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Moisture Content and its Influence on the Roughness and Noise Emission during Wood Machining

机译:水分含量及其对木材加工过程中粗糙度和噪声发射的影响

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Numerous factors influencing the surface quality of wood after machining, among them we highlight the machining parameters and the properties of the wood. In the analysis of the influence of these factors on machining and in determining the quality measurement systems are used to obtain surface characteristics, these systems are divided into methods of contact and non-contact. The method for mechanical contact performed with the aid of the surface roughness tester is the most valued in the measurement of roughness of wood, however, aiming at a greater agility in these measurements, there is a need to seek alternatives for evaluation of surface quality, and one of these options is to use the forms of indirect measurements of this quality, as for example, the use of noise emission during the machining process. With this, the aim was to analyze the influence of the moisture content of the wood, at different levels, on surface quality of the species Pinus elliottii, determined by the method of mechanical probing move and relate this roughness with the sound emission issued for each class of humidity, during machining. The planning of experiments and statistical analyses were performed with the help of Taguchi method. The specimens were conditioned in greenhouses climatizadoras automatics for obtaining three classes of humidity. Machining tests of wooden pieces were performed on a machining center specific for this type of material. The roughness values were measured by a roughness verifier and the noise emission values were measured by for a measurer sound pressure level. Statistically significant differences were observed, the significance level of 10 %, on roughness and noise emission between the three levels of moisture. It was observed that with the increase in the moisture content occurred an increase of roughness and a reduction in noise emission. Monitoring of surface quality through noise level is an interesting alternative to the method of mechanical contact.
机译:大量影响加工后木材表面质量的因素,其中我们突出了木材的加工参数和性质。在分析这些因素对加工的影响和确定质量测量系统的影响中,这些系统被分为接触和非接触的方法。借助于表面粗糙度测试仪执行的机械接触方法是木材粗糙度测量中最有价值的,然而,针对这些测量的敏捷性,需要寻求评估表面质量的替代方案,其中一个选项是使用这种质量的间接测量的形式,例如,在加工过程中使用噪声发射。由此,目的是分析木材的水分含量,在不同水平的水分质量上的物种质量的影响,通过机械探测移动的方法确定,并将这种粗糙度与每个发出的声音发射相关在加工过程中,湿度类。在Taguchi方法的帮助下进行实验和统计分析的规划。该标本是在温室的Climatizadoras自动化中调节,用于获得三类湿度。在适用于这种类型的材料的加工中心进行木块的加工试验。通过粗糙度验证器测量粗糙度值,并且通过用于测量器声压水平来测量噪声发射值。观察到统计学上的差异,显着性水平为10%,在三个水分之间的粗糙度和噪声排放。观察到,随着水分含量的增加发生了粗糙度的增加和噪音发射的降低。通过噪声水平监测表面质量是机械接触方法的有趣替代方案。

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