Open Journal of Composite Materials

Open Journal of Composite Materials

ISSN Print: 2164-5612
ISSN Online: 2164-5655
www.scirp.org/journal/ojcm
E-mail: ojcm@scirp.org
"Statistical Analysis of the Tensile Strength of Treated Oil Palm Fiber by Utilisation of Weibull Distribution Model"
written by Chin Voon Sia, Yoshikazu Nakai, Daiki Shiozawa, Hiroto Ohtani,
published by Open Journal of Composite Materials, Vol.4 No.1, 2014
has been cited by the following article(s):
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[1] Statistical analysis of the mechanical behavior of high-performance polymers: Weibull's or Gaussian distributions?
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[2] The Influence of Location along the Pseudostem on Enset Fiber Physio-Mechanical Properties: Application of Weibull Distribution Statistics
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[3] The Effect of fibre position and gauge lengths along the length of enset bundle fibres on physical and mechanical properties: Application of statistics analysis
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[4] Statistical elastic and fracture mechanical properties of quasi-brittle and ductile amorphous polymers
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[5] Predicting the relaxation modulus for the study of the delayed behaviour of kenaf fibres in stress relaxation
Fibres & Textiles in …, 2021
[6] Weibull Strength Analysis of Pineapple Leaf Fiber
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[7] Compression of surface-wetted carbon-microsphere-based disks
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[8] Analysis of length effect dependencies in tensile test for paperboard
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[9] Tensile performance characterization of windmill palm leaf sheath fiber by polynomial fitting and XRD peak deconvolution
The Journal of The Textile Institute, 2019
[10] Estimation of the Effects of the Cross-Head Speed and Temperature on the Mechanical Strength of Kenaf Bast Fibers Using Weibull and Monte-Carlo Statistics
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[11] COMPATIBILITY ASSESSMENT FOR PHYSICAL AND MECHANICAL PROPERTIES OF EMPTY FRUIT BUNCH CEMENT-BONDED FIBREBOARD
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[12] Effect of Fibre Orientation and Volume on the Thermo-Acoustic Properties of Jute Polyester Composite
2018
[13] Modified Weibull analysis on banana fiber strength prediction
2018
[14] Tribological characteristics comparison for oil palm fibre/epoxy and kenaf fibre/epoxy composites under dry sliding conditions
Tribology International, 2016
[15] Determination of the minimum sample size for a reliable strength measurement of talc‐filled polypropylene fibers
Journal of applied polymer science, 2016
[16] Effect of different lignocellulosic fibres on poly (ε-caprolactone)-based composites for potential applications in orthotics
RSC Advances, 2015
[17] COMPOSITES FROM NATURAL FIBRES
IJRET: International Journal of Research in Engineering and Technology, 2014
[18] Appropriate software model for evaluating the effect of untreated and treated sisal fibre with different gauge length and strain rates for geotextile applications
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