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激光熔覆Inconel 625合金动态剪切响应及微观组织演变

刘涛 李思悦 雷经发 王璐 沈朝阳

航空材料学报2025,Vol.45Issue(2):28-36,9.
航空材料学报2025,Vol.45Issue(2):28-36,9.DOI:10.11868/j.issn.1005-5053.2024.000140

激光熔覆Inconel 625合金动态剪切响应及微观组织演变

Dynamic shear response and microstructural evolution of laser-cladding Inconel 625 alloy

刘涛 1李思悦 2雷经发 1王璐 1沈朝阳2

作者信息

  • 1. 安徽建筑大学机械与电气工程学院,合肥 230601||工程机械智能制造安徽省教育厅重点实验室,合肥 230601
  • 2. 安徽建筑大学机械与电气工程学院,合肥 230601
  • 折叠

摘要

Abstract

It provides theoretical guidance for the optimization of mechanical properties to research the dynamic shear mechanical properties and microstructural evolution law of laser-cladding Inconel 625(IN625)alloy.A series of dynamic shear experiments are conducted using the split Hopkinson pressure bar(SHPB)at varying ambient temperatures(20,600,800℃and 1000℃)and strain rates(40000,60000 s-1 and 80000 s-1).These experiments aim to establish the dynamic shear stress-strain relationship.Pre-and post-loading morphologies and crystal structures of the alloy are characterized using scanning electron microscopy(SEM)and electron backscatter diffraction(EBSD).The results show that both the strain rate strengthening effect and temperature softening effect are pronounced in laser-cladding IN625 alloy,with temperature softening effect predominantly influencing its mechanical behavior at elevated temperatures.Compared to the unloaded sample,the dynamic shear test at room temperature lead to the development of a prominent shear texture,with an increase in dislocation density and a decrease in average grain size.Specially,the proportion of small-angle grain boundaries increases from 29%to 85%.Conversely,high-temperature dynamic shear experiments,compared to room temperature loading,weaken the preferred orientation and reduce the dislocation density of the crystals.These high-temperature conditions further decrease the average grain size and lower the proportion of small-angle grain boundaries from 85%to 73.5%.

关键词

激光熔覆/IN625合金/动态剪切/微观组织

Key words

laser cladding/IN625 alloy/dynamic shear/microstructure

分类

航空航天

引用本文复制引用

刘涛,李思悦,雷经发,王璐,沈朝阳..激光熔覆Inconel 625合金动态剪切响应及微观组织演变[J].航空材料学报,2025,45(2):28-36,9.

基金项目

安徽省高等学校自然科学研究重大项目(2023AH040036) (2023AH040036)

安徽高校协同创新项目(GXXT-2023-025) (GXXT-2023-025)

合肥市自然科学基金资助项目(HZR2432) (HZR2432)

航空材料学报

OA北大核心

1005-5053

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