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GB/T 42622-2023 English PDF

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GB/T 42622-2023: Additive manufacturing - Titanium and titanium alloy powder for laser-based directed energy deposition
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 42622-2023239 Add to Cart 3 days Additive manufacturing - Titanium and titanium alloy powder for laser-based directed energy deposition Valid

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Basic data

Standard ID: GB/T 42622-2023 (GB/T42622-2023)
Description (Translated English): Additive manufacturing - Titanium and titanium alloy powder for laser-based directed energy deposition
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: H64
Classification of International Standard: 25.030
Word Count Estimation: 11,181
Date of Issue: 2023-05-23
Date of Implementation: 2023-12-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 42622-2023: Additive manufacturing - Titanium and titanium alloy powder for laser-based directed energy deposition


---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.
ICS 25:030 CCSH64 National Standards of People's Republic of China additive manufacturing Titanium and titanium alloy powders for laser directed energy deposition Released on 2023-05-23 2023-12-01 implementation State Administration for Market Regulation Released by the National Standardization Management Committee

table of contents

Preface I 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 Technical requirements 1 5 Test method 4 6 Inspection rules 5 7 Marking, packaging, transportation, storage and accompanying documents 6 8 Order Form Contents 7

foreword

This document is in accordance with the provisions of GB/T 1:1-2020 "Guidelines for Standardization Work Part 1: Structure and Drafting Rules for Standardization Documents" drafting: Please note that some contents of this document may refer to patents: The issuing agency of this document assumes no responsibility for identifying patents: This document is proposed by China Machinery Industry Federation: This document is sponsored by the National Standardization Technical Committee for Additive Manufacturing (SAC/TC562) and the National Standardization Technical Committee for Nonferrous Metals (SAC/TC243) under the common jurisdiction: This document is drafted by: Aerospace Additive Technology (Beijing) Co:, Ltd:, Shanghai Materials Research Institute, AVIC Maite Powder Metallurgy Technology (Beijing) Co:, Ltd: Company, Xi'an Sailong Additive Technology Co:, Ltd:, Shenzhen Xinghan Laser Technology Co:, Ltd:, China Machine Productivity Promotion Center Co:, Ltd: Company, Northwest Nonferrous Metal Research Institute, Nanjing Zhongke Yuchen Laser Technology Co:, Ltd:, China Aviation Development Shanghai Commercial Aviation Engine Manufacturing Co:, Ltd: Liability Company, Nonferrous Metal Technology and Economic Research Institute Co:, Ltd:, Xinjinghe Laser Technology Development (Beijing) Co:, Ltd:, Huazhong University of Science and Technology Science, AECC Beijing Aeronautical Materials Research Institute, Jiangsu Wellari New Material Technology Co:, Ltd:, Panxing New Alloy Materials (Changzhou) Co:, Ltd: Division, Youyan Additive Technology Co:, Ltd:, Zhejiang Yatong Welding Material Co:, Ltd:, State-owned Wuhu Machinery Factory, Beijing Remote Sensing Equipment Research Institute, Nanjing Airlines University of Aeronautics and Astronautics, China Machine Research Institute of Standard Technology (Beijing) Co:, Ltd:, Beijing Jike Guochuang Lightweight Science Research Institute Co:, Ltd:, Northwest Engineering University of Technology, China Machinery Manufacturing Technology Association, Sichuan University, Baoji Titanium Industry Co:, Ltd:, Ningbo Chuangrun New Material Co:, Ltd:, Falcontech Rapid Manufacturing Technology Co:, Ltd:, Xi'an Ouzhong Material Technology Co:, Ltd:, Baoji Haibao Special Metal Materials Co:, Ltd:, West An Additive Manufacturing National Research Institute Co:, Ltd:, China Machine New Materials Research Institute (Zhengzhou) Co:, Ltd:, Huazhi Excellent Productivity Promotion (Beijing) Co:, Ltd: Company, Zigong Great Wall Surface Engineering Technology Co:, Ltd:, Zhongtian Shangcai Additive Manufacturing Co:, Ltd: The main drafters of this document: Li Zhiyong, Yang Qiyun, Chen Xin, Li Xiaohui, Zhou Shaofeng, Xue Lian, Zhao Shaoyang, Brilliance, Fu Jun, Cui Yan, Liu Bin, Li Runsheng, Zhao Zijun, Tang Yueyue, Xiao Haibo, Wang Yonghui, Jin Ying, Hu Jiaqi, Wang Xiaoming, Gu Dongdong, Hong Baocheng, Li Haibin, Rong Wenjuan, Lin Xin, Zhan Li, Zhou Changchun, Feng Junning, Xu Chao, Ji Xia, Wang Qingxiang, Zhang Liang, Yin Keyu, Xue Fei, Ge Xueyuan, Li Xiaofei, Han Meng, Gu Sunwang: additive manufacturing Titanium and titanium alloy powders for laser directed energy deposition

1 Scope

This document specifies the technical requirements, test methods, inspection rules, and standards for titanium and titanium alloy powders used in laser directed energy deposition for additive manufacturing: Contents of logo, packaging, transportation, storage, accompanying documents and order form: This document is applicable to the production and inspection of titanium and titanium alloy powders for laser directed energy deposition in additive manufacturing:

2 Normative references

The contents of the following documents constitute the essential provisions of this document through normative references in the text: Among them, dated references For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to this document: GB/T 1479:1 Determination of bulk density of metal powders - Part 1: Funnel method GB/T 1480 Determination of particle size by dry sieving of metal powders GB/T 1482 Determination of metal powder fluidity standard funnel method (Hall flow meter) GB/T 3620:1 Grades and Chemical Compositions of Titanium and Titanium Alloys GB/T 3620:2 Allowable Deviation of Chemical Composition of Titanium and Titanium Alloy Processed Products GB/T 4698 (all parts) Methods for chemical analysis of titanium sponge, titanium and titanium alloys GB/T 5162 Determination of tap density of metal powder GB/T 5314 powder sampling method for powder metallurgy GB/T 19077 Particle Size Distribution Laser Diffraction Method GB/T 35351 Additive Manufacturing Terminology GB/T 41978 Additive Manufacturing Metal Powder Hollow Flour Testing Method YS/T 1262 Sponge titanium, titanium and titanium alloy chemical analysis methods for the determination of multi-element content inductively coupled plasma atomic emission X-ray spectroscopy YS/T 1297 Determination method of sphericity of titanium and titanium alloy powder

3 Terms and Definitions

The terms and definitions defined in GB/T 35351 apply to this document:

4 Technical Requirements

4:1 Chemical Composition 4:1:1 The grade and chemical composition of titanium and titanium alloy powders for laser directed energy deposition (hereinafter referred to as "products") shall comply with the provisions in Table 1; For grades not listed in Table 1, the chemical composition shall comply with the provisions of GB/T 3620:1; if the buyer has special requirements, it shall be specified in the order form: 4:1:2 When the purchaser retests and analyzes the chemical composition of the product, the allowable deviation of the composition shall comply with the provisions of GB/T 3620:2:
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