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SiCP/AZ61复合材料 SiCP/AZ61 Composites英语短句 例句大全

时间:2018-11-18 08:44:13

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SiCP/AZ61复合材料 SiCP/AZ61 Composites英语短句 例句大全

SiCP/AZ61复合材料,SiCP/AZ61 Composites

1)SiCP/AZ61 CompositesSiCP/AZ61复合材料

2)SiCp/AZ61 magnesium matrix compositeSiCp/AZ61镁基复合材料

1.The ageing treatment ofSiCp/AZ61 magnesium matrix composite fabricated by ultrasonic stirring was studied.对超声法制备的SiCp/AZ61镁基复合材料进行时效研究,结果表明:在时效过程中析出的第二相经XRD分析为Mg17Al12,且第二相的脱溶方式为连续脱溶与不连续脱溶两种方式同时存在,与基体相比,SiCp/AZ61镁基复合材料在时效时的孕育期要长,且在过时效期显微硬度下降要慢。

英文短句/例句

1.Research on Damping and Creep Properties of SiCp/AZ61 Magnesium Matrix Composites;SiCp/AZ61镁基复合材料的阻尼及蠕变性能的研究

2.Study on Creep Properties of SiC/AZ61 Composites Reinforced with SiC ParticlesSiC/AZ61镁基复合材料蠕变性能的研究

3.Research on Rapidly Solidified AZ91 Magnesium Alloy and SiCp/AZ91 Composite;快速凝固AZ91镁合金及SiCp/AZ91镁基复合材料的研究

4.Influence of SiC Particles Size on Structure and Properties of AZ61 Mg-based CompositesSiC_P尺寸对AZ61镁基复合材料组织和性能的影响

5.Preparation of SiCp/AZ31 Magnesium Matrix Composites by Repeated Plastic Working反复塑性变形法制备SiCp/AZ31镁基复合材料

6.Microstructures and Mechanical Properties of SiCp/AZ91 Magnesium Matrix Composites Fabricated by Squeeze Casting;挤压铸造SiCp/AZ91镁基复合材料的显微结构与性能

7.Optimization of Preparing Technology for Nano SiC_p/AZ61 Magnesium Matrix Composites纳米SiC颗粒增强AZ61镁基复合材料制备工艺的优化

8.Microstructure of SiC nanoparticles reinforced AZ61 magnesium composites fabricated by ultrasonic method超声法制备纳米SiC颗粒增强AZ61镁基复合材料的显微组织

9.Effect of Ageing Treatment on SiC_p/AZ61 Composite Microstructure and Mechanical Properties时效处理对SiC_p/AZ61镁基复合材料显微组织和力学性能的影响

10.Effect of Multi-Directional Forging on Microstructures and Mechanical Properties of SiCp/AZ91 Magnesium Matrix Composites多向锻造对SiCp/AZ91镁基复合材料组织与力学性能的影响

11.Research on the Welding of SiCp/2024Al Aluminum Metal Matrix Composite;SiCp/2024Al铝基复合材料的焊接

12.Research and Development of SiC Particle Reinforced Al Matrix CompositesSiCP/Al基复合材料的研究与进展

13.The Effect of Hot Extrusion on Corrosion Behavior of AZ91 Magnesium Alloy and SiCp/AZ91 Composite;热挤压对AZ91镁合金和SiCp/AZ91复合材料腐蚀行为的影响

14.Research on Process and Property of Plasma Arc Welding of SiCp/6061Al Composites;SiCp/6061Al基复合材料等离子焊接工艺与性能研究

15.Study on SiCp/A356 Aluminum Matrix Composites Fabricated by Stir Casting搅拌铸造法制备SiCp/A356铝基复合材料的研究

16.Effects of heat treatment on mechanical properties of Al-Cu-Mg based composites reinforced by SiC particle热处理对SiCp/Al-Cu-Mg基复合材料力学性能的影响

17.Study on Thixotropic Forming of SiC_p/AZ61 CompositesSiC_p/AZ61复合材料触变成形研究

18.Finite Element Simulation of Thixo-forging SiC_P/AZ61 Composites Intermediate Shaft Screw Plug for the AutomobileSiC_P/AZ61复合材料触变铸造的有限元模拟

相关短句/例句

SiCp/AZ61 magnesium matrix compositeSiCp/AZ61镁基复合材料

1.The ageing treatment ofSiCp/AZ61 magnesium matrix composite fabricated by ultrasonic stirring was studied.对超声法制备的SiCp/AZ61镁基复合材料进行时效研究,结果表明:在时效过程中析出的第二相经XRD分析为Mg17Al12,且第二相的脱溶方式为连续脱溶与不连续脱溶两种方式同时存在,与基体相比,SiCp/AZ61镁基复合材料在时效时的孕育期要长,且在过时效期显微硬度下降要慢。

3)SiCp CompositesSiCp复合材料

4)SiCp/LY12 compositeSiCp/LY12复合材料

1.Resistance to plastic deformation (σp) in a range of 10~5~2×10~3 of plastic strain was investigated experimentally for a 35%SiCp/LY12 composite and its matrix alloy.对SiCp/LY12复合材料及其基体LY12合金在10~(-5)~2×10~(-3)塑性应变范围内的塑变抗力进行了比较研究。

5)SiCp/Al MMCsSiCp/Al基复合材料

1.In order to analyze the weldability of SiC particle reinforced aluminum metal matrix composites(SiCp/Al MMCs),plasma arc in-situ welding ofSiCp/Al MMCs was carried out using argon-nitrogen mixture as plasma gas with Ti-Mg mixed powder as in-situ material.为分析SiCp/Al基复合材料的焊接性,以Ti-Mg混合粉末作为填充材料,采用氮氩混合等离子气体对SiCp/Al基复合材料进行等离子弧原位焊接。

2.Plasma arc "in-situ" welding ofSiCp/Al MMCs were carried out using argon-nitrogen mixture as plasma gases with Ti-Ni alloying as "in-situ" material.以Ti-Ni合金作为填加材料,采用氮氩混合等离子气对SiCp/Al基复合材料进行等离子弧原位焊接。

3.In this paper,SiCp/Al MMCs were selected as research objects,and process and mechanism of SiCp/6061Al MMCs by plasma arc welding(Ar and N2 as ionized gas, Ar as fielded gas) were systematically studied.研究表明填加Al-Si-Ti-Ni合金对SiCp/Al基复合材料进行等离子弧原位焊接,填加材料中Ti含量为5%时,可以有效抑制有害相Al_4C_3的生成,得到的焊缝组织较为致密,没有气孔、微观裂纹等缺陷,接头强度较之不加填充材料时有较大提高,达到226MPa,提高了接头的力学性能。

6)SiCp/Al compositesSiCp/Al复合材料

1.Preparation of high volume fractionSiCp/Al composites for electronic packaging;电子封装用高体积分数SiCp/Al复合材料的制备

2.Anti-corrosion properties of electroless nickel coating onSiCp/Al composites;SiCp/Al复合材料化学镀镍耐蚀性研究

3.An Application of Focusing Probe in SiCp/Al Composites′ Nondestructive Testing;聚焦换能器在SiCp/Al复合材料超声无损检测中的应用

延伸阅读

Sic1、名称解释碳化硅又称金钢砂或耐火砂。碳化硅是用石英砂、石油焦(或煤焦)、木屑(生产绿色碳化硅时需要加食盐)等原料在电阻炉内经高温冶炼而成。目前我国工业生产的碳化硅分为黑色碳化硅和绿色碳化硅两种,均为六方晶体,比重为3.20~3.25,显微硬度为2840~3320kg/mm2。包括黑碳化硅和绿碳化硅,其中:黑碳化硅是以石英砂,石油焦和优质硅石为主要原料,通过电阻炉高温冶炼而成。其硬度介于刚玉和金刚石之间,机械强度高于刚玉,性脆而锋利。绿碳化硅是以石油焦和优质硅石为主要原料,添加食盐作为添加剂,通过电阻炉高温冶炼而成。其硬度介于刚玉和金刚石之间,机械强度高于刚玉。2.性质碳化硅的硬度很大,具有优良的导热和导电性能,高温时能抗氧化。3.用途(1)作为磨料,可用来做磨具,如砂轮、油石、磨头、砂瓦类等。(2)作为冶金脱氧剂和耐高温材料。碳化硅主要有四大应用领域,即: 功能陶瓷、高级耐火材料、磨料及冶金原料。目前碳化硅粗料已能大量供应, 不能算高新技术产品,而技术含量极高 的纳米级碳化硅粉体的应用短时间不可能形成规模经济。(3)高纯度的单晶,可用于制造半导体、制造碳化硅纤维。4.产地、输往国别及品质规格(1)产地:青海、宁夏、河南、四川、贵州等地。(2)输往国别:美国、日本、韩国、及某些欧洲国家。(3)品质规格:①磨料级碳化硅技术条件按gb/t2480—96。各牌号的化学成分由表6-6-47和表6-6-48给出。②磨料粒度及其组成按gb/t2477—83。磨料粒度组成测定方法按gb/t2481—83。

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