首页> 外文期刊>Wood Research >DETERMINING THE PARAMETERS OF WOOD MACHINABILITY AS A FUNCTION OF TANGENTIAL CUTTING FORCE DURING THE PROCESS OF MACHINING WOOD BY ROUTING
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DETERMINING THE PARAMETERS OF WOOD MACHINABILITY AS A FUNCTION OF TANGENTIAL CUTTING FORCE DURING THE PROCESS OF MACHINING WOOD BY ROUTING

机译:确定木材可加工性的参数,作为切线加工木材过程中的切线力的函数

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摘要

Machinability has been defined, in a general way, as an ability of a certain structural material to be machined by cutting or deformation through common, economical production techniques and technologies. However, a significant disadvantage of this definition is that it does not define the way in which this ability (machinability) is quantified and measured. This research deals with with ways of determining numerical values of parameters of machinability during the process of machining oak wood by longitudinal routing. In order to determine the factors of machinability in the function of tangential cutting force the authors used multifactor orthogonal linear plan of experiment. Analyzing the position of straight lines in the given diagrams and the values of the exponents in the model the following can be concluded: Average tangential cutting force increases with the increase of any of the analyzed factors; With regard to intensity, cutting depth has a greater effect on the cutting force; If the cutting depth increases, the increase of cutting force is faster when feed per edge is greater. If the feed per edge is increased, the increase of tangential cutting force is more significant when the value of cutting depth is greater.
机译:通常,可加工性被定义为通过普通的,经济的生产技术和技术通过切割或变形来加工某些结构材料的能力。但是,该定义的主要缺点是它没有定义量化和测量此能力(可加工性)的方式。该研究涉及确定通过纵向铣削加工橡木的过程中可加工性参数的数值的方法。为了确定切向切削力函数中的可加工性因素,作者采用了多因素正交线性计划进行实验。分析给定图中的直线位置和模型中的指数值,可以得出以下结论:平均切向切削力随所分析因素的增加而增加;就强度而言,切削深度对切削力的影响更大。如果切削深度增加,则每边进给量越大,切削力的增加越快。如果增加每个边缘的进给量,则切深值越大,切向切削力的增加越显着。

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