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      • SCOPUSKCI등재

        Manufacture of Wood Veneer-Bamboo Zephyr Composite Board : Ⅰ. Properties of Bamboo Zephyr and Composite Board Made from Moso, Giant Timber and Hachiku Bamboo

        Roh, Jeang Kwan,Kim, Jae Kyung,Kim, Sa Ick,Ra, Jong Bum,Kim, Yu Jung,Park, Sang Jin 한국목재공학회 2004 목재공학 Vol.32 No.3

        Wood veneer-bamboo zephyr composite board(WBCB) was manufactured to evaluate the properties of bamboo as alternative raw materials for the manufacture of composite panels. Bamboo zephyr was prepared using Moso bamboo (Phyllostachys pubesens Mazel. et Z), Giant timber bamboo (Phyllostachys bambusoides Sieb. et Zucc), and Hachiku bamboo (Phyllostachys nigra var. henosos Stapf). The effect of age and species of bamboo on zephyr production was investigated in terms of the pass number of bamboo split through the rollers, and the width increasing rate of bamboo split. Five-ply WBCBs were produced with Keruing veneers as face and back layers, leading to three layers of bamboo zephyr sheets as core layer. Each layer was placed so that its grain direction was at right angles to that of the adjacent layer and the layers were bonded together with phenol-formaldehyde (PF) resin. The pass number of bamboo split was increased with an increase of the thickness of culm wall. At the same thickness, Moso bamboo showed no effect of the age of bamboo on the pass number. The pass number of split of Giant timber bamboo was lower than that of Moso bamboo. No significant effect of bamboo species and age on the width of zephyr produced was observed. The width of zephyr obtained could be expressed as a function of diameter multiplied by thickness of culm wall. The physical and mechanical properties of WBCB manufactured in all given conditions did not show any significant differences, and they were above the requirement of Korean Standard (KS).

      • KCI등재

        대나무 Zephyr의 제조 조건에 따른 보드의 물성비교

        김유정,노정관,박상진 한국목재공학회 2003 목재공학 Vol.31 No.4

        본 연구에서는 합판 대체용도로서 고성능을 보유하는 대나무 Zephyr 보드의 제조기술을 확립하기 위한 기초조사로서 Zephyr의 제조방법을 달리하여 Zephyr를 제조한 후 각각의 Zephyr로 제조된 보드의 물성을 검토하였다. 제조된 보드는 KS F 3014와 KS F 3113에 준하여 성능평가를 하였으며 그 결과는 다음과 같다. 최종 를러간극을 각각 1 mm, 1.5 mm, 2 mm로 달리하여 제조된 Zephyr 보드 중에서는 1.5 mm에서 제조된 Zephyr보드가 휨성능(MOR, MOE)과 박리강도(IB)에서 가장 높은 강도를 보유하고 있었다. 또한, 2시간 자비한 후 1시간 상온수에 침지한 다음에 측정된 보드의 습윤시 휨성능(MOR, MOE) 역시 최종 롤러간극 1.5 mm에서 제조된 Zephyr 보드에서 가장 높은 잔존강도를 보유하고 있어 상태시와 거의 유사한 경향을 나타내고 있었다. 24시간 상온수에 침지한 후의 두께팽창율 시험에서 모든 보드가 KS A 3014의 기준인 12%보다 낮게 나타났으며 그중 롤러간극 1.5 mm Zephyr로 제조된 보드가 가장 낮은 값을 나타내어 치수안정성이 뛰어난 것으로 나타났다. 전처리에 따른 대나무 Zephyr 보드의 강도 성능은 무처리 생재상태로 제조된 보드가 다른 전처리(증해, 0.3%NaOH자비)를 한 Zephyr 보드보다 높은 강도를 보유하고 있었다. 따라서, 무처리 생재상태에서 최종롤러 간극 1.5 mm로 제조된 Zephyr sheet가 최적의 보드 제조조건임을 알 수 있었다. In order to develop structural 'bamboo zephyr board', properties of boards produced by various methods making zephyr were estimated. All of boards were tested with KS(Korean Standards) F 3014 Particle board, and results were summarized as follow. The zephyr boards produced by final 1.5㎜ roller space had the best properties(MOR, MOE and IB strength) among boards produced by different final roller space. Also, they had the best properties(MOR and MOE) in bending test after 1 hour soaking treatment after 2 hour-boiling in water, which were similar to properties of boards in dry-condition. Thickness swelling(TS) of all boards was less than 12% required to the Korean Standards A 3014. Zephyr boards produced by final 1.5㎜ roller space also had the lowest values among all of boards. Boards produced by non-treatment (in green condition) had the better strength than those of boards produced by different pre-treatment methods(boiling in water and in 0.3% NaOH) in bending test.

      • KCI등재

        Development of Bamboo Zephyr Composite and the Physical and Mechanical Properties

        Ihak Sumardi,Eka Mulya ALAMSYAH,Yoyo SUHAYA,Rudi Dungani,Ignasia Maria SULASTININGSIH,Syahdilla Risandra PRAMESTIE 한국목재공학회 2022 목재공학 Vol.50 No.2

        The objective of this study is to determine the effect of fiber direction arrangement and layer composition of hybrid bamboo laminate boards on the physical and mechanical properties. The raw material used was tali bamboo (Gigantochloa apus (J.A. & J.H. Schultes) Kurs) rope in the form of flat sheets (zephyr) and falcata veneer (Paraserianthes falcataria (L) Nielsen). Zephyr bamboo was arranged in three layers using water-based isocyanate polymer (WBPI) with a glue spread rate of 300 g/m2. There were variations in the substitution of the core layer with falcata veneers (hybrid) as much as two layers and using a glue spread rate of 170 g/m2. The laminated bamboo board was cold-pressed at a pressure of 22.2 kgf/cm2 for 1 h, and the physical and mechanical properties were evaluated. The results showed that the arrangement of the fiber direction significantly affected the dimensional stability, modulus of rupture, modulus of elasticity, shear strength, and screw withdrawal strength. However, the composition of the layers had no significant effect on the physical and mechanical properties. The bonding quality of bamboo laminate boards with WBPI was considered to be quite good, as shown by the absence of delamination in all test samples. The bamboo hybrid laminate board can be an alternative based on the physical and mechanical properties that can meet laminated board standards.

      • KCI등재
      • SCOPUSKCI등재

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