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Haibo Yang,Ying Lin,Jianfeng Zhu,Fen Wang 한국물리학회 2010 Current Applied Physics Vol.10 No.4
Dense Ni0.37Cu0.20Zn0.43Fe1.92O3.88/(Ba0.6Sr0.4)TiO3 composite thick films were prepared through screen printing method and sintered at 880 ℃. The powder XRD patterns confirm the coexistence of the two phases. The dielectric and magnetic properties are also reported. The results show that this kind of magnetic–dielectric composite thick films, possessing high permittivity and saturation magnetization, moderate dielectric tunability, and very low dielectric loss and coercivity, could be used in high-frequency communications for the capacitor–inductor integrating devices such as electromagnetic interference filters and antennas.
Study on thermal buckling and post-buckling behaviors of FGM tubes resting on elastic foundations
She, Gui-Lin,Ren, Yi-Ru,Xiao, Wan-Shen,Liu, Haibo Techno-Press 2018 Structural Engineering and Mechanics, An Int'l Jou Vol.66 No.6
This paper studies thermal buckling and post-buckling behaviors of functionally graded materials (FGM) tubes subjected to a uniform temperature rise and resting on elastic foundations via a refined beam model. Compared to the Timoshenko beam theory, the number of unknowns of this model are the same and no correction factors are required. The material properties of the FGM tube vary continuously in the radial direction according to a power function. Two ends of the tube are assumed to be simply supported and in-plane boundary conditions are immovable. Energy variation principle is employed to establish the governing equations. A two-step perturbation method is adopted to determine the critical thermal buckling loads and post-buckling paths of the tubes with arbitrary radial non-homogeneity. Through detailed parametric studies, it can be found that the tube has much higher buckling temperature and post-buckling strength when it is supported by an elastic foundation.
Tao Jin,Yuying Lin,Shichou Han,Guangchang Ma,Haibo Wen,Zhengqiang Peng 한국응용곤충학회 2019 Journal of Asia-Pacific Entomology Vol.22 No.3
Five candidate species for biocontrol of Opisina arenosella Walker, a destructive pest of palm trees, were evaluated. To compare host performance, 5 Trichogramma species were allowed to parasitize O. arenosella eggs of different ages and egg densities. The parasitization capacity of two species, T. embryophagum and T. japonicum, were evaluated with respect to adult age. Treatments consisted of field with releases of T. embryophagum or T. japonicum set up in Danzhou, Hainan, and the pest densities was recorded periodically. The results showed that T. embryophagum, T. chilonis, and T. dendrolimi had a strong parasitic ability on 0-day-old O. arenosella eggs. In species comparisons, the parasitism rates of T. embryophagum on 1-day-old and 4-day-old eggs, and T. japonicum on 2-day-old, 3-day-old, and 5-day-old eggs of O. arenosella were significantly higher than those of other Trichogramma species. At densities of 40 and 35 eggs/tube (84.8 cm 3 ), the numbers of eggs parasitized by T. embryophagum and T. japonicum were the highest, at 29.9 and 24.6, respectively. During the first 24-h, the numbers of eggs parasitized by T. embryophagum and T. japonicum were 110.6 and 82.2, accounting for 84.7% and 59.5%, respectively, of the total parasitized eggs. After 2 months releases, the larvae and pupa density of O. arenosella under T. embryophagum and T. japonicun treatment were 0.95 and 0.94 individuals/leaflet, respectively, were significantly lower than untreated control (1.6 individuals/leaflet). These findings encouraged that T. embryophagum and T. japonicun are able to be used for biological control for O. arenosella.