Effect of hybrid weaving patterns on mechanical performance of 3D woven structures

Author:

Mubeen Safdar Muhammad1,Khan Muhammad Imran1,Alsunbul Maha2,Fayad Eman3,Rehan Zulfiqar Ahmad4ORCID,Ullah Tehseen1,Fayzan Shakir HM5,Umair Muhammad1

Affiliation:

1. Department of Textile Engineering, School of Engineering and Technology, National Textile University, Faisalabad, Pakistan

2. Department of Pharmaceutical Sciences., College of Pharmacy, Princess Nourah bint Abdulrahman University, Riyadh, Saudi Arabia

3. Department of Biotechnology, College of Sciences, Taif University, Taif, Saudi Arabia

4. Department of Chemistry, College of Science, Sultan Qaboos University, Muscat, Oman

5. NPU-NCP Joint International Research Center on Advanced Nanomaterials and Defects Engineering, Shaanxi Engineering Laboratory for Graphene New Carbon Materials and Applications, School of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an, China

Abstract

Generally, 2D woven structures are used in a different high performance applications. But 2D woven natural fibers based structures have poor mechanical properties as compared to glass and other synthetic yarns. One of the possible solutions to overcome this problem is to develop 3D woven structures with natural fibers. The present work developed hemp yarn based three types of novel 3D woven structures, i.e., hybrid through the thickness (HB-1 (TT)), novel woven layer to layer structure (HB-2 (LL)), and layer to layer structure with double warp yarn (HB-3 (LL)). Furthermore to evaluate the impact of interlocking pattern on the static mechanical properties i.e., tensile, tear, puncture resistance and stiffness tests of the strucures were performed. The findings reveal variations in tensile strength among different 3D woven structures. Specifically, the 3D woven HB-3 (LL) configuration demonstrated the highest tensile strength, whereas the HB-1 (TT) structure exhibited the lowest. In the warp orientation, the tensile strength of the 3D woven HB-3 (LL) structure surpassed that of the HB-1 (TT) structure by 25.75%. Additionally, the stiffness results for the 3D woven HB-1 (TT) structure in the warp direction exceeded those of the HB-2 (LL) structure by 55.53%. Moreover, the HB-3 (LL) structure displayed superior puncture resistance compared to other 3D woven configurations. Furthermore, in the warp direction, the tear strength of the 3D woven HB-1 (TT) structure exceeded that of the HB-2 (LL) structure by 16.40%. Statistical analysis utilizing one-way ANOVA (Tukey) revealed that the influence of 3D woven hybrid structures on the outcomes of mechanical testing was statistically significant.

Funder

Princess Nourah Bint Abdulrahman University

Publisher

SAGE Publications

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