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1)  plasma activated sintering
等离子活化烧结
1.
SiC/20%(volume fraction) h-BN composite ceramics were fabricated by the hot pressing(HP) and plasma activated sintering(PAS) methods.
采用等离子活化烧结(plasma activated sintering,PAS)制备SiC/20%(体积分数)h-BN复相陶瓷,研究了烧结工艺对复相陶瓷密度、抗弯强度、硬度,以及显微结构的影响,并对比分析了PAS与热压(hot-pressing,HP)烧结工艺不同烧结机理。
2.
To solve the interfacial bonding problem of reinforced phase and matrix phase by conventional sintering,Cu-based composite reinforced by in-situ formed Mo2C was prepared by normal pressure sintering,hot pressing sintering and plasma activated sintering(PAS).
针对常规烧结方法难以实现强化相与基体相界面良好结合的特点,采用常压烧结、热压烧结、等离子活化烧结(PAS)3种不同烧结方式制备原位生成Mo2C强化铜基复合材料。
2)  spark plasma sintering
等离子烧结
1.
The development,technological characteristics and the shortcomings of spark plasma sintering(SPS)are reviewed.
介绍了等离子烧结(SPS)的发展概况、工艺特性及实际生产中存在的不足。
2.
Nb-20Si, Nb-20Si-10W and Nb-20Si-10W-10Mo samples were prepared by a spark plasma sintering (SPS), the effects of W and W-Mo additions on the microstructure of Nb/Nb5Si3 composites were mainly investigated.
利用等离子烧结(SPS)技术,对Nb-20Si,Nb-20Si-10W和Nb-20Si-10W-10Mo试样进行了烧结,主要研究了W和W-Mo对Nb/Nb5Si3复合材料显微组织的影响。
3)  spark plasma sintering(SPS)
放电等离子烧结
1.
0Cr were prepared by spark plasma sintering(SPS).
0Cr合金粉末为原料,研究了采用放电等离子烧结工艺制备Ti-A l基合金。
2.
The silicon carbide ceramic was prepared by Spark Plasma Sintering(SPS).
本文用放电等离子烧结(SPS)的方法制备了SiC陶瓷,研究了SPS烧结温度、压力和保温时间对烧结试样力学性能的影响。
3.
Using Si3N4-AlN-Al2O3-Y2O3 ceramic system as binding,polycrystalline cubic boron nitride(PcBN) was prepared by spark plasma sintering(SPS).
采用放电等离子烧结工艺(spark plasma sintering,简称SPS)在氮气气氛中制备了以Si3N4-AlN-Al2O3-Y2O3系为基的立方氮化硼聚晶(polycrystalline cubic boron nitride,简称PcBN)。
4)  SPS
放电等离子烧结
1.
Heat treatment and magnetic properties of ferromagnetic bulk glassy alloy prepared by SPS;
放电等离子烧结铁磁性大块非晶的晶化处理及其磁性能研究
2.
STUDY ON CARBON POLLUTION AND DECARBONIZATION PROCESS OF SPSED BaTiO_3 CERAMICS;
放电等离子烧结钛酸钡陶瓷的碳污染及脱碳工艺研究
3.
Nd_2Fe_(14)B/α-Fe Nanocomposite Magnets Prepared by Sonochemistry-SPS Process;
超声化学-放电等离子烧结制备Nd_2Fe_(14)B/α-Fe双相复合磁体
5)  spark plasma sintering
等离子体烧结
1.
Synthesis of CoSb_3 thermoelectric material by mechanical alloying and spark plasma sintering;
机械合金化与等离子体烧结法制备CoSb_3热电材料
6)  spark plasma sintering
放电等离子烧结
1.
Influence of sintering parameters on carbonyl iron powder prepared by spark plasma sintering;
烧结参数对羰基铁粉放电等离子烧结的影响
2.
Study on microstructure and oxidation characteristics of TiAl alloy prepared by spark plasma sintering;
放电等离子烧结的钛铝合金组织及氧化性能研究
3.
Microstructure of a bulk nanocrystalline Al-Zn-Mg-Cu alloy prepared by cryomilling and spark plasma sintering;
放电等离子烧结制备Al-Zn-Mg-Cu纳米晶合金的组织
补充资料:活化烧结
分子式:
CAS号:

性质:用物理的或化学的方法促进烧结过程或提高制品性能所采取的有利于烧结的措施。如铁粉通过卤化氢气体活化,钨或钼在水汽、CO2中烧结;锆粉中加入氢化物等;物理法如液相烧结、铁基合金加入磷和硼粉、超声波、磁场、热压、热等静压和真空烧结等。活化烧结因烧结对象不同而异,多靠数据积累,实践经验总结,尚无系统理论。寻找和利用活化烧结技术,对粉末冶金烧结具有重要意义。

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