In order to develop jetting technologies of glue in LED and microelectronics packaging, giant-magnetostrictive-material (GMM) is firstly applied to increase jetting response, and a new magnifying device including a lever and a flexible hinge is designed to improve jetting characteristics. Physical models of the jetting system are derived from the magnifying structure and working principle, which involves circuit model, electro-magneto-displacement model, dynamic model and fluid-solid coupling model. The system model is established by combining mathematical models with Matlab-Simulink. The effectiveness of the GMM-based dispenser is confirmed by simulation and experiments. The jetting frequency significantly increases to 250âHz, and dynamic behaviors jetting needle are evaluated that the velocity and displacement of the jetting needle reaches to 320âmmâ¢s-1 and 0.11âmm respectively. With the increasing of the filling pressure or the amplitude of the current, the dot size will become larger. The dot size and working frequency can be easily adjusted.
The principle and physical models of novel jetting dispenser with giant magnetostrictive and a magnifier.
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作者:Zhou C, Li J H, Duan J A, Deng G L
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2015 | 起止号: | 2015 Dec 16; 5:18294 |
| doi: | 10.1038/srep18294 | ||
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