标题: | 具加劲矩形复合材料扬声器的振动模拟及声传研究 Vibration and Sound Radiation of Rectangangular Composite Panels stiffened at Different Location |
作者: | 张竣惟 Chang, Jun-wei 金大仁 Kam, T.Y. 机械工程学系 |
关键字: | 扬声器;Rayleigh-Ritz Method |
公开日期: | 2011 |
摘要: | 本文主要研究长形高功率扬声器之加劲方式对声音传递的影响。以相同面积下考量下,长形的扬声器比圆形的扬声器要来的容易利用空间。但对长形扬声器而言,在中音域会产生一声压落差,影响声传表现,因此本文透过适当的加劲方式增加扬声板的刚性,以改善扬声器声压落差问题。本文可为二部分,第一部分,以”Rayleigh-Ritz Method”与”有限元素分析软体ANSYS”互相验证扬声器之自然频率与声压曲线,再以实验验证ANSYS模型,建立一套完整的分析方法。第二部分,利用”有限元素分析软体ANSYS”,分析扬声器较适当的加劲方式及分析较理想的扬声板以及碳纤材料的常数,以达到延后中音谷频率与提升扬声板刚性。 This paper is focused on the sound radiation behavior of stiffened sound radiation panels for flat-panel loudspeaker. If the sound radiation panel is not properly design, it is easy for a flat-panel speaker to have a significant sound pressure drop in the mid-frequency range, which may affect the sound quality of the speaker. To suppress or even eliminate the sound pressure drop, this thesis attempts to enhance the rigidity of the plate by using an appropriate stiffening method. There are two parts in this thesis. In the first part, a Rayleigh-Ritz Method is constructed to analyze the sound radiation behavior of stiffened sound radiation panels. The results obtained using the proposed Rayleigh-Ritz Method are compared with those obtained from the finite element software ANSYS. It has been shown that the natural frequencies and the sound pressure level (SPL) curves produced by the proposed method are in good agreement with those produced by ANSYS or experiments. In the second part, ANSYS is used to find the appropriate stiffening pattern for designing the sound radiation panel and the ideal material constants of the panel so that the major sound pressure drop in the mid-frequency range can be suppressed. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079814587 http://hdl.handle.net/11536/47193 |
显示于类别: | Thesis |