Study on the Temperature Distribution and Natural Frequency of a Circular Saw Blade during Three Types of Wood Sawing Processes

Yansong Zhang, Bo Li
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Abstract

The stability of a circular saw blade during the cutting process affects the knife life and the material utilization rate. In this article, continuous sawing experiments were carried out on medium-density fiberboard, Pterocarpus soyauxii board, and reconstituted bamboo lumber board. The temperature distribution of the saw blade surface was measured. The natural frequency of the saw blade under thermal stress was analyzed by the finite element method. The results show that the material density is positively correlated with the edge temperature of the saw blade. Greater temperature differences within the saw blade lead to worsening dynamic stability. When cutting the reconstituted bamboo lumber board, the saw blade will suddenly lose stability, and the surface temperature will rise rapidly, which greatly shortens the life of the saw blade.
三种木材锯切过程中圆锯片的温度分布和固有频率研究
圆锯片在切割过程中的稳定性会影响锯片寿命和材料利用率。本文对中密度纤维板、黄檀板和重组竹材板进行了连续锯切实验。测量了锯条表面的温度分布。采用有限元法分析了热应力作用下锯条的固有频率。结果表明,材料密度与锯条边缘温度呈正相关。锯条内部的温差越大,动态稳定性越差。在切割重组竹材板时,锯条会突然失去稳定性,表面温度迅速升高,从而大大缩短锯条的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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