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Dive into the research topics where Duan Zhuping is active.

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Featured researches published by Duan Zhuping.


Chinese Physics Letters | 2011

A Scaled Underwater Launch System Accomplished by Stress Wave Propagation Technique

Wei Yanpeng; Wang Yiwei; Fang Xin; Huang Chenguang; Duan Zhuping

A scaled underwater launch system based on the stress wave theory and the slip Hopkinson pressure bar (SHPB) technique is developed to study the phenomenon of cavitations and other hydrodynamic features of high-speed submerged bodies. The present system can achieve a transient acceleration in the water instead of long-time acceleration outside the water. The projectile can obtain a maximum speed of 30 m/s in about 200 mu s by the SHPB launcher. The cavitation characteristics in the stage of acceleration and deceleration are captured by the high-speed camera. The processes of cavitation inception, development and collapse are also simulated with the business software FLUENT, and the results are in good agreement with experiment. There is about 20-30% energy loss during the launching processes, the mechanism of energy loss is also preliminary investigated by measuring the energy of the incident bar and the projectile.


Applied Mathematics and Mechanics-english Edition | 2000

Dynamic stress field around the mode III crack tip in an orthotropic functionally graded material

Li Chunyu; Zhou Zhenzhu; Duan Zhuping

The problem of a Griffith crack in an unbounded orthotropic functionally graded material subjected to antipole shear impact was studied. The shear moduli in two directions of the functionally graded material were assumed to vary proportionately as definite gradient. By using integral transforms and dual integral equations, the local dynamic stress field was obtained. The results of dynamic stress intensity factor show that increasing shear modulis gradient of FGM or increasing the shear modulus in direction perpendicular to crack surface can restrain the magnitude of dynamic stress intensity factor.


International Journal of Impact Engineering | 1998

ITERATIVE METHOD USING CONSISTENT MASS MATRIX IN AXISYMMETRICAL FINITE ELEMENT ANALYSIS OF HYPERVELOCITY IMPACT

Song Shun-cheng; Duan Zhuping

We present in this paper an iterative method using consistent mass matrix in axisymmetrical finite element analysis of hypervelocity impact. To retain the advantage of integration on an element-by-element basis which is at the heart of modern hydrocodes, we suggest that the first step should be to solve for accelerations at an advanced time step by using the lumped mass approach, then iterate using a consistent mass matrix to improve the estimate. Examples are given to show the improved resolution with the new method.


Applied Mathematics and Mechanics-english Edition | 2002

Studies on the Dynamic Buckling of Circular Plate Irradiated by Laser Beam

Huang Chenguang; Duan Zhuping

The dynamic buckling of thin copper plate induced by laser beam, was analyzed with the numerical integration and disturbance methods of controlling equation. The buckling and post-buckling of thin plate were shown, with the consideration of the temperature distribution, inertia effect and initial deflection. At last, the buckling criterion about the circular plate was obtained and used to investigate the relation between the critical laser intensity and the ratio of thickness and diameter of the plate. The results fit the experimental observation and the FEM simulation very well, and benefit to the understanding of failure phenomenon of structures irradiated by laser beam.


Applied Mathematics and Mechanics-english Edition | 1995

The analytical study on the laser induced reverse-plugging effect by using the classical elastic plate theory (I)—Temperature fields

Zhou Yichun; Duan Zhuping; Wang Chunqui

The temperature distributions in the metallic foils induced by spatially cylindrical long-pulsed laser is exammed in order to analyse the newly-discovered reverse-plugging effect (RPE). An exact solution for the temperature fields is derived by using the Hankel transform and Laplace transform. Numerical results are obtained for both spatial distributions with Gaussian and cylindrical types. The results show that the spatially cylindrical distribution of laser offers a formidable potential for the RPE.


Acta Mechanica Sinica | 1991

SINGULAR BEHAVIOUR AND ASYMPTOTIC STRESS FIELD OF A CRACK TERMINATING AT A BIMATERIAL INTERFACE

Cheng Pinsan; Duan Zhuping

A crack terminating at an interface of two dissimilar elastic materials is investigated. It is found that the asymptotic stress field near the crack tip is in general composed of two parts with each part being characterized by one singularity. The detailed relation of the two singularities with the bimaterial properties is given for some special cases of the crack.


Acta Mechanica Sinica | 2000

Mechanical effects of the self-organization of dislocations and related critical characteristics

Huang Guojun; Duan Zhuping

The effects of the dislocation pattern formed due to the self-organization of the dislocations in crystals on the macroscopic hardening and dynamic internal friction (DIF) during deformation are studied. The classic dislocation models for the hardening and DIF corresponding to the homogeneous dislocation configuration are extended to the case for the non-homogeneous one. In addition, using the result of dislocation patterning deduced from the non-linear dislocation dynamics model for single slip, the correlation between the dislocation pattern and hardening as well as DIF is obtained. It is shown that in the case of the tension with a constant strain rate, the bifurcation point of dislocation patterning corresponds to the turning point in the stress versus strain and DIF versus strain curves. This result along with the critical characteristics of the macroscopic behavior near the bifurcation point is microscopically and macroscopically in agreement with the experimental findings on mono-crystalline pure aluminum at temperatures around 0.5Tm. The present study suggests that measuring the DIF would be a sensitive and useful mechanical means in order to study the critical phenomenon of materials during deformation.


Chinese Physics Letters | 1997

Renormalization group approach on nanostructured systems

Yan XiaoHong; Zhang Lide; Duan Zhuping; Yang Qi-Bin

The electronic spectra of one-dimensional nanostructured systems are calculated within the pure hopping model on the tight-binding Hamiltonian. By means of the renormalization group Greens function method, the dependence of the density of states on the distributions of nanoscaled grains and the changes of values of hopping integrals in nanostructured systems are studied. It is found that the frequency shifts are dependent rather on the changes of the hopping integrals at nanoscaled grains than the distribution of nanoscaled grains.


Surface and Interface Analysis | 2000

Application of laser cladding technology to improve the interface of thermal barrier coatings

Ma Yue; Duan Zhuping; Yang Zhixing; Wu Chengkang


Archive | 2002

High-accuracy locating holder and recovering apparatus for pressing-applying shear force firework sample

Ma Wei; Duan Zhuping; Wu Chengkang

Collaboration


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Huang Chenguang

Chinese Academy of Sciences

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Wu Chengkang

Chinese Academy of Sciences

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Ma Wei

Chinese Academy of Sciences

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Cheng Pinsan

Chinese Academy of Sciences

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Fang Xin

Chinese Academy of Sciences

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Huang Guojun

Chinese Academy of Sciences

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Li Chunyu

Shijiazhuang Railway Institute

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Ma Yue

Chinese Academy of Sciences

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Song Shun-cheng

Southwest Jiaotong University

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Wang Chunqui

Chinese Academy of Sciences

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