A test that takes less than one hour as opposed to the conventional one day test is proposed for measuring the relaxation shrinkage and hygral expansion of fabrics. There is no need for a controlled environment, the only equipment required being a household microwave oven and a scaled ruler. The test's simplicity makes it suitable for use in a commercial environment, especially for quality control during fabric finishing and garment making.
Canadian Standard CAN2–4.2-M77 Method 25.2–1977: Method of Test for Dimensional Change of Textile Fabrics to Open-Head Steaming, 1977.
3.
CednasM., Dimensional Stability of Wool Fabrics, J. Textile Inst.52, T251–T271 (1961).
4.
DuncanA. J., “Quality Control and Industrial Statistics,”3rd ed., Richard D. Irwin, Inc., Homewood, Illinois, 1965.
5.
German Standard DIN 53894 Part 2: Testing of Textiles; Determination of Dimensional Change of Textile Fabrics – Steaming on Iron Machines, 1979.
6.
HodgettD. L., The Development of a Radio-Frequency Wool Sliver Drier, Electricity Council Research Centre Report No. M659, Capenhurst, Chester, U.K., 1973.
7.
International Organisation for Standardization ISO 3005–1978(E): Textiles – Determination of Dimensional Change of Fabrics Induced by Free-Steam, 1978.
8.
International Organisation for Standardization ISO 5725–1981(E): Precision of Test Methods – Determination of Repeatability and Reproducibility by Interlaboratory Tests, International Organisation for Standardization, 1981.
9.
KawabataS., HESC Test Method of Fabric Dimensional Instability Caused by Steam Pressing, in “Objective Evaluation of Fabrics,”PostleR.KawabataS.NiwaM., Eds., Textile Machinery Society of Japan, Osaka, 1983, pp. 433–441.
10.
LeesK., Quality Control of Cloth Shrinkage, Part 1: Shrinkage Effects in Woven Cloth, Clothing Res. J.2 (1), 28–32 (1974).
11.
MaharT. J.DhingraR. C.PostleR., Interactions between the Mechanical Properties and Dimensional Stability of Wool Fabrics, in “Objective Measurement: Application to Product Design and Process Control,”KawabataS.PostleR.NiwaM., Eds., Textile Machinery Society of Japan, Osaka, 1986, pp. 489–500.
12.
MedleyJ. A.BennettJ., Quality Control of Cloth Shrinkage, Part 3: Hygral Change Measurements and their Applications to Locked Press Shrinkage, Clothing Res. J.3 (2), 101–108 (1975).
13.
Photovolt Corporation, U.S.A., Information brochure on the Apollo Mark XII Moisture Analyzer.
14.
ShawT., The Dimensional Stability of Woven Wool Fabrics, Wool Sci. Rev.55, 43–81 (1978).
15.
WemyssA. M.WhiteM. A., Dimensional Stability Testing of Wool Fabrics for Finishing and Tailoring, an AWTOMEC Discussion Paper published by CSIRO Division of Textile Industry, July 1986.
16.
WinstonC. R.JamesJ. F. P., Current CSIRO Research on Heating of Greasy Wool Bales, in “The Physics of Wool Processing and its Application to the Australian Wool Industry,” Musheep Seminar, FreemanR. R., Ed., Dept. Civil Engineering, University of Melbourne, 1983, pp. 20–30.