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| 1 | Biomimetic Design and Test of Composite Materials显示文摘A series of superior properties will make composites the most important structural materials in thenext century.But they are difficult to design owing to the complexity of structure and processing.Biomaterials had been naturally selected and evolved for millions of years,a great variety of their ra-tional composite structures could be taken as our reference in the biomimetic design of compositematerials.There are many difficult problems in the current study on composite materials such as:brittleness of continuous fibers and difficulties in interface design;easy pull-out of short fibers frommatrix causing failure in reinforcing;being less easy in selecting the aspect ratio of whiskers and dif-ficulties in finding the way of toughening composites of ceramic matrices as well as the way of heal-ing inner damages.After describing the distinct composite features,the functional adaptability andself-healing ability of biomaterials,several examples o.f biomimetic design of composite materialshave been listed in this paper:the optimum design of composites simulating bamboo structure;thefine structure of bamboo fibers;the dumb-bell model simulating animal bone;the model on thepull-out of fiber with fractal-tree structure and some tentative works on the healing of inner damagein composite materials The methodology of biomimetic design and its future have been given at theast part of this paper. | Benlian ZHOU International Centre for Materials Physics,Institute of Metal Research,Academia Sinica,Shenyang,110015,China | 1993 | Journal of Materials Science & Technology1993,9,1: | 2 |
| 2 | Effect of a fiber coating on the fabrication of fiber reinforced metal-matrix composites显示文摘 | ZHOU Benlian | 1998 | J Mater Process Technol1998,1,: | 1 |
| 3 | Effect of silicon additions on characteristics of carbon fiber reinforced aluminum composites during thermal exposure 显示文摘 | CHENG Huiming ZHOU Benlian KITAHARA A | 1996 | Journal of Materials Research1996,11,5: | 1 |
| 4 | Enhanced Bamboo Reinforced Aluminum Laminates显示文摘A new technique has been developed for flattening circular natural bamboo culm to plate form for remarkably enhancing its mechanical properties, The enhanced bamboo, cheaper than Al, is then used to reinforce an aluminum alloy for civilian applications. The properties of the composite are greatly enhanced compared to those of the Al alloy. The Al protects bamboo from bioerosion and improves | Shihong LI Shaoyun FU and Benlian ZHOU (Int. Centre for Mater. Phys., Institute of Metal Research, Chinese Academy of Science, Shenyang, 110015, China)Qiyun ZENG and Xianrong BAO (Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, 11 | 1994 | Journal of Materials Science & Technology1994,10,5: | 1 |
| 5 | Study on epoxy resin modified with prepolymers containing spiro orthocarbonate显示文摘 | Wang Changsong Zhou Benlian | 1999 | Journal of Materials Science Letters1999,,18: | 1 |
| 6 | Effect of a fiber coating on the fabrication of fiber reinforced metal-matrix composites显示文摘 | WANG Yuqing ZHOU Benlian | 1998 | J Mater Process Technol1998,1,: | 1 |
| 7 | Study on epoxy resin modified with prepolymers containing spiro orthocarbonate显示文摘 | Wang Changsong Zhou Benlian | 1999 | Journal of Materials Science Letters1999,,18: | 1 |
| 8 | Effect of a fiber coating on the fabrication of fiber reinforced metal- matrix composites 显示文摘 | WANG Yuqing ZHOU Benlian | 1998 | J Mater Process Technol1998,1,: | 1 |
| 9 | Functionally graded Al/Mg2 Si in-situ composites prepared by centrifugal casting显示文摘 | Zhang Jian Wang Yuqing Zhou Benlian Wu Xingqian | 1998 | Mater Sci Lett1998,17,: | 1 |
| 10 | A Biomimetic Model of Fiber-reinforced Composite Materials显示文摘In thjs paper. bamboo fiber has been. on micro scale. investigated as a helical. multi-layered hollow cylinder, the stiffness featu res of bamboo bast fiber were compared with those of a multifilament yarn in traditional fiber-reinforced composite materials, Moreover. a biomimetic model of the reinforce ment of fiber-reinforced composite materials was proposed by imitating the fine structure of bamboo bast fiber. The results show that the comprehensive stiffness properties of the cornplicated fine struc ture of bamboo fiber is superior over those of traditional fiber-reinforced composites. | Shihong LI Ronghui ZHANG Shaoyun FU Xin CHEN and Benlian ZHOU(Institute of Metal Research, Academia Sinica, Shenyang, 110015, China)Qiyun ZENG(Institute of Applied Ecology, Academia Sinica, Shenyang, 110015, China) | 1994 | Journal of Materials Science & Technology1994,10,1: | 0 |
| 11 | Solitary Magnon Localization in Antiferromagnet Ni( C_(2)H_(8)N_(2))_(2)NO_(2)C1O_(4)显示文摘Employing the Holstein-Primakoff transformation and the coherent state ansatz,we obtain two partial differential equations of motion from Hamiltonian.Using the method of multiple scalar,we reduce these equations into a nonlinear Schrodinger equation and get the single soliton solution.These results show that solitary magnon localization in antiferromagnet Ni( C_(2)H_(8)N_(2))_(2)NO_(2)C1O_(4) is possible. | LIU Wuming ZHOU Benlian | 1994 | Chinese Physics Letters1994,11,7: | 0 |
| 12 | Periodic Wave Solution and Its Stability in Antiferromagnet KCuF_(3)显示文摘Introducing the coherent state ansatz and the time-dependent variational principle,we obtain the two partial different equations of motion from Hamiltonian.Employing the method of multiple scales,we reduce these equations into the envelope function equation and find the amplitude function satisfied a nonlinear Schrödinger equation.We get the periodic wave solution and analyse its stability antiferromagnet KCuF_(3). | LIU Wuming ZHOU Benlian | 1995 | Chinese Physics Letters1995,12,2: | 0 |
| 13 | Solitary Magnon Localization in Antiferromagnet RbFeBr_3显示文摘Introducing the Dyson-Maleev transformation. the coherent state ansatz and the time-dependent variation principle, we obtain two partial different equations of motion from Hamiltonian. Employing the method of multiple scales. we reduce these equations into the envelope function equations and force the amplitude function to satisfy a nonlinear Schrodinger equation. Using the inverse- scat-tering transformation, we obtain the single soliton solution and discuss the solitary magnon localization in antiferromagnet | Wuming LIU and Benlian ZHOU(International Centre for Materials Physics, Institute of Metal Research, Academia Sinica, Shenyang, 110015, China)Liming GUO(Dept. of Mathematics, Institute of Yunnan Nationality, Xunming, 650031, China) | 1994 | Journal of Materials Science & Technology1994,10,3: | 0 |
| 14 | Theoretical Prediction of Strength of Composite with Fractal-tree Structure Fibers显示文摘Theoretically;the strength of composite with branched fibers is predicted to be greater than that ofcomposite with plain fibers.The effects of the branching angle of the fiber,and the snubbing frictionbetween the fiber and the matrix at the fiber branching point and the branching step’s number of thefiber on the strength of the composite with branched fibers have been studied.It has been shownthat the strength of the composite increases with branching angle,the snubbing friction and thebranching step’s number. | Shaoyun FU Wuming LIU Benlian ZHOU Chiwei LUNG International Centre for Materials Physics,Institute of Metal Research,Academia Sinica,Shenyang,110015,China | 1993 | Journal of Materials Science & Technology1993,9,6: | 0 |
| 15 | Some Further Considerations about the Theory of Elastic Stress Transfer from Partially Embedded Axially Loaded Fiber to Matrix显示文摘In this paper the elastic stress transfer from the fiber to the matrix is analysed for fiber-reinforcedcomposites when the fiber is loaded axially.The dependence of the elastic stress transfer on the as-pect ratio of the fiber,the volume fraction of the fiber,the fiber-to-matrix elastic modulus ratio andthe Poisson’s ratio of the fiber and the matrix has been shown in detail. | Shaoyun FU Benlian ZHOU Chiwei LUNG International Center for Materials Physics,Institute of Metal Research,Academia Sinica,Shenyang 110015,China | 1993 | Journal of Materials Science & Technology1993,9,5: | 0 |
| 16 | Analysis of Interfacial Coating Effect on Thermal Stress in Composites显示文摘A preliminary model for the analysis of thermo-mechanical behaviour of interfacial coatings on thefibers in unidirectional composites have been developed on the solution of thermo-elastic mechan-ics. Thermal stress would be introduced into the composite during cooling because of the mismatchof thermo-mechanical properties among their components. The low modulus coating can effectivelyreduce the interracial stress caused by different thermal expansion coefficient between fibers and ma-trix, no matter how high or low the expansion coefficients of coatings are in CF/Al and SiC/Ticomposite systems, however, high modulus coating can decrease the interfacial compressive stress,only when the thermal expansion coefficient of coating is lower. | Yuqing WANG+ Benlian ZHOU Zuoming WANG Changxu SHI, Institute of Metal Research, Academia Sinica, Shenyang, 110015, China | 1993 | Journal of Materials Science & Technology1993,9,2: | 0 |
| 17 | Intrinsic Localized Modes in an Order-parameter-preserving Antiferromagnet显示文摘Intrinsic localized modes in an order-parameter-preserving antiferromagnet are investigated withemploying the Dyson-Maleev transformation and the coherent-state ansatz. These modes which be-low the magnon frequency band correspond to a local large-angle, low-frequency precessional mo-tion of spins, quantum states of which are characterized by the indefiniteness of the number of rele-vant magnons. | Wuming LIU+ Shaoyun FU Benlian ZHOU, International Centre for Materials Physics, Institute of Metal Research, Academia Sinica, Shenyang, 110015, China | 1993 | Journal of Materials Science & Technology1993,9,2: | 0 |