以竹材为原料制备的竹材复合结构板的物理力学性能。使用酚醛(PF)胶粘剂

Nirmal Dhyani, D.P. Khali, Rakesh Singh Rawat
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引用次数: 0

摘要

本研究以竹材为原料,制备了竹材破坏复合板材。酚醛(PF)胶粘剂采用液压热压。在21.0、24.5、28.0和31.5 kg/cm2四种不同的比压下制备板材,并进行热压。然后按照印度标准1708测试制备好的板材的物理和机械性能。竹材被准备和测试,以评估它们作为传统建筑木材的可持续替代品的潜力。对不同竹材的力学性能与常规木材进行了比较。结果表明,在较高压力下(24.5,28.0和31.5 kg/cm²)制备的板材与常用木材(如柚木(Tectona grandis l.f.), sal (Shorea robusta C.F.Gaertn.)和khair (Senegalia catechu (l.f.))具有相当或更好的性能。P.J.H.Hurter,Mabb),在断裂模量、弹性模量、抗压强度、硬度和螺杆提取能力方面。31.5 kg/cm²制备的板材适用于重型结构应用,而24.5和28.0 kg/cm²制备的板材适用于中等承重应用。以21.0 kg/cm²的速度制备的板材对于非承重用途是理想的。竹材的高密度、强度、硬度和螺杆提取能力使其适用于广泛的建筑应用,包括地板、家具和包层。这些发现表明,竹材是一种可行的、可持续的传统木材替代品,有可能减少对有限的天然木材资源的依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical and mechanical properties of bamboo reconstituted destructured boards/scrimbers prepared from Bambusa nutans Wall. ex Munro using phenol formaldehyde (PF) adhesive
In this study, bamboo destructured reconstituted boards/scrimbers were prepared from Bambusa nutans Wall. ex Munro with phenol formaldehyde (PF) adhesive using a hydraulic hot press. The boards were prepared at four different specific pressures, namely 21.0, 24.5, 28.0 and 31.5 kg/cm2 and hot pressed. The prepared boards were then tested for their physical and mechanical properties as per Indian standard 1708. Bamboo scrimbers were prepared and tested to evaluate their potential as a sustainable alternative to traditional wood for construction. The mechanical properties of the different bamboo scrimbers were compared with conventional wood species. The results showed that boards prepared at higher pressures (24.5, 28.0 and 31.5 kg/cm²) exhibited comparable or superior properties to commonly used woods such as teak (Tectona grandis L.f.), sal (Shorea robusta C.F.Gaertn.) and khair (Senegalia catechu (L.f.) P.J.H.Hurter & Mabb.), in terms of modulus of rupture, modulus of elasticity, compression strength, hardness and screw withdrawal capacity. Boards prepared at 31.5 kg/cm² were suitable for heavy structural applications, while boards prepared at 24.5 and 28.0 kg/cm² were suitable for moderate load-bearing applications. Boards prepared at 21.0 kg/cm² were ideal for non-load-bearing uses. The high density, strength, hardness and screw withdrawal capacity of bamboo scrimbers make them suitable for a wide range of construction applications, including flooring, furniture and cladding. These findings demonstrate that bamboo scrimbers are a viable sustainable alternative to traditional wood, potentially reducing the reliance on limited natural wood resources.
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