dispersion strengthened copper oxygen

精品项目网 2024-05-24 23:29:06

基本释义:

弥散强化无氧铜

网络释义

1)dispersion strengthened copper oxygen,弥散强化无氧铜

2)dispersion strengthened copper,弥散强化铜

3)dispersion-strengthened copper,弥散强化铜

4)DSC,弥散强化铜

5)dispersion strengthened copper alloy,弥散强化铜合金

6)Al_2O_3 dispersion-strengthened copper,Al2O3弥散强化铜

用法和例句

Alumina dispersion strengthened copper possesses high temperature strength and excellent conductivity.

氧化铝弥散强化铜材料具有高温强度、高导电的特性和不可替代的作用。

The microstructure and property of dispersion strengthened copper (DSC) with WC as the dispersoid are studied.

对以WC粒子为第二相的弥散强化铜材料的组织与性能进行了研究。

The forgeability of dispersion strengthened copper was studied.

对弥散强化铜的锻造性进行了研究。

Study of forgeability of dispersion-strengthened copper material with high strength and high conductivity;

高强高导弥散强化铜材料可锻性研究

A fundamental approach to the design of high-strength and high-conductivity dispersion-strengthened copper alloys is given.

弥散强化铜材料增强相的选用原则及复合材料组织特点和演变规律对弥散强化铜材料的制备有重要的指导意义。

Dispersion-strengthened copper has characteristics of high strength, good electrical conductivity, high-softened temperature, etc.

弥散强化铜具有强度高,导电性好,软化温度高等特性,国外已广泛应用于制作电极及集成电路的引线框架材料。

The Cu/Al2O3 and Cu/WC dispersion-strengthened copper(DSC)had been prepared by mechanical alloying(MA) and cold pressure technology.

用高能球磨冷压烧结方法制备了Cu/Al2O3和Cu/WC弥散强化铜,检测和分析了其导电性能。

Dispersion strengthened copper (DSC) is widely used in automobile and electronic industry because of its excellent conductivity and high-temperature property.

弥散强化铜具有良好的导电性和高温性能等,广泛应用于汽车、电子等行业。

Low content alumina dispersion strengthened copper alloy wa s prepared by short-flow technology, and its annealing characteristics was stud ied by mechanical property measurment, microstructure observation and SEM fractu re analysis.

采用短流程工艺制备了低浓度Cu Al2 O3弥散强化铜合金 ,通过力学性能测量、金相、扫描电镜断口研究了该合金的退火特性。

Fabrications processes and characters of high-strength,high-conductivity and high-heat resistance dispersion strengthened copper alloy are summarized.

综述了高强高导高耐热弥散强化铜合金的制备方法及其特点,比较了各种方法制备的弥散强化铜合金的性能,简述了国内外研究现状。

Study on Vacuum Brazing of Al_2O_3 Dispersion-strengthen Copper and Copper T2

Al_2O_3弥散强化铜与T2铜的真空钎焊研究

On the Physical Properties of WC Dispersion Strengthened Copper;

WC弥散强化铜的物理性能(英文)

Preparation of In-Situ TiC Particle Dispersion-Strengthened Copper Matrix Composites

原位生成TiC制备弥散强化铜材料

Effects of Differed Enhancing Phase on Properties of Dispersion-Strengthened Copper-Alloy;

不同增强相对弥散强化铜合金性能的影响

Study on Copper Matrix Composite Reinforced with Alumina Particles;

氧化铝颗粒弥散强化铜基复合材料的研究

Internal Oxidation Kinetics and Recrystallization of Al_2O_(3p)/Cu Composites;

Al_2O_3弥散强化铜内氧化动力学及其再结晶研究

Microstructure and Properties of Al_2O_3 Dispersively Strengthened Copper Alloy Prepared by Internal Oxidation

内氧化法制备Al_2O_3弥散强化铜合金的组织和性能

Preparation of Nano-Alumina Dispersion Strengthening Copper by Explosive Compaction

爆炸压实法制备纳米氧化铝弥散强化铜

Study on Fabrication and Properties of Ti_3SiC_2 Dispersion Strengthened Copper Composites;

Ti_3SiC_2弥散强化铜基复合材料的制备和性能研究

STUDY ON HIGH TEMPERATURE DEFORMATION CHARACTERISTICS OF Cu-0.23%Al_2O_3 DISPERSION-STRENGTHENED COPPER ALLOY

Cu-0.23%Al_2O_3弥散强化铜合金的高温变形特性研究

Manufacturing Process and Property of Al_2O_3 Dispersion Strengthened Copper-based Composite Material

Al_2O_3弥散强化铜基复合材料的制备及性能研究

Short-Flowing Preparation Methods and Several Fundamental Research of Nanoparticle Dispersion Strengthened Copper Alloys;

纳米弥散强化铜合金短流程制备方法及其相关基础问题研究

Microstructure and Properties of Ti_3SiC_2/Carbon Fibre Dispersion-strengthening/Cu-graphite Composites

陶瓷颗粒Ti_3SiC_2-碳纤维弥散强化铜基复合材料组织和性能研究

dispersion strengthened alloys made by powder metallurgy

粉末冶金弥散强化合金

Study on the Mechanism of Oxide Dispersion-Strengthened Pt/Pt-Rh Alloys

氧化物弥散强化Pt/Pt-Rh合金机理研究

MR Perfusion and Diffusion Weighted Imaging for Ring-like Enhancement Lesion in Brain;

脑内环形强化病灶的MR灌注、弥散成像

Properties of Al_2O_3 Dispersion Strengthened NiCr Matrix Composites Coatings;

Al_2O_3弥散强化NiCr基复合涂层性能研究

This is essentially a development of thoria dispersion strengthened nickel alloys.

这基本上是用二氧化钍弥散强度化的镍基合金。

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