2018Unpublished venueRequires access

Thermal Stress Analysis of BGA Solder Joint Power Load Based on COMSOL

Jian-pei Wang, Liangkun Lu, Chunyue Huang, Wei He

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Abstract

In this paper, the finite element analysis model of the solder joint of the ball grid array BGA (Ball grid array) is established, and based on the model, the welding point height and the maximum radial dimension of solder joint are studied by the finite element analysis of the power cyclic loading stress and strain of BGA solder joints. The effect of the diameter of the disc and the diameter of the lower pad on the stress and strain of the solder joint. The results show that the stress of solder joint decreases with the increase of weld point height, and decreases with the decrease of maximum radial size.

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What this paper is about

In this paper, the finite element analysis model of the solder joint of the ball grid array BGA (Ball grid array) is established, and based on the model, the welding point height and the maximum radial dimension of solder joint are studied by the finite element analysis of the power cyclic loading stress and strain of BGA solder joints. The effect of the diameter of the disc and the diameter of the lower pad on the stress and strain of the solder joint. The results show that the stress of solder joint decreases with the increase of weld point height, and decreases with the decrease of maximum radial size.

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Available abstract

In this paper, the finite element analysis model of the solder joint of the ball grid array BGA (Ball grid array) is established, and based on the model, the welding point height and the maximum radial dimension of solder joint are studied by the finite element analysis of the power cyclic loading stress and strain of BGA solder joints. The effect of the diameter of the disc and the diameter of the lower pad on the stress and strain of the solder joint. The results show that the stress of solder joint decreases with the increase of weld point height, and decreases with the decrease of maximum radial size.

Key concepts: Ball grid array, Soldering, Materials science, Joint (building), Finite element method, Welding, Stress (linguistics), Composite material

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