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王晨曦, 王春青, 孔令超. Ni/NiCr平行微隙焊接接头的形成机理[J]. 焊接学报, 2004, (4): 99-102.
引用本文: 王晨曦, 王春青, 孔令超. Ni/NiCr平行微隙焊接接头的形成机理[J]. 焊接学报, 2004, (4): 99-102.
WANG Chen-xi, WANG Chun-qing, KONG Ling-chao. Mechanism of Ni/NiCr joint formation by parallel micro gap welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (4): 99-102.
Citation: WANG Chen-xi, WANG Chun-qing, KONG Ling-chao. Mechanism of Ni/NiCr joint formation by parallel micro gap welding[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (4): 99-102.

Ni/NiCr平行微隙焊接接头的形成机理

Mechanism of Ni/NiCr joint formation by parallel micro gap welding

  • 摘要: 利用平行微隙焊的方法,采用大电流,短时间的强规范实现了0.15 mm的Ni引线和5 μm厚的镍铬合金薄膜的焊接。建立了二维焊接热传导模型,经过计算得知焊接过程中最高温度的位置和电极的间距有关,当电极间距大于某临界值时在两电极中间的温度最高。研究表明,在Ni引线和镍铬合金薄膜的焊接过程中,中间的温度将首先达到Ni或镍铬合金的熔点但不会形成熔核;在两电极下的部位,在电极压力的作用下,通过高速扩散,实现Ni和NiCr的焊合。

     

    Abstract: Ni leads (diameter of 0.15 mm) were welded to NiCr alloy thin film (5 μm thick) with strong current and short duration by method of parallel micro gap welding.A two-dimensional thermal conduction model of welding was developed.It was calculated that the position of top temperature was related to electrode gap.When the gap of two electrodes is greater than a critical gap,the top temperature position is in the middle of the two electrodes.Results show that the temperature in the middle of electrodes reaches the melting point of Ni or NiCr alloy firstly,however there are no nuggets in this position during the welding process.With electrode force,the formation of joint depends on diffusion below the two electrodes.

     

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