• 제목/요약/키워드: Molecular mechanics

검색결과 146건 처리시간 0.021초

Simulation of material failure behavior under different loading rates using molecular dynamics

  • Kim, Kunhwi;Lim, Jihoon;Kim, Juwhan;Lim, Yun Mook
    • Structural Engineering and Mechanics
    • /
    • 제30권2호
    • /
    • pp.177-190
    • /
    • 2008
  • Material failure behavior is generally dependent on loading rate. Especially in brittle and quasi-brittle materials, rate dependent material behavior can be significant. Empirical formulations are often used to predict the rate dependency, but such methods depend on extensive experimental works and are limited by practical constraints of physical testing. Numerical simulation can be an effective means for extracting knowledge about rate dependent behavior and for complementing the results obtained by testing. In this paper, the failure behavior of a brittle material under different loading rates is simulated by molecular dynamics analysis. A notched specimen is modeled by sub-million particles with a normalization scheme. Lennard-Jones potential is used to describe the interparticle force. Numerical simulations are performed with six different loading rates in a direct tensile test, where the loading velocity is normalized to the ratio of the pseudo-sonic speed. As a consequence, dynamic features are achieved from the numerical experiments. Remarkable failure characteristics, such as crack surface interaction/crack arrest, branching, and void nucleation, vary in case of the six loading cases. These characteristics are interpreted by the energy concept approach. This study provides insight into the change in dynamic failure mechanism under different loading rates.

고분자 분리막 연구를 위한 전산모사 도구 소개 (Review on the Computer Simulation Tools for Polymeric Membrane Researches)

  • 최찬희;박치훈
    • 멤브레인
    • /
    • 제30권4호
    • /
    • pp.242-251
    • /
    • 2020
  • 고분자 소재 및 이를 이용하여 제조된 분리막에 주로 활용되는 전산모사 도구들은 모사대상의 크기 및 모사하고자 하는 시간에 따라 여러 가지 분야로 나뉘어진다. 본 총설에 소개되는 전산모사는 그 중에서 전산재료화학에 주로 사용되는 양자역학(quantum mechanics; QM), 분자동역학(molecular dynamics; MD), 메조스케일 전산모사(mesoscale modelling), 이렇게 3가지로 분류된다. 고분자 연구에서 사용되는 전산모사는 각각의 전산모사의 종류마다 연구내용이 달라지는데, 양자역학은 분자, 원자, 전자 등 미시적인 계의 현상을 다루어 작은 크기의 현상을 연구하고, 분자동역학은 원자들 사이의 퍼텐셜 또는 힘이 주어졌을 때 뉴턴의 운동방정식에 따른 원지 및 분자의 움직임을 수치적으로 풀어내고, 메조스케일 모델링은 원자들을 묶어서 그룹형태로 만들어 비드를 형성해 비교적 큰 분자량에서 계산시간을 줄여 거시적으로 판단하는 연구가 된다. 본 총설에서는 고분자 및 고분자 분리막에 주로 활용되는 다양한 전산모사 프로그램을 위에서 분류한 3가지 종류로 나누어 각각의 특징과 사용분야 등을 소개하고자 한다.

분자수준 시뮬레이션을 이용한 응력확대계수 및 전위이동에 관한 연구 (A Study on Stress Intensity Factors and Dislocation Emission via Molecular Dynamics)

  • 최덕기;김지운
    • 대한기계학회논문집A
    • /
    • 제24권4호
    • /
    • pp.830-838
    • /
    • 2000
  • The paper addresses an application of molecular dynamics technique for fracture mechanics. Molecular dynamics simulation is an atomistic approach, while typical numerical methods such as finite element methods are macroscopic. Using the potential functions, which express the energy of a molecular system, a virtual specimen with molecules is set up and the trajectory of every molecule can be calculated by Newton's equation of motion. Several three-dimensional models with various types of cracks are considered. The stress intensity factors, the sizes of plastic zone as well as the dislocation emission are sought to be compared with the analytical solutions, which result in good agreement.

On the continuum formulation for modeling DNA loop formation

  • Teng, Hailong;Lee, Chung-Hao;Chen, Jiun-Shyan
    • Interaction and multiscale mechanics
    • /
    • 제4권3호
    • /
    • pp.219-237
    • /
    • 2011
  • Recent advances in scientific computing enable the full atomistic simulation of DNA molecules. However, there exists length and time scale limitations in molecular dynamics (MD) simulation for large DNA molecules. In this work, a two-level homogenization of DNA molecules is proposed. A wavelet projection method is first introduced to form a coarse-grained DNA molecule represented with superatoms. The coarsened MD model offers a simplified molecular structure for the continuum description of DNA molecules. The coarsened DNA molecular structure is then homogenized into a three-dimensional beam with embedded molecular properties. The methods to determine the elasticity constants in the continuum model are also presented. The proposed continuum model is adopted for the study of mechanical behavior of DNA loop.

OLED 박막 증착공정에서 유도로 내부의 분자유동 해석 (Simulation of Molecular Flows Inside a Guide Block in the OLED Deposition Process)

  • 성재용;이응기
    • 한국공작기계학회논문집
    • /
    • 제17권2호
    • /
    • pp.45-50
    • /
    • 2008
  • Molecular flows inside a guide block in the OLED(organic luminescent emitting device) deposition process have been simulated using DSMC(direct simulation Monte Carlo) method. Because the organic materials are evaporated under vacuum, molecules flow at a high Knudsen number of the free molecular regime, where the continuum mechanics is not valid. A guide block is designed as a part of the linear cell source to transport the evaporated materials to a deposition chamber, When solving the flows, the inlet boundary condition is proved to affect significantly the whole flow pattern. Thus, it is proposed that the pressure should be specified at the inlet. From the analysis of the density distributions at the nozzle exit of the guide block, it is shown that the longer nozzle can emit molecules more straightly. Finally, a nondimensionalized mass flow profile is obtained by numerical experiments, where various nozzle widths and inlet pressures are tested.

전위의 생성 및 상호작용에 관한 나노 역학 해석 (Nano Mechanics Analysis of Dislocation Nucleation and Interaction)

  • 이영민;김성엽;전석기;임세영
    • 대한기계학회:학술대회논문집
    • /
    • 대한기계학회 2004년도 춘계학술대회
    • /
    • pp.537-541
    • /
    • 2004
  • Molecular dynamics simulation of nanolithography by AFM is conducted to study nucleation of various defects, and their subsequent development and interactions as well. During nanolithography via AFM, dislocation loops are emitted along the top surface, and resourceful defect interactions such as, formation of voids chain via the motion of a jog, and creations of extended nodes and Lomer-Cottrell Lock are observed.

  • PDF

Solvent Effects on the Structure of Resorcinol Formaldehyde Resin

  • Park, Sung-Seen
    • Macromolecular Research
    • /
    • 제8권2호
    • /
    • pp.53-58
    • /
    • 2000
  • Stabilities and structures of resorcinol formaldehyde resins (RF resins) and their dependence on solvent were studied by molecular mechanics and molecular dynamics. Dimers to decamers of the RF resins in the conditions of dielectric constant = 1.00, 21.01, 36.64, and 80.10 were calculated. The average distance between oxygen atoms in 1-hydroxyl groups of adjacent resorcinols of the resins became longer with increased dielectric constant of the environment. The number of intramolecular hydrogen bonds of the resins decreased by increasing the dielectric constant of the environment. The RF resin structure on the surface of fabric or steel cord was explained based on the present calculation.

  • PDF

Quantitative Structure-Activity Relationship(QSAR) Study of New Fluorovinyloxycetamides

  • 조두호;이성광;김범태;노경태
    • Bulletin of the Korean Chemical Society
    • /
    • 제22권4호
    • /
    • pp.388-394
    • /
    • 2001
  • Quantitative Structure-Activity Relationship (QSAR) have been established of 57 fluorovinyloxyacetamides compounds to correlate and predict EC50 values. Genetic algorithm (GA) and multiple linear regression analysis were used to select the descriptors and to generate the equations that relate the structural features to the biological activities. This equation consists of three descriptors calculated from the molecular structures with molecular mechanics and quantum-chemical methods. The results of MLR and GA show that dipole moment of z-axis, radius of gyration and logP play an important role in growth inhibition of barnyard grass.

Molecular Structure of Bicyclo[4.2.2]decapentaene

  • Lee Oh Seuk;Lee Yi Hwa;Eiji Osawa
    • Bulletin of the Korean Chemical Society
    • /
    • 제13권2호
    • /
    • pp.155-157
    • /
    • 1992
  • Extensive search over the energy surface of bicyclo[4.2.2]decapentaene with MMP2 molecular mechanics method and AM1 semiempirical MO method revealed only one, deep energy minimum structure, which corresponds to 1. The alternative structure 2 could not be identified as a stationary point. Although the deviation of benzenoid ring from planarity is large in the energy minimum structure (${\phi} = 26^{\circ}$(MMP2), $37^{circ}$ (AM1)), the bond lengths show no severe alternation.

Molecular Modeling of Bisphenol-A Polycarbonate and Tetramethyl Bisphenol-A Polycarbonate

  • Kim, Sangil;Juwhan Liu
    • Macromolecular Research
    • /
    • 제9권3호
    • /
    • pp.129-142
    • /
    • 2001
  • To efficiently demonstrate the molecular motion, physical properties, and mechanical properties of polycarbonates, we studied the differences between bisphenol-A polycarbonate(BPA-PC) and tetramethyl bisphenol-A-polycarbonate(TMBPA-PC) using molecular modeling techniques. To investigate the conformations of BPA-PC and TMBPA-PC and the effect of the conformation on mechanical properties, we performed conformational energy calculation, molecular dynamics calculation, and stress-strain curves based on molecular mechanics method. From the result obtained from conformational energy calculations of each segment, the molecular motions of the carbonate and the phenylene group in BPA-PC were seen to be more vigorous and have lower restriction to mobility than those in TMBPA-PC, respectively. In addition, from the results of radial distribution function, velocity autocorrelation function, and power spectrum, BPA-PC appeared to have higher diffusion constant than TMBPA-PC and is easier to have various conformations because of the less severe restrictions in molecular motion. The result of stress-strain calculation for TMBPA-PC seemed to be in accordance with the experimental value of strain-to-failure ∼4%. From these results of conformational energy calculations of segments, molecular dynamics, and mechanical properties, it can be concluded that TMBPA-PC has higher modulus and brittleness than BPA-PC because the former has no efficient relaxation mode against the external deformations.

  • PDF