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ÓîÖæ333
ľ³æ (ÕýʽдÊÖ)
ÎÞÃûС±²
- Ó¦Öú: 21 (СѧÉú)
- ½ð±Ò: 2179.4
- É¢½ð: 1888
- ºì»¨: 14
- Ìû×Ó: 820
- ÔÚÏß: 808.9Сʱ
- ³æºÅ: 831429
- ×¢²á: 2009-08-20
- ÐÔ±ð: GG
- רҵ: ½ðÊô½á¹¹²ÄÁÏ

13Â¥2016-01-07 06:40:35
hui_jun_li
ľ³æ (ÕýʽдÊÖ)
- MM-EPI: 3
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ¹ó±ö: 0.07
- ½ð±Ò: 1576.2
- ºì»¨: 6
- Ìû×Ó: 514
- ÔÚÏß: 22.1Сʱ
- ³æºÅ: 748650
- ×¢²á: 2009-04-14
- ÐÔ±ð: GG
- רҵ: ½ðÊô²ÄÁÏ, µç¾µ
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ÓîÖæ333(½ð±Ò+2): 2011-04-27 19:50:14
jic8417(½ð±Ò+1): ллר¼Ò¼°Ê±Ó¦Öú¡£ 2011-04-27 19:54:15
ÓîÖæ333(½ð±Ò+2): 2011-04-27 19:50:14
jic8417(½ð±Ò+1): ллר¼Ò¼°Ê±Ó¦Öú¡£ 2011-04-27 19:54:15
| Compressive modulus theoretically equals to Young's Modulus determined from tensile experiments. The difference between both modulus is not related to material symmetry conditions, but with material behaviour. For instance, a unidirectional composite has different modulus when the fibre is oriented at 0º, but tensile and compressive modulus are the same when the fibre is oriented at 90º¡£ |
2Â¥2011-04-27 18:51:10
hui_jun_li
ľ³æ (ÕýʽдÊÖ)
- MM-EPI: 3
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ¹ó±ö: 0.07
- ½ð±Ò: 1576.2
- ºì»¨: 6
- Ìû×Ó: 514
- ÔÚÏß: 22.1Сʱ
- ³æºÅ: 748650
- ×¢²á: 2009-04-14
- ÐÔ±ð: GG
- רҵ: ½ðÊô²ÄÁÏ, µç¾µ
3Â¥2011-04-27 18:53:19
ÓîÖæ333
ľ³æ (ÕýʽдÊÖ)
ÎÞÃûС±²
- Ó¦Öú: 21 (СѧÉú)
- ½ð±Ò: 2179.4
- É¢½ð: 1888
- ºì»¨: 14
- Ìû×Ó: 820
- ÔÚÏß: 808.9Сʱ
- ³æºÅ: 831429
- ×¢²á: 2009-08-20
- ÐÔ±ð: GG
- רҵ: ½ðÊô½á¹¹²ÄÁÏ

4Â¥2011-04-27 19:50:06













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