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一种新颖的多路PWM式交流电加热调功器的设计 被引量:3
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作者 王时胜 朱建勇 徐东辉 《电气自动化》 北大核心 2005年第4期63-65,共3页
本文介绍了一种性能价格比较高的多路 PWM 式交流电加热调功器的原理及方案实现。其中89C2051单片机产生、输出 PWM 波并驱动 SSR,89C51完成控制运算并输出控制量。该方案具有成本低、应用灵活等特点,已成功用于温度控制系统。
关键词 交流电加热 PWM 单片机 调功器
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锂离子动力电池低温复合加热方法 被引量:7
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作者 熊瑞 王侃 郭姗姗 《机械工程学报》 EI CAS CSCD 北大核心 2019年第14期53-59,共7页
锂离子动力电池低温环境下充放电性能差,充电过程可能发生析锂,甚至引发安全事故,因此,开展锂离子动力电池低温加热必要且紧迫。为实现锂离子动力电池低温快速加热,提出一种结合交流电内部加热和宽线金属膜外部加热的复合加热方法,建立... 锂离子动力电池低温环境下充放电性能差,充电过程可能发生析锂,甚至引发安全事故,因此,开展锂离子动力电池低温加热必要且紧迫。为实现锂离子动力电池低温快速加热,提出一种结合交流电内部加热和宽线金属膜外部加热的复合加热方法,建立动力电池的温升模型,仿真分析动力电池的温升特性,基于此,开展动力电池低温复合加热策略的验证试验。结果表明,复合加热法可以在471 s内将动力电池从-20℃加热到5℃,相较于交流电加热法加热速率提升22%、加热功耗降低23%;对单体内阻差异较大的电池组,该方法还能提升加热效果的一致性,是一种可行的动力电池系统低温加热方法。 展开更多
关键词 锂离子动力电池 低温复合加热策略 宽线金属膜加热 交流电加热
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Targeted inductive heating of nanomagnets by a com- bination of alternating current (AC) and static magnetic fields 被引量:3
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作者 Ming Ma Yu Zhang Xuli Shen Jun Xie Yan Li Ning Gu 《Nano Research》 SCIE EI CAS CSCD 2015年第2期600-610,共11页
The conversion of electromagnetic energy into heat by nanomagnets has the potential to be a powerful, non-invasive technique for cancer therapy by hyperthermia and hyperthermia-based drug release, while temperature co... The conversion of electromagnetic energy into heat by nanomagnets has the potential to be a powerful, non-invasive technique for cancer therapy by hyperthermia and hyperthermia-based drug release, while temperature controllability and targeted heating are challenges to developing applications of such magnetic inductive hyperthermia. This study was designed to control the hyperthermia position and area using a combination of alternating current (AC) and a static magnetic field. MnZn ferrite (MZF) nanoparticles which exhibited excellent hyperthermia properties were first prepared and characterized as an inductive heating mediator. We built model static magnetic fields simply using a pair of permanent magnets and studied the static magnetic field distributions by measurements and numerical simulations. The influence of the transverse static magnetic fields on hyperthermia properties was then investigated on MZF magnetic fluid, gel phantoms and SMMC-7721 cells in vitro. The results showed a static magnetic field can inhibit the temperature rise of MZF nanoparticles in an AC magnetic field. But in the uneven static magnetic field formed by a magnet pair with repelling poles face-to-face, the heating area can be restricted in a central low static field; meanwhile the side effects of hyperthermia can be reduced by a surrounding high static field. As a result we can position the hyperthermia area, protect the non-therapeutic area, and reduce the side effects lust by using a well-designed combination of AC and static field. 展开更多
关键词 HYPERTHERMIA magnetic nanoparticles static magnetic field alternating magnetic field MnZn ferrite
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