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conventional sintering
相关语句
  常压烧结
    Properties of ZTA Ceramics Made with Microwave and Conventional Sintering Method
    常压烧结与微波烧结ZTA陶瓷性能
短句来源
    Influences of Microwave and Conventional Sintering on the Wear Behavior of Al_2O_3-ZrO_2 Ceramics
    微波烧结和常压烧结对Al_2O_3-ZrO_2陶瓷磨损行为的影响
短句来源
    Temperature Stability of PZT-PZT Ceramics Prepared by Hot-pressing and Conventional Sintering Techniques
    热压和常压烧结PZN-PZT陶瓷的温度稳定性
短句来源
    An Al 2O 3-ZrO 2(ZTA) system was chosen for investigation. Samples were sintered by microwave sintering or conventional sintering,Compared with conventional sintering process, microwave sintering enables to improve properties of sintered ZTA ceramics, as lower sintering temperature, finer microstructure, increase mechanical properties and decrease rubbing loss.
    选择Al2 O3 -ZrO2 系统 ,采用微波烧结及常压烧结两种工艺 ,分别对ZTA陶瓷的力学性能和摩擦性能进行了测试比较 ,简单分析了影响ZTA陶瓷摩擦性能的主要因素 ,微波烧结使陶瓷的烧结温度降低 ,致密度提高 ,摩擦因数增大 ,磨损量减小
短句来源
    The multi-mode microwave system and conventional sintering were carried out. Properties of Al2O3-ZrO2 composites were investigated, relative wear mechanisms were proposed with regard to the processing approaches. Compared with the conventional results, microwave processed ZTA ceramics appear with the improved relative density, fracture toughness and bending strength, the developed microwave structure, and the ameliorated wear resistance.
    采用多模微波烧结系统和常压烧结,对Al2O3-ZrO2复合材料的基本性能进行了研究,提出了相关的磨损机理.与常压烧结相比,微波烧结可以提高ZTA陶瓷的密度、强度和韧性,使其结构均匀,耐磨性提高.常压烧结样品的磨损主要是晶粒铲平、磨屑填充体内气孔形成光滑的磨损界面;
短句来源
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  常规烧结
    The microwave sintering process only cost two hours, and final sintering temperature had a decrease of 50 ℃ to 100℃ compared with conventional sintering.
    与常规烧结相比,微波烧结过程只需约2小时,致密化温度降低50~100℃。
短句来源
    The dielectric constant (4 224) of the millimeter wave sintering samples at 900 ℃ for 15 min is much higher than that(3 655) of the conventional sintering samples at 1220 ℃ for (15 min), while the relative density of both samples is near,88.7 % for the former and 89.6% for the latter.
    900℃毫米波烧结15min的样品与1220℃常规烧结15min样品的相对密度相近(分别为88.7%和89.6%),而前者的介电常数(4224)远高于后者(3655)。
短句来源
    In the present paper, factors affecting microwave sintering of TZP ceramics have been investigated in detail and compared with conventional sintering of this material. In special, mechanical properties, contents of tetragonal phase and microstructure were studied to analyze the features of microwave sintering.
    本文研究了影响微波快速烧结TZP陶瓷的各种因素,并与常规烧结作对比,着重从样品的力学性能、四方相含量和微观结构几方面探讨微波烧结的各种特性。
短句来源
    This paper introduces the characteristic of microwave sintering,introduces and analyses the process of microwave sintering of the alumina ceramic,moreover,compares with the experiments of conventional sintering method. Based on the research,some results are obtained ,and provide experimental basis for microwave sintering of ceramics.
    简要介绍了微波烧结的特点,对 Al2 O3 陶瓷的微波烧结过程进行了介绍和分析,并同常规烧结进行了对比实验,在此基础上得出了一些结论,为陶瓷微波烧结提供了实验依据
短句来源
    As compared to conventional sintering mathod,the sintering temperature is lower and the keeping time is less.
    与常规烧结样品相比较 ,协同烧结制备温度低 ,时间短 ;
短句来源
  传统烧结
    The Ba 0.80 Sr 0.20 TiO 3 ceramics with grain size 0.8-15 μm were prepared by microwave sintering and conventional sintering. The grain size effect on the dielectric properties and ferroelectric properties of the ceramics were measured and discussed.
    利用微波烧结技术和传统烧结技术制备了晶粒尺寸在 0 .8~ 15 μm的Ba0 .80 Sr0 .2 0 TiO3陶瓷 ,并对样品的介电特性和铁电特性进行了测试 ,分析了晶粒尺寸对材料介电和铁电性能的影响 .
短句来源
  “conventional sintering”译为未确定词的双语例句
    Pretreatment at or higher than the complete formation temperature of SBN could prevent the abnormal grain growth(2) Sr_(0.7)Ba_(0.3)Nb_2O_6 ceramics (SBN70) were prepared by using conventional sintering techniques from nitrate precursor and carbonate precursor.
    (2)采用硝酸盐前驱体与碳酸盐前驱体制备Sr_(0.7)Ba_(0.3)Nb_2O_6陶瓷,实验发现两者结构演化规律相似;
短句来源
    This is a summarize article to introduce the rapid developing technology-microwave sintering,it mainly introduced the mechanism of microwave sintering of Al 2O 3 and ZrO 2.It is discovered that there is no essential different between microwave sintering and conventional sintering of Al 2O 3 and ZrO 2 ceramic.
    本文是综述文章,介绍了近十几年来发展较快的微波烧结技术,及微波烧结时 Al2 O3 、 Zr O2 等材料的微波烧结机理。
短句来源
    The ZnO varistor ceramics with different contents of Sb 2O 3 doped were prepared by means of conventional sintering technology.
    制备了掺有Sb2 O3 不同掺杂量的ZnO压敏陶瓷样品 .
短句来源
    Yttria_zirconia ceramic with the mole fraction of 2% of yttria (2Y_TZP ceramic) was sintered by microwave and conventional sintering methods.
    用微波和常规方法烧结了Y2 O3掺杂量为 2 % (摩尔分数 )的ZrO2 陶瓷 (2Y_TZP陶瓷 ) .
短句来源
    The highest densities of Bi_(4)Ti_(3)O_(12) ceramics prepared by using conventional sintering process for the powders synthesized by solid state and hydrothermal methods are 7.94 g/cm~(3) (98%) and 7.67 g/cm~(3) (95.6%) respectively.
    固相合成和水热合成钛酸铋粉体普通烧结后的最高体密度分别为 7.94g/cm3(98% )和 7.67g/cm3(95 .6% )。
短句来源
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  conventional sintering
With this process raw powders, as applied for the "conventional" sintering route as well as recycled powders from used bipolar plates, have been applied.
      
Conventional sintering was carried out in an inert atmosphere while microwave sintering was performed under ambient conditions.
      
As compared to conventional sintering, compacts sintered in microwaves exhibit higher densification and finer microstructure but no corresponding improvement in mechanical properties and wear resistance.
      
Porous TiNi shape-memory alloys (SMAs) have been successfully fabricated by three different processes, including capsule-free hot isostatic pressing (CF-HIP), conventional sintering (CS), and self-propagating high-temperature synthesis (SHS).
      
After LS, the samples exhibited considerable shrinkage, which was very different from the effects of conventional sintering (CS).
      
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The key problem in ceramic sintering is the atom diffusion or mobility. Proper dopant helps promote defect forming during sintering. It is reported that for KTaO3 ceramics, in which MgO is used as a sintering aid, excellent grain growth and mi-crostructure can be obtained by conventional sintering method. Tests on the dielectric properties within the temperature range 4.2 to 540K show that they are different from those of pure KTaO3 ceramics.

陶瓷烧结的关键问题,是原子的扩散和迁移,适当的掺杂物在陶瓷烧结过程中能促进缺陷的形成.本文报导以MgO为矿化剂掺杂KTaO_3陶瓷的研究结果.用常规的烧结方法获得了良好的晶粒生长及微结构.在4.2—540K的温度范围内测量了介电系数及介电损耗,发现了一些不同于纯KTaO_3陶瓷的结果.

In this paper, A12O3, Al2O3-5%mol Cr2O3 and Al2O3-20%wt ZrO2 powders have been sintered to fabricate oxide ceramics with CO2 laser. The product of Al2(WO4)3 is-found as a new compound which can not be found in two-diminsional equilibrum phase-diagrams. The analysis of microstructure and hardness of the laser synthesized materials have been conducted. The hardnesses of laser synthesized materials are shown to be higher than that produced with the conventional sintering mothed in furnace.

本文介绍了用CO_2激光合成Al_2O_3、Al_2O_3-5%mol Cr_2O_3固熔体,Al_2O_3-20%wtZrO_2(+3%molY_2O_3)混合体和Al_2(WO_4)_3陶瓷材料的方法。激光合成的Al_2(WO_4)_3为Al_2O_3-WO_3二元平衡相图中不存在的新化合物。对激光合成的陶瓷材料进行了组织形貌分析,并测量了其显微硬度,发现用激光合成的陶瓷较用昔通工艺制备的同种陶瓷有更高的硬度。

A new sintering technique for ceramics by microwave heating was described and the use of microwave energy appeared to be of pratical values and applicstion prospects. The chararterisitics, mechanism,techniques and apparatus of microwave sintering and its developments and prospects were analyzed and discussed comprehensively. Compared with conventional sintering, microwave sintering has following advantages: (1) improved or unique microstructures and properties. (2) energy savingand shorter processing...

A new sintering technique for ceramics by microwave heating was described and the use of microwave energy appeared to be of pratical values and applicstion prospects. The chararterisitics, mechanism,techniques and apparatus of microwave sintering and its developments and prospects were analyzed and discussed comprehensively. Compared with conventional sintering, microwave sintering has following advantages: (1) improved or unique microstructures and properties. (2) energy savingand shorter processing time, (3) rapid heating rate, etc.

陶瓷微波烧结技术是一门具有实用价值和应用前景的新颖烧结技术.它与常规烧结法相比具有:(1)改进材料的显微结构和宏观性能;(2)省时节能;(3)极高的升温速率等优点.本文对微波烧结的优点、机理、设备、工艺及发展和展望进行了分析和讨论.

 
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