Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.

In this study the possibility of nano- wollastonite usage in three level (0 , 3 and 6 percent per dry weight of cement) and mixture ratios of lingo cellulosic materials to cement in three level 10:90, 20:80 and 30:70 on physical, mechanical and microscopic properties of composite made from kraft fib...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: ali hasanpoor tichi, behzad bazyar, Habibalah khademieslam, حسین رنگ آور, Mohammad Talaeipoor
Formato: article
Lenguaje:FA
Publicado: Regional Information Center for Science and Technology (RICeST) 2015
Materias:
Acceso en línea:https://doaj.org/article/783aa8709c6840589d9e31fe89b4204b
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:783aa8709c6840589d9e31fe89b4204b
record_format dspace
spelling oai:doaj.org-article:783aa8709c6840589d9e31fe89b4204b2021-12-02T02:01:59ZEffect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.1735-09132383-112X10.22092/ijwpr.2015.103079https://doaj.org/article/783aa8709c6840589d9e31fe89b4204b2015-12-01T00:00:00Zhttp://ijwpr.areeo.ac.ir/article_103079_e6625c5ce1fb026f11d4cd64858f64d5.pdfhttps://doaj.org/toc/1735-0913https://doaj.org/toc/2383-112XIn this study the possibility of nano- wollastonite usage in three level (0 , 3 and 6 percent per dry weight of cement) and mixture ratios of lingo cellulosic materials to cement in three level 10:90, 20:80 and 30:70 on physical, mechanical and microscopic properties of composite made from kraft fibers was investigated. There were three replicatesfor each treatment and 27 experimental boards were manufactured totally. Specimens were prepared according to DIN- EN- 634 standard to measure mechanical and physical properties. Mechanical and physical properties including compression strength, interior bonding (IB), thickness swelling after 2 and 24 hours immersion into the water and density were measured. Micro- structural properties of composites were evaluated by SEM images.The results showed that compression strength , interior bonding and density increased by higher levels of nano- wollastonite content in the boards. By increasing of nano- wollastonite, dimensional stability was significantly improved in comparison to the control boards. SEM images showed the improvement of micro- structural boards by increasing the nano- wollastonite content.ali hasanpoor tichibehzad bazyarHabibalah khademieslamحسین رنگ آورMohammad TalaeipoorRegional Information Center for Science and Technology (RICeST)articlekraft fibersCementcompression strengthnano- wollastoniteForestrySD1-669.5FAتحقیقات علوم چوب و کاغذ ایران, Vol 30, Iss 4, Pp 567-577 (2015)
institution DOAJ
collection DOAJ
language FA
topic kraft fibers
Cement
compression strength
nano- wollastonite
Forestry
SD1-669.5
spellingShingle kraft fibers
Cement
compression strength
nano- wollastonite
Forestry
SD1-669.5
ali hasanpoor tichi
behzad bazyar
Habibalah khademieslam
حسین رنگ آور
Mohammad Talaeipoor
Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
description In this study the possibility of nano- wollastonite usage in three level (0 , 3 and 6 percent per dry weight of cement) and mixture ratios of lingo cellulosic materials to cement in three level 10:90, 20:80 and 30:70 on physical, mechanical and microscopic properties of composite made from kraft fibers was investigated. There were three replicatesfor each treatment and 27 experimental boards were manufactured totally. Specimens were prepared according to DIN- EN- 634 standard to measure mechanical and physical properties. Mechanical and physical properties including compression strength, interior bonding (IB), thickness swelling after 2 and 24 hours immersion into the water and density were measured. Micro- structural properties of composites were evaluated by SEM images.The results showed that compression strength , interior bonding and density increased by higher levels of nano- wollastonite content in the boards. By increasing of nano- wollastonite, dimensional stability was significantly improved in comparison to the control boards. SEM images showed the improvement of micro- structural boards by increasing the nano- wollastonite content.
format article
author ali hasanpoor tichi
behzad bazyar
Habibalah khademieslam
حسین رنگ آور
Mohammad Talaeipoor
author_facet ali hasanpoor tichi
behzad bazyar
Habibalah khademieslam
حسین رنگ آور
Mohammad Talaeipoor
author_sort ali hasanpoor tichi
title Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
title_short Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
title_full Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
title_fullStr Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
title_full_unstemmed Effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
title_sort effect of nano- wollastonite on microscopic, mechanical and physical properties of cement- wood fibers composite.
publisher Regional Information Center for Science and Technology (RICeST)
publishDate 2015
url https://doaj.org/article/783aa8709c6840589d9e31fe89b4204b
work_keys_str_mv AT alihasanpoortichi effectofnanowollastoniteonmicroscopicmechanicalandphysicalpropertiesofcementwoodfiberscomposite
AT behzadbazyar effectofnanowollastoniteonmicroscopicmechanicalandphysicalpropertiesofcementwoodfiberscomposite
AT habibalahkhademieslam effectofnanowollastoniteonmicroscopicmechanicalandphysicalpropertiesofcementwoodfiberscomposite
AT ḥsynrngậwr effectofnanowollastoniteonmicroscopicmechanicalandphysicalpropertiesofcementwoodfiberscomposite
AT mohammadtalaeipoor effectofnanowollastoniteonmicroscopicmechanicalandphysicalpropertiesofcementwoodfiberscomposite
_version_ 1718402785428373504