AdvancedSearch
Zhao Jiwan, Wang Guiqin, Hao Wenhui. A NEW DEVELOPMENT IN POWDER METALLURGY-SUPERCONDUCTING MATERIALS WITH HIGH CRITICAL TEMPERATURE[J]. Powder Metallurgy Technology, 1989, 7(1): 48-51.
Citation: Zhao Jiwan, Wang Guiqin, Hao Wenhui. A NEW DEVELOPMENT IN POWDER METALLURGY-SUPERCONDUCTING MATERIALS WITH HIGH CRITICAL TEMPERATURE[J]. Powder Metallurgy Technology, 1989, 7(1): 48-51.

A NEW DEVELOPMENT IN POWDER METALLURGY-SUPERCONDUCTING MATERIALS WITH HIGH CRITICAL TEMPERATURE

More Information
  • Available Online: August 22, 2021
  • The material series of recently developed superducting materials with high critical temperature and their characteristics and the great significance of their discovery have been briefly given. The most suitable and convenient process for manufacturing these oxide superconducting materials is by using P/M technology, Various important applications and prospectives of these new materials have been outlined.
  • Related Articles

    [1]TANG Cuiyong, XIE Wenbin, ZOU Zechang, SUN Zhenjun, CHEN Xueyong, SHEN Rongfeng. Effect of TiC on amorphous forming ability, microstructure, and thermal stability of Fe55Nb15Ti15Ta15 alloys[J]. Powder Metallurgy Technology, 2024, 42(1): 84-90. DOI: 10.19591/j.cnki.cn11-1974/tf.2022100012
    [2]XIA Zheyuan, LI Jiacheng, ZOU Zechang, CHEN Zhihui, CHEN Xueyong, TANG Cuiyong. Fabrication of Ti60Mn20‒xCu20+x (x=0, 10) amorphous powders by mechanical alloying[J]. Powder Metallurgy Technology. DOI: 10.19591/j.cnki.cn11-1974/tf.2024070009
    [3]WANG Silun, CUI Zizhen, LIU Quanyi, XIE Fei, LIN Yansong. Cu–Cr–Mo alloys prepared by mechanical alloying and hot isostatic pressing[J]. Powder Metallurgy Technology, 2023, 41(5): 475-480. DOI: 10.19591/j.cnki.cn11-1974/tf.2021090001
    [4]Xu Ke, Chen Hui, Ma Qin, Zhao Xue. The preparation of Al2O3/Mo5Si3 composite powder by mechanical alloying[J]. Powder Metallurgy Technology, 2011, 29(3): 173-176,182.
    [5]Meng Jie, Jia Chengchang, Wang Kaiming. Review of formation of Ni3Al intermetallics compounds by mechanical alloying[J]. Powder Metallurgy Technology, 2006, 24(4): 299-303,309. DOI: 10.3321/j.issn:1001-3784.2006.04.015
    [6]Zhang Dongfang. DEVELOPMENT OF HEAVY ALLOY ELECTRODE FOR RESISTANCE PRESSING WELDING[J]. Powder Metallurgy Technology, 1996, 14(3): 198-200.
    [7]Zhang Tongjun, Yang Junyou, Zhou Zhuohua, Zhang Jie, Cui Kun. MECHANICAL ALLOYING PROCESS DURING HIGH ENERGY BALL MILLING[J]. Powder Metallurgy Technology, 1996, 14(1): 2-7.
    [8]Wang Erde, Wang Yongqian, Liang Guoxian, Song Guangsheng, Liu Xuhua. STRUCTURAL FEATURES OF MECHANICALLY ALLOYED Al-10Fe-4Ni POWDER[J]. Powder Metallurgy Technology, 1993, 11(3): 167-170.
    [9]Liang Guoxian, Wang Erde, Wang Yongqian, Li Zhimin. EFFECTS OF BALL MILLING CONDITIONS ON PARTICLE SIZES OF MECANICALLY ALLOYED POWDER[J]. Powder Metallurgy Technology, 1993, 11(1): 28-32.
    [10]Huang Zepei, Qiu Guanghan, Huang Yuanzhen. PREPARATION OF AMORPHOUS Cu-Ti ALLOYS MECHANICAL ALLOYING[J]. Powder Metallurgy Technology, 1992, 10(2): 99-102.

Catalog

    Article Metrics

    Article views PDF downloads Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return