Tantalum carbide materials were prepared by liquid precursor conversion, and the phase compositions and the microscopic structures of samples were characterized by XRD and SEM, respectively.

  • 报道了一种通过液相先驱体转化制备碳化钽的方法.用XRD分析材料高温处理后的相组成及晶态结构;
  • 来源:互联网摘选更新时间:2026-07-01 18:32:30

  • 重点词汇
  • byprep. 在…旁边;表示方式;由于;经过;到…之前;
  • xrdabbr.X-ray diffraction X射线衍射;
  • precursorn.前辈,前驱,先锋,前任;预兆,先兆,初期形式;[核]前驱波,初级粒子;预报器;
  • andconj. 和;与;而且;于是;然后
  • were be的过去时复数和第二人称单数形式;有时代替 was,用于条件从句、动词 wish 之后等;
  • prepared by编制;制表;承办;
  • phasen.阶段;时期;月相;(月亮的)盈亏;
  • theart.这个;指已提到或易领会到的人或事物;指独一无二的、正常的或不言而喻的人或事物;用以泛指;与形容词连用,指事物或统称的人;用于姓氏的复数形式前,指家庭或夫妇;(指特定用途的事物)足够,恰好;每,一;当前的,本,此;(重读,表示所指的为知名或重要的人或事物)
  • compositionsn.作文( composition的名词复数 );创作;组成;组织;
  • 相关例句
1、

Columbium electrolytic capacitor has the advantage of better performance and lower price than tantalum electrolytic capacitor, therefor has a bright future.

铌电解电容器具有比铝电解电容器优越的性能,而价格比钽电解电容器便宜,在电解电容器领域颇有发展前途。

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2、

If a chip tantalum electrolytic capacitor was used, the capacitance must be 127 μ F and 192 μ F, respectively.

如果用片式二氧化锰钽电解电容,则分别需要127μF和192μF。

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3、

This paper analyzed the relation that the capacitance, consumption and impedance of a solid tantalum electrolysis capacitor varied with the frequency.

讨论分析了烧结型固体钽电解电容器电容量C、损耗tgδ、阻抗Z与使用频率f的关系。

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4、

Recent Advances in the Research on the Tantalum Electrolytic Capacitor: Using Conductive Polymer for Counter Electrode

导电高分子钽电解电容器的研究进展导电高分子材料导电高分子

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5、

Analysis of ESR property of high-voltage ( 160 V) wet tantalum electrolytic capacitor

高压160V液体钽电解电容器ESR性能的分析

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6、

Influence of Capability of Ta_2O_5 Dielectric Film on Performance of Wet Tantalum Electrolytic Capacitor

Ta2O5介质膜性能对液体钽电容器性能的影响

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7、

Recent advances in tantalum electrolyte capacitor using conductive polymer for counter electrode are reviewed.

综述了导电高分子钽电解电容器的最新研究进展。

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8、

The Influence Factor of the Liquid Tantalum Electrolytic Capacitor

液体钽电解电容器电参数的影响因素

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9、

A new type solid tantalum electrolytic capacitor with conducting polymer has been developed.

利用导电高分子研制了一种新型固体钽电解电容器。

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10、

Principle of operation of tantalum electrolytic capacitor is briefly introduced.

简述了钽电解电容器的工作原理。

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11、

As an important electronic material for producing high quality tantalum capacitor, tantalum wire can usually be obtained by rolling, rotary forging and drawing in turn, but rotary forging has the disadvantage of high working intensity and low productivity.

细径钽丝作为一种制造高质量钽电容器的原料,通常需要经过轧制、旋锻及拉丝等工序才能获得,工人劳动强度大、生产效率低且质量不稳定。

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12、

In this paper, the basic constructure, operation principle and technical process of the three-location vacuum pre-sintering furnace for Tantalum capacitor are described. And the application of this equipment in Tantalum capacitor manufacture trade is introduced.

介绍了三工位片式钽电容器真空预烧炉的基本结构、工作原理及钽电容器阳极块真空预烧的工艺过程,并对该设备在片式钽电容器制造行业的意义进行了阐述。

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13、

Under the instruction of the theories, we developed the working electrolyte that used for 160 V/ 1 μ F, 160 V/ 47 μ F wet tantalum capacitor by using orthonormal experiment full factor design method.

并在理论的指导下采用正交试验,全因素设计法,研制出160V/1μF、160V/47μF液体钽电容器工作电解质配方。

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14、

Tantalum capacitor has some advantages, such as small in size, large in capacitivity, high in reliability, long in life and is one of important electronic component in radar, aerospace vehicle, missile etc.

钽电容器体积小,容量大,可靠性高,寿命长,是雷达、宇航飞行器、导弹等不可缺少的电子元件之一。

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15、

We must make the break-down voltage to be satisfied at first, and then increase the electric conductivity of working electrolyte to decrease the ESR of tantalum capacitor, and improve its comprehensive electrical function.

在满足闪火电压的前提下,提高工作电解质的电导率,以降低钽电容器的ESR,改善其综合电性能。研究了电解质在Ta2O5介质膜界面处的分布状态及作用。

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16、

Miniature solid-sintered tantalum capacitor

微小型固体烧结钽电容器

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17、

Shells of wet tantalum capacitor by deep drawing have been unable to meet quality requirements because the seizing tumour appears easily during deep drawing.

纯钽板通过深拉深制成的液体全钽电容器外壳在国内一直不能满足质量要求,主要原因是由于钽板在深拉深时极易产生粘结瘤。

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18、

In this work, the influence of organism on breakdown voltage and conductance of electrolyte of wet tantalum capacitor was investigated.

研究了有机物对液钽电容器工作电解质闪火电压及电导率的影响。

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20、

A New Hermetically Sealed Wet Tantalum Capacitor

新型全密封液体钽电容器

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