
光学材料
氟化钡(BaF2)衬底/窗口
货号 : KTOM-BFS
价格根据 规格和定制情况变动
- 尺寸公差
- ±0.1
- 倒角
- 0.25mm×45
- 平滑度
- 40-20 或其他

运输:
联系我们 获取运输详情 享受 准时发货保证.
氟化钡
氟化钡 (BaF₂) 是一种晶体化合物,用于近红外、可见光和中波红外光谱的光学应用。它具有抗高能辐射的性能,在高达 800°C 的干燥温度下也能正常工作,是一种极佳的选择。然而,在潮湿的环境中,紫外透射率会随着时间的推移而降低,并且在 500°C 时会发生水腐蚀。BaF₂ 是需要抗辐射的紫外窗口、热成像、医疗设备、激光和天文学的理想选择。
细节与部件




氟化钡的主要特性和性能
透射范围 (μm) | 0.15~12.5 |
透射率 | >90% (0.35~9μm,3mm) |
2.58μm 时的反射损耗 | 6.8%(两面) |
努氏硬度(kg/mm2) | 82(500 克压头 |
密度(克/立方厘米) | 4.89 |
熔点(℃) | 1280 |
典型尺寸
圆形 | φ5.0; φ10.0; φ12.7; φ15.0; φ20.0 |
直径(毫米) | φ25.4; φ30.0; φ38.1; φ50.8; φ76.2 |
正方形 | 5.0x5.0; 10.0x10.0; 15.0x15.0 |
宽 x 高(毫米) | 20.0x20.0; 25.0x25.0; 50.0x50.0 |
提供定制服务
通过实施创新和最先进的熔化工艺,我们在优质玻璃产品的开发和制造方面获得了广泛的专业知识,提供广泛的光学产品 用于各种商业、工业和科学应用的玻璃产品。 公司提供各种规格的光学玻璃原片、切割件和成品组件等,并与客户密切合作,根据客户需求定制产品。 凭借对质量坚定不移的承诺,我们确保客户获得根据其要求量身定制的完美解决方案。
如需进一步报价,请联系我们。
FAQ
带通滤波器有什么作用?
什么是带通滤波器的 3dB 带宽?
带通采样的优势是什么?
光学玻璃有哪些用途?
光学玻璃的成分是什么?
最常见的光学玻璃有哪些?
4.7
out of
5
The BaF2 substrate is incredibly durable and resistant to wear. It has exceeded our expectations in terms of quality and performance.
4.9
out of
5
The high light transmittance of the BaF2 substrate has significantly improved the efficiency of our optical system. We're very satisfied with the results.
4.8
out of
5
The precision and accuracy of the BaF2 substrate are exceptional. It has enabled us to achieve precise and consistent results in our research.
4.7
out of
5
The BaF2 substrate is an excellent choice for applications requiring resistance to high-energy radiation. It has proven to be a valuable asset in our laboratory.
5.0
out of
5
The substrate's wide application range has made it a versatile tool in our lab. We've been able to use it for a variety of experiments, and it has performed flawlessly.
4.6
out of
5
The BaF2 substrate is a cost-effective solution for our research needs. It provides excellent value for money, and we're very happy with our purchase.
4.8
out of
5
The fast delivery of the BaF2 substrate was a lifesaver. We were able to get our experiment up and running quickly, which saved us valuable time.
4.9
out of
5
The technological advancements incorporated into the BaF2 substrate are impressive. It has enabled us to explore new possibilities in our research.
4.7
out of
5
The substrate's resistance to corrosion in dry temperatures up to 800°C has been a game-changer for our high-temperature experiments.
5.0
out of
5
The BaF2 substrate has exceeded our expectations in terms of durability. It has withstood harsh conditions and continues to perform flawlessly.
4.8
out of
5
The high precision material of the BaF2 substrate has enabled us to achieve sub-micron resolution in our imaging experiments.
4.6
out of
5
The substrate's transmission range from 0.15 to 12.5 μm has been incredibly useful for our broad range of applications.
4.9
out of
5
The BaF2 substrate's low reflection loss at 2.58 μm has minimized signal distortion in our optical measurements.
4.7
out of
5
The substrate's resistance to water corrosion up to 500°C has been crucial for our experiments involving high-temperature aqueous solutions.
4.8
out of
5
The substrate's wide application range has made it an indispensable tool in our laboratory. It has facilitated a variety of experiments, from optical spectroscopy to laser processing.
PDF - 氟化钡(BaF2)衬底/窗口
disabled = false, 3000)"> 下载目录 光学材料
disabled = false, 3000)"> 下载目录 光学材料
disabled = false, 3000)"> 下载请求报价
我们的专业团队将在一个工作日内回复您。请随时与我们联系!
相关产品
相关文章

XRF 固体样品制粒技巧和窍门
X 射线荧光 (XRF) 分析是一种非破坏性分析技术,用于确定固体、液体和粉末样品的元素组成。

XRF 分析样品制备指南
为 XRF 分析准备样品的方法有很多。方法的选择也会影响得到结果所需的时间和分析成本。

傅立叶变换红外颗粒压片机为您的光谱分析带来革命性变革
傅立叶变换红外光谱(FTIR)是一种广泛用于分析各种材料化学成分的技术。这种方法尤其适用于其他技术难以分析的样品。

XRF 制粒的稀释比例 寻找最佳平衡点
XRF 分析是研究人员和科学家用来确定各种材料元素组成的强大技术。XRF 分析中最关键的步骤之一是制备分析用样品,这通常涉及从粉末样品中制备颗粒。

光学元件:窗口板材及其应用
概述各种类型的光学窗口板、材料、精度和涂层选项。

常见光学材料及其特性
概述各种光学材料、其特性以及在不同光谱范围内的应用。

Infrared Bands and Window Selection for Hypersonic Vehicles
Explores the challenges and solutions in selecting infrared bands and window materials for hypersonic vehicles, focusing on imaging and guidance systems.

MPCVD 单晶金刚石在半导体和光学显示领域的应用
本文讨论了 MPCVD 单晶金刚石在半导体和光学显示领域的应用,重点介绍了其优越性能和对各行各业的潜在影响。

透射电子显微镜样品制备:从基础知识到实用技能
有关 TEM 样品制备的详细指南,包括清洁、研磨、抛光、固定和覆盖技术。