Orlando (LMMFC-O) and James Johnson, General Electric Global Research Center (GE-GRC), along with others have been doing research for the past three years characterizing and designing IR imaging systems with this material. These IR imaging systems have been conventionally fabricated via diamond turning and techniques required to mold infrared optical elements have been developed with this new material, greatly reducing manufacturing costs. This paper will outline efforts thus far in incorporating this new material into prototype IR imaging systems.
机译:随着非制冷探测器的问世,由于透镜元件而导致的红外(IR)成像系统成本所占比例已经上升到需要在成本方面进行工作的地步。由于这些IR成像系统通常具有严格的包装要求,从而使光学元件具有复杂的表面,因此典型的IR光学元件的制造成本很高。我们当前光学材料研究的驱动力是降低材料成本以及IR成像系统的元件制造成本。已经开发并表征了低成本,可模制的非晶材料Amtir-4。 Ray Hilton Sr.,Amorphous Materials Inc.,Richard A. LeBlanc,Amy Graham等在洛克希德·马丁导弹公司和火力控制奥兰多(LMMFC-O)以及詹姆斯·约翰逊,通用电气全球研究中心(GE-GRC)等在过去的三年中,一直在研究和表征使用这种材料的红外成像系统。这些红外成像系统通常是通过金刚石车削制造的,而模制红外光学元件所需的技术已经用这种新材料开发,大大降低了制造成本。本文将概述迄今为止将这种新材料整合到原型红外成像系统中的努力。

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