Microwave dielectric ceramic LiMg2V3O10 allowing low-temperature sintering and preparation method thereof

A microwave dielectric ceramic and low-temperature sintering technology, applied in the field of dielectric ceramic materials, can solve the problems of limited microwave dielectric ceramic system, inability to meet the requirements of thermal stability of devices, limiting low-temperature co-firing technology and development of microwave multilayer devices, etc. , to meet the requirements of thermal stability, great application value, and excellent dielectric properties.

Active Publication Date: 2014-09-24
SHANDONG XINGQIANG CHEM IND TECH RES INST CO LTD
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Problems solved by technology

[0010] In the process of exploring and developing new low-firing microwave dielectric ceramic materials, material systems such as Li-based compounds, Bi-based compounds, tungstate compounds, and tellurate-based compounds with inherently low sintering temperatures have received extensive attention and research. A large number of exploratory studies have focused on Li-based binary or ternary compounds, and developed such as Li 2 TiO 3 , Li 2 MoO 4 and Li 2 MTi 3 o 8

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  • Microwave dielectric ceramic LiMg2V3O10 allowing low-temperature sintering and preparation method thereof

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Embodiment

[0020] Table 1 shows three specific examples of different sintering temperatures constituting the present invention and their microwave dielectric properties. The preparation method is as above, and the microwave dielectric performance is evaluated by the cylindrical dielectric resonator method.

[0021] The ceramic can be widely used in the manufacture of microwave devices such as various dielectric substrates, and can meet the technical needs of mobile communication and satellite communication systems.

[0022] Table 1:

[0023]

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Abstract

The invention discloses microwave dielectric ceramic LiMg2V3O10 allowing low-temperature sintering and a preparation method of the microwave dielectric ceramic LiMg2V3O10. The preparation method includes the steps that (1), Li2CO3 original powder, MgO original powder and V2O5 original powder are weighed and proportioned according to components of LiMg2V3O10, wherein the purity of the original powder is over 99.9%; (2), wet-type ball milling is performed on the raw material in the step1 for 12 hours with distilled water being ball milling media and pre-sintered for 6 hours in the atmosphere at 750 DEG C after drying; (3), binding agents are added into powder obtained in the step2, granulation is performed, then, compression forming is performed, and finally sintering is performed for 4 hours in the atmosphere at 800 DEG C-830 DEG C, wherein polyvinyl alcohol solutions with the 5% concentricity are adopted as the binding agents, and the additive amount of polyvinyl alcohol accounts for 3% of the total mass of the powder. According to the prepared ceramic, sintering is good at 800 DEG C-830 DEG C, the dielectric constant reaches 12-13, the quality factor (Qf) value is up to 75000 GHz-89000 GHz, the temperature coefficient of resonance frequency is small, and the microwave dielectric ceramic has great application value in the industry.

Description

technical field [0001] The invention relates to a dielectric ceramic material, in particular to a microwave component such as a dielectric substrate used at a microwave frequency, a dielectric ceramic material of a ceramic capacitor or a temperature compensation capacitor and a preparation method thereof. Background technique [0002] Microwave dielectric ceramics refer to ceramics that are used as dielectric materials in circuits in the microwave frequency band (mainly UHF and SHF bands) and perform one or more functions. They are widely used as resonators, filters, and dielectric substrates in modern communications. Components such as chips and dielectric waveguide circuits are the key basic materials of modern communication technology. They have been used in portable mobile phones, car phones, cordless phones, TV satellite receivers and military radars. They are used in modern communication tools. It is playing an increasingly important role in the process of miniaturizat...

Claims

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Application Information

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IPC IPC(8): C04B35/495C04B35/622
Inventor 郭欢欢唐莹方亮
Owner SHANDONG XINGQIANG CHEM IND TECH RES INST CO LTD
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