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Moisture Sensitivity of Scots Pine Joints Produced by Linear Frictional Welding

机译:线性摩擦焊接产生的苏格兰松木接头的湿度敏感性

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摘要

The industrial application range of welded wood so far has been limited to interior use because of its poor moisture resistance. Influences of some welding and wood parameters such as welding pressure, welding time, and heartwood/sapwood on water resistance of Scots pine (Pinus sylvestris) were investigated. An X-ray Computed Tomography scanner was used to monitor density change in weldlines during water absorption-desorption. Axial samples measuring 200 mm x 20 mm x 20 mm from Scots pine were welded and placed standing in 5-mm-deep tap water. Then they were taken out of the water one at a time and scanned at 10-min intervals until the first crack appeared in the weldline where the two parts of each specimen made connection. Results showed that the X-ray Computed Tomography can be used as an effective tool to study welded wood. Welding pressure, welding time, and heartwood/sapwood showed significant effect on length and location of the crack in the welded zone. Data evaluation showed that combination of 1.3 MPa welding pressure, 1.5 s welding time and using heartwood led to highest moisture resistance, which produced only a very short crack in the beginning of the weldline.
机译:迄今为止,由于其耐湿性差,焊接木材的工业应用范围仅限于室内使用。研究了焊接和木材参数(例如焊接压力,焊接时间和心材/边材)对苏格兰松(Pinus sylvestris)的耐水性的影响。使用X射线计算机断层扫描仪监测吸水-脱附过程中焊缝中的密度变化。焊接来自苏格兰松树的200 mm x 20 mm x 20 mm的轴向样品,并将其放置在5毫米深的自来水中。然后将它们一次从水中取出,并以10分钟的间隔进行扫描,直到在焊缝中出现第一个裂纹,每个试样的两个部分都连接在一起。结果表明,X射线计算机断层扫描可以用作研究焊接木材的有效工具。焊接压力,焊接时间和心材/边材对焊接区域中裂纹的长度和位置显示出显着影响。数据评估显示,在1.3 MPa的焊接压力,1.5 s的焊接时间和使用心材的结合下,可获得最高的耐湿性,在焊接线开始时仅产生非常短的裂纹。

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