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Thermal management of a pico projector by using a multiple fans with a piezoelectric actuator system

机译:使用带压电执行器系统的多风扇的微型投影仪的热管理

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In this study, multiple fans with a piezoelectric actuator (MFPA) system was adopted to transfer the heat inside a pico projector. Different MFPA models with different dimensional combinations of carbon fiber plates and Mylar plates were developed and their thermal performance along with resonant frequency and vibrating amplitude and power consumption were investigated. The result showed that the MFPA system with the combination of a 35 mm carbon fiber plate and a 5 mm Mylar plate had the best thermal performance with the thermal resistance of 4.93 W/m-K while the input power for the heater was 8 W and input voltage for the MFPA was 80 V. Meanwhile, the average vibrational amplitude reached 12.25 mm with the power consumption of 0.12 W at the resonant frequency of 61.5 Hz. To further enhance the cooling ability, this MFPA model was connected to the heat pipe module, and the efficiency of this model was compared to that of the rotary fan. The result revealed that the MFPA system on the heat pipe module achieved an amazing efficiency of 40.6% while that of the rotary fan was 47.3%, and the power consumption for the MFPA was 0.12 W which was merely 8.6% of 1.35 W for the rotary fan.
机译:在这项研究中,采用具有压电致动器(MFPA)系统的多个风扇在微微投影仪内部转移热量。开发了不同尺寸组合的不同MFPA型号,并调查了它们的热性能以及谐振频率和振动幅度和功耗。结果表明,采用35mm碳纤维板和5mm骨牌板组合的MFPA系统具有最佳的热性能,具有4.93W / mk的热电阻,而加热器的输入电源为8 W和输入电压同时,对于MFPA为80 V,平均振动幅度达到12.25mm,功耗为0.12W,谐振频率为61.5Hz。为了进一步提高冷却能力,该MFPA模型连接到热管模块,并将该模型的效率与旋转风扇的效率进行了比较。结果表明,热管模块上的MFPA系统实现了40.6%的惊人效率,而旋转风扇的效率为47.3%,MFPA的功耗仅为0.12W,旋转仅为1.35W的8.6%。扇子。

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