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Non-destructive testing. Ultrasonic testing. Transmission technique
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Basic data
| Standard ID | GB/T 39241-2020 (GB/T39241-2020) |
| Description (Translated English) | Non-destructive testing. Ultrasonic testing. Transmission technique |
| Sector / Industry | National Standard (Recommended) |
| Classification of Chinese Standard | J04 |
| Classification of International Standard | 19.100 |
| Word Count Estimation | 8,868 |
| Date of Issue | 2020-11-19 |
| Date of Implementation | 2021-06-01 |
| Quoted Standard | GB/T 12604.1 |
| Adopted Standard | ISO 16823-2012, MOD |
| Regulation (derived from) | National Standard Announcement No. 26 of 2020 |
| Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
| Summary | This standard specifies the general principles of ultrasonic testing penetration technology. Penetration technology is used for: defect detection; attenuation determination. This standard applies to the detection of flat workpieces, such as flat plates and strips. It also applies to the detection of defects whose shape, size or orientation is not conducive to direct reflection detection; materials with high attenuation; thin workpieces. The penetration technology specified in this standard focuses on the transmission attenuation technology based on the measurement of the signal attenuation after the ultrasonic penetrates the test piece. |
GB/T 39241-2020: Non-destructive testing. Ultrasonic testing. Transmission technique
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Non-destructive testing - Ultrasonic testing - Transmission technique
ICS 19.100
J04
National Standards of People's Republic of China
Non-destructive testing ultrasonic testing penetration technology
2020-11-19 released
2021-06-01 implementation
State Administration for Market Regulation
Issued by the National Standardization Management Committee
Foreword
This standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This standard uses the redrafting method to modify and adopt ISO 16823.2012 "Non-destructive testing ultrasonic testing penetration technology".
Compared with ISO 16823.2012, the main technical differences and their reasons are as follows.
---The description of the technical content focused on this standard has been added to facilitate the implementation of the standard (Chapter 1);
--- Regarding normative reference documents, this standard has made adjustments with technical differences to adapt to my country's technical conditions and adjustments.
The situation is collectively reflected in Chapter 2 "Normative Reference Documents", and the specific adjustments are as follows.
● Replace ISO 5577 (see Chapter 3) with GB/T 12604.1 modified to adopt international standards;
● Deleted EN1330-4;
---The term "transmission attenuation technology" is added to clearly define the meaning of the term (Chapter 3);
---Based on theoretical derivation and verification, formula (1) is modified to facilitate the implementation of the standard;
---According to the current technology status, formula (3) has been added to facilitate the implementation of the standard.
This standard also made the following editorial changes.
--- Deleted the reference to the general standard of ultrasonic testing of industrial products in the scope (Chapter 1);
---Adjusted the order of Table 1 and Table 2 according to the order in which the text is cited.
This standard was proposed and managed by the National Standardization Technical Committee for Nondestructive Testing (SAC/TC56).
Drafting organizations of this standard. Shanghai Institute of Materials, State Grid Zhejiang Electric Power Co., Ltd. Electric Power Research Institute, Jiangsu Fangtian Power Technology
Co., Ltd., Wuhan Zhongke Innovation Technology Co., Ltd., Shanghai Jinyi Testing Technology Co., Ltd., China Guangdong Nuclear Engineering Co., Ltd., Yantai Zhong
Set Raffles Offshore Engineering Co., Ltd., China Railway Guangzhou Bureau Group Co., Ltd., Shandong Ruixiang Mould Co., Ltd.
The main drafters of this standard. Ding Jie, Zhang Yifeng, Jiang Jiansheng, Zhang Jie, Zhao Zhoufeng, Ma Junpeng, Lin Guanghui, Wang Zicheng, Yu Baohong, Luo Yundong,
Zhu Congbin, Jin Lei, He Haijian, Yang Jibin, Wei Zhongrui, Ma Jianmin, Han Lina.
Non-destructive testing ultrasonic testing penetration technology
1 Scope
This standard specifies the general principles of ultrasonic testing penetration technology. Penetration technology is used for.
---Defect detection;
---Attenuation determination.
This standard applies to the detection of flat workpieces, such as flat plates and strips, and also applies to the detection of.
---The shape, size or direction is not conducive to the defects of the direct reflection method;
---High attenuation material;
---Thin workpieces.
The penetration technology specified in this standard focuses on the transmission attenuation technology based on the measurement of the signal attenuation after the ultrasonic penetrates the test piece.
2 Normative references
The following documents are indispensable for the application of this document. For dated reference documents, only the dated version applies to this article
Pieces. For undated references, the latest version (including all amendments) applies to this document.
GB/T 12604.1 Non-destructive testing terminology Ultrasonic testing (GB/T 12604.1-2020, ISO 5577.2017, MOD)
3 Terms and definitions
The following terms and definitions defined in GB/T 12604.1 apply to this document.
3.1
Transmission attenuation technology
A detection technology based on measuring the attenuation of the signal after the ultrasonic penetrates the test piece.
Note. The measurement signal can be a bottom echo signal, a penetrating wave signal, or an echo signal reflected multiple times by the test piece.
4 Detection principle
4.1 Basic technology and typical configuration
There are two basic applications of transmission attenuation technology, one is the reflection detection technology using a single probe, the sound wave is from an object under the object
The surface or the bottom surface of the tested object reflects back, see Table 1a)~d). The other is the transmission attenuation technology using two probes, one probe is used for transmitting
Radio signal, another probe is used to receive the signal after penetrating the inspected part, see Table 1e)~h), straight probe or oblique probe can be used in this technique.
Transmission attenuation technology and its typical configuration are shown in Table 2.
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