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Wood-Dowel Bonding by High-Speed Rotation Welding — Application to Two Canadian Hardwood Species

机译:通过高速旋转焊接进行木榫连接—在两种加拿大硬木物种中的应用

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摘要

The aim of this work was to investigate the possibility to apply high-speed rotation-induced wood-dowel welding technique to two Canadian hardwood species commonly used for furniture and structural applications, sugar maple (Acer saccharum) and yellow birch (Betula alleghaniensis). Different factors have been evaluated such as the wood species, the grain orientation, the rotation rate, as well as the receiver hole diameter. The results indicate that high-speed rotation-induced wood-dowel welding can be suitable for these two wood species with average tensile strength values comparable to their respective PVAc-glued joints. Additionally, wood-welded joints presented higher water resistance than their glued-joint counterparts. The results of the temperature measurements confirm that the softening and degradation temperatures of wood components have been reached during the welding process. The X-ray rnicrodensitometry analyses show an increase of density for the interfacial material between the wood substrate and the dowel, the profile of which is more uniform for sugar maple than for birch. The scanning electron micrographs of the interfacial contact zone confirm the different extents of wood-to-wood welding.
机译:这项工作的目的是研究将高速旋转感应木榫焊接技术应用到两种常用于家具和结构应用的加拿大硬木树种:枫树枫(枫树枫糖)和白桦树(桦木)。已经评估了不同的因素,例如木材种类,纹理方向,旋转速度以及接收器孔直径。结果表明,高速旋转诱导的木榫焊接可适用于这两种木材,其平均抗拉强度值可与它们各自的PVAc胶合接头相媲美。此外,木焊接接头比胶接头具有更高的耐水性。温度测量结果证实,在焊接过程中已达到木质部件的软化和降解温度。 X射线鼻密度测定法分析表明,木材基质和木榫之间的界面材料的密度增加,糖枫的桦木与桦木相比更均匀。界面接触区的扫描电子显微照片证实了木对木焊接的不同程度。

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