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Specific Cutting Forces of Isotropic and Orthotropic Engineered Wood Products by Round Shape Machining

机译:各向同性和各向同性工程木材产品的圆形切削比切削力

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The set-up of machining parameters for non-ferric materials such as wood and wood-based materials is not yet defined on a scientific basis. In this paper, a new rapid experimental method to assess the specific cutting coefficients when routing isotropic and orthotropic wood-based materials is presented. The method consists of routing, with different depths of cut, a given material previously machined to a round shape after having it fixed on a dynamometric platform able to measure the cutting forces. The execution of subsequent cuts using different depths of cut allows the calculation of the specific cutting coefficients. With the measurement being done during real routing operations, a method to remove machine vibrations was also developed. The specific cutting coefficients were computed for the whole set of grain orientations for orthotropic materials and as an average for isotropic ones. The aim of this paper is to present and validate the whole method by machining selected materials such as Polytetrafluoroethylene—PTFE (isotropic), Medium Density Fiberboard—MDF (isotropic), beech Laminate Veneer Lumber—LVL (orthotropic) and poplar LVL (orthotropic). The method and the proposed analysis have been shown to work very effectively and could be used for optimization and comparison between materials and processes.
机译:尚未在科学基础上定义非铁材料(例如木材和木质材料)的加工参数设置。本文提出了一种新的快速实验方法,用于评估各向同性和正交异性的木质材料铣削时的比切削系数。该方法包括在给定的材料固定到能够测量切削力的测力平台上之后,先将具有不同切削深度的给定材料进行铣削,然后将其预先加工成圆形。使用不同的切割深度执行后续切割可以计算出特定的切割系数。通过在实际路由操作期间进行测量,还开发了一种消除机器振动的方法。对于正交异性材料,针对整个晶粒取向集合计算特定的切削系数,对于各向同性材料,则作为平均值。本文的目的是通过加工选定的材料,例如聚四氟乙烯-PTFE(各向同性),中密度纤维板-MDF(各向同性),山毛榉层压板单板木材-LVL(各向同性)和杨木LVL(各向同性),介绍并验证整个方法。该方法和所提出的分析已被证明非常有效,可用于材料和工艺之间的优化和比较。

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