Slow-wave structure of multiple-beam coupling cavity traveling-wave tube and manufacturing method of slow-wave structure
A technology of slow wave structure and traveling wave tube, which is applied to the slow wave structure of coupled cavity traveling wave tube and its production, and the field of slow wave structure and production of multi-injection coupled cavity traveling wave tube, which can solve the problem of working failure of permanent magnet focusing system, Problems such as the scrapping of traveling wave tubes and poor flow rate of electron injectors have achieved the effect of improving the pass rate and working stability, and the operation is simple and feasible.
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Embodiment 1
[0041] The manufacturing method of the multi-beam coupled cavity traveling wave tube slow wave structure includes the following steps;
[0042] (1) Make the pole shoe and copper ring, so that the thickness d1 of the pole shoe is greater than the thickness d2 of the copper ring;
[0043] (2) Arrange the pole shoes and copper rings prepared in (1) alternately, the coupling grooves arranged on the pole shoes and copper rings are staggered and arranged at 180°, and the pole shoes and copper rings are welded by brazing Connected into a multi-beam coupler chain.
Embodiment 2
[0045] The manufacturing method of the multi-beam coupled cavity traveling wave tube slow wave structure includes the following steps;
[0046] (1) Make the pole shoe and copper ring, so that the thickness d1 of the pole shoe is greater than the thickness d2 of the copper ring; the thickness d1 of the pole shoe is 0.4 times the period L of the slow wave system of the traveling wave tube, and d1 is 1.2 mm; the thickness of the copper ring d2 is 0.3 times of the period L of the slow wave system of the traveling wave tube, and d2 is 0.9mm;
[0047] (2) Process the coupling grooves of the pole shoe and the copper ring in (2), so that the angle of the coupling groove of the pole shoe is greater than the angle of the coupling groove of the copper ring; the angle of the coupling groove on the pole shoe is 56° °, the angle of the coupling groove on the copper ring is 52.2°, so that the working frequency band of the traveling wave tube does not shift;
[0048] (3) Process the loading ...
Embodiment 3
[0052] The manufacturing method of the multi-beam coupled cavity traveling wave tube slow wave structure includes the following steps;
[0053] (1) Make the pole shoe and copper ring, so that the thickness d1 of the pole shoe is greater than the thickness d2 of the copper ring; the thickness d1 of the pole shoe is 0.5 times the period L of the slow wave system of the traveling wave tube, and d1 is 1.5 mm; the thickness of the copper ring d2 is 0.2 times of the period L of the slow wave system of the traveling wave tube, and d2 is 0.6mm;
[0054] (2) Process the coupling grooves of the pole shoe and the copper ring in (2), so that the angle of the coupling groove of the pole shoe is greater than the angle of the coupling groove of the copper ring; the angle of the coupling groove on the pole shoe is 58° °, the angle of the coupling slot on the copper ring is 50°, so that the working frequency band of the traveling wave tube does not shift;
[0055] (3) Process the loading head...
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