A low-rare-earth nano-heterogeneous magnesium alloy aging heat treatment process
A technology of aging heat treatment and aging treatment, which is applied in the field of nano-metal material processing, can solve the problems of low mechanical properties of magnesium alloys and difficulty in meeting the needs of high-performance materials, and achieve the effect of eliminating internal stress and preventing grain growth
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0024] The atomic percentage composition of the magnesium alloy is: Mg-1.36Gd-1.03Y-0.13Zr, the extruded bar is subjected to swaging deformation at 100°C, and the deformation amount of each pass is controlled to be 15%, 15%, 10%, and the total deformation The amount is 35%, and the feeding speed is controlled to be 3 mm / min to prepare a nano-heterogeneous magnesium alloy.
[0025] The obtained nano-heterogeneous magnesium alloy was subjected to a first-stage aging treatment at 130° C. for 15 hours, and then a second-stage aging treatment was performed at 175° C. for an aging time of 20 hours. According to GB / T228-2002, the mechanical properties of the aged alloy were tested and compared with the alloy before aging. The results showed that compared with the unaged nano-heterogeneous magnesium alloy, the tensile strength of the aged alloy increased by 85MPa, and the yield strength increased by 100MPa.
Embodiment 2
[0027] The atomic percentage composition of the magnesium alloy is: Mg-1.36Gd-1.03Y-0.13Zr, the extruded bar is subjected to swaging deformation at 100°C, and the deformation amount of each pass is controlled to be 15%, 10%, and 10%, and the total deformation The amount is 31%, and the feed rate is controlled to be 3 mm / min to prepare a nano-heterogeneous magnesium alloy.
[0028] The obtained nano-heterogeneous magnesium alloy was subjected to a first-stage aging treatment at 110° C. for 15 hours, and then a second-stage aging treatment was performed at 150° C. for an aging time of 40 hours. According to GB / T228-2002, the mechanical properties of the aged magnesium alloy were tested and compared with the alloy before aging. The results showed that compared with the unaged nano-heterogeneous magnesium alloy, the tensile strength of the aged alloy increased by 90MPa, and the yield strength increased by 110MPa.
Embodiment 3
[0030] The atomic percentage composition of the magnesium alloy is: Mg-1.09Gd-0.69Y-0.14Zr, the extruded bar is subjected to swaging deformation at 200°C, and the deformation amount of each pass is controlled to be 15%, 15%, 15%, and 15%. , the total deformation is 48%, and the feeding speed is controlled to be 2mm / min to prepare nano-heterogeneous magnesium alloy.
[0031] The obtained nano-heterogeneous magnesium alloy was subjected to a first-stage aging treatment at 130° C. for 10 hours, and then a second-stage aging treatment was performed at 175° C. for 25 hours. According to GB / T228-2002, the mechanical properties of the aged magnesium alloy were tested and compared with the pre-aging alloy. The results showed that compared with the unaged nano-heterogeneous magnesium alloy, the tensile strength of the aged alloy increased by 100MPa, and the yield strength increased by 115MPa.
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More - R&D
- Intellectual Property
- Life Sciences
- Materials
- Tech Scout
- Unparalleled Data Quality
- Higher Quality Content
- 60% Fewer Hallucinations
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2025 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com