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首页> 外文期刊>Archive of Applied Mechanics >Magnetorheological gels in two and three dimensions: understanding the interplay between single particle motion, internal deformations, and matrix properties
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Magnetorheological gels in two and three dimensions: understanding the interplay between single particle motion, internal deformations, and matrix properties

机译:二维和三个维度的磁流变凝胶:了解单个粒子运动,内部变形和基质性质之间的相互作用

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摘要

Magnetic hybrid materials are intrinsically heterogeneous in their mechanical properties on different length scales. This gives rise to a number of challenges in the comparison of experimental results to modeling and simulation efforts. This review focused on recent advance on relating the mechanical properties of magnetic hybrid materials to the internal structure of these materials. Special emphasis is given to methods for observing the internal matrix deformations. For 3D and 2D magnetic hybrid materials, we discuss the possibilities and limitations of measuring internal motion and instabilities of the embedded magnetic particles. Although measuring internal matrix deformations in 3D systems is possible, the measurement time for 3D imaging is too long for truly dynamic studies. This limitation can be overcome with 2D imaging in 2D or 3D systems. In all presented systems, measuring the internal deformation also gives the possibility to use the magnetic particles to characterize the mechanical matrix properties locally. The presented experimental advances are put into relation to competing approaches.
机译:磁性混合材料在不同长度尺度上的机械性能本质上是异质的。在将实验结果与建模和仿真工作进行比较时,这带来了许多挑战。这篇综述集中在将磁性混合材料的机械性能与这些材料的内部结构相关的最新进展上。特别强调观察内部矩阵变形的方法。对于3D和2D磁性杂化材料,我们讨论了测量内部运动和嵌入的磁性粒子的不稳定性的可能性和局限性。尽管可以在3D系统中测量内部矩阵变形,但对于真正的动态研究而言,3D成像的测量时间过长。此限制可以通过2D或3D系统中的2D成像来克服。在所有提出的系统中,测量内部变形还可以使用磁性颗粒局部表征机械基体的特性。提出的实验进展与竞争方法相关。

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