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Approaches to improve the properties of wood fiber reinforced cementitious composites
In an attempt to improve the workability, stability, and physical and mechanical properties of wood fiber-reinforced cementitious composites (WFRCs), alkali-activated blended cements have been explored for their compatibility with various wood fibers such as hardwood fiber, recycled newspaper fiber and recycled kraft paper fiber. Methods including high shear mixing, modifying the cement matrix with silica fume, and molding pressure were evaluated as means for further strengthening the wood fiber-reinforced cement composites. Flexural strengths up to 40 MPa, along with enhanced toughness have been achieved.
Approaches to improve the properties of wood fiber reinforced cementitious composites
In an attempt to improve the workability, stability, and physical and mechanical properties of wood fiber-reinforced cementitious composites (WFRCs), alkali-activated blended cements have been explored for their compatibility with various wood fibers such as hardwood fiber, recycled newspaper fiber and recycled kraft paper fiber. Methods including high shear mixing, modifying the cement matrix with silica fume, and molding pressure were evaluated as means for further strengthening the wood fiber-reinforced cement composites. Flexural strengths up to 40 MPa, along with enhanced toughness have been achieved.
Approaches to improve the properties of wood fiber reinforced cementitious composites
Möglichkeiten zur Verbesserung der Eigenschaften von holzfaserverstärkten Zementwerkstoffen
Lin, X. (author) / Silsbee, M.R. (author) / Roy, D.M. (author) / Kessler, K. (author) / Blankenhorn, P.R. (author)
Cement and Concrete Research ; 24 ; 1558-1566
1994
9 Seiten, 2 Bilder, 8 Tabellen, 16 Quellen
Article (Journal)
English
Verbundwerkstoff , Stahlbeton , Holz , Mikrogefüge , Mischer , Portlandzement , Biegefestigkeit , mechanische Festigkeit , Siliciumoxid , Pressling , mechanische Eigenschaft , faserverstärkter Werkstoff , Asbestzement , Werkstoffgefüge , Siliciumdioxid , Holzfaser , Abbindebeschleuniger , Abbinderegulierer , Zähfestigkeit , Naturfaser , Silicafeinststaub
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