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  • 超細晶材料的晶界和超塑性(影印版)(英文版)
    該商品所屬分類:教材 -> 研究生/本科/專科教材
    【市場價】
    1796-2604
    【優惠價】
    1123-1628
    【介質】 book
    【ISBN】9787560363936
    【折扣說明】一次購物滿999元台幣免運費+贈品
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    內容介紹



    • 出版社:哈爾濱工業大學
    • ISBN:9787560363936
    • 作者:編者:(西)A.日爾亞耶夫
    • 頁數:312
    • 出版日期:2017-10-01
    • 印刷日期:2017-10-01
    • 包裝:平裝
    • 開本:16開
    • 版次:1
    • 印次:1
    • A.日爾亞耶夫主編的《超細晶材料的晶界和超塑
      性(影印版)(英文版)》討論了多晶體材料中超塑性和
      晶界滑動的問題,探討了晶界形成和演化的微觀結構
      ,分析了經過劇烈塑性變形的材料的晶界、紋理和繫
      綜的變化,同時考察了晶界在晶粒間界擴散、弛豫和
      晶粒生長過程中的作用。
      本書適合從事超塑性研究的相關人員使用,也可
      供高等院校相關專業的師生參考。
    • Contents
      INTRODUCTION
      1 STRUCTURAL SUPERPLASTICITY OF POLYCRYSTALLINE MATERIALS
      1.1. Structural levels, spatial scales and description levels
      1.2. Structural superplasticity: from the combination of mechanisms to cooperative grain boundaries sliding
      1.3. Structural superplasticity: from meso-description to macroeharacteristics
      References
      2 CHARACTERISTICS OF GRAIN BOUNDARY ENESEMBLES
      2.1. Crystal geometry and structure of intercrystalline boundaries
      2.1.1. Methods for describing the structure of the grain boundaries
      2.1.2. Analytical representation of the basis of the coincident-site lattice for cubic lattices
      2.2. Special grain boundaries in the monoclinic lattice
      2.3. Description of the grain boundary misorientation distribution (GBMD)
      2.4. Computer model of a polycrystal: a calculation algorithm
      References
      3 ORIENTATION-DISTRIBUTED PARAMETERS OF THE POLYCRYSTALLINE STRUCTURE
      3.1. The distribution function of the grains with respect to crystallographic orientations: calculation methods
      3.2. Relationship between the grain boundary misorientation distribution and the ODF
      3.3. Correlation orientation of adjacent grains: the concept of the basis spectra of misorientation of the grain boundaries
      3.4. Modelling the misorientation spectra of the grain boundaries in the FCC crystals with modelling ODF
      References
      4 EXPERIMENTAL INVESTIGATIONS OF GRAIN BOUNDARY ENSEMBLES IN POLYCRYSTALS
      4.1. Diffraction methods of measuring misorientation
      4.1.1. Methods of measuring the misorientation of two adjacent grains
      4.1.2. The experimental measurement error
      4.2. Experimental spectra of the grain boundaries in FCC polycrystals
      4.3. Orientation distribution function in Ni-Cr alloy: experimental and modelling GBMDs
      4.3.1. Orientation distribution function in Ni-Cr alloy and stainless steels
      4.3.2. Modelling spectra of the misorientation of the grain boundaries in Ni-Cr alloy and AISI stainless steels: comparison with the experimental results
      4.4. Special features of the grain boundaries in the FCC materials with a high stacking fault energy
      4.4.1. Rolling and annealing texture of aluminium
      4.4.2. Grain boundary ensembles in aluminium: experiments and modelling
      References
      5 GRAIN BOUNDARY SLIDING IN METALLIC BI- AND TRICRYSTALS
      5.1. Dislocation nature of grain boundary sliding (GBS)
      5.2. Formulation of the model of stimulated grain boundary sliding
      5.3. Formal solution and its analysis
      5.4. Special features of pure grain boundary sliding
      5.5. Local migration of the grain boundary as the mechanism of reorganisation of the triple junction: weak migration approximation
      5.6. Variance formulation of the system of equations for the shape of the boundary and pile-up density
      5.7. The power of pile-ups of grain boundary dislocations
      References
      6 PERCOLATION MECHANISM OF DEFORMATION PROCESSES IN ULTRAFINE-GRAINED POLYCRYSTALS
      6.1. Percolation mechanism of the formation of a band of cooperative grain boundary sliding
      6.2. Conditions of formation of CGBS bands as the condition of realisation of the superplastic deformation regime
      6.3. Shear rate along the CGBS band
      6.4. Kinetics of deformation in CGBS bands
      6.5. Comparison of the calculated values with the experimental results
      References
      7 PERCOLATION PROCESSES IN A NETWORK OF GRAIN BOUNDARIES IN ULTRAFINE-GRAINED MATERIALS
     
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