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Evaluation of wood cutting forces in dry and wet conditions by small-scale chipping tests applying different analysis methods

机译:通过使用不同分析方法的小规模崩裂试验评估干燥和潮湿条件下的木材切削力

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摘要

The aim of this paper is to study the effect of high moisture content in comparison to dry timber on the resulting cutting forces based on experimental small-scale chipping tests. Therefore, a wood chipper for single cuts is designed and different species of Austrian locally growing trees are utilized. The test specimens are investigated in almost dry and soaked wet conditions. The resistance of wood is measured utilizing a force sensor and the signal during the cutting process is subsequently analysed by two different methods. The results reveal that the mean value of the acting force during cutting is 38-81% minor compared to the maximum force. Even though the peak of the dynamically acting load is measured for just a comparably small time range, it reveals an impact on the fatigue behaviour of the tool as well as the tool supporting material. Hence, an approach of evaluated load spectra is applied to include the load distribution of the chipping process. The effect of dry and wet wood on the cutting resistance is examined, whereby wood exhibiting a high moisture content of 30-40% changes the acting load up to 98%, depending on the method of analysis.
机译:本文的目的是基于小型试验,研究与干燥木材相比,较高的水分含量对由此产生的切削力的影响。因此,设计了一种用于单一采伐的木材削片机,并利用了不同种类的奥地利当地种植的树木。在几乎干燥和浸湿的潮湿条件下对试样进行研究。利用力传感器测量木材的电阻,然后通过两种不同的方法分析切割过程中的信号。结果表明,与最大力相比,切削过程中作用力的平均值小38-81%。即使仅在相对较小的时间范围内测量了动态作用载荷的峰值,它仍显示出对工具以及工具支撑材料的疲劳行为的影响。因此,采用了一种评估负载谱的方法来包括切片过程的负载分布。检查了干木和湿木对抗切割性的影响,根据分析方法,含水量为30%至40%的高木材会改变作用载荷,最高可达98%。

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