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Influence of plastic formation parameters on structural characteristics of thermoelectric material during hot extrusion

机译:热挤压过程中塑性参数对热电材料结构特性的影响

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We used mathematical modeling to compare the stress and deformation in a Bi 0.4 Sb 1.6 Te 3 solid solution base thermoelectric material for extrusion through different diameter dies. The results show that extrusion through a 20mm diameter die produces a more inhomogeneous deformation compared with extrusion through a 30mm diameter die. Extrusion through a die of a larger diameter produces a structure that is coarser but has a more homogeneous grain size distribution. The degree of preferential grain orientation is higher for extrusion through a larger diameter die. We found a change in the lattice parameter of the solid solution along the extruded rod, correlating with detect formation during extrusion. The concentration of vacancies is higher for extrusion through a smaller diameter die. This difference between the structures results from a more intense dynamic recrystallization for a smaller diameter die. Increasing the die diameter and lowering the extrusion temperature allow retaining the thermoelectric properties of the material due to a better texture.
机译:我们使用数学模型比较了Bi 0.4 Sb 1.6 Te 3固溶体基热电材料中通过不同直径模具挤出时的应力和变形。结果表明,与通过30毫米直径模具挤出相比,通过20毫米直径模具挤出的变形更加不均匀。通过较大直径的模具挤出产生的结构较粗,但粒度分布更均匀。通过较大直径的模具挤出时,优先的晶粒取向度较高。我们发现沿挤压棒的固溶体的晶格参数发生了变化,这与挤压过程中的检测形成有关。通过较小直径的模具挤出的空位集中度较高。结构之间的差异是由直径较小的模具更剧烈的动态再结晶引起的。增大模具直径并降低挤出温度,由于质地更好,因此可以保留材料的热电特性。

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