Complex investigation of the mechanical properties and structural-phase composition of high-strength laser welding connections of the aluminum alloy 1420

A. Malikov, A. Orishich, E. Karpov, I. Vitoshkin
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Abstract

The paper presents a series of experimental works for the optimization of the thermal post-treatment process (quenching and artificial ageing) of the laser welding joints of aluminum-lithium alloy 1420 (the system Al-Mg-Li) by the temperature and time characteristics, in order to find the breaking stress, yield limit and ultimate tensile strain approaching to the respective characteristics of the main alloy, or equal to them. Low-cycle tests have been done with the thermally-treated welding joints for the pulsing stretching at various loading amplitudes at the temperatures of –60, +20, +85°С. The surface structure of ruptured welding joints with and without thermal treatment has been studied after low cycle tests at various loading amplitudes at the increased and decreased temperatures.
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1420铝合金高强度激光焊接接头力学性能和组织相组成的复杂研究
本文通过对1420铝锂合金(Al-Mg-Li体系)激光焊接接头的温度和时间特性进行了一系列的实验研究,优化了热后处理工艺(淬火和人工时效),使其断裂应力、屈服极限和极限拉伸应变接近或等于主合金各自的特性。对热处理焊接接头在-60、+20、+85°С温度下不同加载幅度下的脉冲拉伸进行了低周试验。通过低周试验,研究了在不同加载幅值和不同温度下,经过热处理和不经过热处理的断裂焊接接头的表面组织。
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