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Short-time procedure for fatigue assessment of beech wood and adhesively bonded beech wood joints

机译:短时间评估榉木和胶合榉木接缝疲劳的程序

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Timber as a structural material has experienced a revival for aspects related to sustainability, positive effect on interior building and increased architectural possibilities. To overcome a series of limitations related to partly obsolete traditional techniques, timber engineering sets high expectations on adhesive bonding as a joining method. Research on adhesively bonded timber joints has proven their superiority over mechanical fasteners in terms of strength and stiffness. Research on methods to design adhesively bonded timber joints under static loads is currently ongoing and significant progress has already been achieved. The topic of fatigue behaviour, however, has only been addressed very rarely, largely because "classical'' methods for fatigue assessment based on Woehler curves, is extremely time-consuming. This paper aims to fill this gap by describing and validating an advanced time-and cost-efficient approach to quantify the behaviour of bonded timber joints under fatigue. Therefore the fatigue behaviour of beech wood as base material and adhesively bonded beech wood joints as structural elements were investigated by means of a short-time procedure. In this approach, cyclic tests with a stepwise increase of the stress amplitude were performed while the plastic strain amplitude was measured. The plastic strain amplitude gives reliable signals for an estimation of the fatigue strength. This is validated by traditional cyclic tests with constant stress amplitudes. It could be shown that the testing approach provides reliable results and has a high potential in time and cost savings for wood and adhesively bonded wood joints.
机译:木材作为一种结构材料在与可持续性,对室内建筑的积极影响以及增加的建筑可能性等方面经历了复兴。为了克服与部分过时的传统技术有关的一系列限制,木材工程对粘合作为连接方法提出了很高的期望。对粘合木材接头的研究证明,在强度和刚度方面,它们优于机械紧固件。目前正在研究在静态载荷下设计粘合木材接头的方法,并且已经取得了重大进展。然而,关于疲劳行为的话题很少被提及,这主要是因为基于Woehler曲线的“经典”疲劳评估方法非常耗时,本文旨在通过描述和验证提前时间来填补这一空白。经济的方法来量化粘合木材接头在疲劳下的行为,因此,通过短时程序研究了以榉木为基础材料和粘合山毛榉木接头为结构元件的疲劳行为。在测量塑性应变振幅的同时,进行了逐步增加应力振幅的循环试验,该塑性应变振幅为可靠的疲劳强度估算提供了可靠的信号,这已通过传统的具有恒定应力振幅的循环试验得到了验证。结果表明,该测试方法可提供可靠的结果,并且在节省木材和胶粘剂的时间和成本方面具有很大的潜力胶合木活节。

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