Lamb Wave Propagation Characteristics in Near Morphotropic Phase Boundary Lead Magnesium Niobate-Lead Titanate Single Crystal Plate 近相界铌镁酸铅&钛酸铅单晶薄层中兰姆波传播特性研究铌酸盐-钛酸盐-钽酸盐矿
Research on Cerium Oxide and Magnesium Oxide Composite Modified Aluminum Titanate Composite Ceramics 氧化铈和氧化镁复合改性钛酸铝复相陶瓷性能的研究
Properties of Acoustic Guided Waves in Lead Magnesium Niobate-Lead Titanate Single Crystals 声导波在铌镁酸铅&钛酸铅单晶中传播特性的研究
Preparation and characterization magnesium doped barium-based titanate ceramic fibers 镁掺杂钛酸钡陶瓷纤维的制备与表征
The effects of bismuth oxide on dielectric constant 、 dielectric loss and tunability in barium strontium titanate/ magnesium titanate composite system are investigated. 研究了Bi2O3掺杂对钛酸锶钡/钛酸镁(BST/MT)复合体系介电常数、介电损耗以及调谐性等介电性能的影响。实验表明,适量的掺杂能有效的改善体系的电性能。
Magnesium titanate was obtained with special liquid phase precipitation method. 采用特殊液相沉淀法制备了镁的钛酸盐。
Phase Transition Behavior in Ferroelectric Lead Magnesium Niobate-Lead Titanate Graded Material 铌镁酸铅-钛酸铅梯度铁电材料的相变性能研究
Study on Properties of Magnesium Titanate/ Lanthanum Titanate Multiphase Ceramics 钛酸镁/钛酸镧复相陶瓷性能的研究
Nano-sized magnesium titanate powders was prepared by a chemical-reactive precipitation method, in which the mixture solution of MgCl_2 and TiCl_4 acted as the starting material and NaOH as precipitant, respectively. 以TiCl4和MgCl2混合液为原料液、NaOH为沉淀剂,采用化学沉淀法制备纳米钛酸镁粉体。
Influence of Al_2O_3 on the Dielectric Properties of Magnesium Lanthanum Titanate Ceramics Al2O3对镁镧钛陶瓷介电性能及显微结构的影响
The methods and technological conditions for the preparation of magnesium titanate are studied. 本文研究了制备镁的钛酸盐的方法及工艺条件。
The study of the properties and technology synthesizing magnesium titanate powder 钛酸镁粉末合成工艺与性能的研究
Sythesis of Lead Magnesium Niobate-Lead Titanate Dielectric Ceramic Powder by a Coprecipitation Process 共沉淀法合成铌镁酸铅&钛酸铅介电陶瓷粉末
The sintering and dielectric properties of magnesium titanate/ lanthanum titanate multiphase ceramics are investigated, and the mechanism is also discussed. 研究了钛酸镁/钛酸镧复相陶瓷的烧结性能和介电性能,并对影响机理作了初步探讨。
A coprecipitation method was used for preparation of lead magnesium niobate-lead titanate dielectric ceramic powder. X-ray powder diffraction revealed that the powder calcinated at 800 ℃ had only perovskite phase. 通过共沉淀法合成铌镁酸铅-钛酸铅介电陶瓷粉末,经800℃焙烧后,X射线衍射研究表明几乎为单一钙钛矿相;
Magnesium titanate, possessing low dielectric loss and constant, is an important microwave dielectric ceramic material. It has a broad application prospect in modern communication field. 钛酸镁是重要的微波介质陶瓷材料,具有介电损耗低、介电常数低等特点,在现代通信领域具有广阔的应用前景。
Therefore, many researches are focused on preparation, application of barium titanate and magnesium titanate. 因此,钛酸钡和钛酸镁的制备及应用成为当今研究的热点。