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Properties Of Plywood Manufactured From Compressed Veneer As Building Material

机译:以压缩贴面为建筑材料的胶合板的性能

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摘要

The objective of this study is to evaluate some of the physical and mechanical properties of plywood manufactured from compressed veneer of birch (Betula pubescens) and alder (Alnus glutinosa) using a cold rolling process. Surface roughness, tensile strength parallel and perpendicular-to-grain orientation of veneer sheets before and after compression process were tested. Shear strength, bending strength, and compression strength of the plywood samples made from both compressed and non-compressed veneers were also determined. Based on the results of the study, overall mechanical properties of veneer and plywood improved as compression degree veneer increased from 5% to 15%. This also resulted in less adhesive consumption up to 20% as well as enhanced surface characteristics of veneer samples by 40%. Plywood samples required lower pressure ranging from 25% to 30% for those manufactured from regular veneer. It appears that veneer compression process can be considered as an alternative method to improve both physical and mechanical properties of experimental plywood panels which can be used for building applications.
机译:这项研究的目的是使用冷轧工艺评估由桦木(桦木)和al木(Al木)的压缩贴面制成的胶合板的物理和机械性能。测试了压缩过程前后单板的表面粗糙度,平行于拉伸强度和垂直于谷物的方向。还确定了由压缩和非压缩胶合板制成的胶合板样品的剪切强度,弯曲强度和压缩强度。根据研究结果,单板和胶合板的整体机械性能随着单板压缩度从5%增加到15%而提高。这样还可以减少多达20%的粘合剂消耗量,并将饰面板样品的表面特性提高40%。对于由普通胶合板制造的胶合板样品,要求其较低的压力范围为25%至30%。看来单板压缩工艺可以被认为是一种可同时用于建筑的实验性胶合板的物理和机械性能的改进方法。

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