| ²é¿´: 428 | »Ø¸´: 3 | ||
Sleeping3573ľ³æ (ÕýʽдÊÖ)
|
[ÇóÖú]
ÇóSCI¼ìË÷ºÅ
|
|
¸÷λÐֵܽãÃðï°ïæ Research on Surface Slag Inclusion in Continuous Casting Slab Li Ping Metalurgia International 2012 ×îºÃÄܸ½Ï±£´æµÄhtmlÒ³Ãæ |
» ²ÂÄãϲ»¶
321Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
324Çóµ÷¼Á
ÒѾÓÐ6È˻ظ´
359Çóµ÷¼Á
ÒѾÓÐ7È˻ظ´
Ò»Ö¾Ô¸»ª±±µçÁ¦´óѧ£¨±±¾©£©£¬²ÄÁÏ¿ÆÑ§Ó빤³Ìѧ˶265£¬Çóµ÷¼Á
ÒѾÓÐ11È˻ظ´
368Çóµ÷¼Á
ÒѾÓÐ7È˻ظ´
288Çóµ÷¼Á£¬Ò»Ö¾Ô¸»ªÄÏÀí¹¤´óѧ071005
ÒѾÓÐ3È˻ظ´
ÇóÉúÎïѧµ÷¼Á
ÒѾÓÐ13È˻ظ´
284Çóµ÷¼Á
ÒѾÓÐ3È˻ظ´
µ÷¼Á
ÒѾÓÐ8È˻ظ´
Ò»Ö¾Ô¸211£¬»¯Ñ§Ñ§Ë¶£¬310·Ö£¬±¾¿ÆÖصãË«·Ç£¬Çóµ÷¼Á
ÒѾÓÐ8È˻ظ´
» ±¾Ö÷ÌâÏà¹Ø¼ÛÖµÌùÍÆ¼ö£¬¶ÔÄúͬÑùÓаïÖú:
ÇóÖúSCI¼ìË÷ÖÐUT MOSÊÇʲô¶«Î÷£¿
ÒѾÓÐ3È˻ظ´
ÓйØSCI¼ìË÷ºÅ²éѯ£ºUT ISIºÍUT WOSµÄÇø±ð£¿
ÒѾÓÐ15È˻ظ´
ÇóÎÄÕÂSCI¼ìË÷ºÅ
ÒѾÓÐ6È˻ظ´
±»SCIºÍEI¼ìË÷µÄÂÛÎÄ´ÓÄÄÀï¿ÉÒÔÏÂÔØ¡¾ÇóÖúÍê½á¡¿
ÒѾÓÐ10È˻ظ´
¼±ÇóÎÄÕµÄEI¼ìË÷ºÅ(1ƪº¬SCIºÅ£©£¬
ÒѾÓÐ6È˻ظ´
ÇëÇó²éѯÎÒµÄÂÛÎĵÄSCI¼ìË÷ºÅ£¬ÎÒÃÇѧУûÓÐÊý¾Ý¿â¡£
ÒѾÓÐ6È˻ظ´
sciÊÕ¼ÎÄÕ£¬ÈçºÎµÈÏÂÔØµ½°¡£¬Ö»Äܲ鵽¼ìË÷ºÅ
ÒѾÓÐ3È˻ظ´
¡¾ÇóÖú¡¿ÇóÖú£¬¹úÍâ±È½Ï¶¥¼¶µÄÓйØÔ¤·ÀÊÞҽѧµÄÔÓÖ¾ÓÐÄÄЩ£¬SCIÊÕ¼µÄ
ÒѾÓÐ5È˻ظ´
°ïÃ¦Çø·ÖÒ»ÏÂISTPºÍSCIÊÕ¼ºÅµÄÇø±ð£¬¿´Ò»ÏÂÕâ¸ö½á¹ûÊÇʲô¼ìË÷
ÒѾÓÐ6È˻ظ´
ÇóÖúÒ»¸ö¹ØÓÚSCI¼ìË÷µÄÎÊÌâ
ÒѾÓÐ8È˻ظ´
leimiao_hit
ľ³æÖ®Íõ (ÎÄѧ̩¶·)
СԪ
- SEPI: 7
- Ó¦Öú: 1336 (½²Ê¦)
- ¹ó±ö: 0.707
- ½ð±Ò: 113732
- É¢½ð: 12354
- ºì»¨: 385
- ɳ·¢: 888
- Ìû×Ó: 85000
- ÔÚÏß: 6307.5Сʱ
- ³æºÅ: 1264338
- ×¢²á: 2011-04-13
- רҵ: Êß²ËѧÓë¹Ï¹ûѧ
¡¾´ð°¸¡¿Ó¦Öú»ØÌû
¸Ðл²ÎÓ룬ӦÖúÖ¸Êý +1

2Â¥2012-04-23 09:18:39
Sleeping3573
ľ³æ (ÕýʽдÊÖ)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 2493.3
- É¢½ð: 52
- Ìû×Ó: 873
- ÔÚÏß: 32.9Сʱ
- ³æºÅ: 772130
- ×¢²á: 2009-05-16
- ÐÔ±ð: GG
- רҵ: ¸ÖÌúÒ±½ð
3Â¥2012-04-23 09:24:59
leimiao_hit
ľ³æÖ®Íõ (ÎÄѧ̩¶·)
СԪ
- SEPI: 7
- Ó¦Öú: 1336 (½²Ê¦)
- ¹ó±ö: 0.707
- ½ð±Ò: 113732
- É¢½ð: 12354
- ºì»¨: 385
- ɳ·¢: 888
- Ìû×Ó: 85000
- ÔÚÏß: 6307.5Сʱ
- ³æºÅ: 1264338
- ×¢²á: 2011-04-13
- רҵ: Êß²ËѧÓë¹Ï¹ûѧ
¡¾´ð°¸¡¿Ó¦Öú»ØÌû
|
FN Thomson Reuters Web of Knowledge VR 1.0 PT J AU Li, P Xue, ZL Liu, XQ Peng, ST Yu, Y Zhao, DN AF Li, Ping Xue, Zhengliang Liu, Xiaoqin Peng, Shengtang Yu, Yue Zhao, Dongnan TI RESEARCH ON SURFACE SLAG INCLUSION IN CONTINUOUS CASTING SLAB SO METALURGIA INTERNATIONAL LA English DT Article DE continuous casting slab; surface slag inclusion; mould slag AB The distribution, type, composition and cause of formation of slag inclusion in continuous casting slabs' sin face have been researched and discussed through observing metallo graphic samples from No.4 Steelmaking Plant of WISCO by microscopes. The result shows that: 1) Slag inclusion can be classified into four characteristic types with different formation mechanism; 2) Slag entrapment of mould powder and big-size deoxidation products drop-out from nozzle sediments are the principal source of slag inclusion in continuous casting slabs. Raising the cleanliness of molten steel, alleviating the fluctuation of liquid level in mould or strengthening the anti-fluctuating ability of molten slag layer is helpful to reduce the incidence of slag inclusion in continuous casting slabs. C1 [Li, Ping; Xue, Zhengliang; Yu, Yue; Zhao, Dongnan] Wuhan Univ Sci & Technol, Minist Educ, Key Lab Ferrous Met & Resources Utilizat, Wuhan 430081, Peoples R China. [Liu, Xiaoqin; Peng, Shengtang] Wuhan Iron & Steel Co Ltd, Prod Technol Dept, Wuhan, Peoples R China. RP Xue, ZL (reprint author), Wuhan Univ Sci & Technol, Minist Educ, Key Lab Ferrous Met & Resources Utilizat, Wuhan 430081, Peoples R China EM xuezhl2008@sohu.com NR 4 TC 0 Z9 0 PU EDITURA STIINTIFICA FMR PI BUCHAREST PA CALEA GRIVITEI, NR 83, SECTOR 1, O P 12, BUCHAREST, 010705, ROMANIA SN 1582-2214 J9 METAL INT JI Metal. Int. PY 2012 VL 17 IS 4 BP 106 EP 110 PG 5 WC Metallurgy & Metallurgical Engineering SC Metallurgy & Metallurgical Engineering GA 896SE UT WOS:000300590900021 ER -------------------------------------------------------------------------------- EF |

4Â¥2012-04-23 09:37:02














»Ø¸´´ËÂ¥