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首页> 外文期刊>Computers & Concrete >Computer modeling to forecast accurate of efficiency parameters of different size of graphene platelet, carbon, and boron nitride nanotubes: A molecular dynamics simulation
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Computer modeling to forecast accurate of efficiency parameters of different size of graphene platelet, carbon, and boron nitride nanotubes: A molecular dynamics simulation

机译:计算机建模预测石墨烯血小板,碳和氮化硼纳米管不同大小的效率参数:分子动力学模拟

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In the present work, an extensive study for predicting efficiency parameters (eta i) of various simulated nanocomposites including Polymethyl methacrylate (PMMA) as matrix and different structures including various sizes of graphene platelets (GPLs), single, double, and multi-walled carbon nanotubes (SWCNTs-DWCNTs-MWCNTs), and single and double-walled boron nitride nanotubes (SWBNNTs-DWBNNTs) are investigated. It should be stated that GPLs, carbon and boron nitride nanotubes (CNTs, BNNT) with different chiralities (5, 0), (5, 5), (10, 0), and (10, 10) as reinforcements are considered. In this research, molecular dynamics (MDs) method with Materials studio software is applied to examine the mechanical properties (Young's modulus) of simulated nanocomposite boxes and calculate In of each nanocomposite boxes. Then, it is noteworthy that by changing length (6.252, 10.584, and 21.173 nm) and width (7.137, 10.515, and 19.936) of GPLs, eta 1, eta 2, and eta 3 approximately becomes (0.101, 0.114, and 0.124), (1.15, 1.22, and 1.26), (1.04, 1.05, and 1.07) respectively. After that efficiency parameters of SWCNTs, DWCNTs, and MWCNTs are calculated and discussed separately. Finally efficiency parameters of SWBNNTs and DWBNNTs with different chiralities by PMMA as matrix are determined by MD and discussed separately. It is known that the accurate efficiency parameters helps a lot to calculate the properties of nanocomposite analytically. In particular, the obtained results from this research can be used for analytical work based on the extended rule of mixture (ERM) in bending, buckling and vibration analysis of structure in future study.
机译:在本作本作中,用于预测各种模拟纳米复合材料的效率参数(ETA I)的广泛研究,包括聚甲基丙烯酸甲酯(PMMA)作为基质和不同结构,包括各种尺寸的石墨烯血小板(GPLS),单,双和多壁碳研究了纳米管(SWCNTS-DWCNTS-MWCNTS)和单壁和双壁氮化硼纳米管(SWBNNTS-DWBNTS)。应说明,考虑具有不同手性(5,0),(5,5),(10,0)和(10,10)的GPLS,碳和氮化硼纳米管(CNT,BNNT)被认为是增强物的加强率。在本研究中,应用具有材料工作室软件的分子动力学(MDS)方法来检查模拟纳米复合盒的机械性能(杨氏模量)并计算每个纳米复合盒。然后,值得注意的是,通过改变长度(6.252,10.584和21.173nm)和GPLS,ETA1,ETA 2和ETA 3的宽度(7.137,10515和19.936),大致变为(0.101,0.114和0.124) ,(1.15,1.22和1.26),(1.04,1.05和1.07)。之后,计算并单独讨论并讨论并讨论SWCNTS,DWCNT和MWCNT的效率参数。最后通过MD确定PMMA与PMMA具有不同手性的SWBNNT和DWBNNT的效率参数,由MD确定并单独讨论。众所周知,准确的效率参数有助于分析计算纳米复合材料的性能。特别是,本研究的所得结果可用于基于弯曲,屈曲和未来研究结构抗振动分析中的混合物(ERM)的扩展规则的分析工作。

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