Theoretical study on the bending rigidity of filament yarns with an elliptical cross-section using energy method. I. Theoretical modeling
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- Type
- article
- Published
- 2010-10-06
- Cited by
- 8
- References
- 21
- OpenAlex
- https://openalex.org/W2041188743
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136746167
Keywords
Yarn, Flexural rigidity, Protein filament, Bending, Rigidity (electromagnetism)
References
- Dynamic Analysis of the Beat-Up Process
- 16—THE COMPRESSION OF YARNS PART I: THE COMPRESSION-ENERGY FUNCTION
- A Theoretical Consideration of the Warp and Weft Contractions in Woven Fabrics
- Examining the effects of balloon control ring on ring spinning
- 47—CLOTH STIFFNESS AND HYSTERESIS IN BENDING
- An energy model of yarn bending
- A Predictive Model for the Fabric-to-Yarn Bending Stiffness Ratio of a Plain-Woven Set Fabric
- 11—AN ENERGY METHOD FOR CALCULATIONS IN FABRIC MECHANICS PART I: PRINCIPLES OF THE METHOD
- THE SCIENCE OF CLOTHING COMFORT
- Modelling Fabric Mechanics
- Structure and Mechanics of Woven Fabrics
- A comprehensive handle evaluation system for fabrics: I. Measurement and characterization of mass and bending properties
- Bending Analysis of Nonlinear Material Fibers with a Generalized Elliptical Cross-section
- Computation of Bending Behavior of Woven Structures Using Optimization Techniques
- Large-Scale Extension and Recovery of Plain Woven Fabrics
- The geometry of cloth structure
- A Modified Analysis of Thread Contraction in Woven Fabrics
- 26—THE ELASTIC RESISTANCE TO BENDING OF PLAIN-WOVEN FABRICS
- Bending Rigidity of Yarns
- Deformation of a Single Helix Under Simultaneous Application of Extension, Compression, and Bending
Cited by
- Structural design and performance characterization of stable helical auxetic yarns based on the hollow-spindle covering system
- Investigation of the classification and properties of three-dimensional textile fabrics
- Permeability prediction of fibrous porous media by the lattice Boltzmann method with a fluid-structure boundary reconstruction scheme
- Research on the new method for visualizing bendability testing of fabrics in multiple directions
- Artificial neural network-assisted theoretical model to predict the viscoelastic–plastic tensile behavior of polyamide-6 multi-ply yarns
- A viscoelastic-plastic model for the core of various close-packings of multifilament polyamide-6 yarns
- Finite-element simulation analysis based on compression properties of tubular down yarns
- A Viscoelastic-Plastic Model for the Core of Various Close- Packings of Multifilament Polyamide-6 Yarns
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