原子与分子物理学报
原子與分子物理學報
원자여분자물이학보
CHINESE JOURNAL OF ATOMIC AND MOLECULAR PHYSICS
2014年
5期
774-780
,共7页
耿晓菊%武少华%冯明海%李冉
耿曉菊%武少華%馮明海%李冉
경효국%무소화%풍명해%리염
过渡金属%弹性常数%第一性原理%均匀形变
過渡金屬%彈性常數%第一性原理%均勻形變
과도금속%탄성상수%제일성원리%균균형변
Aluminides%Elastic constants%First-principles%Homogeneous deformation
本文通过第一性原理计算(密度泛函理论结合均匀形变方法)得到过渡金属铝化物FeAl和CoAl的二阶和三阶弹性常数,这些弹性常数是通过拟合计算出的能量与应力关系得到的.计算结果和理论数据及实验值符合的很好.接下来本文又研究了 FeAl和CoAl在不同压强下的弹性性质.不同压强下的弹性常数 Cij ,体模量 B ,剪切模量 G ,泊松比σ也成功的得到了.B/G比值和柯西压强 PC都表明在零压下FeAl和CoAl表现出脆性.在压强小于60GPa的情况下,增大压强可以增强它们的韧性,但它们始终表现为脆性.
本文通過第一性原理計算(密度汎函理論結閤均勻形變方法)得到過渡金屬鋁化物FeAl和CoAl的二階和三階彈性常數,這些彈性常數是通過擬閤計算齣的能量與應力關繫得到的.計算結果和理論數據及實驗值符閤的很好.接下來本文又研究瞭 FeAl和CoAl在不同壓彊下的彈性性質.不同壓彊下的彈性常數 Cij ,體模量 B ,剪切模量 G ,泊鬆比σ也成功的得到瞭.B/G比值和柯西壓彊 PC都錶明在零壓下FeAl和CoAl錶現齣脆性.在壓彊小于60GPa的情況下,增大壓彊可以增彊它們的韌性,但它們始終錶現為脆性.
본문통과제일성원리계산(밀도범함이론결합균균형변방법)득도과도금속려화물FeAl화CoAl적이계화삼계탄성상수,저사탄성상수시통과의합계산출적능량여응력관계득도적.계산결과화이론수거급실험치부합적흔호.접하래본문우연구료 FeAl화CoAl재불동압강하적탄성성질.불동압강하적탄성상수 Cij ,체모량 B ,전절모량 G ,박송비σ야성공적득도료.B/G비치화가서압강 PC도표명재령압하FeAl화CoAl표현출취성.재압강소우60GPa적정황하,증대압강가이증강타문적인성,단타문시종표현위취성.
The second-and third-order elastic constants of the B2-type translation-metal aluminides FeAl and CoAl have been calculated by using first-principles calculations based on density functional theory , in combination with the scheme of homogeneous deformation ,they are obtained by fitting the polynomi-als to the calculated energy-strain relationships .The calculated results are in good agreement with the a-vailable theoretical values and experimental data .We have also investigated the elastic properties of FeAl and CoAl under high pressures .The elastic constants Cij ,bulk modulus B ,shear modulus G and Pois-son’s ratio σ,as a function of pressure are presented .Through the Pugh ratio B/G and Cauchy pressure PC under different pressures ,the B2-type translation-metal aluminides FeAl and CoAl are predicted to have brittle behaviors at zero pressure .The pressure could yield improved ductility of FeAl and CoAl without significant changes at P < 60GPa ,but they have brittle behaviors in the pressure range of 0-60GPa .