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1)  spark plasma sintering
火花等离子烧结
1.
WC/Co nano hardmetal materials made by spark plasma sintering technology;
火花等离子烧结技术制备的WC/Co纳米硬质合金
2.
The new tachnology of spark plasma sintering(SPS),self-propagating high-temperature synthesis(SHS)and mechanical alloying(MA)are introduced.
本文首先介绍了用火花等离子烧结制备MoSi2及其复合材料的新工艺以及自蔓延高温合成技术(SHS)和机械合金化(MA)的新发展,然后分别就二硅化钼在高温结构材料、发热元件以及高温涂层等领域的应用作以总结和评述,并在此基础上提出了MoSi2材料未来的研究发展方向。
2)  spark-plasma sintering method
火花等离子体烧结法
1.
Some of recent progress were summarized, including the preparation of nanosized powder, highly strengthened ceramic with submicrometer grain structure obtained via spark-plasma sintering method, improved conductivity of grain-boundary via precursor scavenging of two-stage sintering, and a pseudoternary stabilized 5%In2O3-8%Y2O3-ZrO2(all percentages in formula are mole percentage) system.
稳定氧化锆作为固体氧化物燃料电池的电解质是最好的可用材料,介绍了这方面的研究进展,包括:纳米粉的制备,火花等离子体烧结法获得亚微米晶粒结构的高强度陶瓷,二次烧结前体清除法改善晶界的电导率和一个准三元系稳定的5% In2O3-8%Y2O3-ZrO2(式中均为摩尔百分数)。
3)  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。
4)  spark isostatic press sintering
等静压火花烧结
5)  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)。
6)  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
补充资料:电火花烧结
分子式:
CAS号:

性质:在热压金属粉末过程中,叠加放电电源,利用粉末间瞬间放电黏结而快速烧结的工艺。在数秒钟加压与放电过程中,即可制得烧结性能良好的制品。该技术要求粉末能导电,一般在石墨模内进行。在大气压下数秒时间内完成烧结过程。工业上对所有能导电的材料,如钢铁、铍、钛、铝、金属陶瓷、金刚石等,都可应用此技术制备烧结产品。

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