CN105272171A - Temperature-stable low-dielectric constant microwave dielectric ceramic Ba2ZnGe3O9 and preparation method thereof - Google Patents

Temperature-stable low-dielectric constant microwave dielectric ceramic Ba2ZnGe3O9 and preparation method thereof Download PDF

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Publication number
CN105272171A
CN105272171A CN201510858348.9A CN201510858348A CN105272171A CN 105272171 A CN105272171 A CN 105272171A CN 201510858348 A CN201510858348 A CN 201510858348A CN 105272171 A CN105272171 A CN 105272171A
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dielectric ceramic
powder
ceramic
microwave dielectric
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程柳
方维双
苏和平
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Guilin University of Technology
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Guilin University of Technology
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Abstract

The invention discloses temperature-stable low-dielectric constant microwave dielectric ceramic Ba2ZnGe3O9 and a preparation method thereof. The method comprises the following steps: (1) weighing and burdening powder of analytically pure chemical raw materials BaCO3, ZnO and GeO2 according to the components of the Ba2ZnGe3O9; (2) carrying out wet ball-mill mixing on the raw materials in the step (1) for 12 hours, wherein the ball-milling medium is distilled water, and pre-sintering in an air atmosphere at 850 DEG C for 6 hours after drying; and (3) adding a binder to the powder prepared in the step (2), pelleting, pressing, molding, and finally sintering in the air atmosphere at 900-950 DEG C for 4 hours, wherein a polyvinyl alcohol solution of which the mass concentration is 5% is adopted by the binder; the polyvinyl alcohol accounts for 3% of total mass of the powder. The prepared ceramic is well sintered below 950 DEG C; the dielectric constant reaches 25.3-26.2; the quality factor Qf value reaches 75,000-128,000GHz; the resonant frequency temperature coefficient is small; the ceramic has great application value in industry.

Description

Temperature-stable dielectric constant microwave dielectric ceramic Ba 2znGe 3o 9and preparation method thereof
Technical field
The present invention relates to dielectric ceramic material, particularly relate to dielectric ceramic material of the microwave devices such as ceramic substrate, resonator and the wave filter used for the manufacture of microwave frequency and preparation method thereof.
Background technology
Microwave dielectric ceramic refers to and to be applied in microwave frequency band (mainly UHF and SHF frequency range) circuit as dielectric material and to complete the pottery of one or more functions, the components and parts such as resonator, wave filter, dielectric substrate and medium wave circuit are widely used as in modern communication, it is the key foundation material of modern communication technology, in portable mobile phone, automobile telephone, cordless telephone, telestar susceptor and military radar etc., there is very important application, in the miniaturization, integrated process of modern communication instrument, just playing increasing effect.
Be applied to the dielectric ceramic of microwave frequency band, the requirement of following dielectric characteristics should be met: (1) seriation DIELECTRIC CONSTANT ε rto adapt to the requirement of different frequency and different application occasion; (2) high quality factor q value or low dielectric loss tan δ to reduce noise, general requirement Qf>=3000GHz; (3) the temperature factor τ of resonant frequency ?little of as far as possible to ensure the thermostability that device has had, general requirement-10ppm/ DEG C≤τ ?≤+10ppm/ DEG C.From late 1930s, just someone attempts dielectric substance to be applied to microwave technology in the world, and prepares TiO 2microwave dielectric filter, but its temperature coefficient of resonance frequency τ ?too greatly cannot be practical.Since the seventies in last century, start the large-scale development to medium ceramic material, according to relative permittivity ε rsize from use frequency range different, usually the microwave-medium ceramics be developed and developing can be divided into 4 classes.
(1) ultralow dielectric microwave dielectric ceramic, main representative is Al 2o 3-TiO 2, Y 2baCuO 5, MgAl 2o 4and Mg 2siO 4deng, its ε r≤ 20, quality factor q × f>=50000GHz, τ ?≤ 10ppm/ ° of C.Be mainly used in microwave base plate and high-end microwave device.
(2) low ε rwith the microwave dielectric ceramic of high q-factor, mainly BaO-MgO-Ta 2o 5, BaO-ZnO-Ta 2o 5or BaO-MgO-Nb 2o 5, BaO-ZnO-Nb 2o 5system or the composite system MWDC material between them.Its ε r=20 ~ 35, Q=(1 ~ 2) × 10 4(under f>=10GHz), τ ?≈ 0.Be mainly used in the microwave communication equipments such as the direct broadcasting satellite of f >=8GHz as dielectric resonance device.
(3) medium ε rwith the microwave dielectric ceramic of Q value, mainly with BaTi 4o 9, Ba 2ti 9o 20(Zr, Sn) TiO 4deng the MWDC material for base, its ε r=35 ~ 45, Q=(6 ~ 9) × 10 3(under f=3 ~-4GHz), τ ?≤ 5ppm/ ° of C.Be mainly used in microwave military radar in 4 ~ 8GHz range of frequency and communication system as dielectric resonance device.
(4) high ε rand the microwave dielectric ceramic that Q value is lower, be mainly used in civilian mobile communcations system in 0.8 ~ 4GHz range of frequency, this is also the emphasis of microwave dielectric ceramic research.Since the eighties, the people such as Kolar, Kato in succession find and have studied perovskite-like tungsten bronze type BaO-Ln 2o 3-TiO 2series (Ln=La, Sm, Nd or Pr etc. are called for short BLT system), complex perovskite structure CaO-Li 2o-Ln 2o 3-TiO 2series, lead base series material, Ca 1-xln 2x/3tiO 3be contour ε rmicrowave dielectric ceramic, the wherein BaO-Nd of BLT system 2o 3-TiO 2material dielectric constant reaches 90, lead base series (Pb, Ca) ZrO 3specific inductivity reaches 105.
The sintering temperature of these material systems is generally higher than 1300 ° of C above, can not directly and the low melting point metal such as Ag and Cu burn formation laminated ceramic capacitor altogether.In recent years, along with LTCC Technology (LowTemperatureCo-firedCeramics, the requirement of development LTCC) and the development of microwave multilayer device, researchist both domestic and external has carried out exploring widely and studying to some low fever's system materials, mainly adopt devitrified glass or glassceramic composites system, because low melting glass has relatively high dielectric loss mutually, the existence of glassy phase substantially increases the dielectric loss of material.Therefore development is the emphasis of current research without the low fired microwave dielectric ceramic material of glassy phase.
Can in the process of low fired microwave dielectric ceramic materials in exploration and development of new, the material systems such as the Li based compound that intrinsic sintering temperature is low, Bi based compound, tungstate architecture compound and tellurate architecture compound get the attention and research, but due to three performance index (ε of microwave dielectric ceramic rwith Qf and τ ?) between be that the relation of mutually restriction is (see document: the restricting relation between microwave dielectric ceramic materials dielectric properties, Zhu Jianhua, Liang Fei, Wang little Hong, Lv Wenzhong, electronic component and material, phase March the 3rd in 2005), meet three performance requriementss and the single-phase microwave-medium ceramics of low temperature sintering is considerably less, mainly their temperature coefficient of resonance frequency is usually excessive or quality factor are on the low side and cannot application request.Current is the summary of experience drawn by great many of experiments to the research major part of microwave-medium ceramics, but complete theory is not had to set forth the relation of microtexture and dielectric properties, therefore, in theory also cannot predict its microwave dielectric property such as temperature coefficient of resonance frequency and quality factor from the composition of compound and structure, which greatly limits the development of low temperature co-fired technology and microwave multilayer device.Explore and low-temperature sintering can have near-zero resonance frequency temperature coefficient (-10ppm/ DEG C≤τ with exploitation simultaneously ?≤+10ppm/ DEG C) be that those skilled in the art thirst for solving always but are difficult to the difficult problem that succeeds all the time with the microwave dielectric ceramic of higher figure of merit.
Summary of the invention
The object of this invention is to provide and a kind of there is good thermostability and low-loss, simultaneously low temperature sintering dielectric constant microwave dielectric ceramic material and preparation method thereof.
The chemical constitution of microwave dielectric ceramic material of the present invention is Ba 2znGe 3o 9.
Preparation method's step of this microwave dielectric ceramic material is:
(1) by analytical pure chemical feedstocks BaCO 3, ZnO and GeO 2powder press Ba 2znGe 3o 9composition weigh batching.
(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 that step (2) is obtained, binding agent is added and after granulation, then compression moulding, finally in 900 ~ 950 DEG C of air atmosphere, sinter 4 hours; Described binding agent adopts mass concentration to be the polyvinyl alcohol solution of 5%, and polyvinyl alcohol addition accounts for 3% of powder total mass.
Advantage of the present invention: Ba 2znGe 3o 9ceramic sintering temperature is low, and raw materials cost is low; Its quality factor q f value is up to 75000-128000GHz, and specific inductivity reaches 25.3 ~ 26.2, the temperature factor τ of its resonant frequency ?little, temperature stability is good; The manufacture of the microwave devices such as various substrate, dielectric resonator and wave filter can be widely used in, the technology needs of low temperature co-fired technology and microwave multilayer device can be met.
Embodiment
Embodiment:
Table 1 shows 3 specific embodiments and microwave dielectric property thereof that form different sintering temperature of the present invention.Its preparation 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 substrate, resonator and wave filter, can meet the technology needs of the system such as mobile communication and satellite communications.
Table 1:

Claims (1)

1. a temperature-stable high quality factor dielectric constant microwave dielectric ceramic, is characterized in that the chemical constitution of described microwave dielectric ceramic is: Ba 2znGe 3o 9;
Preparation method's concrete steps of described microwave dielectric ceramic are:
(1) by analytical pure chemical feedstocks BaCO 3, ZnO and GeO 2powder press Ba 2znGe 3o 9composition weigh batching;
(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 that step (2) is obtained, binding agent is added and after granulation, then compression moulding, finally in 900 ~ 950 DEG C of air atmosphere, sinter 4 hours; Described binding agent adopts mass concentration to be the polyvinyl alcohol solution of 5%, and polyvinyl alcohol addition accounts for 3% of powder total mass.
CN201510858348.9A 2015-11-30 2015-11-30 Temperature-stable low-dielectric constant microwave dielectric ceramic Ba2ZnGe3O9 and preparation method thereof Pending CN105272171A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105622068A (en) * 2016-04-01 2016-06-01 桂林理工大学 Temperature-stable low-dielectric-constant microwave dielectric ceramic Ba3ZnGe4O12 and preparation method thereof
CN106187162A (en) * 2016-07-24 2016-12-07 桂林理工大学 Temperature-stable dielectric constant microwave dielectric ceramic Li2ga4ti3o13
CN106187104A (en) * 2016-07-19 2016-12-07 桂林理工大学 Low-loss temperature-stabilized dielectric constant microwave dielectric ceramic Li2caMgGeO5

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1524792A (en) * 2003-02-28 2004-09-01 新加坡纳米材料科技有限公司 Method for preparing crystalline state perovskite compounds powder
CN1736945A (en) * 2005-06-22 2006-02-22 中国科学院上海硅酸盐研究所 Improve the method for the titanium containing microwave medium ceramic insulation resistivity of burning altogether with copper

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1524792A (en) * 2003-02-28 2004-09-01 新加坡纳米材料科技有限公司 Method for preparing crystalline state perovskite compounds powder
CN1736945A (en) * 2005-06-22 2006-02-22 中国科学院上海硅酸盐研究所 Improve the method for the titanium containing microwave medium ceramic insulation resistivity of burning altogether with copper

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
马青: "A2BO4(A=Zn,B=Ge,Sn)及锡掺杂CaSiO3低介微波陶瓷的合成和性能研究", 《中国优秀硕士学位论文全文数据库 工程科技1辑》 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105622068A (en) * 2016-04-01 2016-06-01 桂林理工大学 Temperature-stable low-dielectric-constant microwave dielectric ceramic Ba3ZnGe4O12 and preparation method thereof
CN106187104A (en) * 2016-07-19 2016-12-07 桂林理工大学 Low-loss temperature-stabilized dielectric constant microwave dielectric ceramic Li2caMgGeO5
CN106187162A (en) * 2016-07-24 2016-12-07 桂林理工大学 Temperature-stable dielectric constant microwave dielectric ceramic Li2ga4ti3o13

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Application publication date: 20160127