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imrsfb
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¿´¿´Õ⼸¸öÓÐÒâ˼µÄͼƬ£º Failure of materials and structures involves many length-scales, from the macroscopic scale to the level of Angstrom where chemical bonds are found (adapted from Buehler and Xu, Nature, 2010). A comprehensive analysis of failure must start at a fundamental level in order to represent key mechanisms of how materials fail. (Images: Buehler group, MIT) The long term impact of our work is that it will extend our ability to perform structural engineering at the macroscale, to the ultimate scale, the nanoscale. Opening the material scale as design space for new material development may open endless possibilities for development of robust, adaptive, active, and ¡®smart¡¯ materials. Ref. Markus J. Buehler* and Theodor Ackbarow£¬Materials Today£¬SEPTEMBER 2007 | VOLUME 10 | NUMBER 9 Traditionally different disciplines focus on different length scales. Multiscale modelling of materials across the length scales requires overcoming the borders between the disciplines for a seamless integration of the models on different length scales into one coherent multi-scale modelling framework (After D.G. Pettifor, 1991). http://www.icams.de/content/research-at-icams/research-index.html Muti length scale engineering design http://www.hero-m.mse.kth.se/ [ Last edited by imrsfb on 2011-8-9 at 03:15 ] |
7Â¥2011-08-09 03:07:27
imrsfb
Ìú¸Ëľ³æ (ÖøÃûдÊÖ)
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aishan(½ð±Ò+2): ¸ÐлӦÖú 2011-08-08 11:06:51
СÀ¼»¨(½ð±Ò+10): ¸Ðл°æÖ÷µÄÈÈÇé°ïÖú£¡·Ç³£¸Ðл£¡ 2011-08-08 23:18:10
aishan(½ð±Ò+2): ¸ÐлӦÖú 2011-08-08 11:06:51
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ºÜÄÑÕÒÄãÏëÒªµÄͼƬ£¬²»¹ýÏÂÃæÕâ¸öËÆºõÄÜ˵Ã÷µãÎÊÌ⣺ Microtensile stress-strain curves for submicrometer nanocrystalline aluminum thin films showing two distinct behaviors.7 The curve with the highest strength, gradual deviation from plasticity, and limited ductility is representative of a specimen that maintains its nanocrystalline grain size. By contrast, specimens observed to undergo stress-assisted room-temperature grain growth exhibit lower yield strengths and regions of extended plasticity. Reference£ºThe Micro- and Nanoscale Tensile Testing of Materials D.S. Gianola and C. Eberl JOM£¬Vol. 61, No.3 pp. 24-35 http://www.tms.org/pubs/journals/jom/0903/gianola-0903.html |
2Â¥2011-08-08 00:43:07
imrsfb
Ìú¸Ëľ³æ (ÖøÃûдÊÖ)
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aishan(½ð±Ò+2): ÐÁ¿àÁË 2011-08-08 11:07:00
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aishan(½ð±Ò+2): ÐÁ¿àÁË 2011-08-08 11:07:00
СÀ¼»¨(½ð±Ò+8): ·Ç³£¸Ðл°æÖ÷£¡ 2011-08-08 23:18:31
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Õâ¸öÊǸöÀÏͼ£¬²»ÔõôƯÁÁ£¬µ«ÊÇÄÜ˵Ã÷ÎÊÌâ Increasing the annealing time decreases the recrystallization temperature for the start of recrystallization.During recrystallization stage, there is a significant drop in tensile strength, hardness and a large increase in the ductility of the material (See Figure 1). Figure 1. Effect of annealing on tensile strength, hardness, ductility and grain size. Reference£ºBy: Serdar Z. Elgun£¬September 17, 1999 http://info.lu.farmingdale.edu/d ... nnealingstages.html |
3Â¥2011-08-08 01:09:41
imrsfb
Ìú¸Ëľ³æ (ÖøÃûдÊÖ)
- MM-EPI: 7
- Ó¦Öú: 12 (СѧÉú)
- ¹ó±ö: 1.17
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СÀ¼»¨(½ð±Ò+7): °æÖ÷µÄÖªÊ¶ÃæÕæ¿í£¡Ð»Ð»£¡ 2011-08-08 23:19:44
aishan(½ð±Ò+2): ͦƯÁÁµÄͼƬ£¬¿´À´ÄãÊÇר¼Ò°¡ 2011-08-08 11:07:32
СÀ¼»¨(½ð±Ò+7): °æÖ÷µÄÖªÊ¶ÃæÕæ¿í£¡Ð»Ð»£¡ 2011-08-08 23:19:44
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Õâ¸öÊÇTwip¸ÖºÍTrip¸ÖµÄ×éÖ¯ºÍÓ¦Á¦Ó¦±äʾÒâͼ£¬Í¦Æ¯ÁÁ Figure 2: The stress-strain diagram clearly shows the differing characters of TRIP and TWIP steel. TRIP steel can resist high stresses without deforming. TWIP steel deforms with low stresses, but does not break until strain reaches around 90 percent. refrence£º Multi Phase Twinning-Induced Plasticity (TWIP) Steel http://www.keytometals.com/page. ... site=kts&NM=207 |
4Â¥2011-08-08 01:14:33













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