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电磁材料效应和电磁力跟应力、变形及动力的相互作用问题,包括了从微型电子芯片中热应变问题,到用于聚变反应堆、核磁共振扫描器和磁浮列车的大超导磁铁中应力问题的一个很广的范围。有一类值得加强研究的重要问题,是跟以铁电体、铁磁体、半导体或微电子材料为基础的传感器或敏感元件有关的力学问题。另一个可能得到技术成果的领域,是机电操作装置。为了使工程师更好地设计和优化电磁设备,还需要对计算电磁场、力、转矩及电流的数值方法作进一步的研究。激光辐射与高能粒子跟固体的相互作用,是另一个新的研究领域。这一领域尚未得到稳定的进展。这些问题的学科交叉性就意味着,这一领域还没有正常的拨款来源。这将是这一领域进一步发展的一个问题。
Electromagnetic Material Effects and Electromagnetic Interactions with Stress, Deformation, and Motions, ranging from Thermal Strain Problems in Microelectronic Chips to Stress Problems in Large Superconducting Magnets for Fusion Reactors, Nuclear Magnetic Resonance Scanners, and Maglev Trains A very wide range. An important issue worth highlighting research is the mechanical problem associated with sensors or sensitive components based on ferroelectrics, ferromagnets, semiconductors or microelectronic materials. Another area where the technical result may be obtained is the electromechanical operating device. In order to enable engineers to better design and optimize the electromagnetic device, further study on the numerical methods of calculating the electromagnetic field, force, torque and current is needed. Laser radiation and the interaction of energetic particles with solids are another new area of research. There has been no steady progress in this area. The interdisciplinary nature of these issues means that there is no normal source of funding for this area. This will be a question of further development in this area.