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81.
Joanna Sokól-Supel 《基于设计的结构力学与机械力学》2013,41(3-4):323-341
An analysis of rotationally symmetric plates resting on an elastic subgrade is presented. The plates are made of an elastic, perfectly plastic material that obeys Johansen's yield condition and associated flow rule. The analysis is simplified by assuming that any plate element is either entirely elastic or entirely plastic. This assumption is practically fulfilled for a sandwich plate. Differential equations that describe the behavior of plastic zones during the deformation process are derived and solved in closed form. Examples of solutions for uniformly loaded circular plates are given. 相似文献
82.
The old result due to[Ozaki,S.:On the theory of multivalent functions Ⅱ.Sci.Rep.Tokyo Bunrika Daigaku Sect.A,45-87(1941)],says that if f(z) = z~p + ∑_(n=p+1~(a_nz~n))~∞ is analytic in a convex domain D and for some real α we have Re{exp(iα)f~((p))(z)} 0 in D,then f(z) is at most p-valent in ED.In this paper,we consider similar problems in the unit disc B = {z ∈ C:|z| 1}. 相似文献
83.
84.
We define V (α, β) (α < 1 and β > 1), the new subclass of analytic functions with bounded positive real part, \(V\left( {\alpha ,\beta } \right): = \left\{ {f \in A:\alpha < \operatorname{Re} \left\{ {{{\left( {\frac{z}{{f\left( z \right)}}} \right)}^2}f'\left( z \right)} \right\} < \beta } \right\}\), and study some properties of V (α, β). We also study the class U (γ) (γ > 0): \(u\left( \gamma \right): = \left\{ {f \in A:\left| {{{\left( {\frac{z}{{f\left( z \right)}}} \right)}^2}f'\left( z \right)} \right| - 1 < \gamma } \right\}\), where A is the class of normalized functions. 相似文献
85.
86.
A. V. Knyaginichev Khan Kha Sok V. M. Avdyukhina A. A. Katsnel’son G. P. Revkevich 《Physics of the Solid State》2001,43(2):207-213
Specific features in the structural evolution of a Pd-Mo alloy after its electrolytic saturation with hydrogen are studied by x-ray diffraction. It is revealed that these features depend on the concentration of absorbed hydrogen, the initial defect structure, and the character of its transformation upon hydrogen saturation. The factors responsible for the structural evolution depend on the concentration of alloy components and the difference between the hydrogen affinities, Debye temperatures, and elastic constants of the components. A model proposed for the evolution of the structure and elastic stresses in palladium-metal-hydrogen systems accounts for the above factors. 相似文献