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[求助]
高分子材料論文翻譯求助
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Electromagnetic interference (EMI) has become a specific type of environmental pollution, due to the rapid growth in utilization of electrical and electronic devices in industrial, commercial and military applica- tions. Electromagnetic attenuation materials have been commonly used to minimize EMI. M-type barium ferrite is an ideal material for the development of electromagnetic attenuation at microwave band, due to the high saturation magnetization, large anisotropy field, excellent chemical stability and high microwave magnetic loss [1–3]. In order to improve the magnetic and electromagnetic absorption properties of ferrites, some Fe3+ions have been substituted with Co–Ti, Zn– Ti, Zn–Sn, Co–Sn, Ni–Zr and Co–Mo [4–9]. In another way, ferrites have been compounded with nonmagnetic materials such as SiO2, Bi2O3and Al2O3[10–15]. In our previous work, the microwave absorption proper- ties of a series of barium ferrites substituted with Al3+ and Cr3+were studied [16]. We found that the locations of absorption peaks for the barium ferrites change regularly with the amount of substitution ions. We also compounded BaFe12O19with TiO2when preparing the film, which not only eliminates the microcracks in film, but also improves its microwave absorption property. Based on these results, we suggested in this paper a method to broaden the absorption range of a film with different layers. BaFe10.5Al1.5O19, BaFe10.1Al1.9O19 and BaFe11.4Cr0.6O19, having absorption peaks at different frequencies, are selected with TiO2 to prepare individual layers in the NCMF. In this way the absorption range of the NCMF can be broadened. The morphology, crystalline structure and microwave absorption property of NCMF are studied. |
木蟲 (小有名氣)
| 由于電子電氣設備的使用率在工商業(yè)和軍事領域的迅速增長,電磁干擾(EMI)現(xiàn)今已成為一種環(huán)境污染類型。電磁衰減材料已廣泛用于減少電磁干擾。M型鋇鐵氧體有高飽和磁化強度、大各向異性場、優(yōu)異的化學穩(wěn)定性和高微波磁損等性質(zhì),是一種研發(fā)微波波段電磁衰減的理想材料。為了提高鐵氧體的磁性和電磁吸收性能,其中的一些三價鐵離子被Co–Ti, Zn–Ti, Zn–Sn, Co–Sn, Ni–Zr和Co–Mo等代替。另一種方式是把鐵氧體與其他非磁性物質(zhì)混合,比如SiO2,Bi2O3和Al2O3。我們在之前的工作中研究了一系列Al3+和Cr3+離子替換鋇鐵氧體的微波吸收性能。我們發(fā)現(xiàn)鋇鐵氧體的吸收峰的位置隨著替換離子的量呈現(xiàn)有規(guī)律的變化。我們同樣也在制備薄膜時把BaFe12O19和TiO2混合,這種方法不僅消除了薄膜中的微裂紋,還提高了其微波吸收性能;谶@些結果,我們在這片文章中介紹一種使多層薄膜吸收范圍變寬的方法。BaFe10.5Al1.5O19, BaFe10.1Al1.9O19和BaFe11.4Cr0.6O19,這些具有不同吸收峰頻率的材料被選來與TiO2一起在NCMF中制備獨立層。如此這般NCMF的吸收范圍可以被擴大。我們研究了NCMF的形貌、晶體結構和微波吸收性能。 |
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