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Anisotropic Thermoelectric Generator Made from Single Crystal Bi Microwire

机译:由单晶Bi Microwire制成的各向异性热电发电机

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Currently, for thermoelectric conversion of heat most widely used is the approach based on the Seebeck and Peltier effects created at the interface of two materials with different values S of the Seebeck coefficient Another type of thermoelectric converter is the anisotropic thermoelement (AT) using anisotropy of thermoelectric power. AT has some advantages: - the transverse thermopower, unlike a conventional thermocouple, is proportional to the temperature gradient (T1-T2)/h instead of the temperature difference T1-T2; - Voltage V is proportional to the length I of AT. To increase the AT output voltage we need either increase the length 1 of AT or decrease its thickness h. According to our experimental data, to obtain a thermoelectric voltage of 1 V at a transverse temperature gradient of 5 K, the microwire with a diameter of 2 urn and a length of 8 m must be used. In our experimental sample the long wire in glass coating was wound into a flat spiral.
机译:目前,对于热量的热电转换最广泛使用的是基于塞贝克和珀耳帖效果的方法,在两种材料的界面处产生的塞贝克系数的不同值S另一种热电转换器是使用各向异性的各向异性热电子(AT)的各向异性 热电力。 在具有一些优点: - 与传统的热电偶不同,横向热电机与温度梯度(T1-T2)/ H成比例,而不是温度差T1-T2; - 电压V与AT的长度成比例。 为了增加输出电压,我们需要增加在其厚度h的处的长度1。 根据我们的实验数据,为了在5 k的横向温度梯度下获得1V的热电电压,必须使用直径为2瓮和长度为8μm的微线。 在我们的实验样品中,玻璃涂层中的长线缠绕成扁平螺旋形。

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