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23篇 您的检索式:作者名="PATLAN"
    题名 作者 年代 出处 被引量
1Structure and properties of ultra-fine grain Cu-CrZr alloy produced by equal-channel angular pressing 显示文摘VINOGRADOV A PATLAN V SUZUKI Y KITAGAWA K KOPYLOV V 1 2002Acta Mater2002,50,7:1
2Structure and properties of ultra-fine grain Cu-Cr-Zr alloy显示文摘Vinogradov A Patlan V Suzuki Y 2002Acta Materialia2002,50,:1
3Tensile and low-cycle fatigue properties of heat treated ultra-fine grain 5056 aluminum alloy 显示文摘HIGASHI K PATLAN V K1TAGAWA K 2001Journal of Japan Institute of Light Metals2001,51,12:1
4Epidemiological overview of uterine cervical cancer显示文摘HERNANDEZ D M APRESA G T PATLAN P R M 2015Rev Med Inst Mex Seguro Soc2015,53,2:1
5Structure and proper- ties of ultra-fine grain Cu-Cr-Zr alloy produced by equal-chan- nel angular pressing 显示文摘Vinogradov A Patlan v Suzuki Y 2002Acta Materialia2002,50,7:1
6Structure and Properties of Ultra-Fine Grain Cu Cr-Zr Alloy Produced by Equal-Channel Angular Pressing 显示文摘Vinogradov A Patlan V Suzuki Y 2002Acta Mater2002,50,:1
7Fatigue proper- ties of 5056 A1-Mg alloy produced by equal-channel angular pressing显示文摘Vimgradov A Nagasaki S Patlan V 1999Nanostruct Mater1999,11,7:1
8Structure and properties of ultra-fine grain Cu-Cr-Zr alloy 显示文摘VINOGRADOV A PATLAN V SUZUKI Y 2002Acta Materialia2002,50,7:1
9Structure and pro-perties of ultra-fine grain Cu-Cr-Zr alloy produced by equal-channel angular pressing 显示文摘Vinogradov A Patlan V Suzuk I Y 2002Acta Materialia2002,50,:1
10Production and characterization of hybrid BEH-PPV/PEO conjugated polymer nanofibers by forcespinning显示文摘Padron S Patlan R Gutierrez J 2012Journal of Applied Polymer Science2012,125,5:1
11Structure and properties of ultra-fine grain Cu-Cr-Zr alloy显示文摘VINOGRADOV A PATLAN V SUZUKI Y 2002Acta Materialia2002,50,7:1
12Overview of fatigue properties of fine grain 5056 Al-Mg alloy pr,ocessed by equal-channel angular pressing 显示文摘Patlan V Vinogradov A Higashi K 2001Materials Science and Engineering A2001,300,:1
13Structural basis for transcription regulation by alarmone ppGpp显示文摘Artsimovitch I Patlan V Sekine SI 2004Cell2004,117,3:1
14Structure and properties of ultra-fine grain Cu-Cr-Zr alloy produced by equalchannel angular pressing显示文摘VINOGRADOV A PATLAN V SUZUKI Y 0,,7:1
15Overview of fatigue properties of fine grain 5056 AI-Mg alloy processed by equal-channel angular pressing显示文摘PATLAN V VINOGRADOV A HIGASHI K 2001Materials Science and Engineering A2001,300,:1
16Structure and properties of ultra-fine grain Cu-Cr-Zr alloy produced by equal-channel angular pressing 显示文摘VINOGRADOV A PATLAN V SUZUKI Y 2002Acta Materialia2002,50,:1
17Fatigue Properties of 5056 AI-Mg Alloy Produced by Equal-Channel Angular Pressing 显示文摘Vinogradov A Nagasaki S Patlan V Kitagawa K Kawazoe M 1999Nanostructured Materials1999,,:1
18Structure and properties of ultra-fine grain Cu-Cr-Zr alloy produced by equal-channel angular pressing显示文摘Vinogradov A Patlan V Suzuki Y 2002Acta Materialia2002,50,7:1
19Structure and properties of ultra fine grain Cu - Cr - Zr alloy 显示文摘Vinogradov A Patlan V Suzuki Y 2002Acta Materialia2002,50,:1
20Structure and properties of ultra-fine grain Cu-Cr-Zr alloy produced by equalchannel angular pressing显示文摘Vinogradov A Patlan b V Suzuki Y 2002Acta Material2002,50,:1
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