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TiO_2/Polyester Non-woven Fabrics as a Kind of Photocatalyst for the Degradation of Formaldehyde Gas
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作者 杨建忠 孙爱贵 陆银兰 《Journal of Donghua University(English Edition)》 EI CAS 2005年第4期33-35,共3页
The feasibility of photocatalytic degradation of the formaldehyde gas by titanium dioxide (TiO2)/polyester non-woven fabrics was studied. Tbe effects of parameters such as tbe concentration of TiO2 solution, pH valu... The feasibility of photocatalytic degradation of the formaldehyde gas by titanium dioxide (TiO2)/polyester non-woven fabrics was studied. Tbe effects of parameters such as tbe concentration of TiO2 solution, pH value, and drying temperature on the photocatalytic degradation of the formaldehyde gas were also studied. The results showed that the photodegradation efficiency of the formaldehyde gas increased rapidly with the increasing of the concentration of TiO2 solution up to 15g/L, but when the concentration was in excess of 15g/L, the photodegradation efficiency decreased gradually and fluctuated due to light obstruction and disperse state of TiO2. Adjusting the pH value in the solution, the efficiency of photocatalytic degradation of the formaldehyde gas could be improved. The mechanisms of the reaction and the role of the additives were also investigated. After 42hours, TiO2/ polyester non-woven fabric showed no significant loss of the photocatalytic activity. 展开更多
关键词 FORMALDEHYDE photocatalytic degradation titanium dioxide polyester non-voven fabric.
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Preparation of Durable Antibacterial Polyester Fabrics by Grafting with the Natural Quaternary Ammonium Compound Betaine
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作者 Md Shariful Islam Md Kamrul Hasan +3 位作者 Arifur Rahman Shakhauat Hossen Md Anwarul Islam Sachi Xinbo Ding 《Materials Sciences and Applications》 2024年第9期378-398,共21页
Recently, the textile industry has increasingly advocated for natural resource-based healthcare textiles. This research presents a facile and eco-friendly approach to developing durable antibacterial polyester fabrics... Recently, the textile industry has increasingly advocated for natural resource-based healthcare textiles. This research presents a facile and eco-friendly approach to developing durable antibacterial polyester fabrics. Polyester fabric was first subjected to an alkaline hydrolysis to impart hydroxyl groups on the fiber surface. A natural antibacterial agent, betaine, was then covalently bonded to the hydrolyzed polyester fiber surface through esterification. XPS, Raman, SEM, and Wicking measurements were carried out to verify the esterification reaction. Antibacterial tests confirmed that betaine treatment grafted polyester fabrics revealed a remarkable antibacterial effect with inhibition rates > 99.9% against both E. coli and S. aureus and still remained inhibition rates of up to 91.5% against both bacteria after home washing for 20 cycles. Moreover, the modification significantly increased the capillary effect of polyester fabric but did not cause apparent adverse effects on the fabric’s hand or tensile strength. Overall, this grafting strategy for durable, antibacterial polyester fabric represents a significant practicality in the textile industry. 展开更多
关键词 polyester fabric BETAINE ANTIBACTERIAL DURABILITY CAPILLARY
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Studying the Effect of Polyester Fiber Blend Ratio and Pilling Cycle on Blended Knit Fabrics
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作者 Kazi Md. Elias Mohammad Obaidur Rahman H. M. Zakir Hossain 《Journal of Textile Science and Technology》 2023年第4期227-243,共17页
Pilling is a severe concern for blended fabrics. The aesthetic look and smoothness are the buyers’ prime requirements. The main focus of the study was to see the pilling behavior from various percentages of polyester... Pilling is a severe concern for blended fabrics. The aesthetic look and smoothness are the buyers’ prime requirements. The main focus of the study was to see the pilling behavior from various percentages of polyester fiber blend ratio as well as the different pilling cycles on blended fabrics. The cotton, polyester, and elastane prepared the study fabrics. These fabrics are (90% Cotton/5% Polyester/5% Elastane, 90% Cotton/6% Polyester/4% Elastane, 90% Cotton/7% Polyester/3% Elastane, 90% Cotton/8% Polyester/2% Elastane, and 90% Cotton/9% Polyester/1% Elastane, 85% Cotton/10% Polyester/5% Elastane, 85% Cotton/11% Polyester/4% Elastane, 85% Cotton/12% Polyester/3% Elastane, 85% Cotton/13% Polyester/2% Elastane, and 85% Cotton/ 14% Polyester/1% Elastane, 80% Cotton/15% Polyester/5% Elastane, 80% Cotton/16% Polyester/4% Elastane, 80% Cotton/17% Polyester/3% Elastane, 80% Cotton/18% Polyester/2% Elastane, and 80% Cotton/19% Polyester/1% Elastane). The selected polyester blend ratios were 5%, 6%, 7%, 8%, 9%, 10%, 11%, 12%, 13%, 14%, 15%, 16%, 17%, 18% and 19% respectively. The study used the Martindale pilling tester with 2000, 5000, and 7000 cycles, respectively. The evaluation followed the ISO 12945-2:2000. The study findings are that the polyester fiber blend ratio did not influence the pilling grade on blended fabrics for pilling cycles 2000, and the pilling grade remained constant at 4 - 5. The pilling grade started to deteriorate in pilling cycle 5000 for the fabrics 85%C/10%P/5%E, 85%C/11%P/4%E, 85%C/12%P/3%E, 85%C/ 13%P/2%E, 85%C/14%P/1%E showed the pilling grade 4, and the fabrics made from 80%C/15%P/5%E, 80%C/16%P/4%E, 80%C/17%P/3%E, 80%C/ 18%P/2%E, 80%C/19%P/1%E showed the pilling grade 4, 3, 3, 3, and 3 respectively. For the pilling cycles 7000, the pilling grade further deteriorated for the fabrics 80%C/15%P/5%E, 80%C/16%P/4%E, 80%C/17%P/3%E, 80%C/ 18%P/2%E, 80%C/19%P/1%E showed the pilling grade 3, 3, 2, 2, and 2 respectively. The study finds the dominance of polyester fiber throughout the experiment. The author hopes this study’s outcome will help new researchers, advanced researchers, and the textile industry’s sustainable development research and development team. 展开更多
关键词 PILLING Cotton polyester Elastane BLENDED Knit fabric
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Predicting Bursting Strength Behavior of Weft Knitted Fabrics Using Various Percentages of Cotton, Polyester, and Spandex Fibers
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作者 Kazi Md. Elias Mohammad Obaidur Rahman H. M. Zakir Hossain 《Journal of Textile Science and Technology》 2023年第4期273-290,共18页
The bursting strength is an essential quality parameter of knit fabric. The fabric structure, weight, types of fibers, and fiber blend proportion influence the bursting strength parameter. The tenacity of polyester fi... The bursting strength is an essential quality parameter of knit fabric. The fabric structure, weight, types of fibers, and fiber blend proportion influence the bursting strength parameter. The tenacity of polyester fiber is better than cotton and spandex. The study focused on predicting knit fabric bursting strength test value using different fibers (cotton, polyester, and spandex) with varying percentages of the blend ratio. This study used fifteen categories of blended fabrics. The Pearson Correlation and the hypothetical ANOVA regression analysis were conducted to do the statistical significance test. The experimental result reveals that the bursting strength test result increased with the increased percentage of polyester and suggested a suitable regression equation. The dominance of the polyester fiber was observed throughout the experiment, i.e., the higher the polyester blend proportion, the higher the bursting strength value. The inclusion of polyester in blends can reduce the cost of fabric. The developed prediction model or equation can help the fabric manufacturer make appropriate decisions regarding getting the expected bursting strength. The researcher hopes that the findings from this study will motivate new researchers, advanced researchers, and the textile manufacturing industry. 展开更多
关键词 Kilopascal Prediction Bursting-Strength Blended fabric COTTON polyester SPANDEX
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Atmospheric-pressure Air Plasma Treatment of Polyester Fabrics for Inkjet Printing with Pigment Inks 被引量:1
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作者 张春明 房宽峻 沈安京 《Journal of Donghua University(English Edition)》 EI CAS 2009年第4期429-434,共6页
Without any preprocessing,polyester fabric has lower ability to hold on water and inks due to the smooth morphology of polyester fibers. Therefore, patterns directly printed with pigment inks have poor color yields an... Without any preprocessing,polyester fabric has lower ability to hold on water and inks due to the smooth morphology of polyester fibers. Therefore, patterns directly printed with pigment inks have poor color yields and bleed easily. Pretreatments of polyester fabric were carried out with atmospheric air plasma under different experimental conditions. After plasma treatment the samples were printed with magenta pigment ink. Scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS) analyses indicated that the enhanced color performance was mainly contributed by not only the etching effect but also oxygen-containing polar groups induced onto fiber surfaces through plasma treatment. Thereby the surface modification of polyester fabrics using atmospheric-pressure air plasma offers a potential way to fabric pretreatment for pigment inkjet printing with the advantages of environmental friendly and energy saving over traditional pretreatment methods. 展开更多
关键词 inkjet printing surface'modified plasma polyester fabric SEM XPS
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Research on the Dyeing Properties of Silk-like Knitted Fabric of Ultra-fine Polyester Fiber 被引量:1
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作者 许瑞超 丁艳瑞 王宏 《Journal of Donghua University(English Edition)》 EI CAS 2005年第2期66-68,共3页
In this paper, dyeing processes of silk-like fabric of ultra-fine polyester fiber are studied through orthogonal experiment, dyeing properties (K/S value, L* value, and C* value) of the fabric are tested under differe... In this paper, dyeing processes of silk-like fabric of ultra-fine polyester fiber are studied through orthogonal experiment, dyeing properties (K/S value, L* value, and C* value) of the fabric are tested under different dyeing conditions (pH value, time, and bath ratlo), and optimum dyeing conditions are arrived at through analysis. 展开更多
关键词 ultra-fine polyester knitted fabric DYEING
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Influence of Polyester Resin Treatment on Jute Fabrics for Geotextile Applications 被引量:1
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作者 Joykrisna Saha Subrata Chandra Das +2 位作者 Mahbubur Rahman Md. Abu Bakar Siddiquee Mubarak Ahmad Khan 《Journal of Textile Science and Technology》 2016年第4期67-80,共14页
In this study, jute woven fabrics (1 × 1 plain, twill, zigzag and diamond weave) were manufactured from 100% raw jute yarn. The fabric specimens were treated by 5%, 10%, 15%, 20% and 25% unsaturated polyester res... In this study, jute woven fabrics (1 × 1 plain, twill, zigzag and diamond weave) were manufactured from 100% raw jute yarn. The fabric specimens were treated by 5%, 10%, 15%, 20% and 25% unsaturated polyester resin where styrene monomer used as a solvent and 1% methyl ethyl ketone peroxide (MEKP) was used as initiator. Two bar pressure was applied for complete wetting of the fabric by a Padder and curing was done at 130?C for 10 minutes. The physico-mechanical characteristics of untreated and treated samples were examined and evaluated. It was revealed that moisture content (MC) and water absorbency of the treated specimens were decreased with the increase of resin percentage (%) in the fabrics. MC and water absorbency were maximum decreased up to 50.23% and 60.14% respectively by 25% resin treatment. On the other hand, bending length (BL), flexural rigidity (FR), flexural modulus (FM) and tensile strength (TS) were enhanced with the increase of resin percentage in the fabrics which resulted higher fabric stiffness. The maximum improvement of BL, FR, FM and TS were found to be 6.67%, 56.04%, 10.57% and 18.75% respectively in comparison to untreated sample. Soil degradation tests exhibited that 33.59% TS loss occurred for untreated specimens where only 8.04% loss of TS found for 25% resin treated one. Furthermore, jute based twill, zigzag and diamond fabrics were also treated by 10%, 15%, 20% and 25% resin, then measured their TS and compared with plain fabrics. It was revealed that plain fabrics have superior TS over other fabrics. It was also evident that TS enhanced for all the fabrics after resin treatment and maximum increase found for all the fabrics up to 25% resin treatment. 展开更多
关键词 Jute Fiber Woven fabrics polyester Resin Tensile Strength GEOTEXTILES
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Development of Superhydrophobic Polyester (Polyethylene terephthalate) Fabric for Multiple Applications 被引量:1
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作者 Subhas Ghosh Roopkatha Pallye 《Non-Metallic Material Science》 2020年第2期1-7,共7页
This study intended to develop a healthy and environmentally friendly super-hydrophobic PET polyester textile fabric using a specific Fluoro Silane finish(SHF).A novel SHF was prepared and applied on a polyester fabri... This study intended to develop a healthy and environmentally friendly super-hydrophobic PET polyester textile fabric using a specific Fluoro Silane finish(SHF).A novel SHF was prepared and applied on a polyester fabric using a pad-dry-cure method.The finished fabric was evaluated for the degree of hydrophobicity,durability and stain repellence.The finished fabric exhibited static water contact angle greater than 170o and received 90 AATCC(4 ISO)rating that is recognized as super-hydrophobicity and this property was maintained even after a 50,000-cycle abrasion test.FTIR analysis identified the characteristic peaks related to Si-O-Si and C-F asymmetric stretching bands of the finish on the fabric indicating a robust attachment on the fabric.Finished fabric did not show any change in appearance or tactile characteristics of the fabric. 展开更多
关键词 polyester fabric Contact Angle Fluoro silane Super hydrophobic Stain repellant
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Recovery of Polyester/Cotton Blended Fabrics by Alkali Dissolution
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作者 ZHANG Yanming ZHANG Na YU Yanping 《Journal of Donghua University(English Edition)》 EI CAS 2019年第5期475-478,共4页
A new type of alkali-soluble polyester/cotton blended yarns was used to knit a compact knitted fabric on a circular weft knitting machine,treated with 5 g/L NaOH solution for 60 min at a temperature of 100℃,and the p... A new type of alkali-soluble polyester/cotton blended yarns was used to knit a compact knitted fabric on a circular weft knitting machine,treated with 5 g/L NaOH solution for 60 min at a temperature of 100℃,and the polyester was completely dissolved.The dissolved polyester could be polymerized again by a polycondensation reaction.After the cotton fibers were opened and combed,the length and mechanical properties of the cotton fibers were tested.The physical and mechanical properties of the separated cotton fibers were good.The chemical structure and crystallinity were analyzed by Fourier transform infrared(FTIR)spectroscopy and X-ray diffraction(XRD)analysis.It could be seen that the chemical structure of cotton fibers was almost unchanged after treatment,and the crystallinity decreased slightly.It provides some reference for the separation and recycling of waste polyester/cotton fabrics. 展开更多
关键词 polyester/COTTON fabric separation and RECOVERY ALKALI DISSOLUTION RECYCLING
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Mathematical Index for Evaluating Disperse Dyes Levelness of Superfine Polyester Fabric
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作者 王晶 董振礼 王宁 《Journal of China Textile University(English Edition)》 EI CAS 2000年第2期61-64,共4页
The dyeing deference between the superfine and the con-ventional polyester fabric is discussed. The major threefactors affecting the level dyeing property of superfinepolyester-initial adsorption rate, desorption rate... The dyeing deference between the superfine and the con-ventional polyester fabric is discussed. The major threefactors affecting the level dyeing property of superfinepolyester-initial adsorption rate, desorption rate andinterface migration rate of dyestuffs at 70℃ are studied.The levelness improves considerably with decreased ini-tial adsorption rate, increased desorption rate and inter-face migration rate. And then a mathematical indexbased on them is established. The evaluation to dispersedyes resulting from it corresponds with their perfor-mance during industrial process. As new definitions, ini-tial adsorption rate and desorption rate of dyestuffs arefirstly introduced. 展开更多
关键词 superfine polyester fabric level DYEING property disperse dye MATHEMATICAL INDEX for EVALUATING LEVELNESS .
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Comparative Study of Polypropylene Non-Woven Surgical Mask and Locally Manufactured Woven and Knitted Fabrics Facial Masks 被引量:1
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作者 Edem Kwami Buami Charles Kumah +2 位作者 Divine Vigbedor Rejoice Makafui Tsotorvor Ruru Pan 《Journal of Textile Science and Technology》 2021年第3期131-141,共11页
The outbreak of coronavirus has led to an increase in the demand for facemasks globally. Unavailability of appropriate polypropylene non-woven fabrics face masks as a result of inadequate supply to satisfy the growing... The outbreak of coronavirus has led to an increase in the demand for facemasks globally. Unavailability of appropriate polypropylene non-woven fabrics face masks as a result of inadequate supply to satisfy the growing population has brought about the manufacturing of locally fabrics masks to augment or substitute standard medical class facemasks. The study aims at analyzing airflow of these locally manufactured fabrics to determine possible means of transmitting the virus as well as establish comfort of the user of these masks. Standard polypropylene non-woven, woven and knitted fabrics were considered for the study. Air permeability test was conducted on these fabrics using Frazier Air permeability tester. Depending on the property significant variation in the textile fabrics, polypropylene non-woven is widely accepted for facial masks. Nevertheless, this study illustrates that woven and knitted fabrics have more open structures, which allow a high rate of air penetration and so may require two or three layers to prevent antimicrobial or antiviral potential. 展开更多
关键词 Polypropylene non-woven fabric Woven fabric Knitted fabric Facial Mask Air Permeability
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A Cell-Based Smoothed Finite Element Method for Modal Analysis of Non-Woven Fabrics
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作者 Nguyen T.Quyen N.Dourado +1 位作者 A.J.P.Gomes F.B.N.Ferreira 《Computers, Materials & Continua》 SCIE EI 2021年第6期2765-2795,共31页
The combination of a 4-node quadrilateral mixed interpolation of tensorial components element(MITC4)and the cell-based smoothed finite element method(CSFEM)was formulated and implemented in this work for the analysis ... The combination of a 4-node quadrilateral mixed interpolation of tensorial components element(MITC4)and the cell-based smoothed finite element method(CSFEM)was formulated and implemented in this work for the analysis of free vibration and unidirectional buckling of shell structures.This formulation was applied to numerous numerical examples of non-woven fabrics.As CSFEM schemes do not require coordinate transformation,spurious modes and numerical instabilities are prevented using bilinear quadrilateral element subdivided into two,three and four smoothing cells.An improvement of the original CSFEM formulation was made regarding the calculation of outward unit normal vectors,which allowed to remove the integral operator in the strain smoothing operation.This procedure conducted both to the simplification of the developed formulation and the reduction of computational cost.A wide range of values for the thickness-to-length ratio and edge boundary conditions were analysed.The developed numerical model proved to overcome the shear locking phenomenon with success,revealing both reduced implementation effort and computational cost in comparison to the conventional FEM approach.The cell-based strain smoothing technique used in this work yields accurate results and generally attains higher convergence rate in energy at low computational cost. 展开更多
关键词 Mindlin-Reissner theory of plates shear-locking gradient/strain smoothing technique non-woven fabric
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Preparation of UV-curable Nano-silver Antimicrobial Agent and Its Application in Non-woven Fabric
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作者 LIU Jina XIN Binjie +1 位作者 CHEN Ting ZHANG Xingqun 《Journal of Donghua University(English Edition)》 EI CAS 2019年第6期527-532,共6页
Nano-silver and waterborne polyurethane(WPU)composite emulsion was synthesized.The average diameter of silver nanoparticles(SNPs)was about 20 nm,and the average diameter of WPU was 101.32 nm.The anti-bacteria finishin... Nano-silver and waterborne polyurethane(WPU)composite emulsion was synthesized.The average diameter of silver nanoparticles(SNPs)was about 20 nm,and the average diameter of WPU was 101.32 nm.The anti-bacteria finishing of a polypropylene non-woven fabric(NWF)was carried out by ultraviolet finishing technology and the double dipping twin-roll method.The standard AATCC100 was used to test the antimicrobial activity of the samples.The results showed that the antimicrobial rates of Klebsiella pneumoniae(K.pneumoniae)and Staphylococcus aureus(S.aureus)were above 90%,which indicated that the NWF finishing had good antimicrobial activity.In addition,the thermal stability,mechanical properties,whiteness and contact angle of antimicrobial finishing nonwovens were characterized.The results showed that the performance of antimicrobial nonwovens was stable at 300℃.The breaking strength was better than that of untreated nonwovens,and the contact angle reached 119.1°. 展开更多
关键词 ultraviolet(UV)-curable WATERBORNE polyurethane(WPU) ANTIBACTERIAL non-woven fabric NANO-SILVER
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Beijing Dayuan Non-woven Fabric Co.Ltd
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《China's Foreign Trade》 1997年第2期39-39,共1页
Situated in the Shilong Industrial District of Mentougou, Beijing, the Beijing Dayuan Non-woven Fabric Co. Ltd is a Sino-foreign joint venture producing non-woven fabrics, set up in 1991.
关键词 HIGH CO Beijing Dayuan non-woven fabric Co.Ltd
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Preparation and Investigation of Mechanical and Physical Properties of Flax/Glass Fabric Reinforced Polymer Hybrid Composites
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作者 Sayed Hasan Mahmud Md. Washim Akram +1 位作者 Md. Fuad Ahmed Md. Atik Bin Habib 《Journal of Textile Science and Technology》 2023年第3期165-182,共18页
Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that... Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that is highly consumed in reinforced composites for its superior mechanical strength. As opposed to that, flax obtained from flax stalks can be used as an alternative reinforcing material with synthetic fibers to minimize manmade fiber consumption. Hence, this research work addresses a few flax/glass-reinforced hybrid composites by using a thermoset polyester matrix. Here, six categories of samples are made, like neat flax, neat glass, and flax/glass fabric reinforced hybrid composite, followed by different stacking layer sequences and hand layout techniques during processing. Afterwards, the mechanical behavior, thermal stability, morphological behavior, and water absorption of hybrid samples were investigated. Among the developed samples, neat glass (NG) composite exhibits superior mechanical properties, while neat flax (NF) shows the lowest result. It is apparent that the mechanical properties and thermal stability of hybrid samples are in between NF and NG because, by adding glass with flax fabric, the strength of hybrid samples is increased. Moreover, it is noticeable that, due to multiple stacking layers of flax and glass, hybrid 3 and hybrid 4 show better strength than consecutive single stacking layers in hybrid 1 and hybrid 2. Among all hybrid composites, the H4 shows comparatively better mechanical and thermal properties due to having the glass layers on the outermost surface. In summary, this research work demonstrated the feasibility of flax fabric with glass fabric as a reinforced hybrid composite that can be used in automobile inner bodies, household furnishing, and home interior decoration. 展开更多
关键词 Flax-Glass fabric Reinforced Composites Mechanical Properties SEM TGA polyester Resin
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Preparation and Investigation of Mechanical and Physical Properties of Flax/Glass Fabric Reinforced Polymer Hybrid Composites
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作者 Sayed Hasan Mahmud Md. Washim Akram +1 位作者 Md. Fuad Ahmed Md. Atik Bin Habib 《Journal of Flow Control, Measurement & Visualization》 2023年第3期165-182,共18页
Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that... Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that is highly consumed in reinforced composites for its superior mechanical strength. As opposed to that, flax obtained from flax stalks can be used as an alternative reinforcing material with synthetic fibers to minimize manmade fiber consumption. Hence, this research work addresses a few flax/glass-reinforced hybrid composites by using a thermoset polyester matrix. Here, six categories of samples are made, like neat flax, neat glass, and flax/glass fabric reinforced hybrid composite, followed by different stacking layer sequences and hand layout techniques during processing. Afterwards, the mechanical behavior, thermal stability, morphological behavior, and water absorption of hybrid samples were investigated. Among the developed samples, neat glass (NG) composite exhibits superior mechanical properties, while neat flax (NF) shows the lowest result. It is apparent that the mechanical properties and thermal stability of hybrid samples are in between NF and NG because, by adding glass with flax fabric, the strength of hybrid samples is increased. Moreover, it is noticeable that, due to multiple stacking layers of flax and glass, hybrid 3 and hybrid 4 show better strength than consecutive single stacking layers in hybrid 1 and hybrid 2. Among all hybrid composites, the H4 shows comparatively better mechanical and thermal properties due to having the glass layers on the outermost surface. In summary, this research work demonstrated the feasibility of flax fabric with glass fabric as a reinforced hybrid composite that can be used in automobile inner bodies, household furnishing, and home interior decoration. 展开更多
关键词 Flax-Glass fabric Reinforced Composites Mechanical Properties SEM TGA polyester Resin
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丙烯酸酯增深剂的制备及在涤纶织物中的应用 被引量:1
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作者 刘小培 王俊伟 +4 位作者 董学亮 张彦昌 靳瑞文 宋跃 李中贤 《印染》 北大核心 2024年第1期57-61,共5页
利用乳液聚合法制备丙烯酸酯增深剂,并用于阿拉伯国家专用黑色涤纶织物增深整理。当增深剂质量浓度为40 g/L,焙烘温度为140℃,焙烘时间为3 min时,整理织物的增深比达39.46%,撕裂强力、耐摩擦和耐皂洗色牢度无明显变化,织物表面被一层颗... 利用乳液聚合法制备丙烯酸酯增深剂,并用于阿拉伯国家专用黑色涤纶织物增深整理。当增深剂质量浓度为40 g/L,焙烘温度为140℃,焙烘时间为3 min时,整理织物的增深比达39.46%,撕裂强力、耐摩擦和耐皂洗色牢度无明显变化,织物表面被一层颗粒状微球组成的膜状物包覆,织物表面C元素质量分数从73.22%减少到70.17%,O元素质量分数从26.78%减少到25.44%,新引入了4.39%N元素。 展开更多
关键词 增深剂 丙烯酸酯 涤纶织物
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中国废旧军服面料回收利用的研究现状及发展前景 被引量:2
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作者 刘洋 姚响 +2 位作者 杨革生 郁秀峰 张耀鹏 《现代纺织技术》 北大核心 2024年第1期119-129,共11页
为促进废旧军服面料的高值化回收利用,总结了国内07式军服的种类及其面料特征,系统分析了目前开纤纺纱法、再生聚酯切片法、涤棉分离技术等废旧军服面料的回收利用方法,并对废旧军服面料回收再利用的发展前景进行展望。分析表明:目前废... 为促进废旧军服面料的高值化回收利用,总结了国内07式军服的种类及其面料特征,系统分析了目前开纤纺纱法、再生聚酯切片法、涤棉分离技术等废旧军服面料的回收利用方法,并对废旧军服面料回收再利用的发展前景进行展望。分析表明:目前废旧军服面料的回收利用主要聚焦于简单再利用或回收涤纶组分制备高值再生聚酯切片,较少关注军服面料中其余组分的高值回收利用。针对废旧军服面料中含量相对较高的涤棉混纺面料,采用有效的涤棉分离技术高效分离涤纶和棉纤维,并以此作为原料分别制备再生聚酯切片和再生溶解浆,进一步以再生棉浆粕为原料制备再生纤维素产品将非常有前景。因而,开发高效的涤棉分离、废旧涤纶和棉纤维的高值化利用技术是实现废旧军服面料综合利用的重要发展方向。 展开更多
关键词 废旧军服 涤棉分离 高值回收利用 再生聚酯切片 再生Lyocell纤维
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抗坏血酸对番茄红素染色性能的影响
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作者 卢声 于颖 +1 位作者 侯江波 宋明姝 《针织工业》 北大核心 2024年第8期42-45,共4页
为研究番茄红素对织物的染色可行性,以抗坏血酸作为色素稳定剂,用番茄红素对涤纶仿真丝织物进行染色试验,并对染色织物的染色牢度进行评价。利用吸光度值讨论抗坏血酸对番茄红素色素稳定性的影响,根据染色织物的K/S值和L^(*)、a^(*)、b^... 为研究番茄红素对织物的染色可行性,以抗坏血酸作为色素稳定剂,用番茄红素对涤纶仿真丝织物进行染色试验,并对染色织物的染色牢度进行评价。利用吸光度值讨论抗坏血酸对番茄红素色素稳定性的影响,根据染色织物的K/S值和L^(*)、a^(*)、b^(*)值研究了染色织物的染色性能,并测定染色织物的色牢度。结果表明:抗坏血酸能提高番茄红素色素的稳定性,对番茄红素起到护色作用;在染色过程中,抗坏血酸的加入能提高染色织物的K/S值,但过量的加入并不能起到增深的作用;染色织物具有一定的色牢度。 展开更多
关键词 番茄红素 抗坏血酸 涤纶织物 染色
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涤纶织物分散荧光黄染色及易去污整理
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作者 杨宏林 郏奎宇 +1 位作者 项伟 陈慧媛 《印染》 北大核心 2024年第1期48-51,56,共5页
为了改善荧光黄染色涤纶织物的易去污性,以色度坐标和亮度因子β为指标,优化染色工艺和易去污整理工艺。结果表明,荧光黄10G对涤纶织物最佳染色工艺条件为:染料质量分数1.0%(omf),染浴pH为5,染色温度130℃,染色时间40 min;最佳易去污整... 为了改善荧光黄染色涤纶织物的易去污性,以色度坐标和亮度因子β为指标,优化染色工艺和易去污整理工艺。结果表明,荧光黄10G对涤纶织物最佳染色工艺条件为:染料质量分数1.0%(omf),染浴pH为5,染色温度130℃,染色时间40 min;最佳易去污整理工艺为:整理剂质量浓度40 g/L,焙烘温度150℃,焙烘时间60 s。整理后的涤纶织物经10次洗涤后易去污性仍达4级,经30次洗涤后其荧光性能仍可满足相关标准要求,且耐皂洗色牢度和耐摩擦色牢度均达到4级以上。 展开更多
关键词 染色 易去污整理 分散荧光染料 涤纶织物
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