barium titanate信息详情
[无化]钛酸钡
barium───n.[化学]钡(一种化学元素)
barium acetate───乙酸钡;[无化]醋酸钡
barium enemas───钡灌肠
barium sulfate───[无化]硫酸钡
barium hydroxide───[无化]氢氧化钡
strontium titanate───[无化]钛酸锶
precipitated barium───沉淀钡
flocculated barium───絮凝钡
barium chloride───[无化]氯化钡
Common ceramic elements are barium titanate and lead zirconate - titanate.───普通的陶瓷元件分别是钛酸钡和锆钛酸铅。
titanate is a typical ferroelectric substance.───钛酸钡就是一种典型的位移型铁电体。
The preparation and doping method influences the electrical properties of barium titanate strongly.───钛酸钡粉体的制备方法及掺杂方式对陶瓷的电学性质有很大影响。
Titanate including barium titanate, bismuth titanate and their doped series are the best-known electronic ceramic materials at present.───钛酸盐包括钛酸钡,钛酸铋等以及其各自掺杂系列是目前颇为流行的电子陶瓷材料。
Barium titanate (BT) is a very important electronic ceramic materials with excellent dielectric and piezoelectric properties.───钛酸钡(BT)是一种非常重要的电子陶瓷材料,具有优异的介电、压电性能。
In a high level with barium titanate, the small amount by addition of carbonyl iron resulted in the sharp rise on dielectric loss.───在钛酸钡含量较高时,少量羰基铁粉的加入就造成了介电损耗的急剧上升。
The conductive adhesive is prepared by polymer matrix, barium titanate ceramic powder, diluent, curing agent and silane coupling agent.───本发明的导电胶由聚合物基体、钛酸钡陶瓷粉、稀释剂、固化剂和硅烷偶联剂制成。
Using this expression to calculate the optimum doping contents of silica and alumina and zinc oxide and tin oxide and barium-titanate.───应用此表达式定量计算了二氧化硅、三氧化二铝、氧化锌、二氧化锡、钛酸钡等部分电子陶瓷材料的最佳掺杂含量。
THE PRODUCTION AND TECHNOLOGICAL DEVELOPMENT OF ELECTRONIC CERAMIC MATERIAL BARIUM TITANATE.───电子陶瓷材料钛酸钡的生产工艺及技术进展。
Barium titanate(BaTiO3) is a well-known ferroelectric material with high dielectric constant and low losses above room temperature, and it is extensively used in the electric industry.
The determination of trace silicon in high-purity barium titanate by GFAAS method is studied, in which the sample is dissolved in hydrofluoric acid with high pressure seal.
Common ceramic elements are barium titanate and lead zirconate - titanate.
In a high level with barium titanate, the small amount by addition of carbonyl iron resulted in the sharp rise on dielectric loss.
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