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METHOD FOR MANUFACTURING RESONANT POLES, RESONANT POLES AND CAVITY FILTERS

机译:制造谐振极,谐振极和空腔滤波器的方法

摘要

Embodiments in the invention disclose a method for manufacturing resonant poles, which comprises the following steps: homogeneously mechanical mixing 88wt%-98wt% Fe-Ni alloying powder, 1wt%-8wt% carbonyl iron powder and 1wt%-8wt% carbonyl nickel powder mechanically; shaping the mixture powders after being homogeneously mixed into green body of the resonant poles; and continuously sintering and heating by annealing the green body of the resonant poles. Also, embodiments in the invention provide a kind of resonant poles and cavity filters. The advantages of using the method for manufacturing resonant poles of the embodiments in the invention is: the production efficiency being greatly improved, the raw material loss being cut down in a large degree, and the alloying gradients agglomeration of the resonant poles of the embodiments in the invention being reduced to a minimum, big and uneven defects of the microstructures being eliminated, hence the performance index and stability of the corresponding products being increased.
机译:本发明实施例公开了一种制造谐振极的方法,包括以下步骤:将88wt%-98wt%的Fe-Ni合金粉末,1wt%-8wt%的羰基铁粉和1wt%-8wt%的羰基镍粉均匀地机械混合。 ;均匀地混入谐振极的生坯中,使混合物粉末成形。通过对谐振极的生坯进行退火来连续烧结和加热。而且,本发明的实施例提供了一种谐振极和腔滤波器。使用本发明实施例的谐振极的方法的优点是:大大提高了生产效率,大大降低了原料损失,并且实施例的谐振极的合金化梯度附聚。本发明减少到最小,消除了微结构的大的和不均匀的缺陷,因此提高了相应产品的性能指标和稳定性。

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