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GB/T 32561.1-2016 English PDF

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GB/T 32561.1-2016: Measuring method for chalcogenide infrared optical glass -- Part 1: Homogeneity
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Basic data

Standard ID GB/T 32561.1-2016 (GB/T32561.1-2016)
Description (Translated English) Measuring method for chalcogenide infrared optical glass -- Part 1: Homogeneity
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard Q37
Classification of International Standard 81.040.10
Word Count Estimation 10,112
Date of Issue 2016-02-24
Date of Implementation 2016-10-01
Regulation (derived from) National Standard Announcement No
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This standard specifies the testing principles, equipment and equipment, test conditions, samples, test procedures, data processing, measurement uncertainty and test report of infrared optical sulfur-based glass uniformity. This standard applies to the infrared optical glass uniformity of the test, can also be used for other infrared optical glass, infrared crystal, infrared ceramic infrared material uniformity detection.

GB/T 32561.1-2016: Measuring method for chalcogenide infrared optical glass -- Part 1: Homogeneity

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Measuring method for chalcogenide infrared optical glass.Part 1. Homogeneity ICS 81.040.10 Q37 National Standards of People's Republic of China Methods for the measurement of infrared optical sulfur - based glass Part 1. Uniformity Part 1. Homogeneity 2016-02-24 released 2016-10-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released

Foreword

GB/T 32561 "infrared optical sulfur glass test method" is divided into three parts. - Part 1. Uniformity; Part 2. stripes; Part 3. Impurities. This part is part 1 of GB/T 32561. This part is drafted in accordance with the rules given in GB/T 1.1-2009. This part is made and centralized by China Ordnance Industry Group Corporation. This part of the drafting unit. Hubei Xinhua Huaguang Information Materials Co., Ltd., China Ordnance Industry Standardization Institute. The main drafters of this part. Hu Xiangping, Mai Lubo, Xu Guangyi, Liu Xiangdong, Yang Jinxia, Tang Xueqiong, Liang Lixin, Xu Huafeng. Methods for the measurement of infrared optical sulfur - based glass Part 1. Uniformity

1 Scope

GB/T 32561 this part of the provisions of the infrared optical sulfur glass uniformity of the test principle and equipment and equipment, test conditions, test Samples, test procedures, data processing, measurement uncertainty and test reports. This part is suitable for infrared optical sulfur glass uniformity test, can also be used for other infrared optical glass, infrared crystal, infrared ceramic And other infrared material uniformity detection.

2 terms and definitions

The following terms and definitions apply to this document. 2.1 Homogeneity The same piece of infrared optical sulfur glass, in the direction perpendicular to the specified optical path unit cross-sectional area, the unit optical path thickness of the refractive index distribution is not Consistency, usually characterized by refractive index PV and standard deviation. [ISO 10110-4, definition 2.1] 2.2 Refractive index PV value peak-to-valeyvalueofrefractiveindex PVΔn The difference between the maximum value and the minimum value of the refractive index distribution of the interference test.

3 test principle

The wavefront error was measured by the interference method to obtain the distribution of the refractive index difference of the material, and the refractive index PV (PVΔn) of the uniformity of the material was calculated. Values and standard deviations. Four-step interferometry test principle shown in Figure 1.

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