Compression plate buckling behavior of fused fabric composites

Author:

Namiranian B.,Shaikhzadeh Najar S.,Salehzadeh Nobari A.

Abstract

PurposeThe purpose of this paper is to evaluate some important parameters in plate buckling of fused interlining worsted fabric with different weight and laying‐up direction. The article compares the formability of fused fabric composite by two different methods (Lindberg's hypothesis and fabric assurance by simple testing method).Design/methodology/approachPlate buckling compression behavior of fused fabric composite is investigated using a special designed clamp according to Dahlberg's test method.FindingsThe result shows that fusible interlining lay‐up angle significantly influences on buckling parameters. It is indicated that the buckling behavior of fused fabric composite against lay‐up interlining direction is in accordance with interlining buckling behavior. The result of research suggests that the formability behavior of fused fabric composite with interlining lay‐up direction is predictable according to Lindberg's method.Research limitations/implicationsExperimental design is limited at low speed. Further research works are needed to perform buckling behavior of fused fabric composites at higher speeds as well as under cyclic loading conditions.Originality/valueCompression plate buckling behavior of fused interlining fabrics is predictable against interlining laying‐up direction. The result of this research could be used in the area of garment quality serviceability.

Publisher

Emerald

Subject

Polymers and Plastics,General Business, Management and Accounting,Materials Science (miscellaneous),Business, Management and Accounting (miscellaneous)

Reference15 articles.

1. Dahlberg, B. (1961), “Mechanical properties of textile fabrics Part II: buckling”, Textile Research Journal, Vol. 31, pp. 94‐9.

2. Dahlberg, B. and Eeg‐Olefsson, T. (1958), No. 2, Medd Svenska Textileforsknings institutet.

3. de Boos, A. and Tester, D. (1994), “SiroFAST: fabric assurance by simple testing”, Report No. WT92.02, CSIRO Textile and Fibre Technology, Geelong.

4. Dhingra, R.C. and Lau, K.P. (1996), “Mechanical performance behavior of fused composites”, Textile Asia, Vol. 1, pp. 61‐4.

5. Fan, J., Leeuwner, W. and Hunter, L. (1997a), “Compatibility of outer and fusible interlining fabrics in tailored garments Part I: desirable range of mechanical properties of fused composites”, Textile Research Journal, Vol. 67, pp. 137‐42.

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