功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2012年
24期
3442-3446
,共5页
多铁材料%功能梯度%铁电铁磁复合材料%弯曲%磁电效应
多鐵材料%功能梯度%鐵電鐵磁複閤材料%彎麯%磁電效應
다철재료%공능제도%철전철자복합재료%만곡%자전효응
multiferroics%functionally graded material%ferroelectric and ferromagnetic composites%bending deformations%magnetoelectric effect
基于磁致伸缩相与压电相的本构方程,应用弹性力学的方法,建立了功能梯度铁电铁磁复合材料弯曲模态下的磁电耦合静态力学模型。假设铁电和铁磁材料的物理参数均为沿厚度方向的线性或指数函数,分析计算了由PZT作为铁电材料和CoFe2O4作为铁磁材料的双层复合材料的磁电效应。结果表明,在弯曲模态下,磁电电压系数出现两个峰值。负梯度的铁电(或铁磁)材料提高磁电效应,正梯度的铁电(或铁磁)材料降低磁电效应。同号梯度的铁电铁磁材料对磁电效应的影响更大。
基于磁緻伸縮相與壓電相的本構方程,應用彈性力學的方法,建立瞭功能梯度鐵電鐵磁複閤材料彎麯模態下的磁電耦閤靜態力學模型。假設鐵電和鐵磁材料的物理參數均為沿厚度方嚮的線性或指數函數,分析計算瞭由PZT作為鐵電材料和CoFe2O4作為鐵磁材料的雙層複閤材料的磁電效應。結果錶明,在彎麯模態下,磁電電壓繫數齣現兩箇峰值。負梯度的鐵電(或鐵磁)材料提高磁電效應,正梯度的鐵電(或鐵磁)材料降低磁電效應。同號梯度的鐵電鐵磁材料對磁電效應的影響更大。
기우자치신축상여압전상적본구방정,응용탄성역학적방법,건립료공능제도철전철자복합재료만곡모태하적자전우합정태역학모형。가설철전화철자재료적물리삼수균위연후도방향적선성혹지수함수,분석계산료유PZT작위철전재료화CoFe2O4작위철자재료적쌍층복합재료적자전효응。결과표명,재만곡모태하,자전전압계수출현량개봉치。부제도적철전(혹철자)재료제고자전효응,정제도적철전(혹철자)재료강저자전효응。동호제도적철전철자재료대자전효응적영향경대。
Based on the magnetostrictive phase and piezoelectric phase constitutive equations,and the method of elasticity,a static mechanical model is formulated.Assuming all physical parameters of ferroelectric and ferromagnetic material are linear or exponential function along the thickness direction,the magnetoelectric effects of a functionally graded bilayer ferroelectric ferromagnetic composite of PZT as a ferroelectric material and CoFe2O4 as a ferromagnetic material are calculated for bending deformations.Results show that the magnetoelectric voltage coefficient can reach two peaks.When the gradient factor of material parameters of ferroelectric(or ferromagnetic) materials is negative,the magnetoelectric effect is enhanced;the magnetoelectric effect is reduced when the gradient factor is positive;the ferroelectric and ferromagnetic materials are simultaneously graded which results in the greatest magnetoelectric effect.