GB/T 14344-2022 PDF English
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Standard ID | Contents [version] | USD | STEP2 | [PDF] delivery | Name of Chinese Standard | Status |
GB/T 14344-2022 | English | 350 |
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Man-made fibre - Test method for tensile properties of filament yarns
| Valid |
GB/T 14344-2008 | English | 85 |
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Testing method for tensile of man-made filament yarns
| Obsolete |
GB/T 14344-2003 | English | 639 |
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5 days
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Testing method for drawability of synthetic filament yarns
| Obsolete |
GB/T 14344-1993 | English | 359 |
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3 days
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Testing method for breaking strength and breaking elongation of synthetic filament yarns and textured yarns
| Obsolete |
Excerpted PDFs (Download full copy in 9 seconds upon purchase)PDF Preview: GB/T 14344-2022
GB/T 14344-2022: Man-made fibre - Test method for tensile properties of filament yarns---This is an excerpt. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.), auto-downloaded/delivered in 9 seconds, can be purchased online: https://www.ChineseStandard.net/PDF.aspx/GBT14344-2022
GB
NATIONAL STANDARD OF THE
PEOPLE’S REPUBLIC OF CHINA
ICS 59.060.20
CCS W 50
Replacing GB/T 14344-2008
Man-made Fiber - Test Method for Tensile Properties of
Filament Yarns
Issued on. APRIL 15, 2022
Implemented on. NOVEMBER 1, 2022
Issued by. State Administration for Market Regulation;
Standardization Administration of the People’s Republic of China.
Table of Contents
Foreword... 3
1 Scope... 6
2 Normative References... 6
3 Terms and Definitions... 6
4 Principle... 8
5 Devices and Materials... 8
6 General Rules of Test... 10
7 Test Procedures... 13
8 Result Calculation... 15
9 Test Report... 19
Appendix A (informative) Recommended Values of Twist Applied to Filament... 20
Appendix B (normative) Quick Humidity-conditioning Method... 21
Appendix C (informative) Calculation Method for Pre-tension... 22
Appendix D (normative) Calculation Method for Increased Number of Tests... 23
Appendix E (normative) Calculation of Statistical Values... 25
Bibliography... 27
1 Scope
This document describes the test method for the tensile properties of man-made fiber ---
filament yarns.
This document is applicable to man-made fiber --- filament yarns, excluding spandex and
carbon fiber.
2 Normative References
The contents of the following documents constitute indispensable clauses of this document
through the normative references in the text. In terms of references with a specified date, only
versions with a specified date are applicable to this document. In terms of references without a
specified date, the latest version (including all the modifications) is applicable to this document.
GB/T 4146 (all parts) Textiles - Man-made Fibers
GB/T 6502 Sampling Method of Man-made Filament Yarns
GB/T 6503 Man-made Fibers - Test Method of Moisture Regain
GB/T 6682 Water for Analytical Laboratory Use - Specification and Test Methods
GB/T 9994 Conventional Moisture Regains of Textile Materials
GB/T 14343 Testing Method for Linear Density of Man-made Filament Yarns
3 Terms and Definitions
The terms and definitions defined in GB/T 4146 (all parts), and the following terms and
definitions are applicable to this document.
3.1 gauge length
Gauge length refers to the total fiber length measured when the clamping points of the first
clamp holder and the second clamp holder are at the initial position.
3.2 stress
Stress refers to the resistance of fibers subject to an external force to deformation.
3.3 strain
Strain refers to the deformation of fibers due to an external force.
3.4 modulus
Modulus is a parameter used to characterize the deformation behaviors of fibers. On a stress -
strain curve, modulus is the ratio of stress increment to strain increment.
3.5 initial modulus
Initial modulus refers to the ratio of stress increment to strain increment of the initial straight
line portion on a stress - strain curve of the fiber.
3.6 work of rupture
Work of rupture refers to the work done by an external force when the fiber is stretched to
rupture. That is, the energy absorbed in the process of the fiber being stressed, until it ruptures.
3.7 breaking roughness
Breaking roughness refers to the work done by an external force when a fiber of unit linear
density and unit length is stretched to break.
4 Principle
Under the specified conditions, stretch the fiber to rupture on a constant-rate elongation tester,
and obtain data of tensile properties, such as. breaking force, breaking elongation, constant
force elongation, constant elongation force, initial modulus, work of rupture and breaking
toughness of the specimens from the tensile curve or data acquisition system.
5 Devices and Materials
5.1 Constant-rate Elongation Tensile Tester (CRE)
5.1.1 The instrument shall be equipped with the following devices.
5.1.2 The instrument shall comply with the following technical requirements.
5.1.3 The type recommendation of the clamp holder is as follows.
5.2 Other Test Tools and Materials
5.2.1 Skein length measuring instrument. used to prepare laboratory samples into test strands;
the circumference of the yarn frame is (1.000 0.002) m; it has a reciprocating wire guide
device and a circle counting device.
5.2.2 Telescopic cylinder. used for the specimen preparation of unsupported packaged filaments;
for twisted filaments, during humidity-conditioning or relaxation, it can prevent the loss of twist.
Guide Groove
5.2.3 Rotary creel. used for telescopic cylinders, so that the specimen is easy to unwind along
the tangent line under low tension without changing the twist.
5.2.4 Water storage container. used to immerse the specimen in water.
5.2.6 Nonionic surfactants.
6 General Rules of Test
6.1 Sampling
6.1.1 Laboratory sample drawing
Laboratory samples are drawn in the following modes.
6.1.2 Specimen preparation
6.1.2.1 From each package, remove at least 100 m of surface filament.
6.1.2.2 For unsupported packages, a skein length measuring instrument can be used to make
strands with a length of at least 25 m; or on a telescopic cylinder, shake-take at least 25 m of
filament.
6.1.2.3 For untwisted and non-network filaments, if it is impossible to prevent the specimen
from slipping or the jaws from breaking, it can be twisted, so that the monofilaments in the
multifilament can be subject to a certain tension, and the optimal test results can be obtained.
The recommended values of twist applied to various filaments are shown in Appendix A.
6.2 Humidity-conditioning and Pre-conditioning --- Applicable to Wet-state Test
6.2.2 Humidity-conditioning time
6.3 Test Conditions
6.3.1 Pre-tension
6.3.1.1 The pre-tension of the specimen is calculated in accordance with Formula (1).
6.3.1.2 The pre-tension per unit linear density is recommended as follows.
6.4 Number of Tests
The number of tests is specified as follows in accordance with different situations.
7 Test Procedures
7.1 Determination of Linear Density
In accordance with the stipulations of GB/T 14343, determine the average linear density of the
same laboratory sample.
7.2 Specimen Loading
To manually or automatically load the specimen, the following rules need to be followed.
7.3 Start-up
7.3.1 Start-up with pre-tension
Introduce one end of the filament into the jaws of a clamp holder and clamp it; prevent twist
changes or accidental stretching of the filament. Introduce the other end of the filament into the
jaws of the other clamp holder, and apply the prescribed pre-tension to the end. Make sure that
the filament is positioned in the center of the jaws of the clamp holder and clamp it.
7.3.2 Start-up with relaxation
Introduce one end of the filament into the jaws of a clamp holder and clamp it. Introduce the
other end of the filament into the jaws of the other clamp holder and keep the specimen just in
a relaxed state. Make sure that the filament is positioned in the center of the jaws of the clamp
holder and clamp it.
7.4 Determination of Tensile Properties
During the dry-state test, in accordance with the state of the specimen, choose an appropriate
mode to load the specimen. During the wet-state test, adopt the manual mode to load the
specimen.
7.5 Data Collection
In accordance with the requirements, from the tensile curve or data acquisition system,
determine the breaking force, breaking elongation, constant force elongation, constant
elongation force, initial modulus, work of rupture and breaking toughness of each test.
8 Result Calculation
8.1 Breaking Elongation
8.1.1 During start-up with pre-tension, the breaking elongation is calculated in accordance with
Formula (2).
8.1.2 During start-up with relaxation, the initial length is calculated in accordance with Formula (3).
8.2 Breaking strength
The breaking strength is calculated in accordance with Formula (4) or Formula (5).
8.3 Constant Force Elongation
The constant force elongation is calculated in accordance with Formula (6).
8.4 Modulus
The modulus is calculated in accordance with Formula (7) or Formula (8).
8.5 Initial Modulus
Near the original point of the tensile curve, take the point, where the change in force with the
elongation is the maximum, and obtain the slope of the tangent line at this point. That is, the
ratio of the difference in force to the difference in elongation at any two points on the tangent
line. The initial modulus is calculated in accordance with Formula (9) or Formula (10).
8.8 Calculation of Statistical Values
Comply with the stipulations of Appendix E.
8.9 Data Rounding
For the breaking strength, initial modulus, work of rupture and breaking toughness, retain two
decimal places.
For the breaking elongation, retain 0.1%; for the coefficient of variation, retain 0.01%.
8.10 Result Expression
The test results are expressed as the arithmetic mean of valid test values.
9 Test Report
The test report includes.
a) The Standard used (including year of issue);
b) The name and specifications of the sample;
c) The number identification selected as bulk sample package;
d) The test method used and all test parameters;
e) The results of various performance tests of laboratory samples; if the standard deviation
and coefficient of variation are calculated, then, they should be written into the report;
f) After negotiation, reminders for modification of test procedures and other parts
inconsistent with this document;
g) Abnormal phenomena observed;
h) Test personnel, test date.
Appendix A
(informative)
Recommended Values of Twist Applied to Filament
A.1 Except for aramid fiber, the applied twist is Z60 twist/m ~ Z120 twist/m, which shall be
determined through negotiation between the demand-side and the supply-side. Some standards
have provided recommended values of applied twist, see Table A.1.
...... Source: Above contents are excerpted from the full-copy PDF -- translated/reviewed by: www.ChineseStandard.net / Wayne Zheng et al.
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