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首页> 外文期刊>International Journal of Solids and Structures >Elasticity of model weakly cemented granular materials: A numerical study
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Elasticity of model weakly cemented granular materials: A numerical study

机译:模型的弹性弱胶泥颗粒材料:数值研究

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The effect of bonding cementation on the elastic properties of model granular materials is investigated by grain-level numerical simulations. Two different morphologies are studied, bridging cementation, for which the cement concentrates in cylindrical connections, with radius a, between contacting or neighboring grains separated by a distance smaller than a certain range h(0); and grain coating, for which a cement layer with uniform thickness Delta forms on grain surfaces. Cementation is applied to spherical ball packs assembled by the discrete element method (DEM) in different isotropic states throughout the range of mechanically accessible structures, with different densities and contact connectivities. The determination of the elastic properties of the cemented material is a two stage procedure, in which (i) bond stiffnesses, and (ii) macroscopic moduli of large bond networks, are successively computed. Our treatment of stage (i) is based on a previously published model (V. Langlois, International Journal of Numerical and Analytical Methods in Geomechanics, 39(8), p. 854, 2015 (Langlois, 2015)), suitably generalized to deal with prestressed granular materials in which contacts carry a certain force prior to cementation, and with distant bonding. In stage (ii), different initial packs are compared, and the influence of the model parameters (a, h(0), Delta) is discussed. The angular elasticity of cemented bonds, for bridging cementation, may influence the macroscopic moduli for small bond coordination number and large enough bond radii, but does not affect grain-coated cemented materials. Macroscopic moduli are essentially determined by the average bond stiffness and by the bond network coordination number. Large confining stresses prior to cementation tend to stiffen the cemented material. The limit of stiff cement is shown to apply in a restricted range. As for unbonded grains, the Voigt approximation scheme for elastic moduli gives fair predictions for the bulk modulus, but rather poor ones for the shear modulus, in weakly coordinated systems. The scheme advocated by Dvorkin and Nur (Geophysics, 61(5), p. 1363, 1996 (Dvorkin and Nur, 1996)), often used in geomechanics, relies on the Voigt approximation. Though yielding correct orders of magnitude, it can be inaccurate, as it does not account for the cement content dependence of coordination numbers. (C) 2020 Elsevier Ltd. All rights reserved.
机译:晶粒水平数值模拟研究了粘合粘合对模型粒状材料弹性性能的影响。研究了两种不同的形态,桥接胶结,其中水泥浓缩在圆柱形连接中,半径A,接触或相邻晶粒间隔小于一定范围H(0);和晶粒涂层,用于在晶粒表面上形成均匀厚度δ形成的水泥层。在整个机械可接近的结构范围内,在不同各向同性状态下由不同的各向同性状态(DEM)组装的球形球包应用于不同的各向同性结构,具有不同的密度和接触连接。粘合材料的弹性性质的测定是两级程序,其中(i)键合刚度和(ii)大债券网络的宏观模量被连续计算。我们的阶段(i)的待遇是基于先前发表的模型(V. langlois,International Echanics中的数字和分析方法,39(8),p。854,2015(Langlois,2015)),适当地推广到交易采用预应力粒状材料,其中触点在胶结之前携带一定的力,并且具有远处的粘合。在阶段(ii)中,比较不同的初始包,讨论了模型参数(A,H(0),增量)的影响。用于桥接胶结的粘合键的角弹性可能影响小键配合数和足够大的粘合半径的宏观调制,但不影响晶粒涂覆的粘合材料。宏观测量基本上由平均键刚度和键网络协调数决定。在胶结之前大的限制应力倾向于加强粘合材料。刚性水泥的极限显示在限制范围内。对于未粘附的晶粒,弹性模量的voigt近似方案为弱剪切系统中的散装模量而来的散装模量,而是较差的voigt近似方案。 Dvorkin和Nur主张的计划(地球物理,61(5),p。1363,1996(Dvorkin和Nur,1996))经常用于地质力学,依赖于voigt近似值。虽然产生正确的数量级,但它可能是不准确的,因为它不考虑协调数量的水泥内容。 (c)2020 elestvier有限公司保留所有权利。

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