期刊文献+
共找到7篇文章
< 1 >
每页显示 20 50 100
Layer thickness dependent plastic deformation mechanism in Ti/TiCu dual-phase nano-laminates 被引量:1
1
作者 安敏荣 雷岳峰 +5 位作者 宿梦嘉 刘兰亭 邓琼 宋海洋 尚玉 王晨 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第6期435-446,共12页
Crystalline/amorphous nanolaminate is an effective strategy to improve the mechanical properties of metallic materials,but the underlying deformation mechanism is still under the way of exploring.Here,the mechanical p... Crystalline/amorphous nanolaminate is an effective strategy to improve the mechanical properties of metallic materials,but the underlying deformation mechanism is still under the way of exploring.Here,the mechanical properties and plastic deformation mechanism of Ti/TiCu dual-phase nanolaminates(DPNLs)with different layer thicknesses are investigated using molecular dynamics simulations.The results indicate that the influence of the layer thickness on the plastic deformation mechanism in crystalline layer is negligible,while it affects the plastic deformation mechanism of amorphous layers distinctly.The crystallization of amorphous TiCu is exhibited in amorphous parts of the Ti/TiCu DPNLs,which is inversely proportional to the layer thickness.It is observed that the crystallization of the amorphous TiCu is a process driven by stress and heat.Young's moduli for the Ti/TiCu DPNLs are higher than those of composite material due to the amorphous/crystalline interfaces.Furthermore,the main plastic deformation mechanism in crystalline part:grain reorientation,transformation from hexagonal-close-packed-Ti to face-centered cubic-Ti and body-centered cubic-Ti,has also been displayed in the present work.The results may provide a guideline for design of high-performance Ti and its alloy. 展开更多
关键词 dual-phase nanolaminate molecular dynamics simulation deformation mechanism CRYSTALLIZATION
原文传递
尺寸依赖的CoCrFeNiMn晶体/非晶双相高熵合金塑性变形机制的分子动力学模拟 被引量:3
2
作者 安敏荣 李思澜 +2 位作者 宿梦嘉 邓琼 宋海洋 《物理学报》 SCIE EI CAS CSCD 北大核心 2022年第24期146-157,共12页
晶体/非晶双相高熵合金是近年来研究人员提出的获得高强高韧高熵合金的有效策略,其塑性变形机制和组成相的尺寸密切相关.本文采用分子动力学模拟方法研究了组成相尺寸对CoCrFeNiMn晶体/非晶双相高熵合金塑性变形机制的影响.研究表明,非... 晶体/非晶双相高熵合金是近年来研究人员提出的获得高强高韧高熵合金的有效策略,其塑性变形机制和组成相的尺寸密切相关.本文采用分子动力学模拟方法研究了组成相尺寸对CoCrFeNiMn晶体/非晶双相高熵合金塑性变形机制的影响.研究表明,非晶相尺寸对双相高熵合金的力学行为和塑性变形机制有显著影响.对于非晶相厚度较小的样品,塑性变形是位错滑移和面心立方向六方密排结构的相变主导的,尤其是在非晶厚度为1 nm的样品中观察到了孪晶和位错锁;非晶相厚度适中时,双相高熵合金主要通过晶体相中位错滑移、面心立方向六方密排结构的相变和非晶相的剪切带增殖来实现塑性变形;非晶相厚度较大时,双相高熵合金的塑性变形则由非晶相中均匀剪切带的形成主导.此外,非晶相厚度的增加对位错的形核和发射有延迟作用,并且,晶体/非晶双相结构中的非晶相有稳定晶粒的作用.本文的研究结果对于设计和制备高性能的高熵合金具有一定的科学价值和指导意义. 展开更多
关键词 晶体/非晶双相高熵合金 尺寸效应 变形机制 分子动力学模拟
下载PDF
基于WSN的煤矿数据采集监控及井下定位系统的设计 被引量:3
3
作者 邓瑶 宿梦嘉 《电子设计工程》 2019年第20期84-87,共4页
基于提高煤矿井下人员的人身安全和生产安全的目的,采用了ARM和ZigBee技术结合的方法,研究了一款煤矿实时监控系统。通过系统功能测试和通信距离测试,得出了该系统具有较高的测量精度,具备远程、低速率、低功耗的通信能力,能实时对井下... 基于提高煤矿井下人员的人身安全和生产安全的目的,采用了ARM和ZigBee技术结合的方法,研究了一款煤矿实时监控系统。通过系统功能测试和通信距离测试,得出了该系统具有较高的测量精度,具备远程、低速率、低功耗的通信能力,能实时对井下环境数据进行监控,环境参数低于设定极限值时可以进行预警提示。 展开更多
关键词 ARM ZIGBEE 传感器 监控
下载PDF
Plastic deformation mechanism transition of Ti/Ni nanolaminate with pre-existing crack:Molecular dynamics study 被引量:1
4
作者 Meng-Jia Su Qiong Deng +1 位作者 Min-Rong An Lan-Ting Liu 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第11期427-438,共12页
Tensile behaviors of Ti/Ni nanolaminate with model-I crack are investigated by molecular dynamics simulations.The Ti/Ni nanolaminates with center crack either in Ti layer or in Ni layer under different loading directi... Tensile behaviors of Ti/Ni nanolaminate with model-I crack are investigated by molecular dynamics simulations.The Ti/Ni nanolaminates with center crack either in Ti layer or in Ni layer under different loading directions are utilized to systematically study the mechanical performance of the cracked material.The results indicate that pre-existing crack dramatically changes the plastic deformation mechanism of the Ti/Ni nanolaminate.Unlike the initial plastic deformation originating from the interface or weak Ti layer of the crack-free samples,the plastic behavior of cracked Ti/Ni nanolaminate first occurs at the crack tip due to the local stress concentration.Subsequent plastic deformation is dominated by the interaction between the crack and interface.The Ti/Ni interface not only impedes the movement of the initial plastic deformation carriers(dislocation,slip band,and deformation twinning)from the crack tip,but also promotes the movement of interfacial dislocations in the tension process.Microstructure evolution analysis further confirms that the plastic deformation mechanism transition is ascribed to the orientation-dependent tensile behavior at the crack tip,which is intrinsically attributed to the anisotropy of the certain crystal structure and loading direction of the cracked Ti/Ni nanolaminate.In addition,by analyzing the effects of different plastic deformation carriers on crack propagation in specific crystal,it can be discovered that the interfacial dislocations moving towards the crack tip can further promote the crack growth. 展开更多
关键词 molecular dynamics Ti/Ni nanolaminate plastic deformation mechanisms crack propagation
原文传递
基于大数据和“互联网+”背景下的大学英语网络教育平台的设计与实现 被引量:3
5
作者 朱敏 宿梦嘉 《微型电脑应用》 2020年第8期12-15,共4页
基于提高大学英语教学效果和大学生的英语学习效率的目的,采用了大数据技术和"互联网+"技术结合的方法,研究了一款大学英语网络教育平台。通过系统功能测试和学习效果测试,得出了该系统具有稳定性,能运用的大学英语教学中,具... 基于提高大学英语教学效果和大学生的英语学习效率的目的,采用了大数据技术和"互联网+"技术结合的方法,研究了一款大学英语网络教育平台。通过系统功能测试和学习效果测试,得出了该系统具有稳定性,能运用的大学英语教学中,具备提升学习效果的能力。 展开更多
关键词 大数据 互联网+ 大学英语 网络教育
下载PDF
Anisotropic plasticity of nanocrystalline Ti:A molecular dynamics simulation
6
作者 Minrong An Mengjia Su +3 位作者 Qiong Deng Haiyang Song Chen Wang Yu Shang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第4期368-378,共11页
Using molecular dynamics simulations,the plastic deformation behavior of nanocrytalline Ti has been investigated under tension and compression normal to the{0001},{1010},and{1210}planes.The results indicate that the p... Using molecular dynamics simulations,the plastic deformation behavior of nanocrytalline Ti has been investigated under tension and compression normal to the{0001},{1010},and{1210}planes.The results indicate that the plastic deformation strongly depends on crystal orientation and loading directions.Under tension normal to basal plane,the deformation mechanism is mainly the grain reorientation and the subsequent deformation twinning.Under compression,the transformation of hexagonal-close packed(HCP)-Ti to face-centered cubic(FCC)-Ti dominates the deformation.When loading is normal to the prismatic planes(both{1010}and{1210}),the deformation mechanism is primarily the phase transformation among HCP,body-centered cubic(BCC),and FCC structures,regardless of loading mode.The orientation relations(OR)of{0001}HCP||{111}FCC and<1210>HCP||<110>FCC,and{1010}HCP||{110}FCC and<0001>HCP||<010>FCC between the HCP and FCC phases have been observed in the present work.For the transformation of HCP→BCC→HCP,the OR is{0001}α1||{110}β||{1010}α2(HCP phase before the critical strain is defined as α1-Ti,BCC phase is defined as β-Ti,and the HCP phase after the critical strain is defined as α2-Ti).Energy evolution during the various loading processes further shows the plastic anisotropy of nanocrystalline Ti is determined by the stacking order of the atoms.The results in the present work will promote the in-depth study of the plastic deformation mechanism of HCP materials. 展开更多
关键词 molecular dynamics simulation NANOCRYSTALLINE TI ANISOTROPIC PLASTICITY DEFORMATION mechanism
原文传递
Molecular dynamics study of coupled layer thickness and strain rate effect on tensile behaviors of Ti/Ni multilayered nanowires
7
作者 Meng-Jia Su Qiong Deng +3 位作者 Lan-Ting Liu Lian-Yang Chen Meng-Long Su Min-Rong An 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第9期400-411,共12页
Novel properties and applications of multilayered nanowires(MNWs)urge researchers to understand their mechanical behaviors comprehensively.Using the molecular dynamic simulation,tensile behaviors of Ti/Ni MNWs are inv... Novel properties and applications of multilayered nanowires(MNWs)urge researchers to understand their mechanical behaviors comprehensively.Using the molecular dynamic simulation,tensile behaviors of Ti/Ni MNWs are investigated under a series of layer thickness values(1.31,2.34,and 7.17 nm)and strain rates(1.0×10^(8)s^(-1)≤ε≤5.0×10^(10)s^(-1)).The results demonstrate that deformation mechanisms of isopachous Ti/Ni MNWs are determined by the layer thickness and strain rate.Four distinct strain rate regions in the tensile process can be discovered,which are small,intermediate,critical,and large strain rate regions.As the strain rate increases,the initial plastic behaviors transform from interface shear(the shortest sample)and grain reorientation(the longest sample)in small strain rate region to amorphization of crystalline structures(all samples)in large strain rate region.Microstructure evolutions reveal that the disparate tensile behaviors are ascribed to the atomic fractions of different structures in small strain rate region,and only related to collapse of crystalline atoms in high strain rate region.A layer thickness-strain rate-dependent mechanism diagram is given to illustrate the couple effect on the plastic deformation mechanisms of the isopachous nanowires.The results also indicate that the modulation ratio significantly affects the tensile properties of unequal Ti/Ni MNWs,but barely affect the plastic deformation mechanisms of the materials.The observations from this work will promote theoretical researches and practical applications of Ti/Ni MNWs. 展开更多
关键词 molecular dynamics Ti/Ni multilayered nanowires coupled layer thickness-strain rate effect plastic deformation mechanisms
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部