DIN 53840-1-1983 Testing of textiles determination of parameters for the crimp of textured filament yarns filament yarns with a linear density of up to 500 dtex《纺织品的检验 变形长丝纱卷曲度的测定 .pdf
《DIN 53840-1-1983 Testing of textiles determination of parameters for the crimp of textured filament yarns filament yarns with a linear density of up to 500 dtex《纺织品的检验 变形长丝纱卷曲度的测定 .pdf》由会员分享,可在线阅读,更多相关《DIN 53840-1-1983 Testing of textiles determination of parameters for the crimp of textured filament yarns filament yarns with a linear density of up to 500 dtex《纺织品的检验 变形长丝纱卷曲度的测定 .pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 677.072.7 :001.4:620.1 :677.014.886 DEUTSCHE NORM November 1983 Testing of textiles Determination of parameters for the crimp of textured filament yarns Filament varns with a linear densitv of up to 500dtex - DIN 53 840 Part 1 Prfung von Textilien; Bestimmung von Kruselkennwerten an texturierten
2、 Filamentgarnen; Filamentgarne mit einer Nenn-Feinheit bis 500 dtex Supersedes February 1976 edition. In keeping with current practice in standards published by the International Organization for Standardization (/SO), a comma has been used throughout as the decimal marker. 1 Scope and field of appl
3、ication This standard specifies a method of determining the pa- rameterscrimp contraction, crimp module and mechanical crimp retention, which serve to characterize the crimp properties of a yarn. The method can be applied to all textured filament yarns, irrespective of the texturing process used. Cr
4、imp development of filament yarns of a rounded nominal linear density not greater than 500 dtex is effected in hot air. 2 Concepts 2.1 Straightened length The straightened length I, is the length of the specimen measured in DIN 53802 - 20/65 standard atmosphere under a tensile forceF, after the crim
5、p has been developed. 2.2 Contracted length The contracted length I, is the length of the specimen measured in DIN 53802 - 20/65 standard atmosphere under a tensile force F, after a specified recovery time has elapsed. 2.3 Length for crimp module The length taken for the crimp module If is the lengt
6、h of the specimen measured in DIN 53802 - 20/65 standard atmosphere under the “specific tensile force Ff“. 2.4 Crimp retention length The crimp retention length lb is the length of the specimen measured under a tensile force Fb in DIN 53802 - 20/65 standard atmosphere subsequent to a specified recov
7、ery time following the short-time application of a high tensile force (crimp retention load) FKB. 2.5 Crimp contraction The crimp contraction E is the reduction in length of a textured filament yarn as a result of its crimped struc- ture when the crimp is developed. The crimp contraction E is expres
8、sed as the ratio of the difference between the straightened length I, and the contracted length I, to the straightened length 1,: 2.6 Crimp module The crimp module K characterizes the elongation behaviour of a textured yarn in the range of crimp elasticity. The crimp module K is the ratio of the dif
9、fer- ence between the straightened length 1, and the length If of the yarn under a specific tensile force specified in this standard, to the straightened length lg. 1, - If , (2) K= -_ 2.7 Mechanical crimp retention The mechanical crimp retention B indicates the crimp contraction of a textured filam
10、ent yarn following a defined mechanical tensile strain. To determine the value of the mechanical crimp retention, the specimen is subjected temporarily to a high tensile force, FKB. Then, the length lb of the filament yarn, contracted as a result of its crimp, is measured. The mechanical crimp reten
11、tion is expressed as the ratio of the crimp contraction calculated on the basis of b following the application of a tensile force, to the crimp contraction E. - Ib (3) 3 Principle of method The crimp of a specimen of a textured filament yarn in the form of a skein of specified linear density is deve
12、loped by treatment with hot air while the specimen is subjected to a pretensioning load. Then, the straightened length 1, of the specimen is measured under a high tensile force. After a specified recovery time, the contracted length I, of the filament yarn, shortened by the effect of its crimp, is m
13、easured under a low pretensioning load. Next, a specific tensile force is applied and the resulting length lf, which serves to characterize the elongation behaviour of a textured yarn, is measured. In order to determine the mechanical crimp retention, the specimen is subjected temporarily to a high
14、tensile force the Continued on pages 2 to 6 Beuth Verlag GmbH. Berlin 30, has exclusive sale rights for German Standards (DIN-Normen) DIN 53840 Part 1 Engl. Price group 6 Sales No. 0106 03.86 Page 2 DIN 53840 Part 1 contracted length lb subsequently being measured under a low pretensioning load afte
15、r a specified recovery time has elapsed. 4 Designation This method for determining crimp parameters (A) shall be designated: Test DIN 53840 -A 5 Sampling and conditioning Prior to testing, the packages to be tested shall be exposed for at least 24 hours to DIN 53802 - 20/65 standard atmosphere to al
16、low them to reach equilibrium. Throughout the sampling and conditioning procedures, particular care shall be taken that any stress applied to the specimens in the course of handling is less than the pretension to be applied during reeling, and that all overstretching is avoided. 5.1 Sampling DIN 538
17、03 Part 1 and Part 2 shall be consulted when selecting the packages for test purposes. When specimens are taken from different packages, due allowance shall be made for possible inhomogeneities in the material. That implies, as set out in DIN 53803 Part 1 and Part 2, that sampling must always be bas
18、ed on a sufficiently large number of packages. 5.2 Conditioning 5.2.1 General From each package that is available for, or has been selected for testing, the outer layers shall be removed. If, during transport or as a result of inexpert handling, yarns of low linear density have been indented or othe
19、rwise damaged, then specimens shall be taken from the inner layers of the package. If significantly different properties are to be expected within individual packages of the same yarn, and if such differences are to be the subject of investigation, then specimens shall be taken at various points in
20、the package (e.g. at the beginning, in the middle, and at the end). 5.2.2 Specimen dimensions, windoff length To permit the use of the same suspended weights for yarns of different linear density, a skein having an approximate linear density of 2500 dtex (250 tex) shall be produced by winding off a
21、corresponding length of yarn onto a reel 1 m in circumference. While the yarn is being reeled, the pretension, corre- sponding to an approximate force per unit linear density of 2 cN/tex, shall be maintained as uniformly as possible. The ends of the specimen shall then be tied together, but in such
22、a way that stretching of the yarn is ruled out. The number of turns needed to obtain the appropriate reeled length is calculated as follows. 2500 2 X nominal linear density, in dtex Number of turns = (4) One complete turn corresponds to a reeled length of 1 metre. Determination of the reeled length
23、requires prior cal- culation of the actual linear density of the textured yarn in the package according to the method specified in either DIN 53830 Part 2 or DIN 53830 Part 3. This Table 1. Reeled lengths to give a skein linear density of approximately 2500 dtex; range of values of linear density as
24、 specified in DIN 60 905 Part 3 and IS0 11 44 r12 Range of actual linear densities dtex Over 16.5 17.5 18,5 19,5 20.5 21.5 22.5 23,5 24,5 25,5 27 29 31 33 35 37 39 41 43 45 47 49 51 54 58 62 66 70 74 78 82 86 90 94 98 102,5 107.5 11 2,5 11 7.5 122.5 127.5 135 145 155 165 175 185 195 205 21 5 235 255
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