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Flexural performance of glass fiber ...
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Hanafi, Wemphy.
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Flexural performance of glass fiber reinforced composite sandwich panels.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Flexural performance of glass fiber reinforced composite sandwich panels./
作者:
Hanafi, Wemphy.
面頁冊數:
70 p.
附註:
Adviser: Shashi S. Marikunte.
Contained By:
Masters Abstracts International45-06.
標題:
Applied Mechanics. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1444440
ISBN:
9780549034414
Flexural performance of glass fiber reinforced composite sandwich panels.
Hanafi, Wemphy.
Flexural performance of glass fiber reinforced composite sandwich panels.
- 70 p.
Adviser: Shashi S. Marikunte.
Thesis (M.S.)--Southern Illinois University at Carbondale, 2007.
Glass fiber reinforced cement composites are ideal to develop lightweight sandwich panels. However, the maximum size of the sandwich panel that can be produced without compromising the performance is limited, since larger panel results in thicker face. To overcome this limitation the sandwich panel has to be properly engineered by strategically providing ribs to achieve composite action. In this experimental investigation several approaches were taken to produce glass fiber reinforced cement (GFRC) sandwich panel. GFRC ribs were also incorporated at strategic location to achieve composite action. Combination of continuous mesh reinforcement and chopped fibers were tested for their effectiveness in improving performance of sandwich panels. The plain cement matrix of composite was further modified to include pozzolanic admixtures, such as silica fume and metakaolin to improve strength and toughness characteristics. Effect of alternate form of fibers and matrix modification of the composite were evaluated through flexural performance.
ISBN: 9780549034414Subjects--Topical Terms:
1018410
Applied Mechanics.
Flexural performance of glass fiber reinforced composite sandwich panels.
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Glass fiber reinforced cement composites are ideal to develop lightweight sandwich panels. However, the maximum size of the sandwich panel that can be produced without compromising the performance is limited, since larger panel results in thicker face. To overcome this limitation the sandwich panel has to be properly engineered by strategically providing ribs to achieve composite action. In this experimental investigation several approaches were taken to produce glass fiber reinforced cement (GFRC) sandwich panel. GFRC ribs were also incorporated at strategic location to achieve composite action. Combination of continuous mesh reinforcement and chopped fibers were tested for their effectiveness in improving performance of sandwich panels. The plain cement matrix of composite was further modified to include pozzolanic admixtures, such as silica fume and metakaolin to improve strength and toughness characteristics. Effect of alternate form of fibers and matrix modification of the composite were evaluated through flexural performance.
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