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Moisture-induced stresses and distortions in spruce cross-laminates and composite laminates

机译:云杉交叉层压板和复合层压板中水分引起的应力和变形

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摘要

The crosswise gluing of cross-laminated panels made of solid wood can cause problems when exposed to moisture variations. In the present study, the substitution of the spruce middle layer by a wood composite is tested for its influence on moisture-induced stresses and deformations in laboratory tests and numerical simulations. Furthermore, slits in the spruce middle layer were investigated. The hygroscopic warping due to a moisture gradient, stresses caused by moistening and cracks due to drying were studied. The results show larger warping in composite laminates compared to the spruce cross-laminate, which is governed by the modulus of elasticity of the middle layer. The in-plane swelling was found to be larger in composite laminates, while stresses were lower. The drying test discovered that cracks develop in the middle layer of spruce-medium density fiberboard laminates due to shear stresses and tensile stresses in the thickness direction. It was concluded that slits can be applied in the middle layer, as they have no significant influence on moisture-induced stresses but increase the thermal insulation. If the substitution of the spruce layer is required, the application of oriented strand board in the middle layer is recommended
机译:当暴露于水分变化时,由实木制成的交叉层压板的横向胶合会引起问题。在本研究中,在实验室测试和数值模拟中测试了用木材复合材料代替云杉中间层对水分诱导的应力和变形的影响。此外,研究了云杉中间层中的缝隙。研究了由于水分梯度引起的吸湿翘曲,由润湿引起的应力以及由于干燥引起的裂纹。结果表明,与云杉交叉层压板相比,复合层压板的翘曲更大,这是由中间层的弹性模量决定的。发现复合层压板的面内溶胀较大,而应力较低。干燥测试发现,由于厚度方向上的剪切应力和拉伸应力,云杉-中密度纤维板层压板的中间层出现了裂纹。结论是,可以在中间层中使用缝隙,因为缝隙对湿气引起的应力没有显着影响,但可以增加隔热性。如果需要更换云杉层,建议在中间层应用定向刨花板

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