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Deformation of Explosion-Welded Titanium-Aluminum Composite in Conditions of Transient Rolling Process
Inorganic Materials: Applied Research ( IF 0.5 ) Pub Date : 2020-08-07 , DOI: 10.1134/s2075113320040139
D. N. Gurulev , S. V. Palatkin , L. V. Palatkina

Abstract

Explosion-welded titanium-aluminum layered composite materials (LCM) can subsequently be subjected to pressure treatment, which leads to a change in the ratio of layer thicknesses, structure, and properties. The deformation of the composite leads to uneven longitudinal and vertical deformation of the layers, which depends on the temperature of the process, the shrinkage, and the nature of the boundaries between the layers. It was found that, at a temperature of 450°C, there is a sharp increase in the deformation ability of the composite, which is associated with an increase in the plastic properties of aluminum layers.


中文翻译:

瞬态轧制条件下爆炸焊接的钛铝复合材料的变形

摘要

爆炸焊接的钛铝层状复合材料(LCM)随后可以进行压力处理,这会导致层厚度,结构和性能的比率发生变化。复合材料的变形导致层的纵向和垂直变形不均匀,这取决于过程的温度,收缩率以及层之间边界的性质。已经发现,在450℃的温度下,复合材料的变形能力急剧增加,这与铝层的塑性提高有关。
更新日期:2020-08-07
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