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Mechanical, Thermal and Electrical Properties of Lotus-Type Porous Metals

机译:莲花型多孔金属的机械,热和电性能

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Lotus-type porous metals are fabricated by directional solidification of molten metals dissolving hydrogen. Unidirectional pores cause various anisotropic features of mechanical, thermal and electrical properties. Tensile, compressive and fatigue strength parallel to the pore direction are higher than those perpendicular to the pore direction. Besides, thermal and electrical conductivities parallel to the pore direction are higher than those perpendicular to the pore direction. Such anisotropy is attributed to the difference in the pinning cross-sectional area due to the dislocations and the scattering cross-sectional area due to electrons. The pore cross-sectional area perpendicular to the pore direction is much larger than that parallel to the pore direction. It is surmised that such difference in pore cross-section results in the anisotropy in mechanical, thermal and electrical properties.
机译:莲花型多孔金属是通过将溶解于氢的熔融金属定向凝固而制成的。单向孔隙会引起机械,热和电性能的各种各向异性。平行于孔方向的拉伸,压缩和疲劳强度高于垂直于孔方向的拉伸,压缩和疲劳强度。此外,平行于孔方向的导热率和导电率高于垂直于孔方向的导热率。这种各向异性归因于由于位错引起的钉扎横截面面积的差异和由于电子引起的散射横截面面积的差异。垂直于孔方向的孔截面积比平行于孔方向的孔截面积大得多。据推测,孔横截面的这种差异导致机械,热和电性能的各向异性。

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