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电感磁圈用绝缘粉末涂料的研制 被引量:4
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作者 史中平 吴宗栓 +1 位作者 高庆福 戴创波 《涂层与防护》 2020年第4期18-22,23,共6页
研究了应用于电感磁圈涂装的粉末涂料,分析了配方中的环氧树脂、固化剂、填料等对涂层绝缘性和柔韧性等性能的影响。通过配方优化,得到了适用于电感磁圈涂装的环氧粉末涂料。性能测试结果表明,产品可满足与油漆相同的抗电压击穿要求,同... 研究了应用于电感磁圈涂装的粉末涂料,分析了配方中的环氧树脂、固化剂、填料等对涂层绝缘性和柔韧性等性能的影响。通过配方优化,得到了适用于电感磁圈涂装的环氧粉末涂料。性能测试结果表明,产品可满足与油漆相同的抗电压击穿要求,同时兼具优异的柔韧性、耐酸碱、耐溶剂、耐水煮、快速固化等性能,降低磁圈电感,可在155℃高温下持续工作。 展开更多
关键词 粉末涂料 电感磁圈 绝缘 涂层性能
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Design of ground-airborne TEM three-component air-core coil sensor 被引量:6
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作者 YUAN Shao-ye LIN Jun +2 位作者 SONG Shuang SUN De-li TENG Fei 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2019年第1期28-37,共10页
Transient electromagnetic method (TEM),as a non-seismic geophysical exploration mainstream electromagnetic method,is widely used in oil,gas,mineral and other underground resources exploration areas. The coil sensor is... Transient electromagnetic method (TEM),as a non-seismic geophysical exploration mainstream electromagnetic method,is widely used in oil,gas,mineral and other underground resources exploration areas. The coil sensor is generally used to collect data. In view of the problems of incomplete information of the abnormal body and the data loss in the existing TEM single-component coil sensor,a three-component TEM coil sensor is designed. By analyzing the relationship between sensor sensitivity and coil structure parameters,the coil structure and turns are designed. By analyzing the frequency response characteristics of the TEM magnetic field sensor,the signal distortion is reduced by using the under-damped matching mode. By analyzing the distribution of various noise sources of the magnetic sensor,the appropriate amplifier is selected to reduce the background noise. Finally,a three-component TEM induction magnetic field sensor is designed. The weight of the sensor is controlled at 3.2 kg and the working frequency is 10 mHz-10 kHz. The background noises of X and Y components probably keep in 1.5×10^-8 V/ Hz and sensitivities are 8.4 and 9.8 nT/s,respectively,the background noise of vertical component is 2.1× 10^-7 V/ Hz and sensitivity is 18.5 nT/s. Compared with the existing single-component TEM receiving magnetic field sensor,the designed sensor realizes the signal acquisition of three components. Without too much increase in volume and total weight,it improves the sensitivity of the sensor and reduces the background noise,thus the signal-to-noise ratio (SNR) of the signal is improved. 展开更多
关键词 transient electromagnetic method (TEM) three-component air-core coil sensor under-damped matching noise analysis
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Magnetically induced micropillar arrays for an ultrasensitive flexible sensor with a wireless recharging system 被引量:3
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作者 Libo Gao Ying Han +9 位作者 James Utama Surjadi Ke Cao Wenzhao Zhou Hongcheng Xu Xinkang Hu Mingzhi Wang Kangqi Fan Yuejiao Wang Weidong Wang Horacio D.Espinosa 《Science China Materials》 SCIE EI CAS CSCD 2021年第8期1977-1988,共12页
Significant efforts have been devoted to enhancing the sensitivity and working range of flexible pressure sensors to improve the precise measurement of subtle variations in pressure over a wide detection spectrum. How... Significant efforts have been devoted to enhancing the sensitivity and working range of flexible pressure sensors to improve the precise measurement of subtle variations in pressure over a wide detection spectrum. However,achieving sensitivities exceeding 1000 kPa^(-1) while maintaining a pressure working range over 100 kPa is still challenging because of the limited intrinsic properties of soft matrix materials. Here, we report a magnetic field-induced porous elastomer with micropillar arrays(MPAs) as sensing materials and a well-patterned nickel fabric as an electrode. The developed sensor exhibits an ultrahigh sensitivity of 10,268 kPa^(-1)(0.6–170 kPa) with a minimum detection pressure of 0.25 Pa and a fast response time of 3 ms because of the unique structure of the MPAs and the textured morphology of the electrode. The porous elastomer provides an extended working range of up to 500 kPa with long-time durability. The sophisticated sensor system coupled with an integrated wireless recharging system comprising a flexible supercapacitor and inductive coils for transmission achieves excellent performance. Thus, a diverse range of practical applications requiring a low-to-high pressure range sensing can be developed. Our strategy, which combines a microstructured high-performance sensor device with a wireless recharging system, provides a basis for creating next-generation flexible electronics. 展开更多
关键词 high sensitivity pressure sensor SUPERCAPACITOR wireless recharging flexible electronics
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