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Diamondlike carbon protective coatings for optical windows

机译:光学玻璃的类金刚石碳保护涂层

摘要

Diamondlike carbon (DLC) films were deposited on infrared transmitting optical windows and were evaluated as protective coatings for these windows exposed to particle and rain erosion. The DLC films were deposited on zinc selenide (ZnSe) and zinc sulfide (ZnS) by three different ion beam methods: (1) sputter deposition from a carbon target using an 8-cm argon ion source; (2) direct deposition by a 30-cm hollow cathode ion source with hydrocarbon gas in argon; and (3) dual beam direct deposition by the 30-cm hollow cathode ion source and an 8-cm argon ion source. In an attempt to improve the adherence of the DLC films on ZnSc and ZnS, ion beam cleaning, ion implantation with helium and neon ions, or sputter deposition of a thin, ion beam intermediate coating was employed prior to deposition of the DLC film. The protection that the DLC films afforded the windows from particle and rain erosion was evaluated, along with the hydrogen content, adherence, intrinsic stress, and infrared transmittance of the films. Because of the elevated stress levels in the ion beam sputtered DLC films and in those ion beam deposited with butane, films thicker than 0.1 micron and with good adherence on ZnS and ZnSe could not be generated. An intermediate coating of germanium successfully allowed the DLC films to remain adherent to the optical windows and caused only negligible reduction in the specular transmittance of the ZnS and ZnSe at 10 microns.
机译:类金刚石碳(DLC)膜沉积在红外透射光学窗上,并被评估为这些窗暴露于颗粒和雨水侵蚀下的防护涂层。通过三种不同的离子束方法将DLC膜沉积在硒化锌(ZnSe)和硫化锌(ZnS)上:(1)使用8厘米氩离子源从碳靶溅射沉积; (2)用氩气中的烃类气体通过30cm的空心阴极离子源直接沉积; (3)通过30cm的空心阴极离子源和8cm的氩离子源进行双束直接沉积。为了改善DLC膜在ZnSc和ZnS上的附着力,在沉积DLC膜之前,先采用离子束清洗,用氦和氖离子注入离子或溅射薄的离子束中间涂层的方法。评估了DLC薄膜为窗户提供了免受颗粒和雨水侵蚀的保护,以及薄膜的氢含量,附着力,固有应力和红外透射率。由于在离子束溅射的DLC膜中以及在丁烷沉积的离子束中应力水平升高,因此无法生成厚度超过0.1微米且对ZnS和ZnSe具有良好粘附性的膜。锗的中间涂层成功地使DLC膜保持粘附在光学窗口上,并且仅使ZnS和ZnSe在10微米处的镜面透射率降低可忽略不计。

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