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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A new mechanism of ultrasonic absorption in aqueous solutions of rigid macromolecules
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A new mechanism of ultrasonic absorption in aqueous solutions of rigid macromolecules

机译:刚性大分子水溶液中超声波吸收的新机理

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The temperature- and frequency-dependences of the ultrasonic absorption in lyotropic liquid crystals of rod-like FD virus particles have been measured with the ultrasonic beam being parallel or perpendicular to the rod axis. The experimental results show a strongly anisotropic ultrasonic absorption in the lyotropic liquid crystals, which varies with temperature exactly as the shear viscosity of water. Experimental results are in good agreement with the following model for the absorption process. The authors believe that the absorption arises from differential flow of water between the relatively long and rigid rod-like macromolecules. This mechanism of ultrasonic absorption becomes dominant for frequencies of 1-100 MHz. The validity of this mechanism is, however, not restricted to the special lyotropic crystals discussed here. Instead, this absorption process is expected to be important also for other macromolecular solutions whenever the dissolved macromolecular objects have a sufficiently large linear dimension in the direction parallel to the sound beam.
机译:在超声波束平行于或垂直于棒轴的情况下,已经测量了棒状FD病毒颗粒的溶致液晶中超声波吸收的温度和频率依赖性。实验结果表明,在溶致液晶中有强烈的各向异性超声波吸收,该吸收随温度的变化恰好与水的剪切粘度有关。实验结果与以下吸收过程模型非常吻合。作者认为,吸收是由于较长的刚性杆状大分子之间的水差流引起的。超声波吸收的这种机制在1-100 MHz的频率中占主导地位。但是,这种机制的有效性并不局限于此处讨论的特殊溶致晶体。相反,只要溶解的大分子物体在平行于声束的方向上具有足够大的线性尺寸,则预期该吸收过程对于其他大分子溶液也很重要。

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