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1.
超磁致伸缩材料在力磁耦合作用下具有复杂的迟滞响应。Preisach模型可有效描述物理过程中的滞后现象,它具有两个重要特性,即擦除特性和同余特性。擦除特性是指输入局部极大值擦除了加载过程中小于该值的所有极大值,或输入局部极小值擦除了加载过程中大于该值的所有极小值,同时,与这些历史极值相应的加载历史也被擦除,不再影响之后的输出。同余特性是指输入极大值与极小值相同的所有闭合曲线一致。本文通过实验系统地研究了超磁致伸缩材料在多轴力磁耦合场作用下的磁致伸缩曲线、磁滞回线和应力应变的迟滞行为,发现其在力磁耦合下的非线性滞后行为具有擦除特性和同余特性。这满足了Preisach模型描述滞后现象的两个基本要求,验证了利用Preisach模型描述超磁致伸缩材料迟滞行为的可行性,为超磁致伸缩材料的非线性理论和器件设计提供了依据。  相似文献   

2.
金科 《固体力学学报》2012,33(5):548-556
超磁致伸缩材料由于具有位移大、响应快、驱动简单等性能优势,在智能系统中具有广阔的应用前景。对于其力学行为的研究,在理论上涉及的关键科学问题是多场耦合问题的理论建模与定量模拟,而其应用需求则涉及对超磁致伸缩器件性能的定量预测及优化。目前超磁致伸缩材料在工业上最广泛的应用是作为换能器的核心制动元件,其磁学、力学行为与工况密切相关。应力、外磁场、环境温度都会改变材料的磁化强度和应变状态,在交变磁场作用下磁致伸缩棒截面上产生涡电流,该损耗使材料的磁化和应变曲线出现洄滞。针对这些问题已有很多学者[1]-[4]进行了研究,这些工作揭示了外部条件对超磁致伸缩材料磁学、力学性质的单向联合作用,如图1中虚线所示。然而对于超磁致伸缩材料力学行为的准确刻画还需要考虑更深层次的多物理场耦合关系(图1中实线所示):由于超磁致伸缩材料被外场磁化而产生磁致应变的同时,被磁化的介质也可以充当一种源而改变其周围的磁场,改变的程度依赖于介质的变形,因此需要考虑介质对周围磁场的反作用;棒截面上的涡电流除了会带来磁滞损耗外还会产生大量的热,改变周围温度,进而因为热膨胀、热磁效应等改变超磁致伸缩棒的磁学、力学输出,所以涡电流的热效应也不可忽略;此外,超磁致伸缩棒在交变磁场下的振动响应使其应力状态发生改变,在建模时不能只考虑所施加的预应力,材料的实时应力状态必须加以考虑。图1中虚线和实线所指向的过程共同构筑了超磁致伸缩材料的多物理场耦合框架,综合考虑这些因素才能准确描述超磁致伸缩材料多场耦合非线性力学行为。本文围绕上述内容逐步深入,针对这一在理论和应用上具有重要意义的问题,开展了理论建模和数值模拟研究。  相似文献   

3.
稀土超磁致伸缩材料应力与电磁耦合特性的实验研究   总被引:16,自引:0,他引:16  
讨论了稀土超磁致伸缩棒特性实验的若干应力与电磁耦合问题,利用自己设计制作的实验装置建立了应力电磁耦合系统的物理模型,应用阻抗分析方法得到了相应的等效电路。测定了在电磁场与应力场共同作用下TbxDy1-xFe2-z三元稀土合金超磁致伸缩棒的磁致伸缩系数,机电耦合系数等。针对磁通泄漏问题,专门设计制作了圆柱型硅钢密闭磁路,本的实验结果为稀土眼磁致伸缩材料应用器提供了重要而准确的数据。  相似文献   

4.
铁电陶瓷PZT53复杂力电耦合行为的实验研究   总被引:1,自引:1,他引:0  
万强  陈常青  沈亚鹏 《力学学报》2005,37(4):413-420
通过实验研究了平行和垂直于极化方向的正应力对铁电陶瓷锆钛酸铅(PZT53)的电滞回线(E3-P3)和电致应变曲线(E-ε)的影响. 实验发现平行于极化方向的压应力对PZT53陶瓷的电滞回线、电致应变曲线形状以及矫顽场大小都有明显的影响,但是垂直于极化方向的拉、压应力只对PZT53陶瓷的电致应变曲线形状有明显的影响,但对电滞回线形状和矫顽场大小都没有显著影响. 采用畴翻转的模型详细解释了观察到的实验现象,所得结果为建立铁电陶瓷的多轴力、电耦合本构模型,提供了物理基础.  相似文献   

5.
考虑了超磁致伸缩棒的对称有间隙滞回特性,建立了相应的超磁致伸缩材料执行器的动力学模型。通过渐进法分析,得到超磁致伸缩材料执行器运动相应的近似解析式。通过数值模拟,发现对称有间隙滞回非线性振动系统具有复杂的分叉和混沌行为。  相似文献   

6.
磁致伸缩主被动隔振装置中的磁机耦合效应研究   总被引:2,自引:1,他引:1  
磁致伸缩材料和柔顺位移放大机构组成的主动驱动装置具有精度高、驱动力大等特点.将其与被动隔振装置并联,形成主被动隔振装置,可以弥补纯被动隔振在低频和微幅扰动工况下的不足.本文针对这类磁致伸缩主被动隔振装置进行磁机耦合效应研究.基于Jiles-Atherton模型,分析了磁致伸缩材料所受应力对有效磁场、磁化强度、磁致伸缩系数和材料杨氏模量的影响,表征了材料磁机耦合效应.在此基础上,建立了主被动隔振装置的动力学模型,分析了主动驱动装置与被动隔振装置间的耦合作用.在耦合作用影响下,若被动隔振装置刚度不同,即使输入磁场相同,驱动器产生的驱动位移和驱动力也不相同.磁致伸缩材料的变刚度效应使隔振装置整体等效刚度不再为定值,从而影响被动隔振效果.本文提出了通过柔顺机构参数设计减小前述两种耦合影响的方法.数值仿真结果表明,磁致伸缩主被动隔振装置在低于、接近和高于谐振频率三类扰动下,都能达到比被动隔振更好的振动抑制效果.此外,仿真结果验证了考虑磁机耦合效应的数值模型具有更高精度.   相似文献   

7.
磁致伸缩材料和柔顺位移放大机构组成的主动驱动装置具有精度高、驱动力大等特点.将其与被动隔振装置并联,形成主被动隔振装置,可以弥补纯被动隔振在低频和微幅扰动工况下的不足.本文针对这类磁致伸缩主被动隔振装置进行磁机耦合效应研究.基于Jiles-Atherton模型,分析了磁致伸缩材料所受应力对有效磁场、磁化强度、磁致伸缩系数和材料杨氏模量的影响,表征了材料磁机耦合效应.在此基础上,建立了主被动隔振装置的动力学模型,分析了主动驱动装置与被动隔振装置间的耦合作用.在耦合作用影响下,若被动隔振装置刚度不同,即使输入磁场相同,驱动器产生的驱动位移和驱动力也不相同.磁致伸缩材料的变刚度效应使隔振装置整体等效刚度不再为定值,从而影响被动隔振效果.本文提出了通过柔顺机构参数设计减小前述两种耦合影响的方法.数值仿真结果表明,磁致伸缩主被动隔振装置在低于、接近和高于谐振频率三类扰动下,都能达到比被动隔振更好的振动抑制效果.此外,仿真结果验证了考虑磁机耦合效应的数值模型具有更高精度.  相似文献   

8.
超磁致伸缩换能器耦合磁弹性模型与振动特性分析   总被引:2,自引:0,他引:2  
针对应用于非圆车削加工的超磁致伸缩换能器,建立了其耦合磁弹性动力学模型与复系数动力学微分方程,基于实验建立的激励电流磁致伸缩材料轴向位移-磁场强度三者之间的关系式,得到了换能器磁力-位移关系的磁动方程的解析解,分析了系统的频响特性及不同频率下,激励电流与换能器输出位移之间的滞回关系,对现有磁场-电流公式进行了修正,讨论...  相似文献   

9.
本文基于改进的Landau唯象相变理论,构造一个耦合的非线性常微分方程模型来模拟一维磁致伸缩材料的磁滞动态特性。模型的构造通过引入一个非凸的自由能函数来模拟磁致伸缩磁材料中不可逆的磁极化翻转与磁致应变,该自由能函数的每一个局部极小值都对应材料的一个磁化方向。通过热力学平衡条件建立能刻画磁致伸缩效应的非线性本构关系。所构造的模型成功地模拟出了磁场与弹性场之间的磁滞曲线和蝶形曲线,并采用实验结果对模型进行了验证。  相似文献   

10.
超磁致伸缩换能器的磁滞非线性动力学仿真   总被引:1,自引:0,他引:1  
在超磁致伸缩材料输出端位移假设的基础上,建立了以输出顶杆为研究对 象、考虑材料内部磁滞非线性及预压弹簧特性的超磁致伸缩换能器非线性动力学模 型; 并将Simulink仿真系统应用到超磁致伸缩换能器系统动力学仿真中. 仿真结果表 明: 换能器模型系统为稳定周期运动系统,并具有滞回非线性特性;弹簧非线性项中的平方 项是影响换能器模型系统的主要因素. 经验证,数值计算结果与文献给出的试验测试结果吻 合较好.  相似文献   

11.
含损伤的冻土本构模型及耦合问题数值分析   总被引:7,自引:1,他引:7  
从复合材料的细观力学机理出发,建立了含损伤的冻土弹性本构模型. 对于在不同冰体积 含量和不同温度下的冻结砂土,由该损伤本构模型计算的结果与实测的应力-应变曲线比较 吻合. 利用自主开发的程序,分别对渠道冻结和冻土路基的水分场、温度场、应力场3场耦 合进行数值模拟,得到了比较准确、详尽的符合实际的温度场与应力场、位移场、应变场耦 合的计算结果,与前人的计算及实测结果相符合,规律一致. 表明该程序能够计算冻土材料 的相关物理量,并能很好地描述这些相关物理量之间的关系.  相似文献   

12.
铁磁材料不同应变状态下的磁特性实验研究   总被引:3,自引:0,他引:3  
通过实验测量了一种铁磁材料—中碳钢在不同应变状态下的磁滞回线.由此得出矫顽力-应变和剩磁-应变的关系曲线,研究了磁场和应力场对钢铁材料的耦合作用,并对现象作了初步的解释.  相似文献   

13.
This paper considers several problems involving coupled heat–moisture–air flow indeformable unsaturated media. A set of coupled non-linear governing equations expressed in terms of displacements, capillary pressure, air pressure and temperature are used in the analysis. The mathematical model accounts for fully coupled heat and moisture flow, volume strain effects on water-air-heat flow, stress and temperature dependence of the water retention curve, heat sink due to thermal expansion, phase change between liquid water and vapour water, and compressibility of liquid water. Numerical solutions are obtained by using the finite element method. Comparisons with existing analytical and experimental results for problems involving infiltration, drying–rewetting (hysteresis effects) and heating confirm the general validity of the present mathematical model. Coupled fields in a confined clay cylinder are also examined. It is found that consideration of absorbed liquid flow due to thermal gradients (thermo-osmosis effect) results in increased drying and shrinkage near the heated boundary. The case of a confined clay cylinder under combined heating and infiltration is also studied. Important features of coupled fields are discussed.  相似文献   

14.
An asymptotic analysis is made on problems with a steady-state crack growth coupled with a creep law model under tensile loads. Asymptotic equations of crack tip fields in creep materials are derived and solved numerically under small scale conditions. Stress and strain functions are adopted under a polar coordinate system. The governing equations of asymptotic fields are obtained by inserting the stress field and strain field into the material law. The crack growth rate rather than fracture criterion plays an important role in the crack tip fields of materials with creep behavior.  相似文献   

15.
热弹耦合圆板非线性振动的研究   总被引:2,自引:0,他引:2  
对温度场中圆板的非线笥热弹耦合自由振动问题,由非线性振动方程、协调方程及热传导方程出发,动用伽辽金法求解,得出一个关于时间的非线笥常策分方程组。将热弹耦合与非热弹耦合情况进行对比,发现给定初始位移较小时,热弹耦合效应使板的固有频率相对与无热弹耦合情形提高;给定初始位移较大时,热弹耦合2使固有频率降低,该文不还比较了不同热弹参数和边界条件对热弹耦合效应的影响。  相似文献   

16.
涂层结构由于其优良的物理化学性能而备受人们关注,但受其厚度尺寸的影响,涂层材料中物理量的数值计算一直是工程中的难点。边界元法分析涂层结构时,难点在于涂层子域的数值分析,边界量计算既涉及奇异积分又涉及几乎奇异积分。本文基于间接规则化边界积分方程,准确高效地计算奇异边界积分。针对计算边界量及内点物理量时涉及的几乎奇异积分,采用一类非线性变量替换法,有效地改善了被积函数的震荡特性,从而消除了积分核的几乎奇异性。通过采用二次单元逼近几何边界,使得高效准确地计算超薄的涂层结构成为可能。  相似文献   

17.
An electromechanical liquid crystal model is developed for characterizing the equilibrium morphology of a lipid vesicle under coupled mechanical and electrical fields. A general equation that governs the vesicle shape is established, which incorporates the effects of elastic bending, osmotic pressure, surface tension, Maxwell pressure, as well as flexoelectric and dielectric properties of the lipid membrane. As an illustration of the model, the problem of an axisymmetric vesicle (e.g., a sphere or a cylinder) in a uniform electric field is considered in some detail, with results in agreement with relevant experimental results. The model provides an efficient tool for studying morphological evolution of dielectric vesicles under mechanical and electrical fields.  相似文献   

18.
Crack-tip stress fields for a stationary crack along or inclined to the direction of property gradation in functionally graded materials (FGMs) are obtained through an asymptotic analysis coupled with Westergaard’s stress function approach. The elastic modulus of the FGM is assumed to vary linearly along the gradation direction. The first six terms for a crack along the direction of property variation and first four terms for a crack inclined to the direction of property variation in the expansion of the stress field are derived to explicitly bring out the influence of nonhomogeneity on the structure of the stress field. Using these stress fields, contours of constant maximum shear stress and constant out of plane displacement are generated and the effect of inclination of property gradation direction on these contours is discussed. The strain energy density criterion is applied to obtain critical conditions for crack initiation and the effect of property gradation is discussed. It is shown that the materials with varying properties can offer more resistance to crack propagation and will suppress crack growth in some situations.  相似文献   

19.
The results of studying the electromechanical response of thin-walled viscoelastic piezoactive elements under harmonic loading are generalized. The nonlinear electrothermoviscoelastic problem for a harmonically deformed body is formulated in a simplified form with regard for the facts that the mechanical, thermal, and electric fields are coupled, the material is physically nonlinear, and its properties depend on temperature. Classical and refined electromechanical models of single-layer and multilayer shells and plates under general and harmonic loading are reviewed. The models consider that the electromechanical characteristics of the material depend on temperature and physical and geometrical nonlinearities. Methods for solving nonlinear coupled electrothermoviscoelastic problems are discussed. Analytical and numerical solutions are given to specific quasistatic and dynamic electrothermoviscoelastic problems for thin-walled elements such as rods, plates, and shells of various shapes under harmonic electric loading. The effect of dissipation, the temperature dependence of the material properties, and physical and geometrical nonlinearities on the harmonic and parametric vibrations and stability of piezoelectric elements is studied  相似文献   

20.
A higher order zig-zag plate theory is developed to refine the prediction of the mechanical, thermal, and electric behaviors fully coupled. Both in-plane displacement and temperature fields through the thickness are constructed by superimposing linear zig-zag field to the smooth globally cubic varying field. Smooth parabolic distribution through the thickness is assumed in the out-of-plane displacement field in order to consider transverse normal deformation. Linear zig-zag form is adopted in the electric potential. The layer-dependent degrees of freedom of displacement and temperature fields are expressed in terms of reference primary degrees of freedom by applying interface continuity conditions as well as bounding surface conditions of transverse shear stresses and transverse heat fluxes. Thus the proposed theory is not only accurate but also efficient. Through the numerical examples of coupled and uncoupled analysis, the accuracy and efficiency of the present theory are demonstrated. The present theory is suitable in the predictions of fully coupled behaviors of thick smart composite plate under mechanical, thermal, and electric loads combined.  相似文献   

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