CAPILLA - Welding Consumables For Welding of Creep and Heat Resistant
CAPILLA - Welding Consumables For Welding of Creep and Heat Resistant
CAPILLA - Welding Consumables For Welding of Creep and Heat Resistant
3. Welding
consumables for
welding of creep and
heat resistant
material
3 Welding consumables for welding of creep and heat resistant
materials
3.1 Coated stick electrodes for welding of creep and heat resistant
materials
EN ISI 3580-A
capilla® EN ISO 14172* Mat.-No.: AWS Page
EN ISI 3581-A**
P 91 E CrMo 9 1 B 42** - E 9015-B9 62
P 911 E CrMoWV 9 1 1 B 42** - ~E 9015-B9 63
P 92 E CrMoWV 9 0,5 2 B 42** - ~E 9015-B9 64
P 121 E CrMoWV 12 B 42** 1.4937 - 65
4009 E 13 B 42 1.4009 E 410-25 66
4015 E 17 B 42 1.4015 E 430-25 67
4018 EZ 13 B 42 1.4018 E 410-25 68
410 NiMo E 13 4 B 42 1.4351 E 410NiMo-25 69
4405 EZ 17 6 B 42 1.4405 - 70
4115 EZ 17 1 R 42 1.4115 - 71
4122 EZ 17 1 1 B 42 1.4122 - 72
4034 EZ 13 B 42 1.4034 E 420-25 73
308 H E 19 9 R 12 1.4948 E 308 H 74
316 H E 19 12 3 R 12 - E 316 H 75
309 E 23 12 R 22 ~1.4829 ~E 309-16 76
310 H E 25 20 H R 12 - E 310 H 77
4820 E 25 5 R 32 1.4820 - 78
4830 EZ 25 24 Nb B 32 1.4830 - 79
4850 EZ 21 32 Nb B 32 ~1.4850 - 80
4853 EZ 25 35 Nb B 32 ~1.4853 - 81
4863 EZ 18 36 Nb B 32 ~ 1.4863 ~ E 330-15 82
4879 ~E Ni 6702 (NiCr28Fe6W)* ~ 2.4879 - 83
625 K E Ni6625 (NiCr22Mo9Nb)* 2.4621 E NiCrMo-3 84
Alloy C ~ E Ni 6059 (NiCr23Mo16)* 2.4608 E NiCrMo-13 85
6000 DL ~E Ni 6082 (NiCr20Mn3Nb)* 2.4648 ~ E NiCr-3 86
6000 B ~E Ni 6082 (NiCr20Mn3Nb)* 2.4648 ~ E NiCr-3 87
4778 - ~2.4778 - 88
50/50 Nb - 2.4813 - 89
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3.2 Wire electrodes for welding of creep and heat resistant materials
3.2.1 Solid wires for gas shielded arc welding of creep and heat resistant material
EN ISO 14343-A
capilla® EN ISO 18274 * Mat.-No.: AWS Page
EN ISO 21952-A**
P 91 MAG G CrMo 9 1** 1.4903 ER 90S-B9 90
4009 MAG G 13 1.4009 ER 410 90
4015 MAG G 17 1.4015 ER 430 90
4018 MAG G 13 1.4018 ER 410 90
410 NiMo MAG G 13 4 1.4351 ER 410 NiMo 90
4115 MAG GZ 17 1 1.4115 - 90
4122 MAG GZ 17 1 1 1.4122 - 90
4034 MAG GZ 13 1.4034 ER 420 90
308 H MAG G 19 9 H 1.4948 ER 308 H 91
309 MAG G 23 12 1.4829 ER 309 91
310 H MAG G 25 20 H 1.4848 ER 310 H 91
4820 MAG G 25 5 1.4820 - 91
4830 MAG G(Z) 25 24 1.4830 - 91
4850 MAG G(Z) 21 32 Nb 1.4850 - 91
4853 MAG G(Z) 25 35 Nb 1.4551 - 91
Alloy C MAG S Ni 6059 (NiCr23Mo16)* 2.4607 ER NiCrMo-13 91
625 MAG S Ni 6625 (NiCr22Mo9Nb)* 2.4831 ER NiCrMo-3 91
6000 MAG S Ni 6082 (NiCr20Mn3Nb)* 2.4806 ER NiCr-3 91
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60
3.2.2 Welding rods for tungsten inert gas welding of creep and heat resistant materials
EN ISO 14343-A
capilla® EN ISO 18274 * Mat.-No.: AWS Page
EN ISO 21952-A**
P 91 WIG G CrMo 9 1** 1.4903 ER 90S-B9 92
4009 WIG W 13 1.4009 ER 410 92
4015 WIG W 17 1.4015 ER 430 92
4018 WIG W 13 1.4018 ER 410 92
410 NiMo WIG W 13 4 1.4351 ER 410 NiMo 92
4115 WIG WZ 17 1 1.4115 - 92
4122 WIG WZ 17 1 1 1.4122 - 92
4034 WIG WZ 13 1.4034 ER 420 92
308 H WIG W 19 9 H 1.4948 ER 308 H 93
309 WIG W 23 12 1.4829 ER 309 93
310 H WIG W25 20 H 1.4848 ER 310 H 93
4820 WIG W 25 5 1.4820 - 93
4830 WIG W(Z) 25 24 1.4830 - 93
4850 WIG W(Z) 21 32 Nb 1.4850 - 93
4853 WIG W(Z) 25 35 Nb 1.4551 - 93
Alloy C WIG S Ni 6059 (NiCr23Mo16)* 2.4607 ER NiCrMo-13 93
625 WIG S Ni 6625 (NiCr22Mo9Nb)* 2.4831 ER NiCrMo-3 93
6000 WIG S Ni 6082 (NiCr20Mn3Nb)* 2.4806 ER NiCr-3 93
3.2.3 Tubular wires for gas shielded arc welding of creep and heat resistant material
EN ISO 17633-A
capilla® EN ISO 17634-A* Mat.-No.: AWS Page
G P91 MM T CrMo 91 BM* - - 94
G 4009 MM T 13 MM 2 1.4009 E 410 T0-4 94
G 4015 MM T 17 MM 2 1.4015 - 94
G 410 NiMo MM T 13 4 MM 2 1.4351 E 410 NiMo T0-4 94
G 4034 MM TZ 13 MM 2 1.4034 E 420 T0-4 94
G 4405 MM TZ 17 6 1 MM 2 1.4405 - 94
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Standards:
EN ISO 3580-A: E CrMo 91 B 42
EN 1599:
AWS SFA-5.5:
E CrMo 91 B 42
E 9018-B9 capilla® P 91
Mat.-No.: 1.4903
Recovery: 130%
C Mn Si Cr Mo Ni V Nb Fe
Min. 0,6 8,5 1 0,6 0,18
Max. 0,1 0,7 0,3 9,5 1,2 0,8 0,24 0,07 Bal.
Mechanical properties:
(Heat treatment: 760°C/2h; Minimum values at ambient temperature)
Tensile strength Rm: 680 [MPa]
Yield strength Rp0,2: 550 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 17 [%]
Impact strength (ISO-V): 47 [J]
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62
Standards:
EN ISO 3580-A: E CrMoWV 9 1 1 B 42
EN 1599:
AWS SFA-5.5:
E CrMoWV 9 1 1 B 42
~E 9015-B9 capilla® P 911
Recovery: 130%
C Mn Si Cr Mo Ni Nb W Fe
Min. 0,6 8,5 0,9 0,6 0,9
Max. 0,11 0,7 0,25 9,5 1,1 0,8 0,05 1,1 Bal.
Mechanical properties:
(Heat treatment: 760°C/2h; Minimum values at ambient temperature)
Tensile strength Rm: 720 [MPa]
Yield strength Rp0,2: 550 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Impact strength (ISO-V): 41 [J]
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Standards:
EN ISO 3580-A: E CrMoWV 9 0,5 2 B 42
EN 1599:
AWS SFA-5.5:
E CrMoWV 9 0,5 2 B 42
~E 9015-B9 capilla® P 92
Recovery: 130%
C Mn Si Cr Mo Ni V W N Nb Fe
Min. 0,9 0,6 8,5 0,5 0,6 0,18 1,3 0,04 0,05
Max. 0,12 0,7 0,4 9,5 0,7 0,8 0,24 1,6 0,07 0,07 Bal.
Mechanical properties:
(Heat treatment: 760°C/2h; Minimum values at ambient temperature)
Tensile strength Rm: 720 [MPa]
Yield strength Rp0,2: 560 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Impact strength (ISO-V): 41 [J]
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Standards:
EN ISO 3580-A: E CrMoWV 12 B 42
EN 1599:
Mat.-No.:
E CrMoWV 12 B 42
1.4937 capilla® P 121
Recovery: 130%
C Mn Si Cr Mo Ni V W Fe
Min. 0,5 10,5 0,9 0,5 0,18 0,5
Max. 0,03 0,6 0,4 11,5 1,1 0,6 0,24 0,6 Bal.
Mechanical properties:
(Heat treatment: 760°C/2h; Minimum values at ambient temperature)
Tensile strength Rm: 700 [MPa]
Yield strength Rp0,2: 590 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Impact strength (ISO-V): 35 [J]
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Standards:
EN ISO 3581-A: E 13 B 42
EN 1600:
AWS SFA-5.4:
E 13 B 42
E 410 - 25 capilla® 4009
Mat.-No.: 1.4009
Recovery: 150%
C Cr Mn Fe
Min. 11,5
Max. 0,1 14,5 0,7 Bal.
Mechanical properties:
(Heat treatment: 680°C/8h; Minimum values at ambient temperature)
Tensile strength Rm: 650 [MPa]
Yield strength Rp0,2: 450 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Hardness: 180 [HB 30]
35 [HRC] without heat reatment
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: E 17 B 42
EN 1600:
AWS SFA-5.4:
E 17 B 42
E 430 - 25 capilla® 4015
Mat.-Nr.: 1.4015
Recovery: 150%
C Cr Mn Fe
Min. 16 0,5
Max. 0,1 18 1 Bal.
Mechanical properties:
(Heat treatment: 800°C/1h; Minimum values at ambient temperature)
Tensile strength Rm: 540 [MPa]
Yield strength Rp0,2: 340 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 20 [%]
Hardness: 150 [HB 30]
240 [HB 30] without heat reatment
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: EZ 13 1 B 42
EN 1600:
AWS SFA-5.4:
EZ 13 1 B 42
~E 410 - 25 capilla® 4018
Mat.-No.: 1.4018
Recovery: 150%
C Cr Ni Fe
Min. 11,5 1,5
Max. 0,1 13,5 2 Bal.
Mechanical properties:
(Heat treatment: 640°C/8h; Minimum values at ambient temperature)
Tensile strength Rm: 650 [MPa]
Yield strength Rp0,2: 450 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 25 [%]
Hardness: 180 [HB 30]
35 [HRC] without heat reatment
Redrying: 320°C/2h
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68
Standards:
EN ISO 3581-A: E 13 4 B 42
EN 1600:
AWS A 5.4:
E 13 4 B 42
E 410 NiMo-25 capilla® 410 NiMo
Mat.-No.: 1.4351
Recovery: 150%
C Cr Ni Mo Mn Fe
Min. 11,5 3 0,5
Max. 0,1 14,5 5 1 0,7 Bal.
Mechanical properties:
(Heat treatment: 600°C/8h; Minimum values at ambient temperature)
Tensile strength Rm: 800 [MPa]
Yield strength Rp0,2: 600 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 25 [%]
Hardness: 310 [HB 30]
38 [HRC] without heat reatment
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: EZ 17 6 1 B 42
EN 1600:
Mat.-No.:
EZ 17 6 1 B 42
~1.4405 capilla® 4405
Recovery: 150%
A PWHT is recommended.
C Cr Ni Mo Mn Fe
Min. 16 5 0,8
Max. 0,06 17 6 1,3 0,7 Bal.
Mechanical properties:
(Heat treatment: 600°C/8h; Minimum values at ambient temperature)
Tensile strength Rm: 800 [MPa]
Yield strength Rp0,2: 570 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Impact strength (ISO-V): 35 [J]
Redrying: 320°C/2h
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70
Standards:
EN ISO 3581-A: EZ 17 1 B 42
EN 1600:
Mat.-No.:
EZ 17 1 B 42
1.4115 capilla® 4115
Recovery: 150%
C Cr Ni Mo Mn Fe
Min. 0,15 16 0,8
Max. 0,2 17 0,5 1,2 0,7 Bal.
Mechanical properties:
(Heat treatment: 720°C/8h; Minimum values at ambient temperature)
Tensile strength Rm: 700 [MPa]
Yield strength Rp0,2: 650 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 15 [%]
Hardness: 200 [HB 30]
43 [HRC] without heat reatment
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: EZ 17 1 1 B 42
EN 1600:
Mat.-No.:
EZ 17 1 1 B 42
1.4122 capilla® 4122
Recovery: 150%
C Cr Ni Mo Mn Fe
Min. 16 0,9
Max. 0,4 18 0,5 1,1 0,6 Bal.
Mechanical properties:
(Heat treatment: 760°C/2h; Minimum values at ambient temperature)
Tensile strength Rm: 800 [MPa]
Yield strength Rp0,2: 600 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 12 [%]
Hardness: 230 [HB 30]
48 [HRC] without heat reatment
Redrying: 320°C/2h
72
72
Standards:
EN ISO 3581-A: EZ 13
EN 14700:
Mat.-No.:
E Fe 7
1.4034 capilla® 4034
Recovery: 150%
C Cr Mn Ni Fe
Min. 12,5
Max. 0,4 13,5 0,5 0,6 Bal.
Mechanical properties:
(Heat treatment: 550 - 760°C/ 2h; Minimum values at ambient temperature)
Hardness: 240 – 360 [HB 30
51 – 55 [HRC] without heat reatment
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: E 19 9 H R 12
EN 1600:
AWS A 5.4:
E 19 9 R 12
E 308 H-16 capilla® 308 H
Mat.-No.: 1.4948
C Cr Ni Fe
Min. 18 9
Max. 0,03 20 11 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 550 [MPa]
Yield strength Rp0,2: 320 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 35 [%]
Impact strength (ISO-V): 70 [J]
Redrying: 320°C/2h
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74
Standards:
EN ISO 3581-A: E 19 12 3 R 12
EN 1600:
AWS A 5.4:
E 19 12 3 R 12
E 316 H-16 capilla® 316 H
C Si Cr Ni Mo Fe
Min. 18 11 2,5
Max. 0,03 1,0 20 13 3 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 550 [MPa]
Yield strength Rp0,2: 320 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 35 [%]
Impact strength (ISO-V): 70 [J]
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: E 23 12 R 32
EN 1600:
AWS A 5.4:
E 23 12 R 32
E 309 -26 capilla® 309
Mat.-No.: ~1.4829
Recovery: 120%
C Cr Ni Fe
Min. 21 11
Max. 0,08 23 13 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 550 [MPa]
Yield strength Rp0,2: 400 [MPa]
Yield strength Rp1,0: 430 [MPa]
Elongation (L=5d): 30 [%]
Impact strength (ISO-V): 55 [J]
Redrying: 320°C/2h
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76
Standards:
EN ISO 3581-A: E 25 20 H R 12
EN 1600:
AWS A 5.4:
E 25 20 H R 12
E 310H -16 capilla® 310 H
Mat.-No.: ~1.4846
C Cr Ni Mn Fe
Min. 23 19 2,5
Max. 0,4 26 21 3 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 600 [MPa]
Yield strength Rp0,2: 400 [MPa]
Yield strength Rp1,0: 450 [MPa]
Elongation (L=5d): 10 [%]
Redrying: 320°C/2h
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77
Standards:
EN ISO 3581-A: E 25 4 R 32
EN 1600:
Mat.-No.:
E 25 4 R 32
1.4820 capilla® 4820
Recovery: 120%
C Cr Ni Fe
Min. 0,05 25 4,5
Max. 0,08 26 5,5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 700 [MPa]
Yield strength Rp0,2: 500 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 20 [%]
Hardness: 180 [HB 30]
Redrying: 320°C/2h
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78
Standards:
EN ISO 3581-A: EZ 25 24 Nb B 32
EN 1600:
Mat.-No.:
EZ 25 24 Nb B 32
1.4830 capilla® 4830
Recovery: 120%
C Cr Ni Nb Fe
Min. 24 23 0,9
Max. 0,25 26 25 1,2 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 600 [MPa]
Yield strength Rp0,2: 400 [MPa]
Yield strength Rp1,0: 450 [MPa]
Elongation (L=5d): 10 [%]
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: EZ 21 32 Nb B 32
EN 1600:
Mat.-No.:
EZ 21 32 Nb B 32
~1.4850 capilla® 4850
Recovery: 130%
C Cr Ni Nb Fe
Min. 0,12 21 32 0,9
Max. 0,18 23 35 1,2 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 600 [MPa]
Yield strength Rp0,2: 380 [MPa]
Yield strength Rp1,0: 400 [MPa]
Elongation (L=5d): 25 [%]
Impact strength (ISO-V): 50 [J]
Redrying: 320°C/2h
80
80
Standards:
EN ISO 3581-A: EZ 25 35 Nb B 32
EN 1600:
EN 14700:
EZ 25 35 Nb B 32
~E Ni 1 capilla® 4853
Mat.-No.: ~1.4853
Recovery: 130%
C Cr Ni Nb Mn Fe
Min. 0,3 25 34 1,2 0,9
Max. 0,5 27 36 1,5 1,1 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 600 [MPa]
Yield strength Rp0,2: 400 [MPa]
Yield strength Rp1,0: 450 [MPa]
Elongation (L=5d): 8 [%]
Redrying: 320°C/2h
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Standards:
EN ISO 3581-A: EZ 18 36 Nb B 32
EN 1600:
EN 14700:
EZ 18 36 Nb B 32
~E Ni 1 capilla® 4863
AWS A 5.4: ~ E330-15
Mat.-No.: ~ 1.4863
Recovery: 130%
C Cr Ni Nb Fe
Min. 0,19 17 34 1,2
Max. 0,25 19 36 1,5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 550 [MPa]
Yield strength Rp0,2: 320 [MPa]
Yield strength Rp1,0: 340 [MPa]
Elongation (L=5d): 15 [%]
Impact strength (ISO-V): 40 [J]
Redrying: 320°C/2h
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82
Standards:
EN ISO 14172: ~E Ni 6702 (NiCr28Fe6W)
Mat.-No.: ~2.4879
capilla® 4879
Recovery: 130%
C Cr Ni W Fe
Min. 0,4 27 48 4
Max. 0,6 30 52 5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 650 [MPa]
Yield strength Rp0,2: 450 [MPa]
Yield strength Rp1,0: 500 [MPa]
Elongation (L=5d): 5 [%]
Impact strength (ISO-V): - [J]
Redrying: 320°C/2h
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83
Standards:
EN ISO 14172 E Ni 6625 (NiCr22Mo9Nb)
EN 14700:
AWS A 5.11:
E Ni 2
E NiCrMo 3 capilla® 625 K
Mat.-No.: 2.4621
C Cr Mo Nb Ni
Min. 19 8 2
Max. 0,6 30 11 4 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 760 [MPa]
Yield strength Rp0,2: 450 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 30 [%]
Impact strength (ISO-V): 75 [J]
60 [J] -196°C
Redrying: 320°C/2h
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84
Standards:
DIN EN ISO 14172: E Ni 6059 (NiCr23Mo16)
(DIN 1736):
(DIN 8555):
EL-NiCr 23 Mo 16
E: 23-UM-200 CPRTZ capilla® Alloy C
AWS A5.14: E NiCrMo-13
Mat.-No.: 2.4609
Recovery: 150%
base materials:
NiCr21Mo14W (2.4602),
NiCr23 Mo16Al (2.4605),
NiMo16Cr16Ti (2.4610),
NiMo16Cr15W (2.4819).
C Si Cr Mo Fe Mn Ni
Min. 22 15
Max. 0,01 0,1 24 16 1,5 0,5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 700 [MPa]
Yield strength Rp0,2: 420 [MPa]
Yield strength Rp1,0: - [MPa]
Elongation (L=5d): 30 [%]
Impact strength (ISO-V): 60 [J]
Positions: -
Redrying: 320°C/2h
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85
Standards:
EN ISO 14172: ~ E Ni 6082 (NiCr20Mn3Nb)
EN 14700:
AWS A 5.11:
E Ni 2
~ E NiCrFe-3 capilla® 6000 DL
Mat.-No.: ~ 2.4648
C Cr Mn Nb Fe Ni
Min. 0,03 18 4 2 3
Max. 0,06 21 6 2,8 5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 620 [MPa]
Yield strength Rp0,2: 380 [MPa]
Yield strength Rp1,0: 420 [MPa]
Elongation (L=5d): 35 [%]
Impact strength (ISO-V): 90 [J]
70 [J] -196°C
Redrying: 320°C/2h
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86
Standards:
EN ISO 14172: ~E Ni 6082 (NiCr20Mn3Nb)
EN 14700:
AWS A 5.11:
E Ni 2
~E NiCrFe-3 capilla® 6000 B
Mat.-No.: ~2.4648
Recovery: 150%
C Cr Mn Nb Fe Ni
Min. 0,03 18 4 2 3
Max. 0,06 21 6 2,8 5 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 620 [MPa]
Yield strength Rp0,2: 380 [MPa]
Yield strength Rp1,0: 420 [MPa]
Elongation (L=5d): 35 [%]
Impact strength (ISO-V): 90 [J]
70 [J] -196°C
Redrying: 320°C/2h
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87
Standards:
Special electrode (no standard)
Mat.-No.: ~2.4778
capilla® 4778
Recovery: 150%
C Cr Co Fe
Min. 0,12 29 48
Max. 0,18 30 50 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 490 [MPa]
Yield strength Rp1,0: 390 [MPa]
Yield strength Rp1,0/1000: 25 (900°C) [MPa]
Elongation (L=5d): 6 [%]
Redrying: 320°C/2h
88 88
Standards:
Special electrode (no standard)
Mat.-No.: 2.4813
capilla® 50/50 Nb
Recovery: 200%
C Cr Nb Fe Ni
Min. 48 1,5
Max. 0,1 49 1,8 0,8 Bal.
Mechanical properties:
(without heat treatment; minimum values at ambient temperature)
Tensile strength Rm: 900 [MPa]
Yield strength Rp0,2: 690 [MPa]
Yield strength Rp1,0: 450 [MPa]
Elongation (L=5d): 3 [%]
Redrying: 320°C/2h
89
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90
3.2 Wire electrodes for welding of creep and heat resistant material
3.2.1 Solid wires for gas shielded arc welding of creep and heat resistant material
90
3.2.1 Solid wires for gas shielded arc welding of creep and heat resistant material (continued)
91
91
3.2.2 Welding rods for tungsten inert gas welding of creep and heat resistant material
92
Designation Standard Weld Metal Analysis [Wt.%] Properties
EN ISO 14343-A Hardness
® Ro0,2 Rm L=5d Hardness
C Mn Si Cr Ni Mo Nb others Fe (PWHT) SG
capilla [MPa] [MPa] [%] [HB/HRC]
EN ISO 21953-A* [HB/HRC)
ISO-V
G CrMo 91*
P 91 WIG 0,1 0,5 0,3 9 0,7 1 0,06 - Bal. 520 620 17 - 50 J I1
1.4903 (760°C/4h)
W 13 180
4009 WIG 0,08 0,6 0,9 14 0,4 - - - Bal. 450 650 15 35 I1
1.4009 (680°C/8h)
W 17 150
4015 WIG 1.4015
0,07 0,7 0,8 17 - - - - Bal. 340 540 20 240 I1
(800°C/1h)
W 13 180
4018 WIG 0,06 0,6 0,3 12 1,3 - - - Bal. 450 650 15 35 I1
1.4018 (680°C/8h)
W 13 4 250
410 NiMo WIG 0,03 0,7 0,8 13 4,7 0,5 - - Bal. 600 800 15 38 I1
1.4351 (600°C/8h)
WZ 17 1 200
4115 WIG 0,2 0,4 0,6 17 0,4 1,1 - - Bal. 500 70 15 43 I1
1.4115 (760°C/2h)
WZ 17 1 1 230
4122 WIG 0,4 0,5 0,5 16 0,5 1 - - Bal. 600 800 12 48 I1
1.4122 (760°C/2h)
WZ 13
4034 WIG 0,4 0,5 0,5 13 0,6 - - - Bal. - - - 53 240-360 I1
1.4034
Min. values at AT; shielding gas (SG) acc. EN ISO 14175; (PWHT = post weld heat treatment);
Dimensions: Ø 1,0; 1,6; 2,0; 2,4 [mm]; Length: 1000 [mm]; other dimensions on demand
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3.2.2 Welding rods for tungsten inert gas welding of creep and heat resistant material (continued)
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93
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3.2.3 Tubular wires for gas shielded arc welding of creep and heat resistant material
T CrMo 91 BM 0,1 0,6 0,3 9 0,7 1 0,07 V= 0,2 Bal. 550 680 17 - 220 M13
G P91 MM (760°C/2h)
T 13 MM 2 220 M13
G 4009 MM 0,08 0,6 0,9 12 - - - - Bal. 450 650 15 38
1.4009 (680°C/8h) M21
T 17 MM 2 150 M13
G 4015 MM 0,08 1,2 0,8 17 - - - - Bal. 340 540 20 220
1.4015 (800°C/1h) M21
T 13 4 MM 2 250 M13
G 410 NiMo MM 0,03 0,7 0,8 13 4,7 0,5 - - Bal. 600 800 15 38
1.4351 (600°C/8h) M21
TZ 13 MM 2 M13
G 4034 MM 0,4 0,5 0,5 13 0,6 - - - Bal. - - - 50 240-360
1.4034 M21
TZ 17 6 1 MM 2 250 M13
G 4405 MM 0,06 0,7 0,4 17 6 1 - - Bal. 570 800 15 -
1.4405 (620°C/4h) M21
Min. values at AT; shielding gas (SG) acc. EN ISO 14175. (PWHT = post weld heat treatment).
Dimensions: Ø 1,0; 1,2; 1,6 [mm]; Spools: K 300; other dimensions and packing units on demand.
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