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On Measuring the High Frequency Response of Soft Viscoelastic Materials at Finite Strains

机译:测量有限菌株软粘弹性材料的高频响应

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In such applications as repairing damaged vocal folds to restorenormal phonation, viscoelastic properties of normal tissues and candidate replacement materials should be measured at phonation frequencies (100 - 1000 Hz) and at the large strains (up to 30percent) that occur during speech and singing. Previously the authors have developed a torsional wave experiment to measure the complexmoduli, in shear, for vocal folds subjected to small strains at phonation frequencies. This method has now been extended to finite deformations by sandwiching a thin disk of vocal fold tissue (lamina propria), or replacement material, between two rigid plates. The lowerplate is driven by a galvanometer at phonation frequencies and small rotations. A second stiffer material is placed between the upper plate and a third plate attached to an upper galvanometer that oscillates sinusoidally at low frequency and large rotation. At periodic peak rotations of the upper galvanometer, the lower galvanometer superimposes infinitesimal oscillations at a series of higher frequencies. The magnitude and phase of rotation of the middle plate yield the viscoelastic properties of the test specimen for infinitesimal deformations at high frequency superimposed on finite deformations at low frequency. Preliminary results show the potential of the new test.
机译:在修复受损声学折叠的这种应用中,正常组织和候选替换材料的粘弹性特性应测量在发声频率(100-1000Hz)中,并且在语音和歌唱期间发生的大菌株(最多30平方)。此前,作者开发了一种扭转波实验,以测量剪切,剪切剪切,用于在发声频率下进行小菌株的声带。现在,这种方法现在已经通过将声带组织(Lamina Propria)或更换材料在两个刚性板之间夹在一起来延伸到有限的变形。下板由电流计驱动的声音频率和小旋转。将第二冷却材料放置在上板和附接到上部电流计的上板和第三板之间,该上部流动仪处于低频和大旋转的正弦地振荡。在上部流动仪的周期性峰值处,下部电流计在一系列更高频率下叠加无限振荡。中间板旋转的幅度和相位产生试样的试样的粘弹性特性,以在低频下叠加在高频上的高频处的无限变形。初步结果显示了新测试的潜力。

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