一种Cr-Mo-V合金化高锰钢的热处理工艺

By employing a heat treatment process for Cr-Mo-V alloyed high-manganese steel, and through rapid heating and cooling techniques, an austenitic structure with differences in alloy composition at the submicron scale is formed in the high-manganese steel. This solves the problem of insufficient initial strength and hardness of high-manganese steel, and achieves high wear resistance and low-cost production of the material.

CN118127274BActive Publication Date: 2026-07-17XI AN JIAOTONG UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XI AN JIAOTONG UNIV
Filing Date
2024-04-02
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing high-manganese steel has low initial strength and hardness, which makes it easy to deform and has insufficient wear resistance in the early stages of use. Existing alloying and heat treatment methods have limitations in improving strength and toughness.

Method used

The heat treatment process of Cr-Mo-V alloyed high manganese steel is adopted. Through rapid heating and cooling technology, an austenitic structure with differences in alloy composition at the submicron scale is obtained in the high manganese steel, avoiding the harmful structure caused by the segregation of alloying elements and improving the strength and plasticity of the material.

Benefits of technology

It significantly improves the yield strength, tensile strength and elongation of alloyed high-manganese steel, enhances the wear resistance of the material, and reduces the material cost.

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Abstract

本发明公开了一种Cr‑Mo‑V合金化高锰钢热处理工艺,热处理工艺包含以下步骤:步骤1):将Cr‑Mo‑V合金化高锰钢从室温加热至500‑650℃后保温4‑15h,空冷至室温,获得珠光体组织;步骤2):将步骤1)中珠光体组织的合金化高锰钢以大于等于15℃ / s的加热速度加热至1000‑1100℃后保温20‑120s,然后以大于等于10℃ / s的冷速冷却至室温,获得合金成分在亚微米尺度下存在差异的奥氏体组织。本发明通过快速加热和冷却技术在高锰钢中获得合金成分在亚微米尺度下存在差异的奥氏体组织,实现在亚微米尺度下对合金材料变形过程中位错和孪晶行为的调控,显著提高合金化高锰钢的强塑性。
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