ISO 10893-8:2011 PDF
Non-destructive testing of steel tubes — Part 8: Automated ultrasonic testing of seamless and welded steel tubes for the detection of laminar imperfections
Non-destructive testing of steel tubes — Part 8: Automated ultrasonic testing of seamless and welded steel tubes for the detection of laminar imperfections
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 10
- Дата публикации:
- 24 марта 2011 г.
- Издание:
- ISO IS 10893 edition 1 version 1
- ICS:
- 23.040.10
ISO 10893-8:2011 specifies requirements for automated ultrasonic testing for the detection of laminar imperfections in the pipe body (full peripheral testing) of seamless and welded, except submerged arc-welded (SAW), steel tubes, or in the area adjacent to the weld seam of welded steel tubes, and, optionally, at the ends (full peripheral testing) of seamless and welded tubes. ISO 10893-8:2011 can also be applicable to the testing of circular hollow sections.
Abstract
Overview
ISO 10893-8:2011 - "Non-destructive testing of steel tubes - Part 8: Automated ultrasonic testing of seamless and welded steel tubes for the detection of laminar imperfections" defines requirements for automated ultrasonic testing (AUT) to detect laminar imperfections (delaminations, laminations) in steel tubes. The standard covers full peripheral testing of the pipe body for seamless and welded (except submerged arc-welded, SAW) tubes, targeted testing in the band adjacent to weld seams, and optional end-zone full-peripheral testing. It can also be applied to circular hollow sections.
Key topics and technical requirements
- Test scope: Full peripheral AUT of tube body, weld-adjacent band testing (at least 15 mm each side of the weld), and optional end testing (approx. 25 mm or 2×wall thickness, up to 50 mm).
- Ultrasonic method: Pulse-echo technique with ultrasound transmitted normal to the tube surface.
- Frequency range: Recommended ultrasonic test frequencies between 2 MHz and 10 MHz.
- Probe/transducer guidance: Suggested maximum transducer or active phased-array aperture ~25 mm (larger allowed if capability for detecting the chosen reference standard is demonstrated).
- Movement control: Relative speed during scanning shall not vary by more than ±10%.
- Calibration and reference standards: AUT must be calibrated electronically or using a reference tube/reference sample with defined flat-bottomed recesses; the circular recess is the primary sensitivity standard.
- Acceptance levels and sizing: The standard defines acceptance levels (U0–U3) and minimum detectable dimensions and maximum acceptable areas for laminar imperfections (detailed in tables within the standard).
- Personnel competence: Operators and supervisors must be qualified per ISO 9712, ISO 11484 or equivalent; NDT operations authorized by a Level 3 NDT individual.
- Reporting and handling suspects: Procedures for classifying tubes as acceptable/suspect (automated triggers, marking/sorting) and follow-up/manual testing (Annex A) are specified.
Applications and practical value
- Quality control in tube manufacture: Ensures reliable detection of laminations in seamless and most welded steel tubes during or after production (rolling, heat treatment, sizing).
- Pipeline and structural tubing: Useful where integrity of tube wall laminations affects mechanical performance, pressure containment or fatigue life.
- Incoming inspection and end-of-line testing: Automated systems enable high-throughput full-peripheral inspection with automated sorting/marking.
- Adaptability: Applicable to circular hollow sections and can be combined with other NDT methods when wall thickness
Технические детали
- Технический комитет
- ISO/TC 17/SC 19 - Technical delivery conditions for steel tubes for pressure purposes
- SKU
- ISO 10893-8:2011
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
SIST EN ISO 9712:2022
ДействующийNon-destructive testing - Qualification and certification of NDT personnel (ISO 9712:2022)
Overview EN ISO 9712:2022 - Non-destructive testing (NDT) - Qualification and certification of NDT personnel (ISO 9712:2021) is a CEN-adopted international standard that defines requirements for cert…
BS ISO 11484:2019
ДействующийSteel products. Employer´s qualification system for non-destructive testing (NDT) personnel.
ISO 8689-1:2000
ДействующийWater quality — Biological classification of rivers — Part 1: Guidance on the interpretation of biological qu…
Overview ISO 8689-1:2000, titled Water quality - Biological classification of rivers - Part 1: Guidance on the interpretation of biological quality data from surveys of benthic macroinvertebrates, is…
ISO/ASTM51540-04(2012)
ОтменёнStandard Practice for Use of a Radiochromic Liquid Dosimetry System (Withdrawn 2020)
Significance and Use4.1 The radiochromic liquid dosimetry system provides a means of measuring absorbed dose in materials (5-7). Under the influence of ionizing radiation, chemical reactions take pla…
ISO/ASTM51204-04
ДействующийStandard Practice for Dosimetry in Gamma Irradiation Facilities for Food Processing (Withdrawn 2013)
Significance and Use4.1 Food products may be treated with ionizing radiation, such as gamma-rays from 60Co or 137Cs sources, for numerous purposes, including control of parasites and pathogenic micro…
ISO/ASTM51431-05
ОтменёнStandard Practice for Dosimetry in Electron Beam and X-Ray (Bremsstrahlung) Irradiation Facilities for Food P…
Significance and Use4.1 Food products may be treated with acceleratorgenerated radiation (electrons and X-rays) for numerous purposes, including control of parasites and pathogenic microorganisms, in…
ISO/ASTM52628-20e1
ДействующийStandard Practice for Dosimetry in Radiation Processing
1.1 This practice describes the basic requirements that apply when making absorbed dose measurements in accordance with the ASTM E61 series of dosimetry standards. In addition, it provides guidance o…
ISO/ASTM52921-13(2019)
ДействующийStandard Terminology for Additive Manufacturing—Coordinate Systems and Test Methodologies
Significance and Use 3.1 Although many additive manufacturing systems are based heavily upon the principles of Computer Numerical Control (CNC), the coordinate systems and nomenclature specific to CN…