古建筑木构件残损特征及其内部空洞的应力波无损检测

    Damage Characteristics of Ancient Architecture Wood Members and Stress Wave Nondestructive Testing of Internal Void

    • 摘要: 为了更准确地掌握古建筑木构件内部残损状况,在大量现场调研的基础上分析木构件残损特征和主要残损部位,采用FAKOPP应力波对榆木试件采取逆向试验,研究在不同形状、大小的空洞下应力波对空洞面积、空洞形状、波速衰减的数字采集情况.研究结果显示:随着空洞的不断扩大,检测面积与实际面积之间的误差值逐渐减小,最小误差可达4%,此外两者之间存在显著线性关系.FAKOPP应力波对空洞形状的识别较弱,当空洞位置为中部时,将二维平面检测图与反映VaVbVcVdVe波速线形图进行综合分析有利于对内部孔洞形状的判定以及空洞面积的参考.其中以Vc路径的波速最为稳定,当空洞达到截面面积1/2时,对比完整试件其波速衰减最高可达51.16%.研究成果有利于古建筑进行预防性保护以及将检测方法由定性转为量化分析,为实际工程的修缮加固方案提供有效数据支持.

       

      Abstract: To master the internal damage of ancient architecture wood members,based on the field investigation,the damage characteristics and damaged parts of the ancient architecture wood members were analyzed.By taking the reverse test of elm specimen by the FAKOPP stress wave,the stress wave under different empty size,hollow shape and wave velocity attenuation of digital collection were studied.Resultsshow that the hole constantly expands,the error value constantly decreases between test area and actual area.And the minimum error is 4%.In addition,there is significant linear relationship between T and S.FAKOPP stress wave on hole shape recognition is weak.By using the systematic thinking a comprehensive analysis of two-dimensional plane detection figure was conducted,and the Va,Vb,Vc,Vd and Vc wave velocity line diagram was reflected.The research provides reference for determining the shape of inner the hole area and hole shape,and the most stable path of wave velocity is Vc.When the empty hole was half of the cross section area,the attenuation of wave velocity of complete specimen comparatively reached 51.16%.The research results are useful to the preventive protection of ancient buildings,and can provide effective data support for practical engineering repair and reinforcement of buildings because the research adopted the detective method of quantitative analysis instead of qualitative analysis.

       

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