The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials

This study investigated the effects of densification and heat post-treatment on the Janka hardness and microscopic structure of relatively low-density Uludağ fir, linden, and black poplar woods. Wood samples were densified with compression ratios of 25% and 50% at 100 °C and 140 °C, respectively. He...

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Main Authors: Mehmet Budakçı, Hüseyin Pelit, Abdullah Sönmez, Mustafa Korkmaz
Format: Article
Language:English
Published: North Carolina State University 2016-08-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_3_7822_Budakci_Densification_Heat_Post_Treatment
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spelling doaj-c0a3a0f2e86a411faecc40f913c0e3632020-11-25T01:43:04ZengNorth Carolina State UniversityBioResources1930-21261930-21262016-08-011137822783810.15376/biores.11.3.7822-7838The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood MaterialsMehmet Budakçı0Hüseyin Pelit1Abdullah Sönmez2Mustafa Korkmaz3Department of Wood Products Industrial Engineering, Faculty of Technology, Duzce University; 81620, Duzce, Turkey; TurkeyDepartment of Wood Products Industrial Engineering, Faculty of Technology, Duzce University; 81620, Duzce, Turkey; TurkeyDepartment of Wood Products Industrial Engineering, Faculty of Technology, Gazi University; 06500, Ankara, Turkey; TurkeyDepartment of Wood Products Industrial Engineering, Faculty of Technology, Duzce University; 81620, Duzce, Turkey; TurkeyThis study investigated the effects of densification and heat post-treatment on the Janka hardness and microscopic structure of relatively low-density Uludağ fir, linden, and black poplar woods. Wood samples were densified with compression ratios of 25% and 50% at 100 °C and 140 °C, respectively. Heat post-treatment was then applied to the samples at 185 °C and 212 °C for 2 h. The hardness in the radial and tangential directions was determined, and morphological changes in the cell structures were analyzed using scanning electron microscopy (SEM). The hardness values in the radial and tangential directions of the densified samples increased depending on the compression rate and treatment temperature. The hardness values in both directions were higher in the 50% compressed samples. For samples compressed at 140 °C, the hardness values were higher in the tangential direction, whereas the samples compressed at 100 °C were higher in the radial direction. After the heat post-treatment process, the hardness values of all samples decreased. As the treatment temperature increased, more adverse effects on the hardness was noted. According to the SEM analyses, the densification and heat post-treatment deteriorated the cell structure of the samples. The more cell deformation was observed in the samples densified at 100 °C with compression ratio 50% and high heat post-treatment temperature.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_3_7822_Budakci_Densification_Heat_Post_TreatmentDensificationWoodHardnessHeat post-treatmentMorphological properties
collection DOAJ
language English
format Article
sources DOAJ
author Mehmet Budakçı
Hüseyin Pelit
Abdullah Sönmez
Mustafa Korkmaz
spellingShingle Mehmet Budakçı
Hüseyin Pelit
Abdullah Sönmez
Mustafa Korkmaz
The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
BioResources
Densification
Wood
Hardness
Heat post-treatment
Morphological properties
author_facet Mehmet Budakçı
Hüseyin Pelit
Abdullah Sönmez
Mustafa Korkmaz
author_sort Mehmet Budakçı
title The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
title_short The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
title_full The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
title_fullStr The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
title_full_unstemmed The Effects of Densification and Heat Post-Treatment on Hardness and Morphological Properties of Wood Materials
title_sort effects of densification and heat post-treatment on hardness and morphological properties of wood materials
publisher North Carolina State University
series BioResources
issn 1930-2126
1930-2126
publishDate 2016-08-01
description This study investigated the effects of densification and heat post-treatment on the Janka hardness and microscopic structure of relatively low-density Uludağ fir, linden, and black poplar woods. Wood samples were densified with compression ratios of 25% and 50% at 100 °C and 140 °C, respectively. Heat post-treatment was then applied to the samples at 185 °C and 212 °C for 2 h. The hardness in the radial and tangential directions was determined, and morphological changes in the cell structures were analyzed using scanning electron microscopy (SEM). The hardness values in the radial and tangential directions of the densified samples increased depending on the compression rate and treatment temperature. The hardness values in both directions were higher in the 50% compressed samples. For samples compressed at 140 °C, the hardness values were higher in the tangential direction, whereas the samples compressed at 100 °C were higher in the radial direction. After the heat post-treatment process, the hardness values of all samples decreased. As the treatment temperature increased, more adverse effects on the hardness was noted. According to the SEM analyses, the densification and heat post-treatment deteriorated the cell structure of the samples. The more cell deformation was observed in the samples densified at 100 °C with compression ratio 50% and high heat post-treatment temperature.
topic Densification
Wood
Hardness
Heat post-treatment
Morphological properties
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_11_3_7822_Budakci_Densification_Heat_Post_Treatment
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