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使用硬度测试评估木结构构件的技术状况

Assessment of the Technical Condition of Timber Structural Elements Using Sclerometric Tests.

作者信息

Jaskowska-Lemańska Justyna, Wałach Daniel

机构信息

Faculty of Civil Engineering and Resource Management, AGH University of Science and Technology, Adama Mickiewicza Ave. 30, 30-059 Kraków, Poland.

出版信息

Materials (Basel). 2023 Sep 10;16(18):6152. doi: 10.3390/ma16186152.

Abstract

The technical assessment of wooden elements is the primary step in their repair and reinforcement design. Normative requirements currently mandate additional tests, including semi-destructive ones, beyond traditional visual assessment. Despite the growing feasibility of semi-destructive tests for qualitative assessments, there remains a paucity of data enabling quantitative assessments. This study investigated the hardness of structural timber, specifically pine, spruce, and fir, from Central Europe using sclerometric methods. The outcomes of these tests were compared with those of conventional destructive tests and correlational relationships were established. A strong correlation was found between the sclerometric tests and density (r = 0.62 ÷ 0.82), while a range of strong to moderate correlations was found (r = 0.40 ÷ 0.70) for mechanical characteristics (bending and compressive strength). The correlation strength varied among different wood species, with the strongest for pine and the weakest for spruce. All established relationships were compiled into 40 functions to facilitate their future utilization in quantitative assessments during the technical evaluation of wooden objects. The study also examined the influence of wood defects on the derived correlations by considering the knot index. Sclerometric methods accurately reflect the physico-mechanical properties of elements with a small or medium defect content. However, for wood with a high proportion of defects (knots), the correlations are very weak (r = 0.23 ÷ 0.52, including statistically insignificant results). This research offers new insights into the potential of semi-destructive methods in the structural evaluation of wooden elements, highlighting the need to account for wood species and defect content.

摘要

木质构件的技术评估是其修复和加固设计的首要步骤。目前的规范要求除了传统的目视评估外,还需进行额外测试,包括半破坏性测试。尽管半破坏性测试用于定性评估的可行性不断提高,但仍缺乏能够进行定量评估的数据。本研究采用硬度测试法对来自中欧的结构木材,特别是松木、云杉和冷杉的硬度进行了调查。将这些测试结果与传统破坏性测试结果进行了比较,并建立了相关关系。硬度测试与密度之间存在很强的相关性(r = 0.62÷0.82),而对于力学特性(抗弯强度和抗压强度),则发现了一系列从强到中等的相关性(r = 0.40÷0.70)。相关性强度因木材种类而异,松木最强,云杉最弱。所有建立的关系被整理成40个函数,以便在木质文物技术评估的定量评估中便于未来使用。该研究还通过考虑节子指数,研究了木材缺陷对所得相关性的影响。硬度测试法能准确反映缺陷含量少或中等的构件的物理力学性能。然而,对于缺陷(节子)比例高的木材,相关性非常弱(r = 0.23÷0.52,包括无统计学意义的结果)。本研究为半破坏性方法在木质构件结构评估中的潜力提供了新的见解,强调了考虑木材种类和缺陷含量的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22a0/10532830/d8589743434f/materials-16-06152-g001.jpg

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