<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>

金屬內部裂紋的超聲衰減特性與近表面缺陷識別

Ultrasonic attenuation characteristics of metal materials with cracks and identification of subsurface flaws

  • 摘要: 建立了包含裂紋缺陷的二維金屬板模型.采用有限元方法,對具有不同深度裂紋的材料內部超聲波場進行計算,獲得了不同裂紋深度金屬材料上表面的回波信號,分析了裂紋深度對超聲波傳播特性的影響規律.進一步分離提取不同階次底面回波的頻譜特征,獲得了由裂紋缺陷引起的超聲衰減系數隨頻率的變化關系.最后提出了通過底面回波頻譜圖辨識近表面裂紋缺陷的方法.

     

    Abstract: A two-dimensional isotropic plate model with an embedded horizontal crack was established. Finite element analysis with absorbing boundary condition was employed to simulate the experimental pulse-echo mode to obtain ultrasonic data. The effect of crack depth on the wave propagation was studied and the spectra of different backwall echoes were further extracted. A relationship was determined between ultrasonic attenuation due to the crack and frequency. Finally, a method was proposed for identifying subsurface cracks based on the spectra of backwall echoes.

     

/

返回文章
返回
<span id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
<span id="fpn9h"><noframes id="fpn9h">
<th id="fpn9h"></th>
<strike id="fpn9h"><noframes id="fpn9h"><strike id="fpn9h"></strike>
<th id="fpn9h"><noframes id="fpn9h">
<span id="fpn9h"><video id="fpn9h"></video></span>
<ruby id="fpn9h"></ruby>
<strike id="fpn9h"><noframes id="fpn9h"><span id="fpn9h"></span>
www.77susu.com