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Mechanical properties measurement -- Room temperature tensile test of Ag-and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors
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GB/T 36611-2018
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Basic data | Standard ID | GB/T 36611-2018 (GB/T36611-2018) | | Description (Translated English) | Mechanical properties measurement -- Room temperature tensile test of Ag-and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | H22 | | Classification of International Standard | 77.040.01 | | Word Count Estimation | 34,379 | | Date of Issue | 2018-09-17 | | Date of Implementation | 2019-01-01 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 36611-2018: Mechanical properties measurement -- Room temperature tensile test of Ag-and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors ---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.
(Mechanical properties measurement of Ag and/ or Ag alloy sheath Bi-2223 and Bi-2212 composite superconductor room temperature tensile test method)
ICS 77.040.01
H22
National Standards of People's Republic of China
Mechanical property measurement
Ag and/or Ag alloy covers Bi-2223 and Bi-2212
Composite superconductor room temperature tensile test method
(IEC 61788-18.2013, Superconductivity-Part 18. Mechanicalproperties
aloy-sheathedBi-2223andBi-2212compositesuperconductors, IDT)
2018-09-17 released.2019-01-01 implementation
State market supervision and administration
China National Standardization Administration issued
Content
Foreword III
Introduction IV
1 Scope 1
2 Normative references 1
3 Terms and Definitions 1
4 Principle 3
5 device 3
5.1 General 3
5.2 Test machine 3
5.3 Extensometer 3
6 sample preparation 3
6.1 Principle 3
6.2 Length of the sample 3
6.3 Insulation removal 3
6.4 Determination of cross-sectional area (S0) 3
7 Test conditions 4
7.1 Clamping of the sample 4
7.2 Installation of extensometers 4
7.3 Test speed 4
7.4 Test 4
8 result calculation 4
8.1 Elastic Modulus (E) 4
8.2 0.2% specified plastic elongation (Rp0.2) 5
8.3 Tensile stress (RA) for strain values specified 5
8.4 Breaking strength (Rf) 7
9 Measurement uncertainty 7
10 Test report 7
10.1 Sample 7
10.2 Result 7
10.3 Test conditions 8
Appendix A (informative) Supplementary Notes on Chapters 1 through 10
Appendix B (informative) Uncertainty considerations 18
Appendix C (informative) Specific examples for assessing the uncertainty of Ag/Bi-2223 and Ag/Bi-2212 superconducting wires 22
Reference 29
Foreword
This standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This standard uses the translation method equivalent to IEC 61788-18.2013 "Superconductivity Part 18. Mechanical properties measurement Ag and/or
Room Temperature Tensile Test Method for Ag Alloy Cover Bi-2223 and Bi-2212 Composite Superconductors.
The documents of our country that have a consistent correspondence with the international documents referenced in this standard are as follows.
--- GB/T 228.1-2010 tensile testing of metallic materials - Part 1. Test methods for room temperature (ISO 6892-1.2009,
MOD)
---GB/T 2900 (all parts) Electrotechnical terminology [IEC 60050 (all parts)]
---GB/T 12160-2002 Calibration of extensometers for single-axis tests (ISO 9513.1999, IDT)
---GB/T 13634-2008 Calibration of standard dynamometer for inspection of single-axis testing machine (ISO 376.2004, IDT)
GB/T 16825.1-2008 Inspection of static single-axis testing machines - Part 1 . Tensile and/or
Inspection and calibration (ISO 7500-1.2004, IDT)
This standard has made the following editorial changes.
--- To be consistent with the existing standard system, change the name of this standard to "Mechanical Properties Measurement Ag and/or Ag Alloy Cover Bi-
2223 and Bi-2212 composite superconductor room temperature tensile test method";
--- The original international standards of A.14 and B.5 are included in the reference, and their references in the text have also been adjusted accordingly.
Please note that some of the contents of this document may involve patents. The issuing organization of this document is not responsible for identifying these patents.
This standard was proposed by the Chinese Academy of Sciences.
This standard is under the jurisdiction of the National Superconducting Standardization Technical Committee (SAC/TC265).
This standard was drafted. Institute of Electrical Engineering, Chinese Academy of Sciences, Northwest Institute of Nonferrous Metals, Western Superconducting Materials Technology Co., Ltd.
Institute of Physics, Chinese Academy of Sciences.
The main drafters of this standard. Cheng Junsheng, Li Chengshan, Yan Guo, Li Jie, Wang Qiuliang, Dai Yinming, Cui Chunyan.
Introduction
Several composite superconductors have been commercialized. Especially high temperature superconductors, such as Ag and/or Ag alloy covers Bi-2223 (Ag /
Bi-2223) Superconducting wire and Ag and/or Ag alloy sheathed Bi-2212 (Ag/Bi-2212) superconducting wire, which has been produced on an industrial scale. Commercial complex
The superconductor has a high current density and a small cross-sectional area, and is mainly used for building electrical devices and superconducting magnets. When building a magnet, complex
Miscellaneous stress/strain acts on the coil; when the magnet is excited, due to the high current density of the superconducting wire, a large electromagnetic force acts on the superconducting
on-line. Therefore, it is essential to determine the mechanical properties of the superconducting wire in the coil. Ag/Bi-2223 prepared by powder tube method (PIT)
The Ag/Bi-2212 composite superconducting wire is composed of a plurality of oxide cores and Ag and Ag alloys which are stable and supporting. This standard also
Suitable for external Ag/Bi-2223 and Ag/Bi-2212 composite superconductors strengthened with thin stainless steel or copper foil to carry large electromagnetic force.
Mechanical property measurement
Ag and/or Ag alloy covers Bi-2223 and Bi-2212
Composite superconductor room temperature tensile test method
1 Scope
This standard specifies the room temperature tensile test method for Ag/Bi-2223 and Ag/Bi-2212 composite superconductors.
This test method is used to measure the elastic modulus and determine the 0.2% specified plastic elongation.
When the 0.2% specified plastic elongation strength cannot be obtained due to premature fracture of the material, the nominal strain to be measured is 0.05%,
The stress level at 0.1%, 0.15%, 0.2%, and 0.25%, and the strain interval is 0.05%.
The elastic limit, the breaking strength, the elongation after break and the fitted 0.2% specified plastic elongation are for reference only (see Appendix A).
A.4, A.5, A.6 and A.10).
This standard is applicable to the test of round or rectangular section samples with a cross-sectional area of 0.3mm2~2.0mm2 (corresponding strip width)
2.0mm~5.0mm, thickness 0.16mm~0.4mm).
2 Normative references
The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article.
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
ISO 376 Metallic material uniaxial testing machine for calibration of standard dynamometers (Metalicmaterials-Calibrationof
Force-provinginstrumentsusedfortheverificationofuniaxialtestingmachines)
Metallic materials -- Tensile test for metallic materials - Part 1 . Test methods for room temperature (Metalicmaterials-Tensile
testing-Part 1. Methodoftestatroomtemperature)
Testing of static uniaxial testing machines for metallic materials - Part 1 . Tensile and/or
Inspection and calibration (Metalicmaterials-Verification of staticuniaxialtestingmachines-Part 1.Tension/
compressiontestingmachines-Verificationandcalibrationoftheforce-measuringsystem)
ISO 9513 Calibration of extensometers for uniaxial testing of metallic materials (Metalicmaterials-Calibrationofextensometer
Systemsusedinuniaxialtesting)
IEC 60050 (all parts) International electrotechnical vocabulary
3 Terms and definitions
The following terms and definitions, as defined by IEC 60050 (all parts) and ISO 6892-1, apply to this document.
3.1
Tensile stress
The tensile force at any point during the test is divided by the quotient of the original cross-sectional area of the specimen.
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