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°íÁ¤½Ä
¼ÒµÐ·Î & À̵¿½Ä ¼ÒµÐ·Î |
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1)°³¿ä |
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¿ëÁ¢ÇÑ ±×´ë·ÎÀÇ joint´Â º¸Åë °ÀçÀÇ Ç׺¹Á¡¿¡ °¡±î¿î ³»ºÎ ÀÀ·ÂÀÌ ºÎºÐÀûÀ¸·Î
ÀÜ·ùÇÏ¿© ÀÖ°í ÀÌ ÀÜ·ùÀÀ·ÂÀ» Á¦°ÅÇÏ´Â °ÍÀ» ÁÖµÈ ¸ñÀûÀ¸·Î ÇàÇÏ´Â ÈÄ¿ 󸮸¦ ÀÀ·Â Á¦°Å Ç®¸²À̶ó ºÎ¸£°í ÀÖ´Ù.
ÀÀ·ÂÁ¦°Å Ç®¸²Àº ÈĿó¸®ÀÇ °¡Àå ´ëÇ¥ÀûÀÎ °ÍÀε¥ ´Ù¸¸ ÀÜ·ù ÀÀ·Â Á¦°Å¿¡ À¯È¿ÇÒ »Ó¸¸ ¾Æ´Ï¶ó ÀçÁú°ú Ä¡¼ö¸¦ ¾ÈÁ¤½ÃŰ´Â
È¿°ú°¡ ÀÖÀ¸¹Ç·Î ASME,BOILER AND PRESSURE VESSEL CODE¿¡¼´Â Á¾·¡ÀÇ STRESS RELIEF
ANNEALINGÀÇ ¿ë¾î ´ë½Å¿¡ ÈÄ¿ 󸮶ó´Â ¿ë¾î¸¦ ±×´ë·Î »ç¿ëÇϰíÀÖ´Ù. ÈÄ¿¿¡ ÀÇÇØ ÀÜ·ù ÀÀ·ÂÀÌ ¿ÏȵǴ ÀÌÀ¯·Î´Â
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1) OUTLINE |
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Welded joint itself contains residual internal
stress close to the yield point of general steel partly. Therefore
preheat treatment is needed to remove the residual stress. We
name itas stress relief annealing. Stress relief annealing is
the main method of preheattreatment. It is not only effective
to remove the residual stress but effective to stabilize the nature
of material and dimension. Therefore in the case of ASME, BOILER
AND PRESSURE VESSEL CODE, instead of STRESS RELIEF ANNEALING used
before,preheat treatment itself is being used. The reason residual
can be relieved throughpreheat treatment is like this. In the
welded material containing residual stress, tension stress part
and compressive stress part are well balanced by pulling eachother.Then
if this is heated at the proper high temperature, plastic deformationoccurs
by creep and stress release.
Because of this, residual stress can be relieved through preheat
treatment.
Beside this, the structure become changed due to the recovery
of internal defectand recrystallization.
The expected effect through stress relief annealing is below.
¥ë The relief of welded residual stress.
¥ë The increase of resistance toward stress corrosion.
¥ë The prevention of natural fracture by welded hydrogen exposure.
¥ë The increase of tenderness in welded part.
¥ë The prevention of dimension¡®s mismatch.
¥ë The prevention of tempering tenderness in heat effected area.
¥ë The change of tenderness and hardness.
We decide the factor of stress relief annealing considering
below.
¥ë Thing that receives big impact weight.
¥ë Thing that receives rapid temperature change.
¥ë Thing that is being used with the temperature that tends to
cause brittle fracture.
¥ë Thing that has deep internal thickness and that tends to cause
brittle fracture.
¥ë Thing that was welded together with fittings mainly.
¥ë Thing that has extra importance.
¥ë Thing that needs the improvement of the nature of material in
the view of metallurgy.
¥ë Thing that has high degree of cold working.
¥ë Thing that receives the rapid change of pressure. |
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1. °íÁ¤½Ä ¼ÒµÐ·Î ¿Ã³¸®-Àü±â¼ÒµÐ·Î¿Í
°¡½º¼ÒµÐ·Î (FURNACE PWHT-ELECTRIC & GAS) |
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1) ½ÇÀû |
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| ¹øÈ£ |
¿¬µµ |
ÇÁ·ÎÁ§Æ®¸í |
Á¦Ç° |
½ÇÀû(Åæ) |
¾÷ü¸í |
| 1 |
2007 |
RL(3) COMMON OFFPLOT
PJT.¿Ü |
º£¼¿ ¼ÒµÐ·Î ÀÛ¾÷ |
8,400 |
´ë°æ±â°è±â¼ú
¿Ü |
| 2 |
NO.2 AROMATICS COMPLEX PJT. |
ÀÛ¾÷¿Âµµ: 915¢ªC
(SA516-60 CLAD) |
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TSM-TECH |
| 3 |
Q-CHEM ¥± PJT. |
º¼ÅÊÅ© SHELL
(ID8,836 x 34t x 2°³) |
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S-TANK |
| 4 |
2006 |
NO.2 PSA UNIT FOR
YEOSU PLANT PJT. ¿Ü |
º£¼¿ ¼ÒµÐ·Î ÀÛ¾÷ |
6,678 |
ÀÏÁøÁ¤°ø ¿Ü |
| 5 |
STEP COOLING TEST |
½ÃÆí ÀÛ¾÷
(SA387-22 CL.2+347S.S) |
4ȸ |
´ë°æ±â°è±â¼ú |
| 6 |
2005 |
JCP PJT. ¿Ü |
º£¼¿ ¼ÒµÐ·Î ÀÛ¾÷ |
3,360 |
JMC ¿Ü |
| 7 |
RASGAS ONSHORE EXPANSION PJT. |
90¢ª/45¢ª ELBOW (PIPE) |
555 |
¼º±¤º¥µå |
| 8 |
2004 |
OCP/PTA PJT. ¿Ü |
º£¼¿ ¼ÒµÐ·Î ÀÛ¾÷ |
2,047 |
TSM-TECH |
| 9 |
2003 |
JUEG PJT. |
º£¼¿ ¼ÒµÐ·Î ÀÛ¾÷ |
521 |
´ë°æÅ×Å©³ë½º
¿Ü |
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| Post Weld Heat Treatment & Stress
Relieves (Furnace) |
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2.
ÇöÀåÀ̵¿½ÄÁ¶¸³¼ÒµÐ·Î (SITE MOVEMENT ASSEMBLY FURNACE) |
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1) ½ÇÀû |
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| ¹øÈ£ |
¿¬µµ |
ÇÁ·ÎÁ§Æ®¸í |
Á¦Ç° |
½ÇÀû(ȸ) |
¾÷ü¸í |
| 1 |
2008 |
DETAILED ENG SERVICES FOR REFINERY EXPANSION PJT. |
ID6,700x17,050Lx66t etc. |
3ȸ |
´ëºÀ¾ÆÅ©·ÎÅØ |
| 2 |
2007 |
NEW FCC PROJECT |
ID6,700x17,050Lx66t etc. |
2ȸ |
¼¼¾ÆÀÌ¾ØÆ¼ |
| 3 |
NEW FCC PROJECT |
ID6,000x23,600Lx36t/30t |
1ȸ |
TSM TECH |
| 4 |
IBN ZAHR PP-¥² PJT. |
ID6,629x22t |
1ȸ |
JMC |
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