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Effect of Chemical Extraction on Physicochemical and Mechanical Properties of Doum Palm Fibres 被引量:3
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作者 S. Zannen L. Ghali +1 位作者 M. T. Halimi M. Ben Hssen 《Advances in Materials Physics and Chemistry》 2014年第10期203-216,共14页
The aim of this study is to investigate the effect of chemical extraction method on the properties of doum palm fibres. The method of extraction which is carried out is a soda treatment. First, an investigation of the... The aim of this study is to investigate the effect of chemical extraction method on the properties of doum palm fibres. The method of extraction which is carried out is a soda treatment. First, an investigation of the extraction processes was undertaken. Secondly, the physical properties (surface morphology, density, linear density and diameter), the mechanical properties (tenacity, strain) and chemical properties (FT-IR spectra) of doum palm fibres were inspected. Finally, a comparison between properties of doum palm fibres and other vegetal ones has been included. Results indicates an influence of soda treatment on properties of Doum palm fibers. In fact, there is an improvement on fibers diameter and linear density while increasing soda concentration, temperature and treatment duration. Moreover, the studied fibers have a low density which does not exceed 1. The fibers tenacity achieved the maximum value of 20.86 cN/Tex when precessing in the following combination (0.75 N, 100°C and 180 mn). In the end, the FTIR spectra reveals a change in structure after this alkali treatment while increasing the cellulose amount exposed on the fiber surface and consequently the number of possible reaction sites (OH groups). 展开更多
关键词 Doum PALM Fibres Leaf SHEATH Extraction SODA Treatment Physical PROPERTIES MECHANICAL PROPERTIES Chemical PROPERTIES
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Surface Morphology Investigation of Tunisian Dromedary Hair
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作者 Taoufik Harizi Slah Msahli +2 位作者 Faouzi Sakli Mosleh Mekki Touhami Khorchani 《Journal of Agricultural Science and Technology(A)》 2014年第5期454-459,共6页
In raw materials of dromedary hair, there are two distinct fibre populations: The fine one is of textile relevance and the coarse one is rather worthless and must be as a rule separated prior to spinning and subseque... In raw materials of dromedary hair, there are two distinct fibre populations: The fine one is of textile relevance and the coarse one is rather worthless and must be as a rule separated prior to spinning and subsequent processing. The fibre surface morphology and fibre fineness of Tunisian dromedary hair has been investigated by means of scanning electron microscope (SEM). SEM microscopic method provides the fibre diameter, the scale shape, the scale frequency and scale height. The results show that dehaired dromedary fibre presents a relatively low mean fibre diameter (≈ 17 μm) with a high coefficient of variation (CV ≈ 25%). The scales of the dromedary fibre are on average extremely long and quite visible, they tend not to protrude from the fibre, appear almost convex, and provide a wavy appearance in profile of the relatively coarse fibre. On counting the scale frequency, that is, the number of scale margins within a determined fibre length of 100 μm on the surface of a fine (diameter 〈 30 μm) and coarse (diameter 〉 30 μm) dromedary fibre, comes out roughly five at eight and eight at twelve scale margins, respectively. The mean height of the cuticle scale is 0.12μm and 0.24 μm, respectively, for fine and coarse dromedary fibre. These explain why dromedary fibres present a soft touch due to the prominence of the scale edges. This aspect of the surface structure has a high correlation with the felting capacity of the matter, and contributes to the concepts of handle and gloss. 展开更多
关键词 Dromedary hair animal fibre fibre diameter fibre morphology.
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Effect of Blending Ratio of Fibers on the Properties of Nonwoven Fabrics Based of Alfa Fibers
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作者 Lassaad Ghali Mohamed Taher Halimi +1 位作者 Mohamed Ben Hassen Faouzi Sakli 《Advances in Materials Physics and Chemistry》 2014年第6期116-125,共10页
Natural fibers are nowadays increasingly employed for making nonwoven, replacing the synthetic materials due to economic and environmental considerations. In this setting, we examine the use of Alfa fibers in nonwoven... Natural fibers are nowadays increasingly employed for making nonwoven, replacing the synthetic materials due to economic and environmental considerations. In this setting, we examine the use of Alfa fibers in nonwoven. Extracted Alfa fibers present satisfying mechanical properties that allow them to be used to produce nonwoven textiles materials. Therefore, Alfa fibers are, mainly, blended with cotton, polyester, Tencel and wool. Webs are prepared using cotton or wool cards in regular width. The nonwoven consolidation is made by needle-punching method. The weight, thickness, air permeability, adiathermic capacity and tensile properties are investigated. The results exhibit that the air permeability increases with the increase of Alfa fibers ratio for the nonwoven Alfa blended with short fibers. It decreases in case of Alfa/Wool blend. We can conclude also that the nonwoven Alfa blended with wool fibers have the highest properties values for all the Alfa fibers blends. Data also revealed that the tensile properties are reduced with the increment of Alfa fibers ratio. 展开更多
关键词 ALFA Fibers NONWOVEN AIR PERMEABILITY SPECIFIC STRENGTH
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Modelling Absorption Capacity Performance of Hygienic Product
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作者 Soumaya Sayeb Mohamed Ben Hassen Faouzi Sakli 《Open Journal of Applied Sciences》 2013年第2期169-173,共5页
The performance prediction of hygienic products can be a major advantage for manufacturers. Among the interesting performances to be expected, we find the absorption capacity. This is a parameter governed by the compo... The performance prediction of hygienic products can be a major advantage for manufacturers. Among the interesting performances to be expected, we find the absorption capacity. This is a parameter governed by the composition of the absorbent core, particularly the fibrous component and the characteristics of the superabsorbent polymer (SAP). Thus, various theoretical models have been established to predict the absorption capacity. All these models have taken into account the nature of the fibrous support and the ratio of superabsorbent polymer. Certainly, other factors, less obvious in their modelling, are involved in determining the performance such as the homogeneity of the mixture formed by the fluff and SAP, the distribution of polymer particles in the entire structure, the porous structure, the shape of the capillary, the nature of the nonwoven webs used, etc. Various theoretical models are proposed here to describe the absorption capacity and we will outline the model which best describes this performance. The experimental test results are discussed to verify if the theoretical model selected can be confirmed. 展开更多
关键词 MODEL ABSORPTION Capacity Hygienic PRODUCT SUPERABSORBENT
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Effects Optimization of Bio-Polishing Industrial Process Parameters
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作者 Imed Ben Marzoug Rim Cheriaa 《Journal of Textile Science and Technology》 2023年第1期30-51,共22页
The purpose of this study is to select an appropriate commercial neutral cellulase enzyme for denim garments bio-polishing to achieve specific industrial goals. A full factorial experimental design was used to evaluat... The purpose of this study is to select an appropriate commercial neutral cellulase enzyme for denim garments bio-polishing to achieve specific industrial goals. A full factorial experimental design was used to evaluate the effect of factors considered in the optimization of the bio-polishing process (fabric ID: x1, treatment time: x2, treatment temperature: x3, enzyme concentration: x4, storage time: x5, inactivation step: x6 and enzyme type: x7). Experiments were conducted using laboratory washing machine. Subjective evaluation was performed at a pilot and at an industrial scale. Tear, tensile strength and subjective evaluation concerning hand feel, fabric color, indigo dye pocket back staining and fuzziness extent were evaluated. Results showed that x6 and x7 had significant effects on the fabric tear and tensile strength loss. In the optimization, the great dependence between observed and predicted tear strength and tensile strength loss, the correlation coefficient of the models (R<sup>2</sup> > 0.85) and the important value of F-ratio proved the validity of the models. Results showed that denim leg panels treated with the enzyme Lava-Cell NSZ presented a minimum loss of tear and tensile strength. A low-temperature and time enzymatic bio-polishing process was developed at industrial scale. 展开更多
关键词 Bio-Polishing CELLULASE Tensile Strength OPTIMIZATION Fabric Hand Feel
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Effect of Fiber Weight Ratio and Fiber Modification on Flexural Properties of Posidonia-Polyester Composites
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作者 S. Zannen L. Ghali +1 位作者 M. T. Halimi M. Ben Hassen 《Open Journal of Composite Materials》 2016年第3期69-77,共9页
The main objective of this research is to study the effect of fiber weight ratio and chemical fiber modification on flexural properties of composites reinforced with Posidonia fiber. An unsaturated polyester matrix re... The main objective of this research is to study the effect of fiber weight ratio and chemical fiber modification on flexural properties of composites reinforced with Posidonia fiber. An unsaturated polyester matrix reinforced with untreated and treated Posidonia fibers was fabricated under various fiber weight ratios. Results showed that the combined chemical treatment provided better mechanical properties of composites in comparison with untreated fiber. The fiber weight ratio influenced the flexural properties of composites. Indeed, a maximum value of flexural modulus was observed for 10% fiber weight ratio for composites reinforced with treated fibers. SEM photographs revealed a different fracture surface between Posidonia fibers reinforced polyester composites. 展开更多
关键词 Composites Posidonia Fiber Weight Ratio Flexural Modulus Flexural Strength ELONGATION SEM Micrographs
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Effect of Combined Chemical Treatment on Physical, Mechanical and Chemical Properties of Posidonia Fiber
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作者 Saoussen Zannen Lassaad Ghali +1 位作者 Mohamed Taher Halimi Mohamed Ben Hassen 《Advances in Materials Physics and Chemistry》 2016年第11期275-290,共17页
The aim of this study is to investigate the effect of chemical treatment method on the properties of Posidonia fibers. The chemical treatment which is carried out is a combined hydrogen peroxide and sodium hydroxide t... The aim of this study is to investigate the effect of chemical treatment method on the properties of Posidonia fibers. The chemical treatment which is carried out is a combined hydrogen peroxide and sodium hydroxide treatment. First, an investigation of the treatment processes was undertaken. Secondly, the physical properties (linear density, diameter and ratio length per diameter), the mechanical properties (tenacity, elongation) and chemical properties (FT-IR spectra and X ray diffraction) of posidonia fibers were investigated. The optimum operating conditions were identified using a factorial design. 展开更多
关键词 Posidonia Fiber Combined Treatment Physical Properties Mechanical Properties Chemical Properties
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