Research Article

Variable Stiffness Woven Fabrics with Curved Advanced Fibers

Number: 24 April 15, 2021
TR EN

Variable Stiffness Woven Fabrics with Curved Advanced Fibers

Abstract

A novel method for production of variable stiffness woven fabrics with curved advanced fibers is presented. A scalable concept design is introduced. Several variable stiffness fabrics are woven by the prototype loom. The weaving process and woven fabrics are examined. Two distinct regions of the fabric which are showing different behaviors are observed. Based on the two regions identified the curved fibers of the woven fabric are simplified and modeled as a three-dimensional unit mesh. Geometry variation of the curved fibers and stiffness variation of the woven fabrics are discussed for these two distinct regions by using the developed model.

Keywords

Supporting Institution

Trakya University

Project Number

TUBAP-2018/88

References

  1. Ashir, M., Nocke, A., & Cherif, C. (2020). Adaptive fiber-reinforced plastics based on open reed weaving and tailored fiber placement technology. Textile Research Journal, 90(9-10), 981-990.
  2. August, Z., Ostrander, G., Michasiow, J., & Hauber, D. (2014). Recent developments in automated fiber placement of thermoplastic composites. SAMPE J, 50(2), 30-37.
  3. Bai, J. (2013). Advanced fibre-reinforced polymer (FRP) composites for structural applications: Elsevier.
  4. Blom, A. W., Setoodeh, S., Hol, J. M., & Gürdal, Z. (2008). Design of variable-stiffness conical shells for maximum fundamental eigenfrequency. Computers & structures, 86(9), 870-878.
  5. Blom, A. W., Stickler, P. B., & Gürdal, Z. (2010). Optimization of a composite cylinder under bending by tailoring stiffness properties in circumferential direction. Composites Part B: Engineering, 41(2), 157-165.
  6. Brooks, T. R., & Martins, J. R. R. A. (2018). On manufacturing constraints for tow-steered composite design optimization. Composite structures, 204, 548-559.
  7. Campbell, F. C. (2010). Structural composite materials: ASM international.
  8. Crothers, P., Drechsler, K., Feltin, D., Herszberg, I., & Kruckenberg, T. (1997). Tailored fibre placement to minimise stress concentrations. Composites Part A: Applied Science and Manufacturing, 28(7), 619-625.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

April 15, 2021

Submission Date

March 17, 2021

Acceptance Date

April 6, 2021

Published in Issue

Year 2021 Number: 24

APA
Günay, M. G., & Timarcı, T. (2021). Variable Stiffness Woven Fabrics with Curved Advanced Fibers. Avrupa Bilim Ve Teknoloji Dergisi, 24, 430-435. https://doi.org/10.31590/ejosat.898542
AMA
1.Günay MG, Timarcı T. Variable Stiffness Woven Fabrics with Curved Advanced Fibers. EJOSAT. 2021;(24):430-435. doi:10.31590/ejosat.898542
Chicago
Günay, Muhsin Gökhan, and Taner Timarcı. 2021. “Variable Stiffness Woven Fabrics With Curved Advanced Fibers”. Avrupa Bilim Ve Teknoloji Dergisi, nos. 24: 430-35. https://doi.org/10.31590/ejosat.898542.
EndNote
Günay MG, Timarcı T (April 1, 2021) Variable Stiffness Woven Fabrics with Curved Advanced Fibers. Avrupa Bilim ve Teknoloji Dergisi 24 430–435.
IEEE
[1]M. G. Günay and T. Timarcı, “Variable Stiffness Woven Fabrics with Curved Advanced Fibers”, EJOSAT, no. 24, pp. 430–435, Apr. 2021, doi: 10.31590/ejosat.898542.
ISNAD
Günay, Muhsin Gökhan - Timarcı, Taner. “Variable Stiffness Woven Fabrics With Curved Advanced Fibers”. Avrupa Bilim ve Teknoloji Dergisi. 24 (April 1, 2021): 430-435. https://doi.org/10.31590/ejosat.898542.
JAMA
1.Günay MG, Timarcı T. Variable Stiffness Woven Fabrics with Curved Advanced Fibers. EJOSAT. 2021;:430–435.
MLA
Günay, Muhsin Gökhan, and Taner Timarcı. “Variable Stiffness Woven Fabrics With Curved Advanced Fibers”. Avrupa Bilim Ve Teknoloji Dergisi, no. 24, Apr. 2021, pp. 430-5, doi:10.31590/ejosat.898542.
Vancouver
1.Muhsin Gökhan Günay, Taner Timarcı. Variable Stiffness Woven Fabrics with Curved Advanced Fibers. EJOSAT. 2021 Apr. 1;(24):430-5. doi:10.31590/ejosat.898542