Development of vertically oriented fiberboard I. Manufacture of fiberboards and analysis of fiber orientation

Citation
S. Ohba et al., Development of vertically oriented fiberboard I. Manufacture of fiberboards and analysis of fiber orientation, MOKUZAI GAK, 47(2), 2001, pp. 138-149
Categorie Soggetti
Material Science & Engineering
Journal title
MOKUZAI GAKKAISHI
ISSN journal
00214795 → ACNP
Volume
47
Issue
2
Year of publication
2001
Pages
138 - 149
Database
ISI
SICI code
0021-4795(2001)47:2<138:DOVOFI>2.0.ZU;2-4
Abstract
Since the pressing direction in mat forming usually will coincide with the thickness direction of fiberboard, the fibers are oriented parallel to the board plane. That is to say, pressed fibers are oriented normal to the pres sing direction, It is expected that five types of oriented fiberboard could be manufactured by changing the direction of pressing the fiber mat, namel y, platen(.)pressed fiberboard, horizontally oriented fiberboard, 3-dimensi onally random fiberboard, extruded fiberboard and vertically oriented fiber board. Tile orientation conditions of these types of manufactured ed fiberb oard were analyzed using the Fourier transform image analyzing method and t he results evaluated. Fundermental board properties such as bending and int ernal bond strength, and thickness swelling are discussed in relation to fi ber orientation. The conclusions are as follows: 1) The expected orientations of fibers were observed, on tile whole, in the low(.)density fiberboard types that were manufactured. 2) When the fibers in the board plane were aligned parallel to tile spall o f the test piece, the board showed higher moduli of rupture and elasticity. The fiber orientation in the cross sectional plane of the span direction o f the test piece improved moduli of rupture and elasticity as well. 3) The boards with more vertical (thickness direction) orientation showed h igher internal bond strength and less thickness swelling. In such a manner, these oriented fiberboard types showed characteristic pro perties according to the fiber orientation. The optimum orientation conditi ons of pressing direction for mat forming can then be chosen to obtain the required board, properties.