Literatura académica sobre el tema "Jute fabric"
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Artículos de revistas sobre el tema "Jute fabric"
Neaz Morshed, Zakaria Ahmed, Ashraful Alam, Taslima Rahman, Pulak Talukder y Mohammad Maniruzzaman. "Application of basic dyes on Hessian jute fabrics and its fastness analyses". International Journal of Science and Research Archive 7, n.º 2 (30 de noviembre de 2022): 234–37. http://dx.doi.org/10.30574/ijsra.2022.7.2.0272.
Texto completoÖktem, Mehmet y Bahadir Aydaş. "Flame retardant characteristics of polymerized dopamine hydrochloride coated jute fabric and jute fabric composites". Journal of the Serbian Chemical Society, n.º 00 (2021): 63. http://dx.doi.org/10.2298/jsc210408063o.
Texto completoAkter, Shilpi, Mohammad Abdul Motalab y Maksud Helali. "EFFECT OF MECHANICAL CRIMP OF JUTE FIBRE ON THE THERMAL PROPERTIES OF WOVEN FABRICS". Fibres and Textiles 29, n.º 1 (marzo de 2022): 3–9. http://dx.doi.org/10.15240/tul/008/2022-1-001.
Texto completoRajesh, M., Savendra P. Singh y Jeyaraj Pitchaimani. "Mechanical behavior of woven natural fiber fabric composites: Effect of weaving architecture, intra-ply hybridization and stacking sequence of fabrics". Journal of Industrial Textiles 47, n.º 5 (25 de noviembre de 2016): 938–59. http://dx.doi.org/10.1177/1528083716679157.
Texto completoKhatton, Ayesha, M. Nurul Islam, Mubarak Hossen, Jahid Sarker, Helena Akhter Sikder y A. M. Sarwaruddin Chowdhury. "Development of Water Repellency on Jute Fabric by Chemical Means for Diverse Textile Uses". Saudi Journal of Engineering and Technology 7, n.º 3 (10 de marzo de 2022): 128–31. http://dx.doi.org/10.36348/sjet.2022.v07i03.002.
Texto completoSingh, Sukhvir y Rishi Raj Kapoor. "Acoustic Characteristics of Woven Jute Fabric". Textile & Leather Review 5 (22 de noviembre de 2022): 497–508. http://dx.doi.org/10.31881/tlr.2022.61.
Texto completoBasak, S., Kartick K. Samanta, S. K. Chattopadhyay, S. Das, R. Narkar, C. Dsouza y A. H. Shaikh. "Flame Retardant and Antimicrobial Jute Textile Using Sodium Metasilicate Nonahydrate". Polish Journal of Chemical Technology 16, n.º 2 (26 de junio de 2014): 106–13. http://dx.doi.org/10.2478/pjct-2014-0039.
Texto completoDebnath, Sanjoy y Manicavasagom Madhusoothanan. "Compression creep behaviour of jute-polypropylene blended needle-punched nonwoven". Textile Research Journal 82, n.º 20 (11 de julio de 2012): 2116–27. http://dx.doi.org/10.1177/0040517512445336.
Texto completoNahar, Kamrun, Shurfun Nahar Arju, Jannatul Ferdush, Marzia Islam y Tarifun Akter. "Colorimetric Analysis and Fastness Properties of Jute Fabric Dyed with Eucalyptus Leaves". TEKSTILEC 63, n.º 3 (28 de septiembre de 2020): 195–202. http://dx.doi.org/10.14502/tekstilec2020.63.195-202.
Texto completoSudha, S. y G. Thilagavathi. "Analysis of electrical, thermal and compressive properties of alkali-treated jute fabric reinforced composites". Journal of Industrial Textiles 47, n.º 6 (22 de febrero de 2017): 1407–23. http://dx.doi.org/10.1177/1528083717695840.
Texto completoTesis sobre el tema "Jute fabric"
Douglas, Helen. "Emergence of Donald Brothers as manufacturers of decorative fabrics : (the feel for rugged texture)". Thesis, University of Edinburgh, 1997. http://hdl.handle.net/1842/9675.
Texto completoSegura, Alcaraz María del Pilar. "Empleo de textiles en aplicaciones de absorción sonora". Doctoral thesis, Universitat Politècnica de València, 2021. http://hdl.handle.net/10251/159786.
Texto completo[CAT] Aquesta memòria de tesi presenta una contribució a l'estudi dels materials tèxtils en el camp de l'absorció sonora. En concret, s'hi ha treballat amb l'associació d'una capa absorbent fibrosa constituïda per un no teixit de polièster i una capa resistiva a base de teixit de calada de composició polièster. L'objectiu d'aquest treball consisteix a avaluar les variacions que provoquen els canvis en diferents paràmetres de construcció de la capa resistiva, sobre el comportament del conjunt davant el so. Per a abordar el problema s'empren diferents teixits de calada, com ara teles simples, múltiples, encoixinats i ris, amb diferents paràmetres de construcció. Es mesura el coeficient d'absorció en aplicarles a diferents grossàries de no teixit de polièster, emprant el tub d'ones estacionàries. S'observen diferències en els coeficients d'absorció de so obtinguts, les quals s'expliquen atenent la grossària del no teixit, però també a les característiques constructives dels teixits emprats. Finalment, s'empra el disseny d'experiments per a obtenir la combinació òptima de paràmetres que proporciona el major coeficient d'absorció de so per a un tipus de teixit donat en totes les freqüències estudiades. Es conclou que la modificació en l'absorció de so d'un no teixit en aplicar una capa resistiva de teixit de calada és prou significativa per a ser tinguda en compte a l'hora de dissenyar productes tèxtils per a condicionament acústic i que el disseny d'experiments constitueix una eina de gran utilitat a aquest efecte.
[EN] This thesis report presents a contribution to the study of textile materials in the field of sound absorption. Specifically, we have worked with the association of a fibrous absorbent layer consisting of a polyester nonwoven and a resistive layer based on openwork fabric. The objective of this work is to evaluate the variations that cause the changes in different construction parameters of the resistive layer, on the behaviour of the whole before the sound. To address the problem, different openwork fabrics are used, such as single, multiple, quilted and curl fabrics, with different construction parameters. The absorption coefficient is measured when applied to different thicknesses of polyester nonwoven, using the standing wave tube. Differences are observed in the sound absorption coefficients obtained, which are explained according to the thickness of the nonwoven, but also to the constructive characteristics of the fabrics used. Finally, the design of experiments is used to obtain the optimal combination of parameters that provides the highest sound absorption coefficient for a given type of tissue at all frequencies studied. It is concluded that the modification in the sound absorption of a nonwoven when applying a resistive layer of openwork fabric is significant enough to be taken into account when designing textual products for acoustic conditioning and that the design of experiments constitutes a very useful tool for this purpose.
Al departamento de Ingeniería Textil y Papelera y a la unidad docente de Alcoy del departamento de Mecánica de los Medios Continuos y Teoría de Estructuras, por facilitarme los medios necesarios para realizar todas las actividades que han sido necesarias. A Jaime Ramis Soriano, por recibirme en el laboratorio de Grupo de Acústica Aplicada del IUFACyT de la Universidad de Alicante.
Segura Alcaraz, MDP. (2020). Empleo de textiles en aplicaciones de absorción sonora [Tesis doctoral]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/159786
TESIS
Capasso, Valentina. "Tractent fabrilia fabri : du juge "expert" au "jugement" des experts ?" Thesis, Lyon, 2020. http://www.theses.fr/2020LYSE3004.
Texto completoIn order to face the crisis of the justice system, the legislator has always reacted by modifying the codes, but the economic analysis shows the inadequacy of the procedural reforms. Indeed, the goals mainly pursued by the legislator (reduction of the demand for justice and acceleration of the trial) by changing the rules of the game are often ignored because, among other things, of the strategic behaviour of the actors of the trial.The only area which reveals still unexploited potentialities is that of judge’s specialization; but specialization, both legal and epistemic, encounters strong cultural resistance, probably related to the judge's sociological and legal image, which has been built and consolidated over time. It is the image of a superman, hidden from passions and cognitive prejudices and, above all, omniscient: hence, the idea that iura novit curia and that the judge is peritorum peritum.The research conducted here, however, aims to show the distance between these adages and reality and that the provisions of the law, shaped on the basis of this ideal image, end up being distorted, if not ignored; often at the expense (of at least one) of the parties. For these reasons, it is suggested that the focus of the discipline should be transferred from the trial to the judge; but this shift implies, on the one hand, the need to understand the latter as a man, thus relying on interdisciplinary research; on the other, a revision of the selection procedures of the magistrate's person
Su, Shihkai y 蘇勢凱. "Microbiological Resistance Properties of Geosynthetics and a Jute Fabric". Thesis, 2012. http://ndltd.ncl.edu.tw/handle/94252161035529598655.
Texto completo國立屏東科技大學
土木工程系所
101
A commercial organic soil was used to conduct the bio-degradation tests of several geosynthetics and a natural textile. The EN 12225 standard test method was adopted to evaluate the bio-degradation resistance of several natural and synthetic textiles. The bio-active soil criterion is the test cotton fabric should reduce 75% of its tensile strength after 7 days after burial within the test bio-active soil under controlled humidity and temperature conditions. The cotton fabric strength reduction, test materials and the most probable number (MPN) for total bacteria and fungi test count were evaluated for each incubation period. The test materials included the natural jute temporary erosion control mat (TECM), a reinforced polypropylene permanent erosion control mat (PECM), a polypropylene silt film geotextile, a black and white PP multi-filament woven geotextile, a reinforced polyester nonwoven geotextile, and a PVC coated polyester geogrid. After 14-days incubation the strength of the natural jute fabric was unable to determine. Only 1.3% to 14.7% strength reductions were determined for the tested geosynthetic materials for 112-day incubation. Generally, the MPN values increased as the strength of the test geosynthetics decreased. The total amount of bacteria was generally higher than that for fungi for the test soil.
Li, Jia-Sheng y 李佳聲. "Mechanical Characteristics of Jute Rope Plain Fabric Reinforced Polylactic Acid Composites". Thesis, 2013. http://ndltd.ncl.edu.tw/handle/28736103634876340404.
Texto completo萬能科技大學
材料科學與工程研究所
101
The main objective of this thesis was to study the mechanical characteristics of jute plain fabric reinforced Polylactic acid(PLA) composites. A ropes braiding machine was used to braid the jute yarns to get jute ropes. The ropes were used as weft and warp yarns, which supplied to a weaving loom, to fabricate reinforced fabrics. Finally, the fabrics are plain woven construction. In this study, the jute fiber ropes were treated in sodium hydroxide to clearn the reinforced fabrics. The mechanical properties of jute ropes before and after sodium hydroxide treatment were study in the current study. The treated factors, concentration of sodium hydroxide solution and time for heating as composite manufacturing, are discussed in detail. A hot-press machine was used to made the jute rope plain fabric/PLA composites. The tensile, compressive and flexural characteristics of the composites are evaluated by a material test system(MTS810). In addition, the impact properties were investigated by an Izod impacting machine. The failure phenomenon of the composites were, also, discussed, in the current experiment. 3D interlock/PLA composites are, also, made as referred materials. Experimental results show that the jute rope plain fabric/PLA composites have good tensile, compressive, bending and impacting properties, especially in break stress and energy absorption.
LOCCARINI, FEDERICA. "Behaviour of rammed earth structures: sustainable materials and strengthening techniques". Doctoral thesis, 2017. http://hdl.handle.net/2158/1087522.
Texto completoHsu, Chih-Chieh y 許智傑. "Mechanical Properties of Jute Fabrics Composite Materials". Thesis, 2011. http://ndltd.ncl.edu.tw/handle/71885828972776019477.
Texto completo萬能科技大學
材料科技研究所
99
The effects of fabric structures on the mechanical properties of jute fabrics reinforced composites were reported in the current thesis. Four composites (plain jute fabric reinforced epoxy resin, 3D orthogonal jute fabric reinforced epoxy resin, plain jute fabric reinforced polylactic acid resin and 3D orthogonal jute fabric reinforced polylactic acid resin) were developed to estimate the mechanical characteristics of the composites. The hand lay-up and molding assistant manufacturing techniques were used to make the thermoset composites. The impregnated fabrics were heated and pressed onto a hot press machine to cure the composites. For thermoplastic composites, resin film method and hot press with mold were used to produce the 2D plain and 3D orthogonal jute fabrics reinforced PLA composites. A material test system (MTS810) was used to characterize the tensile, compressive and bending properties of the composites. Furthermore, an IZOD impacting instrument was used to examine the impacting energy absorption of the composites. The failure phenomenon of the composites was, also, discussed, in this study. The 2D plain and 3D orthogonal jute fabrics enhanced the tensile properties of the epoxy and PLA composites. The tensile modulus of 2D jute fabric/epoxy composites was 26.6% higher than that of pure epoxy sample. The 3D orthogonal jute fabric/epoxy composite was slightly higher (15.2%) than that of pure epoxy sample in tensile modulus. For thermoplastic composites, both 2D plain jute fabric/PLA and 3D orthogonal jute fabric/PLA composites have good tensile properties. In addition, the 2D plain jute fabric/epoxy and 3D orthogonal jute fabric/epoxy composites possessed the equivalent potential to resist bending force. Especially, the 2D plain jute fabric/PLA composite exhibits 50.4% higher flexural modulus than that of 3D orthogonal jute fabric/PLA composites. Both the 2D and 3D reinforcements increase the energy absorption capacity of the thermoset and thermoplastic matrix while impacting test.
Liu, Ya-Shin y 劉雅馨. "Mechanical Properties of Braided Jute/Polypropylene Fabrics Reinforced Epoxy Composites". Thesis, 2011. http://ndltd.ncl.edu.tw/handle/18557376547703416766.
Texto completo萬能科技大學
材料科技研究所
99
The main objective of this thesis was to study the mechanical characteristics of Jute/Polypropylene braided fabric reinforced epoxy composites. A tubular braiding machine was used to braid the jute yarns and polypropylene (PP) yarns to get hybrid jute/PP tapes. The tapes were, then, used as weft and warp yarns, which supplied to a weaving loom, to fabricate reinforced fabrics. The fabrics are plain woven construction. Three reinforced fabrics (braided jute tape plain fabric, braided polypropylene tape plain fabric and co-braid jute/polypropylene tape plain fabric) had been developed in this experiment. After finished the weaving procedure, the produced fabrics impregnated with epoxy resin to get the braided tape fabrics reinforced composites. The co-braid jute/polypropylene tape plain fabrics were, also, heated and pressed onto a hot-press machine to fabricate thermoplastic composites. A material test system was used to study the tensile, compressive and flexural properties of the composites. In addition, the iMPact properties were evaluated by an Izod iMPacting machine. The failure phenomenon of the composites was, also, discussed, in the current experiment. Experimental results revealed that the co-braid structure of Jute/PP fabric improved the compressive resistance of the composites. Furthermore, adding PP braided reinforced fabrics increases composites toughness and yields better energy absorption in coMParison with pure epoxy sample.
Lin, Zi-Jie y 林子傑. "Effect of Surface Treatment on the Mechanical Properties of Jute / Carbon Rope Plain Fabrics Reinforced Thermoplastic and Thermoset Composites". Thesis, 2014. http://ndltd.ncl.edu.tw/handle/65855398113203017815.
Texto completo萬能科技大學
材料科學與工程研究所
102
The main objective of the thesis was to study the effect of mechanical characteristics of various surface treatments on jute/carbon braid ropes plain fabric reinforced polylactic acid (PLA) and epoxy composites. Two types of, pure jute rope and co-braid jute/carbon rope, were braided by a circular rope braiding machine. Where, the weight ration of jute fiber to carbon fiber on the co-braid jute/carbon ropes are 75/25 and 50/50 respectively, The ropes were used to make reinforced fabrics with a plain construction by a dobby looms. Boiling water, sodium hydroxide, and sodium hydroxide/bleach water/glacisl acetic acid are used to treat the reinforced fabrics. The treaed fabrics are reinforced PLA and epoxy composites on a hot-pressure machine. In this study, tensile, compressive, and flexural characteristics of the composites are evaluated by a material test system (MTS 810). In addition, the impact properties were investigated by an Izod impacting machine. The failure phenomenon of the composites were, also, discussed, in the current experiment. Experimental results show that sodium hydroxide/bleach water/glacial acetic acid treatment can get a bleach effect for fiber braid ropes and plain fabrics. Adding jute rope plain fabrics into matrix, (PLA and epoxy) improves mechanical properties of composites. Also, the jute/carbon cobraid ropes nave a better reinforced effect. Especially, after sodium hydroxide/bleach water/glacial acetic acid treatment, the tensile modulus increasing 59.57% and 65.83% for co-braided jute/carbon ropes which have 12K and 36K carbon fiber fabrics reinforced PLA composites, respectively. On the other hand, the tensile modulus increasing 56.81% and 67.03% for co-braided jute/carbon ropes, and jute/36K carbon ropes fabrics reinforced epoxy composites, respectively.
Libros sobre el tema "Jute fabric"
Aschenbeck, Nils. Die "Jute" in Delmenhorst: Erste Fabrik zwischen Weser und Ems. Delmenhorst: Rieck, 1999.
Buscar texto completoInstitute, Textile. Proceedings Narrow Fabrics Group conference, 11 June 1994, Derby. Manchester: Textile Institute, 1994.
Buscar texto completoInternational, Industrial Fabrics Association, ed. Geotechnical fabrics conference '85: June 4-5 1985 Cincinnati OH. St Paul: Industrial Fabrics Association International, 1985.
Buscar texto completoInstitute, Textile. Narrow fabrics group conference proceedings, Saturday 8 June 1996, University of Derby. Manchester: Textile Institute, 1995.
Buscar texto completoSpink & Son., ed. Selvage to selvage: Textiles from East to West : an exhibition for sale Wednesday 10th of June to Friday 10th July 1998. London: Spink, 1998.
Buscar texto completoAmerican Institute for Conservation of Historic and Artistic Works Meeting. Proceedings of the Paintings and Textiles Specialty Groups: Joint session, Thursday, June 6th, 1991. Washington, D.C: American Institute for Conservation of Historic and Artistic Works, 1991.
Buscar texto completoWeston, Wendy. First Nations: Fine weavers : Burlington Art Centre, April 20-June 22, 1997, Woodland Cultural Centre, August 3-31, 1997. [Burlington, Ont.]: Burlington Art Centre, 1997.
Buscar texto completoCroatia) World Textile Conference (12th 2012 Zadar. Book of proceedings: Innovative textile for high future demands : 12th World Textile Conference AUTEX 2012, 13th - 15th June 2012, Zadar, Croatia ; organized by the University of Zagreb, Faculty of Textile Technology. Zagreb: Faculty of Textile Technology, University of Zagreb, 2012.
Buscar texto completoMuseum, San Francisco Crafts and Folk Art. Textiles of old Japan: Color and dye : [exhibition] April 16-June 8, 1986. San Francisco, Calif: The Museum, 1986.
Buscar texto completocurator, Adjaye David 1966 y Brown Susan 1965 compiler, eds. David Adjaye selects: Works from the permanent collection : June 19, 2015-February 7, 2016. New York, NY: Cooper Hewitt, 2015.
Buscar texto completoCapítulos de libros sobre el tema "Jute fabric"
Russo, Pietro, Giorgio Simeoli, Valentina Lopresto, Antonio Langella y Ilaria Papa. "Environmental Friendly Thermoplastic Composite Laminates Reinforced with Jute Fabric". En Advances in Natural Fibre Composites, 119–26. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-64641-1_11.
Texto completode Assis, Foluke S., Artur C. Pereira, Fábio O. Braga y Sergio Monteiro. "Charpy Toughness Behavior of Jute Fabric Reinforced Polyester Matrix Composites". En Characterization of Minerals, Metals, and Materials 2017, 601–6. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-51382-9_66.
Texto completode Assis, Foluke S., Artur C. Pereira y Sergio N. Monteiro. "Flexural Mechanical Characterization of Polyester Composites Reinforced with Jute Fabric". En The Minerals, Metals & Materials Series, 529–34. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-72484-3_56.
Texto completoLee, Shyue Leong, Mohammad Abdul Mannan, Ivonson Kwee y Chiang Chong Kian. "Performance of Jute Fabric-Reinforced Polymer Concrete as Permanent Formwork". En Lecture Notes in Civil Engineering, 279–88. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-6403-8_23.
Texto completode Assis, Foluke S., Artur C. Pereira, Fábio O. Braga y Sergio N. Monteiro. "Izod Impact Tests in Polyester Matrix Composites Reinforced with Jute Fabric". En Proceedings of the 3rd Pan American Materials Congress, 373–78. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-52132-9_38.
Texto completoMonteiro, Sergio N., Frederico M. Margem, Glenio F. Daniel, Vinícius O. Barbosa, André R. Gomes y Victor B. de Souza. "The Dimensional Characterization of Jute Fabric Strips for Reinforcement in Composite Polymeric". En Characterization of Minerals, Metals, and Materials 2017, 33–40. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-51382-9_5.
Texto completoMaharshi, Kumar y Shivdayal Patel. "Experimental and Statistical Analysis of the Jute Fabric Composites Under Tensile Loading". En Lecture Notes in Mechanical Engineering, 124–32. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-16-9523-0_15.
Texto completode Almeida Machado, José Gustavo, Juliana Peixoto Rufino Gazem de Carvalho, Anna Carolina Cerqueira Neves, Felipe Perissé Duarte Lopes, Sérgio Neves Monteiro y Carlos Mauricio Fontes Vieira. "Charpy Impact Test of Polymer Composites with Epoxy Resin Reinforced Jute Fabric". En Green Materials Engineering, 203–7. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-10383-5_23.
Texto completoSamanta, Ashis Kumar, Reetuparna Bhattacharyay, Arindam Bagchi y Ranjana Chowdhuri. "Statistical Optimisation of Nano-Zinc Oxide-Based Fire-Protective Finish on Jute Fabric". En Functional Textiles and Clothing, 167–91. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-7721-1_15.
Texto completode Almeida Machado, José Gustavo, Juliana Peixoto Rufino Gazem de Carvalho, Anna Carolina Cerqueira Neves, Felipe Perissé Duarte Lopes, Sérgio Neves Monteiro y Carlos Mauricio Fontes Vieira. "Impact Energy Evaluation of Natural Castor Oil Polyurethane Matrix Composites Reinforced with Jute Fabric". En Green Materials Engineering, 63–68. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-10383-5_7.
Texto completoActas de conferencias sobre el tema "Jute fabric"
Yu, Ying, Shinichiro Kawabata, Yuqiu Yang y Hiroyuki Hamada. "Effect of Hot Water Immersion on the Mechanical Properties of Jute and Jute Hybrid Reinforced Composites". En ASME 2011 International Mechanical Engineering Congress and Exposition. ASMEDC, 2011. http://dx.doi.org/10.1115/imece2011-62823.
Texto completoTanaka, K., H. Miyabe, T. Katsura, T. Katayama y K. Uno. "Impact property of jute fabric reinforced PLA composites". En HPSM 2010. Southampton, UK: WIT Press, 2010. http://dx.doi.org/10.2495/hpsm100201.
Texto completoKatayama, T., K. Tanaka, T. Murakami y K. Uno. "Compression moulding of jute fabric reinforced thermoplastic composites based on PLA non-woven fabric". En HIGH PERFORMANCE STRUCTURES AND MATERIALS 2006. Southampton, UK: WIT Press, 2006. http://dx.doi.org/10.2495/hpsm06017.
Texto completoGupta, Nirjhar, Amit Vishwakarma, A. K. Jain y P. Asokan. "Fully bio-degradable jute fabric reinforced polylactic acid composite for architectural application". En PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON SUSTAINABLE MATERIALS AND STRUCTURES FOR CIVIL INFRASTRUCTURES (SMSCI2019). AIP Publishing, 2019. http://dx.doi.org/10.1063/1.5127160.
Texto completoSurya, D. P., A. M. Munirah, S. S. Alamelu, J. C. H. Lau y J. Wei. "Mechanical and Thermal Properties of Jute-Glass Fiber Reinforced Nano Composites". En ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-86633.
Texto completoTanaka, K., T. Katsura, Y. Kinoshita, T. Katayama y K. Uno. "Mechanical properties of jute fabric reinforced thermoplastic moulded by high-speed processing using electromagnetic induction". En HPSM 2008. Southampton, UK: WIT Press, 2008. http://dx.doi.org/10.2495/hpsm080231.
Texto completoLiao, Mengyuan, Yuqiu Yang, Ying Yu y Hiroyuki Hamada. "Hydrothermal Ageing Mechanism of Natural Fiber Reinforced Composite in Hot Water". En ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-87314.
Texto completoHossain, Mohammad K., Mohammad W. Dewan, Muhammad E. Hossain, Mahesh Hosur y Shaik Jeelani. "Interfacial Improvement of Nanophased Jute-Based Green Composite by Surface Modification". En ASME 2010 International Mechanical Engineering Congress and Exposition. ASMEDC, 2010. http://dx.doi.org/10.1115/imece2010-39365.
Texto completoSiciliano, Bruno M., Gabriel Furtado, Lucca de C. Fontolan y Saulo R. Ferreira. "DEVELOPMENT OF CEMENT- BASED MATRIX COMPOSITES REINFORCED WITH TREATED JUTE FABRICS USING THE POLYMER STYRENE-BUTADIENE". En Brazilian Conference on Composite Materials. Pontifícia Universidade Católica do Rio de Janeiro, 2018. http://dx.doi.org/10.21452/bccm4.2018.02.13.
Texto completoJIANG, LAI, ANANDA S. AMARASEKARAQUINTEN D. JACKSON, QUINTEN D. JACKSON y DEPING WANG. "MECHANICAL PROPERTIES OF THE WOVEN NATURAL FIBER REINFORCED SHEET STOCKS USED FOR THE LAMINATED OBJECT MANUFACTURING (LOM) RAPID PROTOTYPING PROCESS". En Thirty-sixth Technical Conference. Destech Publications, Inc., 2021. http://dx.doi.org/10.12783/asc36/35915.
Texto completoInformes sobre el tema "Jute fabric"
Miller, S. J. Flue gas conditioning for fabric filter performance improvement: Quarterly technical progress report, April--June, 1989. Office of Scientific and Technical Information (OSTI), enero de 1989. http://dx.doi.org/10.2172/5801090.
Texto completoWeber, G. F., S. R. Ness, D. L. Laudal y G. E. Dunham. Catalytic fabric filtration for simultaneous NO{sub x} and particulate control. Quarterly technical progress report, April 1--June 30, 1993. Office of Scientific and Technical Information (OSTI), agosto de 1993. http://dx.doi.org/10.2172/10103384.
Texto completoWeber, G. F., S. R. Ness, D. L. Laudal y G. Dunham. Catalytic fabric filtration for simultaneous NO{sub x} and particulate control. Quarterly technical progress report, April 1--June 30, 1992. Office of Scientific and Technical Information (OSTI), agosto de 1992. http://dx.doi.org/10.2172/10183749.
Texto completoChang, R., J. Sawyer y H. Lips. [Performance evaluation of fabric bag filters on a bench-scale coal gasifier]. Quarterly technical progress report, April 1, 1985--June 30, 1985. Office of Scientific and Technical Information (OSTI), julio de 1985. http://dx.doi.org/10.2172/10163305.
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