Influence of rice straw and wood fiber combination on physical and mechanical properties of rice straw pulverized composite board

Sujatha Dhanapal, Mamatha Singh, Uday Nagammanavar
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Abstract

The production of particleboards from various kinds of ligno cellulosic materials are successful on commercial scale in various parts of the country.  However, much success is not seen in use of crop residues for particleboards. Rice straw and wheat straw are one such materials that are abundantly available in India that can be used to produce particleboard.  The present work investigated the effect of Rice straw particles and wood fibers combination on physical and mechanical properties of the composite board. The pulverized rice straw composite boards were produced with three different composition of rice straw material (100 %, 70 %, 50 %) and wood Fibers (0 %, 30 %, 50 %). Melamine Urea Formaldehyde (MUF), Phenol Cardanol Formaldehyde (PCF), Blocked Isocyanate resin combined with PCF (BPCF), Blocked Isocyanate combined with Urea Melamine Formaldehyde (BUMF) and Blocked Isocyanate combined with PF (BPF) resins were synthesized. The resin system (10%,12%,14%) with requisite additive was admixed with rice straw and wood fibers.  According to the resin system employed, the hot press temperature, specific pressure and curing time were worked out for compression of the boards. The boards were produced with 780 - 850 kg/m3 nominal density and prior to testing, the test specimens were exposed to an atmosphere maintained at a relative humidity of 65 ± 5 percent and at a temperature of 27 ± 2 °C until their masses are nearly constant. The boards made were subjected for evaluation of physical and mechanical properties according to IS 3087.  It was found that the Rice Straw particles with Wood Fibers of 50-50 combination bonded with PCF and also with MUF adhesive of 12 % resin solids confirms  to the requirement of  physical and mechanical properties as per IS 3087 particleboards of wood and other lignocellulosic materials (medium density) for general purposes Specification.  Comparison with resin for hybrid boards of rice straw particles with wood fiber, BPCF has shown excellent properties than BPF and BUMF. The study indicated that increasing the percentage replacement of wood fibers with rice straw particles by more than 50 % decreased the internal bond strength.   It can be concluded that rice straw pulverized particleboard can be successfully made with the combination of 30 % - 50 % wood fibers using PCF resin or BPCF resin.
稻草和木纤维组合对稻草粉碎复合板物理和机械性能的影响
利用各种木质纤维素材料生产刨花板在全国各地都取得了商业规模的成功。 然而,利用农作物秸秆生产刨花板的成功案例并不多。水稻秸秆和小麦秸秆是印度大量存在的可用于生产刨花板的材料之一。 本研究调查了稻草颗粒和木纤维组合对复合板物理和机械性能的影响。粉碎的稻草复合板由三种不同成分的稻草材料(100%、70%、50%)和木纤维(0%、30%、50%)制成。合成了三聚氰胺尿素甲醛(MUF)、酚卡酚甲醛(PCF)、与 PCF 结合的嵌段异氰酸酯树脂(BPCF)、与三聚氰胺尿素结合的嵌段异氰酸酯树脂(BUMF)和与 PF 结合的嵌段异氰酸酯树脂(BPF)。将含有必要添加剂的树脂体系(10%、12%、14%)与稻草和木纤维混合。 根据所使用的树脂体系,确定了压缩板的热压温度、特定压力和固化时间。木板的标称密度为 780 - 850 kg/m3,在测试前,将测试样本暴露在相对湿度为 65 ± 5%、温度为 27 ± 2 °C 的环境中,直到其质量接近恒定。根据 IS 3087 标准,对制成的板材进行了物理和机械性能评估。 结果发现,稻草颗粒与木纤维 50-50 的组合与 PCF 粘合,以及与含 12% 树脂固体的 MUF 粘合剂粘合,均符合 IS 3087《木材和其他木质纤维素材料(中密度)刨花板(一般用途)规范》对物理和机械性能的要求。 在稻草颗粒与木纤维混合板的树脂比较中,BPCF 比 BPF 和 BUMF 表现出优异的性能。研究表明,用稻草颗粒替代木纤维的比例增加 50%以上,会降低内部粘合强度。 由此可以得出结论,使用 PCF 树脂或 BPCF 树脂将 30%-50% 的木纤维组合在一起,可以成功地制造出稻草粉碎刨花板。
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