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首页> 外文期刊>Journal of nanomaterials >Thermal Stresses Analysis and Optimized TTP Processes to Achieved CNT-Based Diaphragm for Thin Panel Speakers
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Thermal Stresses Analysis and Optimized TTP Processes to Achieved CNT-Based Diaphragm for Thin Panel Speakers

机译:热应力分析和优化的TTP工艺实现基于CNT的薄板扬声器的膜片

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Industrial companies popularly used the powder coating, classing, and thermal transfer printing (TTP) technique to avoid oxidation on the metallic surface and stiffened speaker diaphragm. This study developed a TTP technique to fabricate a carbon nanotubes (CNTs) stiffened speaker diaphragm for thin panel speaker. The self-developed TTP stiffening technique did not require a high curing temperature that decreased the mechanical property of CNTs. In addition to increasing the stiffness of diaphragm substrate, this technique alleviated the middle and high frequency attenuation associated with the smoothing sound pressure curve of thin panel speaker. The advantage of TTP technique is less harmful to the ecology, but it causes thermal residual stresses and some unstable connections between printed plates. Thus, this study used the numerical analysis software (ANSYS) to analyze the stress and thermal of work piece which have not delaminated problems in transfer interface. The Taguchi quality engineering method was applied to identify the optimal manufacturing parameters. Finally, the optimal manufacturing parameters were employed to fabricate a CNT-based diaphragm, which was then assembled onto a speaker. The result indicated that the CNT-based diaphragm improved the sound pressure curve smoothness of the speaker, which produced a minimum high frequency dip difference (Delta dB) value.
机译:工业公司普遍使用粉末涂料,级别和热转印印刷(TTP)技术,以避免金属表面和加强扬声器隔膜上的氧化。本研究开发了一种用于制造薄板扬声器的碳纳米管(CNT)加强扬声器隔膜的TTP技术。自我开发的TTP加强技术不需要高固化温度,降低CNT的机械性能。除了增加隔膜基板的刚度之外,该技术还减轻了与薄板扬声器的平滑声压曲线相关的中高频衰减。 TTP技术的优点对生态学的危害较小,但它导致印刷板之间的热残余应力和一些不稳定的连接。因此,本研究使用了数值分析软件(ANSYS)来分析在转移界面中没有分层问题的工件的应力和热量。应用TAGUCHI质量工程方法来识别最佳制造参数。最后,采用最佳制造参数来制造基于CNT的隔膜,然后组装到扬声器上。结果表明,基于CNT的隔膜改善了扬声器的声压曲线平滑度,其产生了最小的高频倾差(Delta DB)值。

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