900字范文,内容丰富有趣,生活中的好帮手!
900字范文 > 原位无压反应 in-situ pressureless reaction英语短句 例句大全

原位无压反应 in-situ pressureless reaction英语短句 例句大全

时间:2021-10-08 06:53:20

相关推荐

原位无压反应 in-situ pressureless reaction英语短句 例句大全

原位无压反应,in-situ pressureless reaction

1)in-situ pressureless reaction原位无压反应

1.SiC/MoSi 2 composites with different volume fraction of SiC particles were prepared byin-situ pressureless reaction sintering and the influence of sintering technique on the product was analysised.利用原位无压反应烧结方法制备了不同配比的SiC/MoSi2复合材料,分析了烧结工艺对产物的影响,研究了原位生成的SiC颗粒对MoSi2基体材料室温力学性能和显微结构的影响。

英文短句/例句

1.Preparation and Characterization of SiC-MoSi_2 Composite Materials by In-situ Pressureless Reaction Sintering原位无压反应烧结制备SiC-MoSi_2复合材料及其性能研究

2.In-situ reaction hot-pressing sintering process of SiC/MoSi_2 compositesSiC/MoSi_2复合材料的原位反应热压烧结工艺

3.Study on Human Thermal Comfort within Lower-pressure Environment of Asymptomatic Altitude Reaction;无症状高原反应域低气压环境下人体热舒适研究

4.Experimental Study on the Change of Human Body Heart Rate Within Lower-pressure Environment of Asymptomatic Altitude Reaction无症状高原反应域低气压环境下人体心率变化的实验研究

5.The Pilot Study on Synthesizing Metal/Metal Silicide Multiphase Alloys by Hot-pressing In-situ Reaction Sintering;热压原位反应合成金属/金属硅化物复相合金的初步研究

6.In-Situ Reaction Synthesis of Sub-Micro-Layered Ti_3C_2/(Cu-Al) Cermet with High Performance原位热压反应制备高性能亚微米层状Ti_3C_2/(Cu-Al)金属陶瓷

7.Research on Mechanical Properties of SiC/MoSi_2 Composites Prepared by Technology of In-situ Reaction Hot-pressing Sintering原位反应热压烧结SiC/MoSi_2复合材料的力学性能研究

8.The Reaction Process of Propene Hydroformalytion on PPh_3-Rh/SBA-15 Catalyst Studied by In Situ High-pressure MAS NMR SpectroscopyRh基催化剂上氢甲酰化反应过程的原位高压NMR研究

9.Reaction Mechanism and Characterization of In-situ Soap Free Emulsion Polymerization of Wollastonite-g-PMMA原位无皂乳液聚合硅灰石接枝PMMA反应机理及表征

10.Abstract: Causes of too fast increase of the pressure drop and location in the fixed bed reactor of hydrocracker were discussed.文摘:讨论了加氢装置固定床反应器压力降升高过快的原因及产生的位置。

11.Principle Application and Practice About no Pressure Perspective Ventilation Door无压透视自动风门的原理、应用与实践

12.Biginelli Reactions by Steric Control under Solvent-free Conditions无溶剂下位阻控制的Biginelli反应

13.In Situ Compatibilization of PS/POE Blends by Friedel-Crafts Alkylation Reactions;Friedel-Crafts烷基化反应原位增容PS/POE共混物

14.The Syntesis of Modified CPE by Chlorinating-grafting of PE in Situ;PE氯化原位接枝反应制备改性CPE

15.Study on in Situ Processed Mg_2Si/Mg Composite;原位反应制备Mg_2Si/Mg复合材料的研究

16.Preparation of iPP/sPS Alloy Using In-situ Supported Binary Catalysts;原位负载制备iPP/sPS反应器内合金

17.In Situ Preparation of MgO-FeAl_2O_4 Material Based on Ferreous Raw Material利用金属铁源原位反应制备MgO-FeAl_2O_4材料

18.Preparation of Maleated HDPE via In-Situ Chlorinating Graft氯化原位接枝反应制备酐基化HDPE

相关短句/例句

warm compressed in-situ reacted process温压-原位反应法

1.C/C-SiC braking composites were fabricated bywarm compressed in-situ reacted process(WC-ISR) with short carbon fibers,graphite powder,Si powder and resin.以短炭纤维、炭粉、Si粉、树脂和粘结剂为原料,采用温压-原位反应法(WC-ISR)制备C/C-SiC制动材料,研究该材料的压缩性能及其破坏机理。

3)molding-in suit reaction模压-原位反应法

4)in-situ pressureless原位无压

5)in-situ reaction原位反应

1.Preparation of polyester/nano-ZnO composites byin-situ reaction;原位反应合成聚酯/纳米氧化锌复合材料

2.Fabrication of Al_2O_3-TiC/Al Composites by In-situ Reaction;原位反应法制备Al_2O_3-TiC/Al复合材料

3.In-situ reaction and phase composition design of monolithic refractories;不定形耐火材料中的原位反应与相组成设计

6)in situ reaction原位反应

1.The room and elevated temperature mechanical properties,and fracture mechanism of the composites fabricated byin situ reaction method in the Al-TiO2-C system were studied.讨论了Al-TiO2-C反应系原位反应合成铝基复合材料的常温和高温拉伸性能及其断裂机理。

2.The TiN/Al2O3 composites were synthesized byin situ reaction using Al and TiO2 as starting materials,which were high energy milled and hot pressed.结果表明:在球磨过程中粉料吸附并溶解了N2气,在后续热处理中原位反应形成了Ti2AlN相,当温度升高到一定程度时分解形成TiN,这有助于材料的致密化并使其力学性能提高。

3.VCp/Fe composite was produced byin situ reaction,studied the influence of heat treatment on its structure and properties.通过原位反应法制备了VCp/Fe复合材料,研究了热处理对其组织和性能的影响。

延伸阅读

原位分子式:CAS号:性质:源于拉丁语。指在原来的,正常、自然的部位或位置。

本内容不代表本网观点和政治立场,如有侵犯你的权益请联系我们处理。
网友评论
网友评论仅供其表达个人看法,并不表明网站立场。