MW-DC hybrid plasma 微波复合直流等离子体
laser-plasma hybrid welding 激光
Plasma-Cavity hybrid mode 等离子体
laser-plasma arc hybrid welding 激光
plasma-cavity hybrid mode coupled 等离子体腔混合模
The feasibility of the hybrid plasma deposition and surface finishing milling technique is discussed.
探讨了进行熔积成形与铣削光整复合的可行性。
The effects of laser on plasma arc beam, welding depth and width of deposition pool in the hybrid plasma-laser rapid manufacturing is investigated by tests.
通过试验研究了等离子激光复合快速制造中激光对等离子弧柱形貌、熔积成形时的熔深和熔宽等的影响。
The results show that there exists a density window for lower hybrid wave current drive (LHCD), i. e, LHCD would be achieved only within a certain range of plasma density.
结果表明,存在着驱动电流的密度窗口,即仅在一定的等离子体密度范围内才能驱动电流(通常在理论和实验上仅注意到驱动电流的密度上限)。
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