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Abdullahi Olawale Masud - One of the best experts on this subject based on the ideXlab platform.
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Development of natural polymer reinforced cement/waste Paper pulp composites for structural application
AcademicDirect, 2018Co-Authors: Isiaka Oluwole Oladele, Araka Abiodu Isola, Samuel Anuoluwapo Taiwo, Ibrahim Ogie Ibrahim, Abdullahi Olawale MasudAbstract:This work investigates the influence of white cow hair as reinforcement in Cement/Waste Paper pulp matrix for structural applications. Cow hairs as natural polymer, were sourced from an abattoir, and washed properly in clean water and sun dried for 5 days. Paper pulp was prepared by first soaking waste Paper in water for 3 days, after which it was grinded in the Paper pulp machine to Form Paper pulp slurry and then sun dried for 5 days. The cow hair after cutting to 10 mm lengths, were thoroughly mixed with the dried Paper pulp to develop composite samples of varied weight content using the open mould technique by adding appropriate quantity of cement as binder. The developed composite samples were allowed to cure in air in the laboratory for 27 days before testing. The results of the mechanical properties examined showed that sample S5 containing (80 wt. % Paper pulp, 10 wt.% cement and 10 wt.% cow hair) has the best flexural and compressive properties while sample denoted as S4 has the best water absorption property
Preeti Nandkumar - One of the best experts on this subject based on the ideXlab platform.
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lignin from soda liquor and soda anthraquinone liquor of ipomoea carnea jacq
2009Co-Authors: Preeti NandkumarAbstract:Non wood plant are more common as raw material where wood is scarce. Ipomoea carnea Jacq has not enjoyed much favor for pulp and Paper making as compared to wheat straw, rice straw etc. Structural determination studies has been carried out on the soda lignin of Ipomoea carnea Jacq prepared from soda spent liquor and soda anthraquinone spent liquor. Lignin of the non wood species investigated was found to have certain chemical groups such as carbonyl, methoxyl, total hydroxyl and phenolic hydroxyl groups. On comparing the results, the reactive groups were found to be same to that of Boswellia Serrata. Determination of groups is of importance in the study of the reactive lignin Form Paper making point of view. It was found that Ipomoea Carnea is having Paper making properties.
Isiaka Oluwole Oladele - One of the best experts on this subject based on the ideXlab platform.
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Development of natural polymer reinforced cement/waste Paper pulp composites for structural application
AcademicDirect, 2018Co-Authors: Isiaka Oluwole Oladele, Araka Abiodu Isola, Samuel Anuoluwapo Taiwo, Ibrahim Ogie Ibrahim, Abdullahi Olawale MasudAbstract:This work investigates the influence of white cow hair as reinforcement in Cement/Waste Paper pulp matrix for structural applications. Cow hairs as natural polymer, were sourced from an abattoir, and washed properly in clean water and sun dried for 5 days. Paper pulp was prepared by first soaking waste Paper in water for 3 days, after which it was grinded in the Paper pulp machine to Form Paper pulp slurry and then sun dried for 5 days. The cow hair after cutting to 10 mm lengths, were thoroughly mixed with the dried Paper pulp to develop composite samples of varied weight content using the open mould technique by adding appropriate quantity of cement as binder. The developed composite samples were allowed to cure in air in the laboratory for 27 days before testing. The results of the mechanical properties examined showed that sample S5 containing (80 wt. % Paper pulp, 10 wt.% cement and 10 wt.% cow hair) has the best flexural and compressive properties while sample denoted as S4 has the best water absorption property
Brock Philippa - One of the best experts on this subject based on the ideXlab platform.
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X-Form
2012Co-Authors: Brock PhilippaAbstract:The X-Form series of 2D-3D woven textiles developed by Brock is based on the systematic exploration of on-loom combinations of x-Form Paper folding and the use of smart yarns in the weft of the fabric. The 3D folding/engineering properties of the woven structures of the fabric are visually enhanced through the light-changing properties of smart yarns which change significantly in different UV light conditions. The smart yarns are florescent and phosphorescent, emitting light and changing colour without the incorporation of LEDs, fibre optics or other fibres that require an external power source. The x-Formed works continue Brock’s research into digital industrially woven self-folding textiles (the ‘Self Fold’ series) which self-Form into 3D immediately as they come off loom. Her work reveals how 3D textiles can be created directly off loom without the need for unsustainable post-weave finishing processes. Brock’s X-Form fabrics are developed and manufactured industrially on a Dataweave Jacquard loom; thus her weave structures can be transferred to commercial applications. The X-Form series was developed for Brock’s solo exhibition, ‘2D-3D’, at the Montreal Centre for Contemporary Textiles, Canada 2012, and subsequently featured in ‘Digital Jacquard Mythologies’ at the Institute of Textiles and Clothing, Hong Kong Polytechnic University 2013, Shenzhen Modern Design Museum, China 2013 and The China National Silk Museum’s ‘First Hangzhou Triennial of Fibre Art’ 2013
Ibrahim Ogie Ibrahim - One of the best experts on this subject based on the ideXlab platform.
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Development of natural polymer reinforced cement/waste Paper pulp composites for structural application
AcademicDirect, 2018Co-Authors: Isiaka Oluwole Oladele, Araka Abiodu Isola, Samuel Anuoluwapo Taiwo, Ibrahim Ogie Ibrahim, Abdullahi Olawale MasudAbstract:This work investigates the influence of white cow hair as reinforcement in Cement/Waste Paper pulp matrix for structural applications. Cow hairs as natural polymer, were sourced from an abattoir, and washed properly in clean water and sun dried for 5 days. Paper pulp was prepared by first soaking waste Paper in water for 3 days, after which it was grinded in the Paper pulp machine to Form Paper pulp slurry and then sun dried for 5 days. The cow hair after cutting to 10 mm lengths, were thoroughly mixed with the dried Paper pulp to develop composite samples of varied weight content using the open mould technique by adding appropriate quantity of cement as binder. The developed composite samples were allowed to cure in air in the laboratory for 27 days before testing. The results of the mechanical properties examined showed that sample S5 containing (80 wt. % Paper pulp, 10 wt.% cement and 10 wt.% cow hair) has the best flexural and compressive properties while sample denoted as S4 has the best water absorption property