CN104446476B - A kind of fluorine-containing dielectric constant microwave dielectric ceramic and preparation method thereof - Google Patents

A kind of fluorine-containing dielectric constant microwave dielectric ceramic and preparation method thereof Download PDF

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CN104446476B
CN104446476B CN201410601209.3A CN201410601209A CN104446476B CN 104446476 B CN104446476 B CN 104446476B CN 201410601209 A CN201410601209 A CN 201410601209A CN 104446476 B CN104446476 B CN 104446476B
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lila
binding agent
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dielectric constant
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CN104446476A (en
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巩美露
苏聪学
徐军古
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Fuyang Shenbang New Material Technology Co., Ltd
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Guilin University of Technology
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Abstract

The invention discloses a kind of fluorine-containing dielectric constant microwave dielectric ceramic LiLa with near-zero resonance frequency temperature coefficient4Mo3O15F and preparation method thereof. (1) be 99.9%(percentage by weight by purity) above LiF, La2O3And MoO3Starting powder press LiLa4Mo3O15The composition weigh batching of F; (2) step (1) raw material wet ball-milling is mixed 12 hours, ball-milling medium is distilled water, pre-burning 6 hours in 850 DEG C of air atmosphere after oven dry; (3) in the powder making in step (2), add after binding agent granulation, more compressing, finally sintering 4 hours in 900 ~ 950 DEG C of air atmosphere; Described binding agent adopts the poly-vinyl alcohol solution that mass concentration is 5%, and the addition of polyvinyl alcohol accounts for 3% of powder gross mass. Ceramic post sintering prepared by the present invention is good, and dielectric constant reaches 21.6~23.1, and its quality factor q f value is up to 64100-70200GHz, and temperature coefficient of resonance frequency is little, has a great using value industrial.

Description

A kind of fluorine-containing dielectric constant microwave dielectric ceramic and preparation method thereof
Technical field
The present invention relates to dielectric ceramic material, particularly relate to the ceramic substrate, the resonance that use for the manufacture of microwave frequencyDielectric ceramic material of the microwave device such as device and wave filter and preparation method thereof.
Background technology
Microwave dielectric ceramic refers to and is applied in microwave frequency band (being mainly UHF and SHF frequency range) circuit as dielectric materialAnd complete the pottery of one or more functions, in modern communication, be widely used as resonator, wave filter, dielectric substrate and mediumThe components and parts such as guided wave loop are the key foundation materials of modern communication technology, in portable mobile phone, automobile telephone, nothingThere is very important application aspect such as rope phone, telstar recipient and military radar etc., small-sized at modern communication instrumentIn change, integrated process, just bringing into play increasing effect.
Be applied to the dielectric ceramic of microwave frequency band, should meet the requirement of following dielectric property: (1) seriation DIELECTRIC CONSTANTSrTo adapt to the requirement of different frequency and different application occasion; (2) high quality factor q value or low dielectric loss tan δ are to reduceNoise, General Requirements Qf >=3000GHz; (3) the temperature coefficient τ of resonant frequency?As far as possible little of to ensure what device had hadHeat endurance, General Requirements-10ppm/ DEG C≤τ?≤+10ppm/ DEG C. From late 1930s, just someone attempts in the worldDielectric substance is applied to microwave technology, and prepares TiO2Microwave dielectric filter, but its temperature coefficient of resonance frequency τ?Too large and cannot be practical. Since the seventies in last century, start the large-scale development to medium ceramic material, rootAccording to relative dielectric constant εrSize from use frequency range different, conventionally can be by the microwave-medium pottery being developed and developingPorcelain is divided into 4 classes.
(1) ultralow dielectric microwave dielectric ceramic, main representative is Al2O3-TiO2、Y2BaCuO5、MgAl2O4WithMg2SiO4Deng, its εr≤ 20, quality factor q × f >=50000GHz, τ?≤ 10ppm/ ° of C. Be mainly used in microwave base plate and heightEnd microwave device.
(2) low εrWith the microwave dielectric ceramic of high Q value, be mainly BaO-MgO-Ta2O5,BaO-ZnO-Ta2O5Or BaO-MgO-Nb2O5,BaO-ZnO-Nb2O5System or the hybrid system MWDC material between them. Its εr=20~35,Q=(1~2)×104(under f >=10GHz), τ?≈ 0. Be mainly used in the microwave communication equipments such as the direct broadcasting satellite of f >=8GHz as mediumResonating device.
(3) medium εrWith the microwave dielectric ceramic of Q value, be mainly with BaTi4O9、Ba2Ti9O20(Zr, Sn) TiO4Deng beingThe MWDC material of base, its εr=35~45,Q=(6~9)×103(under f=3~-4GHz), τ?≤ 5ppm/ ° of C. Be mainly used in 4In microwave military radar in~8GHz frequency range and communication system as dielectric resonance device.
(4) high εrAnd the lower microwave dielectric ceramic of Q value is mainly used in civilian movement in 0.8~4GHz frequency range and leads toNews system, this is also the emphasis of microwave dielectric ceramic research. Since the eighties, the people such as Kolar, Kato in succession find and have studiedPerovskite-like tungsten bronze type BaO-Ln2O3—TiO2Series (Ln=La, Sm, Nd or Pr etc. are called for short BLT system), composite perofskiteStructure C aO-Li2O—Ln2O3—TiO2Series, lead base series material, Ca1-xLn2x/3TiO3Be contour εrMicrowave dielectric ceramic,Wherein BaO-the Nd of BLT system2O3—TiO2Material dielectric constant reaches 90, lead base series (Pb, Ca) ZrO3Dielectric constant reachesTo 105.
Due to three performance indications (ε of microwave dielectric ceramicrWith Qf and τ?) between be that the relation of mutually restriction (is shown inDocument: the restricting relation between microwave dielectric ceramic materials dielectric properties, Zhu Jianhua, Liang Fei, Wang little Hong, Lv Wenzhong, electronics unitPart and material, the 3rd phase of March in 2005), the single-phase microwave-medium ceramics that meets three performance requirements is considerably less, is mainly themTemperature coefficient of resonance frequency conventionally excessive or quality factor are on the low side and cannot application request. At present microwave-medium is made potteryThe research major part of porcelain is the summary of experience drawing by great many of experiments, but do not have complete theory set forth microstructure withThe relation of dielectric properties, therefore, in theory also cannot predict its resonant frequency temperature system from the composition of compound and structureThe microwave dielectric properties such as number and quality factor, explore and (10ppm/ DEG C≤τ of exploitation near-zero resonance frequency temperature coefficient?≤+10ppm/ DEG C) with the serial differing dielectric constant microwave dielectric ceramic of higher figure of merit be that those skilled in the art are always thirstyHope and solve but be difficult to all the time the difficult problem succeeding, this has limited the development of microwave dielectric ceramic and device to a great extent.
We are to composition LiLa4Mo3O15F、LiNd4Mo3O15F、LiSm4Mo3O15F、LiEu4Mo3O15The pottery of F has carried outThe research of microwave dielectric property, wherein LiLa4Mo3O15F one-component ceramic have near-zero resonance frequency temperature coefficient and high-quality because ofNumber, LiSm4Mo3O15Temperature coefficient of resonance frequency (the τ bigger than normal of F pottery?For-74ppm/ DEG C); And LiEu4Mo3O15F withLiNd4Mo3O15F pottery is not single-phase, and its dielectric loss can not be served as microwave dielectric ceramic too greatly simultaneously.
Summary of the invention
The object of this invention is to provide a kind of fluorine-containing dielectric constant microwave with near-zero resonance frequency temperature coefficient is situated betweenElectroceramics material and preparation method thereof.
The chemical composition of microwave dielectric ceramic material of the present invention is LiLa4Mo3O15F。
Preparation method's step of this microwave dielectric ceramic material is:
(1) be 99.9%(percentage by weight by purity) above LiF, La2O3And MoO3Starting powder pressLiLa4Mo3O15The composition weigh batching of F.
(2) by step (1) raw material wet ball-milling mix 12 hours, ball-milling medium is distilled water, after oven dry at 850 DEG C of atmospherePre-burning 6 hours in atmosphere.
(3) in the powder making in step (2), add after binding agent granulation, more compressing, finally at 900 ~ 950 DEG CSintering 4 hours in air atmosphere; Described binding agent adopts the poly-vinyl alcohol solution that mass concentration is 5%, polyvinyl alcohol additionAccount for 3% of powder gross mass.
Advantage of the present invention: LiLa4Mo3O15F ceramic dielectric constant reaches 21.6~23.1, the temperature system of its resonant frequencyNumber τ?Little, temperature stability is good; Quality factor q f value is up to 64100-70200GHz, can be widely used in various dielectric resonators andThe manufacture of the microwave devices such as wave filter, can meet the Technology Need of low temperature co-fired technology and microwave multilayer device, has industrialUsing value greatly.
Detailed description of the invention
Embodiment:
Table 1 shows 3 specific embodiments and the microwave dielectric property thereof that form different sintering temperatures of the present invention. Its systemPreparation Method is described above, carries out the evaluation of microwave dielectric property by cylindrical dielectric resonator method.
This pottery can be widely used in the manufacture of the microwave devices such as various medium substrates, resonator and wave filter, can meet and moveThe Technology Need of the systems such as moving communication and satellite communication.
Table 1:

Claims (1)

1. a molecular formula is LiLa4Mo3O15The compound of F is as the fluorine-containing low dielectric with near-zero resonance frequency temperature coefficientThe application of constant microwave dielectric ceramic, is characterized in that preparation method's concrete steps of described compound are:
(1) be 99.9%(percentage by weight by purity) above LiF, La2O3And MoO3Starting powder press LiLa4Mo3O15F'sComposition weigh batching;
(2) by step (1) raw material wet ball-milling mix 12 hours, ball-milling medium is distilled water, after oven dry 850 DEG C of air atmosphereMiddle pre-burning 6 hours;
(3) in the powder making in step (2), add after binding agent granulation, more compressing, finally at 900 ~ 950 DEG C of atmosphereSintering 4 hours in atmosphere; Described binding agent adopts the poly-vinyl alcohol solution that mass concentration is 5%, and polyvinyl alcohol addition accounts for powder3% of end gross mass.
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CN105236977A (en) * 2015-10-18 2016-01-13 桂林理工大学 Ultralow dielectric constant microwave dielectric ceramic La4VBO10 and preparation method thereof
CN105236979A (en) * 2015-10-19 2016-01-13 桂林理工大学 Temperature stable ultralow dielectric constant microwave dielectric ceramic LiZnYbV2O8

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103274684A (en) * 2013-06-14 2013-09-04 桂林电子科技大学 High-permittivity microwave dielectric ceramics capable of being sintered at medium-low temperature and preparation method thereof

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103274684A (en) * 2013-06-14 2013-09-04 桂林电子科技大学 High-permittivity microwave dielectric ceramics capable of being sintered at medium-low temperature and preparation method thereof

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
A4B3O12型六方钙钛矿微波介质陶瓷的研究进展;廖维等;《电子元件与材料》;20120131;第31卷(第1期);全文 *
Preparation of the new phases MLn4Mo3O16,MLn6Mo4O22 with a flurite-type structure;par Jean-Pierre Faurie;《Preparation of the new phase MLn4Mo3O16,MLn6Mo4O22 with a fluorite-type structure》;19711231(第11期);3865-3868 *

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