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Nano mechanical properties on the mineralogical array of calcium silicate hydrates and calcium hydroxide through molecular dynamics-CSIR-SERC

机译:通过分子动力学 - CSIR-SERC纳米矿物学碳酸钙水合物和氢氧化钙碳酸钙的纳米机械性能

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摘要

Molecular dynamics studies towards assessing the bulk properties of the mineralogical array of cement hydrates such as calcium silicate hydrates (C-S-H) and calcium hydroxide (CH) have been conducted. In the case of C-S-H, closely related structures of minerals such as Tobermorite (9, 11, 14) angstrom and Jennite are taken for MD simulations, as they have similarities with C-S-H in terms of its mineralogical array. COMPASS force field with appropriate set parameters such as cut-off distances, micro-canonical ensembles was employed for the smooth running of simulations. Different supercells for the mineral systems were created and studied further. Results show the calculated mechanical properties of cement hydrates, which form an important input for developing computational model for cement hydrate systems for assessing the physico-chemical and mechanical characteristics.
机译:已经进行了评估矿物学水合水合物矿物质阵列如硅酸钙水合物(C-S-H)和氢氧化钙(CH)的分子动力学研究。 在C-S-H的情况下,针对MD模拟采取了诸如Tobermorite(9,11,14)埃焦和Jennite等矿物质的密切相关的结构,因为它们在其矿物阵列方面与C-S-H具有相似性。 罗盘力领域具有适当的集合参数,例如截止距离,微规范合奏被用于平稳运行模拟。 矿物系统的不同超级胶片进一步创建和研究。 结果表明了水泥水合物的计算机械性能,形成了开发水泥水合物系统计算模型的重要输入,用于评估物理化学和机械特性。

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