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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Surface quality measurement by contact and laser methods on thermally modified spruce wood after plain milling
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Surface quality measurement by contact and laser methods on thermally modified spruce wood after plain milling

机译:通过普通铣削后热改性云杉木材的接触和激光方法测量表面质量测量

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摘要

The accuracy and reliability of a measuring device is crucial to determine the quality of wood surface. This paper compares the surface quality of thermally modified spruce wood measured by two different methods. Spruce wood specimens were thermally modified at different temperatures (160, 180, and 210 degrees C) and then milled with a single-spindle milling machine operated at different combinations of processing parameters (cutting speed, rake angle, and feed rate). Surface quality (surface roughness and surface waviness) of the specimens were measured by laser as well as contact method. Higher values of surface roughness and waviness were obtained by the laser method compared with the contact method. Average surface roughness was 31% higher, while average waviness was 35% higher in laser method as compared with the contact method. Based on the surface quality obtained by laser method and energy consumption during milling, the optimum combination of parameters for milling of thermally modified spruce wood was ascertained. The best surface quality with lower energy consumption during machining was obtained in spruce wood thermally modified at 210 degrees C and processed at a cutting speed of 20 m/s, rake angel of 20 degrees, and a feed rate of 4 m/min.
机译:测量装置的准确性和可靠性至关重要,以确定木材表面的质量。本文比较了两种不同方法测量的热改性云杉木材的表面质量。在不同温度(160,180和210℃)下热改性云杉木材样本,然后用以不同的加工参数(切割速度,耙角和进料速率)在不同组合操作的单轴铣床研磨。样品的表面质量(表面粗糙度和表面波纹)通过激光以及接触方法测量。与接触方法相比,通过激光方法获得较高的表面粗糙度和波纹值。与接触方法相比,平均表面粗糙度较高31%,而平均波纹在激光法中较高35%。基于通过激光方法获得的表面质量和研磨期间能量消耗,确定了用于研磨热改性云杉木材的参数的最佳组合。在加工期间能耗较低的最佳表面质量在210℃热修饰的云杉木材中获得,并以20m / s的切削速度为20米/秒,耙子天使的切割速度,进给速度为4米/分钟。

著录项

  • 来源
  • 作者单位

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Dept Wood Proc &

    Biomat Kamycka 1176 Prague 16521 6 Suchdol Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化装置与设备;
  • 关键词

    Spruce; Laser method; Contact method; Surface quality; Thermal modification; Energy consumption;

    机译:云杉;激光方法;接触方法;表面质量;热改性;能量消耗;

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