在表面上,硫化窗户通过硫化对的硬化进行了硬化
Hayat Soufiani1, Alexandros Kostogiannes1, Clara Rivero-Baleine2
1CREOL, The College of Optics and Photonics, University of Central Florida, 4304 Scorpius St., Orlando, FL 32816, USA.
Materials (Basel, Switzerland)
|November 27, 2024
概括
兴奋剂增强了硫化 (ZnS) 窗口,显著增加了表面硬度,而不会影响红外传输. 这一过程提高了多光谱应用的耐用性.
科学领域:
- 材料科学 材料科学 材料科学
- 光电学是指光电子产品.
- 表面工程是什么?表面工程是什么?
背景情况:
- 商用多光谱级硫化 (ZnS) 对光学窗户至关重要.
- 提高ZnS光学元件的耐用性和性能具有显著的兴趣.
- 了解剂对ZnS特性的影响是材料优化的关键.
研究的目的:
- 研究 (Ga) 兴奋剂对 ZnS 的相位转换,光学传输和表面硬度的影响.
- 使用先进的分析技术量化Ga扩散到ZnS的深度.
- 评估Ga兴奋剂在提高ZnS光学窗户强度方面的潜力.
主要方法:
- 暴露于硫化 (Ga2S3) 蒸汽的 ZnS 标本.
- 二次离子质谱 (SIMS) 用于基本深度分析.
- 用于相位分析的X射线衍射 (XRD).
- 维克斯微硬度测试表面机械性能.
主要成果:
- 观察到扩散穿透ZnS地下到几十微米的深度.
- X射线衍射表明石阶段沉极小或不存在,保留了红外传输.
- 维克斯表面的微硬度随着Ga的度单调地增加,达到未经处理的 ZnS 硬度的两倍以上.
结论:
- 加兴奋剂是提高ZnS光学窗户表面硬度的有效方法.
- 兴奋剂过程对红外传输的影响最小,因此适用于多光谱应用.
- 进一步的研究是有必要的,以优化兴奋剂的过程,并验证在恶劣条件下的性能.
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