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Standard Test Method for Length of Fiber in Wool Top (Withdrawn 2022)
Automatically translated name:
Standard Test Method for Length of Fiber in Wool Top
STANDARD published on 1.7.2013
Designation standards: ASTM D519-04(2013)
Note: WITHDRAWN
Publication date standards: 1.7.2013
SKU: NS-30190
The number of pages: 5
Approximate weight : 15 g (0.03 lbs)
Country: American technical standard
Category: Technical standards ASTM
Keywords:
fiber length, top, wool, ICS Number Code 59.060.10 (Natural fibres)
Significance and Use | |||||||||||||||||||
5.1 Knowledge of the average fiber length and the distribution of fibers is of primary importance to users of top in further processing. 5.2 Acceptance specifications for the fiber length and length distribution may be established by the user based on the type of yarn-making equipment employed and the desired end uses. 5.3 Test Method D519 for testing wool top for fiber length is considered satisfactory for acceptance testing of commercial shipments since the method has been used extensively in the trade for acceptance testing and the current estimates of the between-laboratory precisions are acceptable. 5.3.1 In case of a dispute arising from differences in reported test results when using this test method for acceptance testing of commercial shipments, the purchaser and the supplier should conduct comparative testing to determine if there is a statistical bias between their laboratories. Competent statistical assistance is recommended for the investigation of bias. As a minimum, the two parties should take a group of test specimens that are as homogenous as possible and that are from a lot of the type material in question. The test specimens should then be assigned in equal numbers to each laboratory for testing. The average results from the two laboratories should be compared using Student's t-test for unpaired data and an acceptable probability level chosen by the two parties before testing is begun. If a bias is found either its cause must be found and corrected or the purchaser and supplier must agree to interpret future test results in the light of the known bias.
FIG. 1 Wool Fiber Stapling
Apparatus
Class Intervals, in.
|
Mass, g |
Percentages |
Cumulative Frequencies |
||||||||||||||||
First Cumulative, |
Second Cumulative, |
||||||||||||||||||
6.0 to 6.5 |
0.014 |
2.4 |
100.0 |
840.1 |
|||||||||||||||
5.5 to 6.0 |
0.010 |
1.7 |
97.6 |
740.1 |
|||||||||||||||
5.0 to 5.5 |
0.013 |
2.2 |
95.9 |
642.5 |
|||||||||||||||
4.5 to 5.0 |
0.018 |
3.1 |
93.7 |
546.6 |
|||||||||||||||
4.0 to 4.5 |
0.038 |
6.5 |
90.6 |
452.9 |
|||||||||||||||
3.5 to 4.0 |
0.051 |
8.7 |
84.1 |
362.3 |
|||||||||||||||
3.0 to 3.5 |
0.062 |
10.6 |
75.4 |
278.2 |
|||||||||||||||
2.5 to 3.0 |
0.072 |
12.3 |
64.8 |
202.8 |
|||||||||||||||
2.0 to 2.5 |
0.079 |
13.5 |
52.5 |
138.0 |
|||||||||||||||
1.5 to 2.0 |
0.080 |
13.6 |
39.0 |
85.5 |
|||||||||||||||
1.0 to 1.5 |
0.065 |
11.0 |
25.4 |
46.5 |
|||||||||||||||
0.5 to 1.0 |
0.045 |
7.7 |
14.4 |
21.1 |
|||||||||||||||
0 to 0.5 |
0.039 |
6.7 |
6.7 |
6.7 |
|||||||||||||||
|
|
|
|
|
|||||||||||||||
|
|
|
|
|
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Totals |
0.586 |
100.0 = ∑ |
840.1 |
4363.3 |
|||||||||||||||
|
Divided by ∑percentages |
F 1 = 8.40 |
F 2 = 43.63 |
m = the class interval = 0.5 in.
Percentage of fibers under 2 in. = 39.0 %.
Calculations:
v = 100
(σ/X) = 100 × (1.4/2.6) = 56.47 %.
where: | ||
X | = | average fiber length of wool, |
s | = | standard deviation, and |
v | = | coefficient of variation. |
1.1 This test method covers the measurement of the average length and length distribution of fibers in wool top, on a mass-biased basis. The method is applicable to all types of fibers in sliver formed from long parallelized fibers.
Standard Terminology Relating to Wool |
|
Standard Terminology Relating to Textiles |
|
Standard Test Method of Sampling and Testing Staple Length of Grease Wool (Withdrawn 2022) |
|
Standard Test Method for Fiber Length of Wool in Scoured Wool and in Card Sliver (Withdrawn 2022) |
|
Standard Practice for Conditioning and Testing Textiles |
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