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Influences of Diamond Material on Heat Dissipation Capabilities of Helical Slow Wave Structures

机译:金刚石材料对螺旋慢波结构散热能力的影响

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From theoretical calculations, simulations, and emulations, as well as laboratory testing, we evaluated the influences of both diamond and diamond-film-coated support rods, as well as diamond-film-coated helices, on the heat dissipation capabilities of slow wave structures (SWSs). A comparison between the experiment and simulation data shows that the computer simulation results are in good agreement and offer an important reference for the application of diamond in SWSs. An expression for the coefficient of thermal conductivity for the helix material and for the support rod material indicates that the greater their value, the better the heat dissipation capability of the helical SWS. The simulation and emulation analysis results show that when the helix reaches the same temperature, SWSs made of diamond-film-coated support rods and helix are able to consume 20-60 more heating power than normal SWSs. Similar to a purely diamond support rod, a diamond-film-coated helix and support rod are able to improve the heat dissipation capabilities of SWSs effectively. In experiments, we tested the heat dissipation capabilities of SWSs with their helix surfaces plated with high-performance gold/copper films and BeO/BeN support rods. The experimental results agree well with the ANSYS simulation and emulation results.
机译:通过理论计算,模拟和仿真以及实验室测试,我们评估了金刚石和金刚石膜涂层支撑杆以及金刚石膜涂层螺旋对慢波结构散热能力的影响(SWS)。实验数据与仿真数据的比较表明,计算机仿真结果吻合良好,为金刚石在超大型水电站中的应用提供了重要参考。螺旋材料和支撑杆材料的导热系数的表达式表明,其值越大,螺旋SWS的散热能力越好。仿真和仿真分析结果表明,当螺旋线达到相同温度时,由金刚石薄膜涂层支撑棒和螺旋线制成的SWS比普通SWS消耗的热量多20-60倍。类似于纯金刚石支撑杆,涂有金刚石膜的螺旋和支撑杆能够有效提高SWS的散热能力。在实验中,我们测试了SWS的螺旋表面镀有高性能金/铜膜和BeO / BeN支撑棒的散热能力。实验结果与ANSYS仿真和仿真结果吻合良好。

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