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Transient temperature and stress fields on bonding small glass pieces to solder glass by laser welding: Numerical modelling and experimental validation

机译:通过激光焊接将小玻璃片粘合到焊料玻璃上的瞬态温度和应力场:数值建模和实验验证

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摘要

Laser welding of transparent materials, including glasses, established in the recent years. This study reports the results of the theoretical with experimental validation to transient temperature and stress fields on bonding small glass pieces to solder glass by laser welding. A 3D finite element model of bonding small glass pieces to solder glass by laser welding is developed and validated with experimental micro-structural analysis. An influence of laser average power and welding speed on the temperature field and stress field during welding is studied. A range of average laser power and welding speed, with a standard of the appropriate temperatures and ultimate stresses of sealing during laser welding, are determined. The results show that in the range of laser average power of 45 similar to 75 W and welding speed of 1-2 mm/s, the heat source central temperature increases with an increase of laser average power or the decrease of welding speed, and the corresponding maximum temperature exceeds 650 degrees C. The maximum transient thermal stress is calculated to be 152 MPa, it appeared at the boundary of the upper glass interface. The boundary stress at the front end of the heat source and the transient thermal stress at the inflection point are larger than the transient thermal stress at the middle point. The experimental and theoretical results show that the melting layer has excellent morphology and mechanical properties at the average laser power of 65 W and welding speed of 90 mm/min, which is applicable for the bonding of small glass pieces to solder glass by laser welding.
机译:激光焊接透明材料,包括眼镜,近年来成立。本研究报告了通过激光焊接将小玻璃片与焊接玻璃上的瞬态温度和应力场的实验验证的理论上的结果。通过实验微结构分析开发并验证了通过激光焊接将小玻璃片与焊料玻璃结合到焊料玻璃的3D有限元模型。研究了激光平均功率和焊接速度对焊接期间温度场和应力场的影响。确定了一系列平均激光功率和焊接速度,具有标准的激光焊接期间密封的适当温度和最终应力。结果表明,在激光平均功率45的范围内,类似于75 W和1-2 mm / s的焊接速度,热源中央温度随着激光平均功率的增加而增加,以及焊接速度的降低相应的最大温度超过650℃。将最大瞬态热应力计算为152MPa,它出现在上玻璃接口的边界处。热源前端处的边界应力和拐点处的瞬态热应力大于中间点处的瞬态热应力。实验和理论结果表明,熔化层具有优异的形态和机械性能,平均激光功率为65W,焊接速度为90毫米/分钟,可用于通过激光焊接将小玻璃片粘合到焊料玻璃上。

著录项

  • 来源
    《Solar Energy》 |2020年第10期|350-362|共13页
  • 作者单位

    Yangzhou Univ Coll Mech Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Mech Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Mech Engn Yangzhou 225127 Jiangsu Peoples R China;

    London South Bank Univ London Ctr Energy Engn Sch Engn 103 Borough Rd London SE1 0AA England;

    Yangzhou Univ Coll Mech Engn Yangzhou 225127 Jiangsu Peoples R China;

    Yangzhou Univ Coll Mech Engn Yangzhou 225127 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser welding; Bonding glass; Temperature-induced stresses; Finite-element modelling; Micro-morphology;

    机译:激光焊接;粘合玻璃;温度诱导的应力;有限元模拟;微观形态;
  • 入库时间 2022-08-18 21:17:52

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