复合陶瓷,composite ceramics
1)composite ceramics复合陶瓷
1.Preparation of TiN-SiC composite ceramics by reactive hot-pressing;反应热压法制备TiN-SiC复合陶瓷材料
2.Study on the structure and properties of LaCrO_3-NiMn_2O_4 composite ceramics;LaCrO_3-NiMn_2O_4复合陶瓷材料结构与性能的研究
3.Preparation and dielectric property of Sr_xBa_(1–x)Nb_2O_6-Sr_(0.6)Ba_(0.4)TiO_3 composite ceramics;SrBaNb-SrBaTi复合陶瓷的制备和介电性能研究
英文短句/例句

1.The Investigation of ZrO_2 Ceramic Molding and Composite CeramicZrO_2陶瓷成型工艺和复合陶瓷的研究
2.Study on SiC-Al_2O_3 Composite Ceramic Preparation and Its Crack-healing Properties;SiC-Al_2O_3复合陶瓷的制备及裂纹愈合研究
3.Preparation and Research of Alumina Matrix Ceramic Composite Reinforced by Mullite and Silicon Carbide Particle;碳化硅/莫来石/氧化铝复合陶瓷的研制
4.Research on the Fabrication and Mechanical Properties of Nanosized Si_3N_4-based Composite Ceramics;纳米Si_3N_4基复合陶瓷的制备与性能研究
5.Preparation and Characterization of Al_2O_3-ZrO_2 Composite Ceramic Microfiltration Membrane;Al_2O_3-ZrO_2复合陶瓷微滤膜的制备及表征
6.Preparation of ZTA Composites by Nanotechnology;纳米技术制备ZTA复合陶瓷材料的研究
7.The Preparation of ZrO_2/Al_2O_3 Composite Powder and Properties of the Ceramic;ZrO_2/Al_2O_3复合陶瓷的制备及其性能研究
8.complex perouskite type piezoelectric ceramics复合钙钛矿型压电陶瓷
9.asbestos-ceramic fiber composite石棉—陶瓷纤维复合材料
10.ceramic fiber reinforced composite陶瓷纤维增强复合材料
11.ceramic-metal composite陶瓷与金属复合材料
12.A Model of Thermal Stresses in a Ceramic/Cemented Carbide/Ceramic Sandwich Compound陶瓷/硬质合金/陶瓷夹层复合片应力分析模型
13.CURRENT SITUATION AND PROGRESS OF CARBON/CARBON, CERAMIC/CERAMIC COMPOSITE MATERIAL MADE IN FRANCE法国碳/碳、陶瓷/陶瓷复合材料的现状与进展
14.Effects of Ceramic Thickness and Confinement on Performance of Ceramic Composite Targets陶瓷厚度与约束对陶瓷复合靶抗弹性能的影响
15.Research and Development of Toughening of Ceramic Matrix Composites by Piezoelectric Ceramic Particles压电陶瓷颗粒增韧陶瓷基复合材料研究进展
16.Preparation of Composite Ceramic Incombustible Coating for Aluminum Alloy Surface铝合金表面复合阻燃陶瓷涂层的制备
17.Study on the obliquity of ceramic/aluminum alloy composite armor陶瓷/铝合金复合装甲倾角效应研究
18.Durability of Ceramic Matrix Composites in Combustion Environments燃烧环境中陶瓷基复合材料的耐用性
相关短句/例句

composite ceramic复合陶瓷
1.Study and application of composite ceramic valve to diesel engine;复合陶瓷柴油机气门的研究与应用
2.The effect of grain refinement on mechanical properties of Al_2O_3/ZrB_2/ZrO_2 composite ceramic materials;晶粒细化对Al_2O_3/ZrB_2/ZrO_2复合陶瓷材料力学性能的影响
3.Structure and dielectric property of BST/MgO composite ceramic;BST/MgO复合陶瓷的结构和介电性能
3)composite[英]['k?mp?z?t][美][k?m'pɑz?t]复合陶瓷
1.Residual stresses in alumina/mullite composites were measured by X-ray diffraction and the resultant values were validated by calculating.用X射线衍射方法测定了氧化铝/莫来石复合陶瓷的残余应力,并通过计算加以验证。
2.Al 2O 3 ZrO 2 SiC composites were prepared by RBAO technology(Reaction Bonding of Aluminum Oxide).研究反应结合Al2O3-ZrO2-SiC复合陶瓷的快速烧结工艺和力学性能,讨论了反应结合过程及物相变化。
4)ceramic composite复合陶瓷
1.In this paper using TiN, Al and BN as raw materials, reactive hot presing method wasproposed to produce TiB2/AlN ceramic composites.本文报道了以TiN、Al和BN为原料通过反应热压法制备TiB2/AlN复合陶瓷的实验结果,对该反应的热力学过程,产物的物相、微观结构与形貌进行了研究与讨论。
2.The mechanism of particulate dispersion strengthening ceramic composites were discussed.论述了颗粒弥散强化陶瓷基复合陶瓷的机理,叙述了第二相颗粒补强钛酸铝基复合陶瓷的国内外研究状况。
3.A series of samples of hexagonal boron nitride-aluminum nitride (0~100, 5~95, 10~90, 15~85, 22~82, 70~30wt%) ceramic composites were prepared by hot-pressing in nitrogen gas at 1850℃ for 2 h, with reagent grade Y2O3 and CaCO3 as sintering aid.用热压工艺制备一系列BN含量(质量分数)为0~30%的AlN-BN复合陶瓷材料,研究了三氧化二钇和碳酸钙添加剂对致密性及介电性能的影响。
5)ceramic composites复合陶瓷
1.Microstructure and dielectric properties at low frequency of BaWO_4/(Ba,Sr)TiO_3 ceramic compositesBaWO_4/(Ba,Sr)TiO_3复合陶瓷的显微结构与介电性能
2.A series of samples of AlN-BN ceramic composites with different contents of sintering additives CaF_2(0-4wt%) were prepared by hot-pressing in nitrogen atmosphere at 1850℃for 3h.用热压工艺制备了AlN-BN复合陶瓷材料,研究了不同含量CaF_2烧结助剂对致密化、介电和热导性能的影响。
6)ceramics composite陶瓷复合
1.Microstructure and wear resistance of metal-based ceramics composite coating deposited by plasma arc surfacing金属基陶瓷复合等离子弧堆焊层组织与耐磨性能
延伸阅读

多相复合陶瓷多相复合陶瓷multiphase composed ceramics 温强度可提高2倍以上;碳化硅颗粒弥散的莫来石陶瓷,常温和高温下的强度和断裂韧性均可提高近2.5倍,且改善了抗热震性能,已成为热机部件应用的第四种候选材料。 与纤维(或晶须)补强的陶瓷基复合材料相同,异相颗粒弥散复相陶瓷也存在与基体间的热膨胀系数和弹性模量之间的差别。但由于颗粒弥散型复相陶瓷具有工艺的重复性好和可靠性高的特点,以及成本较低的优点,因此发展和应用前景较好。 ③自补强复相陶瓷:又称原位生长复相陶瓷。通过工艺因素控制,既可生长出较大长径比的晶粒,起类似晶须增强作用而又可形成两(多)相陶瓷复合材料。前者如氮化硅基体,经过工艺条件控制可生长出长径比为10的晶粒;后者如从Y一Si一Al一O一N相图中的a’和产Sialon的共存相区,选择可获得兼有丫和产特性的复相陶瓷。 ④梯度功能材料:又称倾斜功能材料,是日本平井敏雄于1984年首先提出的。一面是具有结构作用的金属材料,再逐层地掺入无机化合物,使另“面材料获得特殊的功能。用高温等静压(HIP)工艺制成的碳化硅/氮化硅梯度复相陶瓷,其性能比纯碳化硅有大幅度提高。 ⑤纳米复相陶瓷:包括由晶内纳米复合(纳米晶粒进入到较大的相晶粒之中)和晶间纳米复合(纳米晶粒分布于较大母相晶粒的晶界处)的纳米一微米复相陶瓷材料。制备纳米复相陶瓷的技术关键是材料中纳米相晶粒和微米级母相晶粒之间的均匀分散。 (郭景冲潘振趁)多相复合陶瓷multiphase eomposed ceramiCs在陶瓷基体中引入第二相材料所获得的一种高性能陶瓷。又称复相陶瓷。因其基体为陶瓷,广义上又称陶瓷基复合材料。多相复合陶瓷是改进单体陶瓷材料性能的一条很好途径,它可使各种不同的强化和增韧的机理同时起作用,以产生叠加效应。 设计原则设计多相复合陶瓷遵循3个原则:①两种相在化学上的相容性。即在制备过程的温度和气氛下,两种相不能发生化学反应。②两种相在物理上的匹配,包括两者在膨胀系数上的匹配,以减少应力过分集中于某一相;在弹性模量上的匹配,即使负荷在两相中有一个合理的负担。③显微结构的设计。包括两相的相对分布性状、两相界面设计、两相的相对含量以及添加物的设计等。