Dislocation Mechanism-Based Crystal Plasticity: Theory and Computation at the Micron and Submicron Scale
暫譯: 基於位錯機制的晶體塑性:微米及亞微米尺度的理論與計算
Zhuang, Zhuo, Liu, Zhanli, Cui, Yinan
- 出版商: Academic Press
- 出版日期: 2019-04-12
- 售價: $7,010
- 貴賓價: 9.5 折 $6,660
- 語言: 英文
- 頁數: 450
- 裝訂: Quality Paper - also called trade paper
- ISBN: 0128145919
- ISBN-13: 9780128145913
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商品描述
Dislocation Based Crystal Plasticity: Theory and Computation at Micron and Submicron Scale provides a comprehensive introduction to the continuum and discreteness dislocation mechanism-based theories and computational methods of crystal plasticity at the micron and submicron scale. Sections cover the fundamental concept of conventional crystal plasticity theory at the macro-scale without size effect, strain gradient crystal plasticity theory based on Taylar law dislocation, mechanism at the mesoscale, phase-field theory of crystal plasticity, computation at the submicron scale, including single crystal plasticity theory, and the discrete-continuous model of crystal plasticity with three-dimensional discrete dislocation dynamics coupling finite element method (DDD-FEM).
Three kinds of plastic deformation mechanisms for submicron pillars are systematically presented. Further sections discuss dislocation nucleation and starvation at high strain rate and temperature effect for dislocation annihilation mechanism.
- Covers dislocation mechanism-based crystal plasticity theory and computation at the micron and submicron scale
- Presents crystal plasticity theory without size effect
- Deals with the 3D discrete-continuous (3D DCM) theoretic and computational model of crystal plasticity with 3D discrete dislocation dynamics (3D DDD) coupling finite element method (FEM)
- Includes discrete dislocation mechanism-based theory and computation at the submicron scale with single arm source, coating micropillar, lower cyclic loading pillars, and dislocation starvation at the submicron scale
商品描述(中文翻譯)
《基於位錯的晶體塑性:微米及亞微米尺度的理論與計算》提供了對於微米及亞微米尺度的晶體塑性連續性與離散性位錯機制理論及計算方法的全面介紹。內容涵蓋了宏觀尺度下不考慮尺寸效應的傳統晶體塑性理論的基本概念、基於泰勒法則的位錯應變梯度晶體塑性理論、介觀尺度的機制、晶體塑性的相場理論、亞微米尺度的計算,包括單晶塑性理論,以及結合有限元素法的三維離散位錯動力學的離散-連續晶體塑性模型(DDD-FEM)。
系統地介紹了三種亞微米柱的塑性變形機制。後續部分討論了在高應變率下的位錯成核與飢餓現象,以及溫度對位錯湮滅機制的影響。
- 涵蓋基於位錯的晶體塑性理論及微米與亞微米尺度的計算
- 提出不考慮尺寸效應的晶體塑性理論
- 處理三維離散-連續(3D DCM)理論及計算模型,結合三維離散位錯動力學(3D DDD)與有限元素法(FEM)
- 包括基於離散位錯機制的亞微米尺度理論及計算,涉及單臂源、塗層微柱、低週期載荷柱及亞微米尺度的位錯飢餓現象