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激光层裂法检测粘接结构界面结合强度的研究

吴合槟 朱帅光 廖永红 谭善源 柯金龙 林超辉 张永康

激光技术2025,Vol.49Issue(2):278-283,6.
激光技术2025,Vol.49Issue(2):278-283,6.DOI:10.7510/jgjs.issn.1001-3806.2025.02.019

激光层裂法检测粘接结构界面结合强度的研究

Study on interface bonding strength of the bonded structures measured by laser spalling method

吴合槟 1朱帅光 2廖永红 3谭善源 3柯金龙 3林超辉 1张永康1

作者信息

  • 1. 广东工业大学 机电工程学院,广州 510006,中国||广东省海洋能源装备先进制造技术重点实验室,广州 510006,中国
  • 2. 广东工业大学 机电工程学院,广州 510006,中国||广州机械科学研究院有限公司,广州 510006,中国
  • 3. 广东工业大学 机电工程学院,广州 510006,中国
  • 折叠

摘要

Abstract

To solve the problem of"kiss bonding"and"weak bonding"which cannot be detected by conventional nondestructive testing technology,a self-designed variable pulse width Nd∶YAG laser was selected.Three surface treatment methods and two kinds of adhesives were used to prepare the bonded structures of 4.68 MPa,17.69 MPa,21.35 MPa.The fixed laser parameters were used to verify the bonded structures by laser shock experiment.The results show that when the laser pulse width is 30 ns,spot diameter is 4 mm and laser energy is 8 J,the 3M DP460 adhesive with the tensile strength of 37 MPa does not have spalling damage,while the 3M DP810 adhesive with the tensile strength of 15 MPa has spalling damage.With the increase of laser energy,the interface debonding area of 4.68 MPa bonded structure increases from 12.5 mm2 to 50.0 mm2,while no obvious damage is found in 21.35 MPa bonded structure,indicating that under appropriate laser parameters,laser spalling technology can be used as a non-destructive testing method to effectively detect"weak bonding"and"kiss bonding"at the bonding interface.This study provides a reference for the application of laser spalling technology in the field of interface bonding strength detection of bonded structures.

关键词

激光技术/激光层裂/粘接结构/结合强度/无损检测

Key words

laser technique/laser spalling/bonded structure/adhesive strength/nondestructive testing

分类

信息技术与安全科学

引用本文复制引用

吴合槟,朱帅光,廖永红,谭善源,柯金龙,林超辉,张永康..激光层裂法检测粘接结构界面结合强度的研究[J].激光技术,2025,49(2):278-283,6.

基金项目

国家重点研发计划资助项目(2018YFB1107700) (2018YFB1107700)

广州市基础研究计划资助项目(2024A04J4135) (2024A04J4135)

激光技术

OA北大核心

1001-3806

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