Improbond GmbH – Laser Welding Wire

01_9090

Property Value
Material no.
Mn3Ni1CrMo
Tensile elastic limit 670 – 760 N/mm²
Tensile strength 730 – 820 N/mm²
Expansion 20 – 25 %

For the laser welding of coated close-grained steels, like St52 - St70, StE420 - StE690 by improved corrosion resistance and hardness. The weld can be eroded, polished, chromplated, nitrated, annealed and hardened.

For base materials
Symbol Element Value
C Carbon 0,10 %
Si Silicium 0,60 %
Mn Manganese 1,60 %
Cr Chrome 0,35 %
Ni Nickel 1,40 %
Mo Molybdenum 0,30 %
V Vanadium 0,10 %
Fe Iron Rest



01_9100

Property Value
Material no.
1.5424
Tensile elastic limit 490 – 520 N/mm²
Tensile strength 560 – 650 N/mm²
Expansion 23 – 27 %

For the laser welding of the materials 1.2311, 1.2312, 1.2162, 1.2738 and for low-alloyed steels, like StE 355, 17Mn4, 15Mo3. The weld can be eroded, structured, polished, chromplated, etched, nitrated and annealed.

For base materials
Symbol Element Value
C Carbon 0,10 %
Si Silicium 0,60 %
Mn Manganese 1,10 %
Mo Molybdenum 0,50 %
Fe Iron Rest

01_9110    |    01_9190

copper-coated               blank

Property Value
Material no.
1.2367.02
Hardness 38 – 42 HRc

For the laser welding of hot working tools, which are subjected to impact compression and abrasion at elevated temperatures. The weld can be polished, chromplated, nitrated, heat treated and CVD coated. Recommendation 01_9190: Using für mirror finish.

For base materials
Symbol Element Value
C Carbon 0,10 %
Si Silicium 0,40 %
Mn Manganese 0,60 %
Cr Chrome 6,50 %
Mo Molybdenum 3,30 %
Fe Iron Rest

01_9120

Property Value
Material no.
1.2567
Hardness ~ 45 HRc
Soft annealed 780°C ~ 230 HB
Hardened 1080°C/Öl ~ 52 HRc
Tempered 600°C ~ 48 HRc

For the laser welding on warm-working tools made from low-alloyed and non-alloyed steels at a high temperature strength and tempering resistance.

For base materials
Symbol Element Value
C Carbon 0,30 %
Si Silicium 0,30 %
Mn Manganese 0,30 %
Cr Chrome 2,30 %
W Tungsten 4,50 %
V Vanadium 0,50 %
Fe Iron Rest

01_9130    |    01_9160

coper coated                  blank

Property Value
Material no.
1.2367.03
Hardness 42 – 46 HRc
Soft annealed 780°C ~ 230 HB
Hardened 1030°C/Öl 48 HRc
Tempered 600°C 45 HRc

Often used laser welding wire for repairing and changing at the contour with universal characteristics, also at unknown alloys. Free of cracks and incomplete fusion by multilayer weldings. Tough welding material, good corrosion resistance, high wear resistance and toughness, for highly stressed hot working tools, which are subjected to high thermal and abrasive loads. The weld can be polished, heat treated, nitrated, chromplated, and CVD coated. Recommendation 01_9160: Using für mirror finish.

For base materials
Symbol Element Value
C Carbon 0,25 %
Si Silicium 0,60 %
Mn Manganese 0,70 %
Cr Chrome 5,00 %
Mo Molybdenum 4,00 %
Ti Titanium 0,60 %
Fe Iron Rest

01_9150

Property Value
Material no.
1.7339
Tensile elastic limit > 480 N/mm²
Tensile strength > 560 N/mm²
Expansion 22 – 26 %

For the laser welding of mould cavities made from tempered materials 1.2311, 1.2312, 1.2162, 1.2738, furthermore of highly heat resisting steels, like 13CrMo 4-5, 25CrMo4, 42CrMo4. The weld can be eroded, structured, polished, chromplated, etched, nitrated and annealed. Recommendation: contact your surface structure partner.

For base materials
Symbol Element Value
C Carbon 0,10 %
Si Silicium 0,60 %
Mn Manganese 0,60 %
Cr Chrome 1,20 %
Mo Molybdenum 0,50 %
Fe Iron Rest

01_9200    |    01_9210

copper coated               blank

Property Value
Material no.
1.2343.07
Hardness 53 – 58 HRc
Soft annealed 820°C ~ 235 HB
Hardened 1050°C/Öl 58 HRc
Tempered 600 °C 53 HRc


Laser welding wire used for highly wear resistant buildups on machine parts and tools subject to heavy abrasion and compression combined with moderate impact at elevated temperatures. Low wear when using fiberglass reenforced plastics workable by grinding with tungsten carbide tools. By multilayer welding decking with 01_9650 or 03_9240 recommended. The weld is suitable for hardening, nitrifying, etching, polishing and chroming.
Recommendation 01_9210: Using für mirror finish.

For base materials
Symbol Element Value
C Carbon 0,35 %
Si Silicium 0,30 %
Mn Manganese 1,20 %
Cr Chrome 7,00 %
Mo Molybdenum 2,00 %
Ti Titanium 0,30 %
Fe Iron Rest

01_9300

Property Value
Material no.
1.4718
Hardness 54 – 60 HRc
Soft annealed 800°C ~ 250 HB
Hardened 1000°C/Öl 62 HRc

For the laser welding of press-, stamping- and cutting tools. The hard and tough weld deposit is very tough and has an excellent edge retention.

For base materials
Symbol Element Value
C Carbon 0,50 %
Si Silicium 3,00 %
Mn Manganese 0,50 %
Cr Chrome 9,50 %
Fe Iron Rest

01_9310

Property Value
Material no.
1.2606
Hardness 55 – 58 HRc

Laser welding wire with good edge wear reistance, high toughness and low tendency to hot cracks. Very suitable for the laser welding of components that are subjects to high impact and abrasion stress. The weld is suitable for mechanically grinding, polishing, conditionally chroming and hardering. Not for etching.

For base materials
Symbol Element Value
C Carbon 0,35 %
Si Silicium 1,10 %
Mn Manganese 0,40 %
Cr Chrome 5,50 %
Mo
Molybdenum 1,30 %
V
Vanadium 0,25 %
W
Tungsten 1,30 %
Fe
Iron
Rest

01_9350

Property Value
Material no.
1.4115
Tensile elastic limit 500 N/mm²
Tensile strength 700 N/mm²
Expansion 15 %
Soft annealed 200 HB
Hardened 42 – 47 HRc

For the laser welding of similar alloys. The martensitic weld deposit is used for wear-resistant cladding on hot working and high-tensile steels. Good wear resistance at higher temperature up to 450°C. Hardenable and annealable.

For base materials
Symbol Element Value
C Carbon   0,20 %
Si Silicium   0,60 %
Mn Manganese   0,40 %
Cr Chrome 17,50 %
Ni Nickel   0,30 %
Mo Molybdenum   1,10 %
Fe Iron   Rest

01_9380

Property Value
Material no.
2.1211
Tensile elastic limit   80 N/mm²
Tensile strength 200 N/mm²
Expansion 20 %
Hardness 60 HB

For the laser welding of copper- and ampcoloy alloys, furthermore for the repairing of spark eroding electrodes. Ductile weld, close-grained structure and high electrical conductivity. The usable hardness is increased by cold storing.

For base materials
Symbol Element Value
Mn Manganese   0,20 %
Ni Nickel ‹ 0,30 %
Ag Silver
  1,00 %
Cu Copper   Rest

01_9450

Property Value
Material no.
1.2311
Hardness 45 – 52 HRc

Laser welding wire with good polishing, nitriding, etching and graining properties, if an appropriate hardness is reqired.

For base materials
Symbol Element Value
C Carbon 0,40 %
Mn Manganese 0,80 %
Si Silicium 0,40 %
Cr Chrome 1,75 %
Mo Molybdenum 0,40 %
Fe Iron Rest

01_9500

Property Value
Material no.
1.4576
Tensile elastic limit 450 N/mm²
Tensile strength 580 N/mm²
Expansion 30 %

For the laser welding of similar stabilised and non-stabilised austenitic Cr-Ni-Mo-steels. Niobium stabilised, non-rusting and corrosion resistant welding wire. Microstructure: austenite with part of ferrite. Immersioncorrosion (wet corrosion up to 400°C) and tough at sub-zero temperature up to -120°C.

For base materials
Symbol Element Value
C Carbon   0,06 %
Si Silicium   0,85 %
Mn Manganese   1,50 %
Cr Chrome 19,00 %
Ni Nickel 12,00 %
Mo Molybdenum   2,60 %
Nb Niobium   12 x C
Fe Iron   Rest

01_9520

Property Value
Material no.
1.4332
Tensile elastic limit 400 N/mm²
Tensile strength 600 N/mm²
Expansion 30 %

For the laser welding of heat resistant and non scaling austenitic alloys up to temperature of 1.000°C. Microstructure: austenite with part of ferrite. Non-rusting (wet corrosion up to 350°C).

For base materials
Symbol Element Value
C Carbon   0,02 %
Si Silicium   0,85 %
Mn Manganese   1,80 %
Cr Chrome 24,50 %
Ni Nickel 13,50 %
Fe Iron Rest

01_9600

Property Value
Material no.
1.3348
Hardness 57 – 62 HRc

For the laser welding of liable to wear alloys, of high speed steel (HSS), furthermore suitable for hard facing, tool parts and edges vulnerable to wear. Recommendation: pre-heating up to 50°C under tempering temperature of the base material.

For base materials
Symbol Element Value
C Carbon 1,00 %
Si Silicium 0,30 %
Mn Manganese 0,30 %
Cr Chrome 4,00 %
W Tungsten 1,80 %
Mo Molybdenum 8,30 %
V Vanadium 1,90 %
Fe Iron Rest

01_9650

Property Value
Material no.
1.4337
Tensile elastic limit 560 N/mm²
Tensile strength 740 N/mm²
Expansion 25 %
Hardness 240 HB

For the laser welding of high elastic, low alloyed and heat resistant or non-rusting steels. Suitable for joint weldings and deckings of dissimilar materials. Non-rusting (wet corrosion up to 300°C) austenitic/ferritic welding wire with warm crack resistance. Good ductility at a high tensile elastic limit.

For base materials
Symbol Element Value
C Carbon   0,12 %
Si Silicon   0,40 %
Mn Manganese   1,80 %
Cr Chrome 30,00 %
Ni Nickel   9,00 %
Fe Iron Rest

01_9720

Property Value
Material no.
1.6356
Tensile elastic limit    880 N/mm²
Tensile strength    980 N/mm²
Tensile elastic limit (after WR)
1.620 N/mm²
Tensile strength (after WR)
1.860 N/mm²
Hardness
32 – 35 HRc
Hardness (after WR)
50 – 54 HRc

Co-alloyed welding wire for the laser welding of highly stressed hot and cold working tools. The weld deposit is, an as-welded condition,machine workable. After warm removal: optimized warm abrasion resistance and alternating temperature resistance.

For base materials
Symbol Element Value
C Carbon 0,005 %
Ni Nickel 18,00 %
Mo Molybdenum   4,00 %
Co Cobalt 12,00 %
Ti Titanium   1,60 %
Fe Iron Rest

01_9800

Property Value
Material no.
2.1367
Tensile elastic limit 400 N/mm²
Tensile strength 650 N/mm²
Expansion 25 %
Hardness 220 HB

For the laser welding on press tools to avoid die marks. High manganiferous, sea water resistant multicomponent-aluminium bronze for build-up weldings of mould inserts from ampco bronzes and ampcoloy alloys. Cavitations resistant and good flow properties.

For base materials
Symbol Element Value
Mn Manganese 13,00 %
Ni Nickel   2,50 %
Fe Iron   2,50 %
Al Aluminium   7,50 %
Cu Copper Rest

01_9820

Property Value
Material no.
2.0923
Tensile elastic limit 400 N/mm²
Tensile strength 700 N/mm²
Expansion 15 %
Hardness 200 HB

Multicomponent bronze with good gliding properties for the laser welding on copper, copper alloys, as well as mixed joints of stainless steels. Multifunctional usable wire, especially for repairing of damaged hot runner systems in injection moulds. Seawater and cavitations resistant. Increase of the hardness through cold removal.

For base materials
Symbol Element Value
Mn Manganese 1,00 %
Ni Nickel 4,50 %
Fe Iron 3,50 %
Al Aluminium 9,00 %
Cu Copper Rest

01_H13

Property Value
Material no.
H13
Hardness 45 – 50 HRc

H13 is a chromium-molybdenum-vanadium alloyed steel which is characterized good resistance to abrasion at both low and high temperatures, high level of toughness and ductility, uniform and high level of machinability and polishability, good high-temperature strength and resistance to thermal fatigue and excellent through-hardening properties.

For base materials

Symbol Element Value
C
Carbon 0,40 %
Mn Manganese 0,40 %
Si
Silicium
1,00 %
Cr
Chrome
5,30 %
Mo
Molybdenum 1,30 %
V
Vanadium 0,90 %
Fe
Iron
Rest

01_P20

Property Value
Material no.
P20
Hardness 45 – 54 HRc

P20 is a Cr-Mo-alloyed steel with good polishing and texturing properties, good machinability and uniform hardness.

For base materials

Symbol Element Value
C
Carbon 0,34 %
Mn Manganese 0,80 %
Si
Silicium
0,40 %
Cr
Chrome
1,75 %
Mo
Molybdenum 0,40 %
Fe
Iron
Rest

01_SCVS


Property Value
Material no.
15CDV6 | SCVS
Tensile elastic limit 550 – 790 N/mm²
Tensile strength 700 – 1.180 N/mm²
Expansion 13 %
Hardness 42 HRc

Aubert Duval alloy. SCVS is a low carbon material, which combines a high yield strength with good toughness and weldability.

For base materials

Symbol Element Value
C
Carbon 0,12 – 0,18 %
Si
Silicium
            0,20 %
Mn Manganese 0,80 – 1,10 %
Mo
Molybdenum0,80 – 1,00 %
V
Vanadium0,20 – 0,30 %
Cr
Chrome
1,25 – 1,50 %
Fe
Iron
Rest

01_819BS


Property Value
Material no.
35NCD16 | 819BS
Expansion 12 - 19 %
Hardness 46 - 48 HRc

Aubert Duval alloy. 819BS is a low alloy material, which combines hight strength and hardness with a good dimensional stability.

For base materials


Symbol Element Value
C
Carbon 0,30 – 0,40 %
Si
Silicium
0,15 – 0,40 %
Mn Manganese 0,30 – 0,60 %
Cr
Chrome
1,60 – 2,00 %
Ni
Nickel
3,50 – 4,20 %
Mo
Molybdenum 0,25 – 0,60 %
Fe
Iron
Rest


01_SMV3S


Property Value
Material no.
Z38CDV5 | SMV3S
Tensile elastic limit
700 – 900 N/mm²
Expansion 9 %
Hardness 46 – 52 HRc

Aubert Duval alloy. SMV3S ist an alloy with excellent resistance to wear at higher temperature and ideal where a high polish is required.

For base materials
Symbol Element Value
C
Carbon
0,40 %
Cr
Chrome
5,00 %
Mo
Molybdenum 1,30 %
V
Vanadium 0,40 %
Fe
Iron
Rest