Effects of Braid Angle and Material Modulus on the Negative Poisson's Ratio of Braided Auxetic Yarns

被引:2
|
作者
Shah, Arif A. [1 ,2 ]
Shahid, Muhammad [1 ]
Hardy, John G. [2 ,3 ]
Siddiqui, Naveed A. [4 ]
Kennedy, Andrew R. [5 ]
Gul, Iftikhar H. [1 ]
Rehman, Shafi Ur [1 ]
Nawab, Yasir [6 ]
机构
[1] Natl Univ Sci & Technol, Sch Chem & Mat Engn, Islamabad 44000, Pakistan
[2] Univ Lancaster, Dept Chem, Lancaster LA1 4YB, England
[3] Univ Lancaster, Mat Sci Inst, Lancaster LA1 4YB, England
[4] Ctr Excellence Sci & Technol CESAT, Islamabad 44000, Pakistan
[5] Univ Lancaster, Engn Dept, Lancaster LA1 4YW, England
[6] Natl Text Univ, Sch Engn & Technol, Faisalabad 37610, Pakistan
关键词
auxetic material; negative Poisson's ratio; textile structures; fibers; braid geometry; ELASTIC PROPERTIES; MECHANICAL-PROPERTIES; 2-LAYERED PLATES; CUBIC-CRYSTALS; POLYETHYLENE; MANUFACTURE; DESIGN; MICROSTRUCTURE; FABRICATION; COMPOSITES;
D O I
10.3390/cryst12060781
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
Fibers and textiles are ubiquitous in our daily lives, with mechanical properties that match the design specifications for the task for which they are intended; the development of yarns with a negative Poisson's ratio (NPR) is a hot topic of current research, owing to their potential for use in high-performance textiles (e.g., military, sports, etc.). This study described a simple approach to constructing braided, helically interlaced yarns. When a torque is applied, the yarns prevent the wrapped component from dislodging from the core. The geometry and auxetic behavior of the braided helical structure was analyzed for two different combinations of core materials with similar wrap materials and different braiding angles. Two elastomeric materials (polyurethane (PU) and polyester) served as monofilament cores, while two stiffer multifilament wrap yarns (ultrahigh molecular weight polyethylene (UHMWPE) and polyethylene terephthalate (PET)) served as wrap yarns. In addition, the behavior of yarns braided at seven different angles was investigated to determine the materials' response to the applied braided configuration's NPR. The NPR was influenced by the core and wrap materials used and the braiding angle. The NPR value was greater for a core comprising more excellent elasticity (e.g., PU versus polyester); a smaller wrap angle and a slower braiding speed also led to a higher NPR value. The maximum NPR value of -1.70 was obtained using a PU core wrapped at a 9 degrees angle and a strain value of 0.5.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Predictions of Young's modulus and negative Poisson's ratio of auxetic foams
    Lu, Zi-Xing
    Liu, Qiang
    Yang, Zhen-Yu
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2011, 248 (01): : 167 - 174
  • [2] Design, preparation and characterization of braiding auxetic yarns with a high negative Poisson's ratio
    Du, Zhaoqun
    He, Linge
    Liu, Zhuoran
    TEXTILE RESEARCH JOURNAL, 2024, 94 (1-2) : 82 - 89
  • [3] Auxetic Black Phosphorus: A 2D Material with Negative Poisson's Ratio
    Du, Yuchen
    Maassen, Jesse
    Wu, Wangran
    Luo, Zhe
    Xu, Xianfan
    Ye, Peide D.
    NANO LETTERS, 2016, 16 (10) : 6701 - 6708
  • [4] The effects of powder morphology on the processing of auxetic polypropylene (PP of negative Poisson's ratio)
    Pickles, AP
    Alderson, KL
    Evans, KE
    POLYMER ENGINEERING AND SCIENCE, 1996, 36 (05): : 636 - 642
  • [5] Development of helical auxetic yarn with negative Poisson's ratio by combinations of different materials and wrapping angle
    Ullah, Tehseen
    Ahmad, Sheraz
    Nawab, Yasir
    JOURNAL OF INDUSTRIAL TEXTILES, 2022, 51 (2_SUPPL) : 2181S - 2196S
  • [6] Poisson's ratio effects on the mechanics of auxetic nanobeams
    Faroughi, S.
    Shaat, M.
    EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2018, 70 : 8 - 14
  • [7] Poisson's ratio effects on the mechanics of auxetic nanobeams
    Shaat, M. (shaat@nmsu.edu), 1600, Elsevier Ltd (70):
  • [8] Mass transport properties of auxetic (negative Poisson's ratio) foams
    Alderson, A.
    Rasburn, J.
    Evans, K. E.
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2007, 244 (03): : 817 - 827
  • [9] Negative-Poisson's-Ratio Materials: Auxetic Solids
    Lakes, Roderic S.
    ANNUAL REVIEW OF MATERIALS RESEARCH, VOL 47, 2017, 47 : 63 - 81
  • [10] Modeling of negative Poisson’s ratio (auxetic) crystalline cellulose Iβ
    Yong T. Yao
    Kim L. Alderson
    Andrew Alderson
    Cellulose, 2016, 23 : 3429 - 3448