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38篇 您的检索式:作者名="Rometsch"
    题名 作者 年代 出处 被引量
1合金成分与热处理对6xxx系铝合金力学性能的影响(英文)显示文摘研究合金成分(Mg,Si,Cu)和热处理(自然时效和预时效)对6xxx系铝合金力学性能的影响。结果表明:合金成分与热处理不仅影响材料的成形性能,而且影响材料的烘烤硬化性能;提高合金中Si含量或Si/Mg比或添加0.3%Cu,可显著提高材料的韧性和成形性能,而预时效将减低材料的韧性和成形性能。对所研究合金的强度、韧性、加工硬化、应变敏感性、成形极限和烘烤硬化性进行了比较和总结。钟皓 Paul ROMETSCH Yuri ESTRIN 2014Transactions of Nonferrous Metals Society of China2014,24,7:10
2单级及双级均匀化处理工艺对AA7150合金Al_3Zr弥散相析出的影响(英文)显示文摘用半定量电子探针、扫描电镜、透射电镜方法,分析了单、双级均匀化对AA7150合金中Al3Zr分布的影响。结果表明,在铸态条件下Zr在枝晶心部浓度高,枝晶边缘处浓度低。在均匀化温度460°C下处理20h并不足以改变其浓度梯度。当均匀化温度达到460~480°C时,在枝晶心部可获得大量的Al3Zr弥散相,且Al3Zr弥散相的尺寸随着单双级均匀化处理温度的升高而增大。吕新宇 郭二军 Paul ROMETSCH 王立娟 2012Transactions of Nonferrous Metals Society of China2012,22,11:9
3Clustering behaviour in an Al–Mg–Si–Cu alloy during natural ageing and subsequent under-ageing显示文摘Lingfei Cao Paul A. Rometsch Malcolm J. Couper 2013Materials Science & Engineering A2013,,:3
4Improved solution treatment for an as-rolled Al–Zn–Mg–Cu alloy. Part I. Characterisation of constituent particles and overheating显示文摘D.K. Xu P.A. Rometsch N. Birbilis 2011Materials Science & Engineering A2011,,:2
5An age hardening model for Al-7Si-Mg casting alloys显示文摘Rometsch P A Schaffer G B 2002Materials Science and Engineering2002,28,:1
6Improvements in quench factor modelling 显示文摘Rometsch P A Starink M J and Gregson P J 2003Materials Science and Engineering2003,339,:1
7Effect of solution treatment on the corrosion behaviour of aluminium alloy AA7150: Optimisation for corrosion resistance显示文摘D.K. Xu N. Birbilis D. Lashansky P.A. Rometsch B.C. Muddle 2010Corrosion Science2010,,1:1
8General aspects related to the corrosion of 6xxx series aluminium alloys: Exploring the influence of Mg/Si ratio and Cu显示文摘W.J. Liang P.A. Rometsch L.F. Cao N. Birbilis 2013Corrosion Science2013,,:1
9The influence of Si and Mg content on the microstructure,tensile duc- tility, and stretch formability of 6 x x x alloys 显示文摘ZHONG H ROMETSCH P ESTRIN Y 2013Metallurgical and Materials Transactions A2013,44,8:1
10Atom probe analysis of early-stage strengthening behaviour in an Al-Mg-Si-Cu alloy显示文摘ROMETSCH P A CAO L F XIONG X Y 2011Ultramicroscopy2011,111,6:1
11Improved solution treatment for an as-rolled A1-Zn-Mg-Cu alloy, Part Ⅰ: Characterisation of constituent particles and overheating显示文摘XU D K ROMETSCH P A BIRBILIS N 2012Materials Science and Engineering A2012,534,:1
12Clustering behaviour in an Al-Mg-Si-Cu alloy during natural ageing and subsequent under-ageing显示文摘CAO L ROMETSCH P A RCOUPE M J 2013Materials Science and Engineering:A2013,559,1:1
13An age hardening model for A1-7Si-Mg casting alloys 显示文摘Rometsch P A Schaffer G B 2002Materials Science and Engineering: A2002,325,1:1
14Improvements in quench factor modeling显示文摘ROMETSCH P A STARINK M J GREGSON P J 2003Mater Sci Eng A2003,339,12:1
15A model for the thermodynamics of and strengthening due to co-clusters in Al–Mg–Si-based alloys显示文摘M.J. Starink L.F. Cao P.A. Rometsch 2012Acta Materialia2012,,10:1
16Effect of one-step and two-step homogenization treatments on dis- tribution of AI3Zr dispersoids in commercial AA7150 aluminium alloy 显示文摘LU X Y ' GUO E J ROMETSCH P 2012T Nonferr Metal Soe2012,,22:1
17Effect of one-step and two-step homogenization treatments of distribution of Al3Zr dispersoids in commercial AA7150 aluminium alloy 显示文摘Lü X Y GUO E J ROMETSCH P 2012Transactions of Nonferrous Metals Society of China2012,22,:1
18An age hardening model for Al-7Si-Mg casting alloys显示文摘ROMETSCH P A SCHAFFER G B 2002Mater Sci Eng A2002,325,12:1
19Heat treatment of 7xxx series aluminium alloys--Some recent developments 显示文摘ROMETSCH P A ZHANG Y KNIGHT S 2014Transactions Nonferrous Metals Society of China2014,24,7:1
20Improved solution treatment for an as-rolled A1-Zn-Mg-Cu alloy (Part II): Microstructure and mechanical properties显示文摘Xu D K Rometsch P A Birbilis N 2012Materials Science and Engineering A2012,,534:1
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