Wieland Cimsa
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08130 Santa Perpètua de Mogoda
Spain (UTC+1)
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Headline
Back to product overviewEnhanced surface tubes
Low-finned tubes
Medium-high finned tubes
High finned tubes
Coaxial heat exchanger WKE | WKC
Wieland WRK
Finned tube heat exchanger WRW
Ingots
Round rod
Square rod
Hexagonal rod
Rectangular rod
Sectional rod
Machining
WICONNEC®
ECOBRASS
ecoline®: Lead-free solutions
Precision continuous casting
Strip
Multi-gauge strip
Sheets and Plates
Smooth industrial tubes
Innergrooved industrial tubes
Plumbing tubes
Refrigeration and medical gas tubes
Wire

Optimised heat transfer for your shell-and-tube heat exchanger
The enhanced surface tubes made by Wieland Thermal Solutions have been optimized for use as condenser or evaporator tubes in shell-and-tube heat exchangers used in the refrigeration and air-conditioning industry. These can be designed to be much more compact, saving you energy, installation space, and materials.
Your advantages at a glance
- Significantly higher heat transfer coefficients than smooth or low finned tubes
- More compact and lighter heat exchangers
- Significantly reduced filling quantities of e.g. refrigerants
- Highest efficiencies due to smallest temperature differences
- Precise thermal design with ThermalS
Optimized heat transfer for your shell-and-tube heat exchanger
The enhanced surface tubes made by Wieland Thermal Solutions have been optimized for use as condenser or evaporator tubes in shell-and-tube heat exchangers used in the refrigeration and air-conditioning industry. These can be designed to be much more compact, saving you energy, installation space and materials.
Our Materials
We offer you a broad portfolio of materials and can expand our offerings at any time to meet your specific needs regarding thermal conductivity, mechanical properties, or corrosion resistance. Enhanced surface tubes made by Wieland Thermal Solutions are already available in copper, copper-nickel, brass, carbon steel, stainless steel, and titanium.

You can find more product information here

For extreme efficiency in a variety of applications
Low-finned tubes are a reliable solution for controlling the temperature of gases and liquids, or for evaporating and condensing refrigerants. Thanks to their larger heat transfer surface area, they offer considerable potential to save in terms of materials and fill volumes. The wide range of dimensions offered by Wieland Thermal Solutions makes these products perfect for a broad scope of applications in the refrigeration and air conditioning industry, for oil/gas coolers in machinery and plant engineering, and for intermediate vapor superheaters in process engineering.
Your advantages at a glance
- Proven solution in a wide range of applications
- Increased heat transfer surface compared to plain tubes
- Material savings due to reduced tube length
- Filling quantity reduction due to higher efficiency
Our Materials
We offer you a broad portfolio of materials and can expand our offering at any time to meet your specific needs regarding thermal conductivity, mechanical properties, or corrosion resistance. Low-finned tubes made by Wieland Thermal Solutions are already available in copper, copper-nickel, brass, carbon steel, stainless steel, and titanium.

You can find more product information here
GEWA-K/KS
S/T Trufin & TurboChil in Steel
S/T Trufin & TurboChil in Titanium

For compact coils and bent shapes
Medium-high finned tubes feature a significantly larger heat transfer surface area compared to plain tubes. They are ideal for compact and high-performance coils and shell-and-tube heat exchangers. Wieland medium-high finned tubes are a proven and robust solution for water heaters, storage tanks, refrigerant condensers, oil coolers, gas coolers or safety heat exchangers and more.
Your advantages at a glance
- High surface enlargement compared to plain tubes
- Ideal for compact and robust heat exchangers
- Excellent bending properties and processability
- Availability of various dimensions, internal structures and materials
Our Materials
We offer the widest range of material in the industry and can extend it on request in case of special requirements for heat conductivity, mechanical properties or corrosion resistance. Medium-high finned tubes from Wieland Thermal Solutions are available in copper, copper-nickel, aluminium and carbon steel as well as in stainless steel in limited range.

You can find more information here

For highest efficiency in controlling the temperature of gases and liquids
High-finned tubes have a much greater outer surface area than smooth tubes. This allows for particularly compact designs. Thanks to their high, thin fins, these tubes perform particularly well in the heating and cooling of liquids and gases, making them an excellent choice for applications in heating technology, as well as in machinery and plant engineering.
Your advantages at a glance
- Highest surface enlargement compared to plain tubes (up to factor 18)
- Enables particularly compact and robust designs
- Available in straight lengths or as coiled heat exchanger
- Also available as bimetallic version GEWA-HB
Our Materials
We offer you a broad portfolio of materials and can expand our offering at any time to meet your specific needs regarding thermal conductivity, mechanical properties, or corrosion resistance. High-finned GEWA-H tubes made by Wieland Thermal Solutions are already available in copper, copper-nickel and aluminum.
In the GEWA-HB tube materials like carbon steel, stainless steel, titanium or almost any other material like brass and nickel can be used for the inner tube.

You can find more information here

In coaxial heat exchangers, fluids are ideally conducted in counter-flow directions. The Wieland WKE and WKC series have been optimized for the condensation or evaporation of refrigerants and are used in reciprocating chillers and heat pumps.
Your advantages at a glance
- High specific power due to optimized inner tubes
- Flow guidance in counterflow
- Insensitive to frost
- Low fouling tendency
- Long service life
- Reversible operation possible
- Standard designs from stock
You can find more information here
Data sheet WKC | WKE
Our wholesaler for standard heat exchanger
Calculate your coaxial heat exchanger directly online:
ThermalS

WRK finned tube heat exchangers are suitable for efficient direct condensation and evaporation in heat pump buffer tanks. The inner grooved surface of the used finned tubes optimize the heat transfer. Thus highest COP-values are possible even with smallest temperature differences.
Your advantages at a glance
- Efficient: Highest COP values due to direct integration of the heat exchanger in the storage tank
- Filling volume optimized: Smallest refrigerant volumes due to compact design
- Easy handling: Easy replacement and maintenance
You can find more information here

Storage heating, circulation heating of domestic water, protecting solid fuel boilers from overheating, or controlling the temperature of oils and emulsions: With our WRW series of heat exchangers, you are putting your trust in highly developed, compact solutions that are ready to install.
Your advantages at a glance
- Compact design due to high thermal conductivity of copper combined with increased heat transfer area
- Proven corrosion resistance
- Retrofittable due to compact spiral design
- Standard designs from stock
You can find more information here

Ecocast Properties
Wieland | EN Designation | EN-No. | ASTM-UNS-No. |
---|---|---|---|
CuZn21Si3P-C | CC768S | C87850 | |
| CuZn21Si3P-B | CB768S |
|
High mechanical strength
Its grain refiner ensures an extremely fine grain size, facilitating even distribution of force throughout the entire structure. The result: strength and hardness otherwise only known in steel, even with thin, weight-reducing wall thicknesses.
Improved casting
Thanks to its fine-grained structure, Ecocast is ideal for filigree components.
Reduced waste
In every situation where you were previously dependent on red brass for filigree shapes, the high amount of waste of this conventional material is eliminated with Ecocast.
Excellent machinability
Ecocast and its special chemical composition also makes reworking cast parts through machining, grinding, polishing, or coating safe, precise, and cost-effective.
Top-rate corrosion resistance
The fine-grained structure through and through also means minimal dezincification on the surface due to touching, oxidation, or cleaning.
The future is lead-free
Secure your market lead: with Ecocast you can design and equip your products for the future, too. After all, many countries and various customers are already implementing strict regulations concerning the use of lead-free materials.
Universal
Ecocast can be cast both in ingot molds and in sand. The material is standardized under CC768S in EN 1982.
Ecocast: The New Material for Sanitary Installations
Ecocast is the perfect material for sanitary installations, not just for meeting drinking water regulations in the future, but also mainly for meeting current cost-efficiency requirements. Thanks to its high mechanical strength, Ecocast achieves wall thicknesses that help significantly reduce weight and save on materials and costs without compromising on stability. Moreover, Ecocast can handle forces (or moments) that until now have only been reserved for steel. The fine-grained structure and lack of lead produce surfaces that are aesthetically impeccable when Ecocast parts are coated.
Functional Properties, Long-Lasting Look
The extremely corrosion-resistant brass material Ecocast has a premium golden surface that is especially long -lasting, making it suitable even for frequently used objects and room fixtures made from cast parts. Ecocast also has high color stability and resistance to degradation caused by contact, air humidity, or intensive cleaning, which increases hygiene safety in hospitals, clinics, and nursing care institutions. - The innovative cast material from Wieland retains its functional properties even with heavy day-to-day use.

Materials
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
K12 | Cu-HCP | CW021A | C10300 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K30 | Cu-OF | CW008A | C10200 | |
K32 | Cu-ETP | CW004A | C11000 | C1100 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K41 | CuNi1Pb1P* | - | C19150 / C19160 |
K52 | CuNi2Si | CW111C | C70260 |
K53 | CuNi2SiS* | - | - |
K54 | CuNi2SiCr* | - | C81540 |
K60 | CuCr1Zr | CW106C | C18150 |
K61 | CuCr1Zr | CW106C | C18200 |
K65 | CuFe2P | CW107C | C19400 |
K81 | CuSn0,15 | CW117C | C14415 |
KC1 | CuPb1P | CW113C | C18700 |
eco KS2® | CuSP | CW114C | C14700 |
eco KS4® | CuNi1SP* | - | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K55 | CuNi3Si1Mg* | - | C70250 |
K88 | CuCrAgFeTiSi* | - | C18080 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
Z11 | CuZn35Pb1 | CW600N | C34000 | |
Z12 | CuZn35Pb2 | CW601N | C34200 / C34500 | |
Z14 | CuZn37Pb2 | CW606N | C35300 | |
Z21 | CuZn38Pb2 | CW608N | C3713 | |
Z23 | CuZn36Pb3 | CW603N | C36000 | |
Z29 | CuZn39Pb2 | CW612N | C37700 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z32/Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z32/Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z40 | CuZn43Pb2Al | CW624N | - | |
Z43 | CuZn33Pb1AlSiAs | CW725R | - | |
Z45 | CuZn36Pb2As | CW602N | C35330 | |
Z46 | CuZn36Pb2As | CW602N | C35330 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L30 | CuNi30Mn1Fe | CW354H | C71500 |
eco LV3® | CuNi9Sn6* | - | C72700 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
M10 | CuZn10 | CW501L | C22000 | C2200 |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M20 | CuZn20 | CW503L | C24000 | C2400 |
M30/M34 | CuZn30 | CW505L | C26000 | C2600 |
M36 | CuZn36 | CW507L | C26800 / C27000 | C2700 |
M37/M38 | CuZn37 | CW508L | C27200 | C2720 |
eco M41® | CuZn38As | CW511L | C27453 | |
eco M57® | CuZn42 | CW510L | - | |
eco M58® | CuZn42 | CW510L | - | |
eco M59® | CuZn42 | CW510L | - | |
eco M60® | CuZn40 | CW509L | C27450 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
S40 | CuZn37Mn3Al2PbSi | CW713R | C67420 |
eco S34® | CuZn34Mn2SiAlNi* | - | C67340 |
eco SW1® | CuZn21Si3P | CW724R | C69300 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
B06 | CuSn6 | CW452K | C51900 |
B09/B10 | CuSn8 | CW453K | C52100 |
B09/B10 | CuSn8 | CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B44 | CuSn4Pb4Zn4 | CW456K | C54400 |
B45 | CuSn4Pb4Zn4 | CW456K | C54400 |
BV9 | CuSn6 | CW452K | C51900 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
U35 | CuAl10Ni5Fe4 | CW307G | C63020 |
U36 | CuAl11Fe6Ni6 | CW308G | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
N29 | CuNi18Zn20 | CW409J | - |
N31 | CuNi7Zn39Pb3Mn2 | CW400J | - |
N32 | CuNi12Zn30Pb1 | CW406J | - |
N37 | CuNi18Zn19Pb1 | CW408J | - |
N48 | CuNi12Zn38Mn5Pb2 | CW407J | - |
eco N59® | CuNi9Zn41FeMn* | - | - |

Materials
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
K12 | Cu-HCP | CW021A | C10300 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K30 | Cu-OF | CW008A | C10200 | |
K32 | Cu-ETP | CW004A | C11000 | C1100 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K41 | CuNi1Pb1P* | - | C19150 / C19160 |
K52 | CuNi2Si | CW111C | C70260 |
K54 | CuNi2SiCr* | - | C81540 |
K60 | CuCr1Zr | CW106C | C18150 |
K61 | CuCr1Zr | CW106C | C18200 |
K65 | CuFe2P | CW107C | C19400 |
K81 | CuSn0,15 | CW117C | C14415 |
KC1 | CuPb1P | CW113C | C18700 |
eco KS2® | CuSP | CW114C | C14700 |
eco KS4® | CuNi1SP* | - | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K55 | CuNi3Si1Mg* | - | C70250 |
K88 | CuCrAgFeTiSi* | - | C18080 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
Z11 | CuZn35Pb1 | CW600N | C34000 | |
Z12 | CuZn35Pb2 | CW601N | C34200 / C34500 | |
Z14 | CuZn37Pb2 | CW606N | C35300 | |
Z21 | CuZn38Pb2 | CW608N | C3713 | |
Z23 | CuZn36Pb3 | CW603N | C36000 | |
Z29 | CuZn39Pb2 | CW612N | C37700 | |
Z31 | CuZn40Pb2 | CW617N | C38000 | |
Z32 | CuZn39Pb3 | CW614N | C38500 | |
Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z40 | CuZn43Pb2Al | CW624N | - | |
Z41 | CuZn40Pb2 | CW617N | C38000 | |
Z43 | CuZn33Pb1AlSiAs | CW725R | - | |
Z45 | CuZn36Pb2As | CW602N | C35330 | |
Z46 | CuZn36Pb2As | CW602N | C35330 | |
Z48 | CuZn40Pb2 | CW617N | C38000 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L30 | CuNi30Mn1Fe | CW354H | C71500 |
eco LV3® | CuNi9Sn6* | - | C72700 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
M10 | CuZn10 | CW501L | C22000 | C2200 |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M20 | CuZn20 | CW503L | C24000 | C2400 |
M30/M34 | CuZn30 | CW505L | C26000 | C2600 |
M36 | CuZn36 | CW507L | C26800 / C27000 | C2700 |
M37/M38 | CuZn37 | CW508L | C27200 | C2720 |
eco M41® | CuZn38As | CW511L | C27453 | |
eco M57® | CuZn42 | CW510L | - | |
eco M58® | CuZn42 | CW510L | - | |
eco M59® | CuZn42 | CW510L | - | |
eco M60® | CuZn40 | CW509L | C27450 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
eco S34® | CuZn34Mn2SiAlNi* | - | C67340 |
eco SW1® | CuZn21Si3P | CW724R | C69300 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
B06 | CuSn6 | CW452K | C51900 |
B09/B10 | CuSn8 | CW453K | C52100 |
B09/B10 | CuSn8 | CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B44 | CuSn4Pb4Zn4 | CW456K | C54400 |
B45 | CuSn4Pb4Zn4 | CW456K | C54400 |
BV9 | CuSn6 | CW452K | C51900 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
U35 | CuAl10Ni5Fe4 | CW307G | C63020 |
U36 | CuAl11Fe6Ni6 | CW308G | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
N29 | CuNi18Zn20 | CW409J | - |
N31 | CuNi7Zn39Pb3Mn2 | CW400J | - |
N32 | CuNi12Zn30Pb1 | CW406J | - |
N37 | CuNi18Zn19Pb1 | CW408J | - |
N48 | CuNi12Zn38Mn5Pb2 | CW407J | - |
eco N59® | CuNi9Zn41FeMn* | - | - |

Materials
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
K12 | Cu-HCP | CW021A | C10300 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K30 | Cu-OF | CW008A | C10200 | |
K32 | Cu-ETP | CW004A | C11000 | C1100 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K41 | CuNi1Pb1P* | - | C19150 / C19160 |
K52 | CuNi2Si | CW111C | C70260 |
K54 | CuNi2SiCr* | - | C81540 |
K60 | CuCr1Zr | CW106C | C18150 |
K61 | CuCr1Zr | CW106C | C18200 |
K65 | CuFe2P | CW107C | C19400 |
K81 | CuSn0,15 | CW117C | C14415 |
KC1 | CuPb1P | CW113C | C18700 |
eco KS2® | CuSP | CW114C | C14700 |
eco KS4® | CuNi1SP* | - | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K55 | CuNi3Si1Mg* | - | C70250 |
K88 | CuCrAgFeTiSi* | - | C18080 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
Z11 | CuZn35Pb1 | CW600N | C34000 | |
Z12 | CuZn35Pb2 | CW601N | C34200 / C34500 | |
Z14 | CuZn37Pb2 | CW606N | C35300 | |
Z21 | CuZn38Pb2 | CW608N | C3713 | |
Z23 | CuZn36Pb3 | CW603N | C36000 | |
Z29 | CuZn39Pb2 | CW612N | C37700 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z31/Z41/Z48 | CuZn40Pb2 | CW617N | C38000 | |
Z32/Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z32/Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z40 | CuZn43Pb2Al | CW624N | - | |
Z43 | CuZn33Pb1AlSiAs | CW725R | - | |
Z45 | CuZn36Pb2As | CW602N | C35330 | |
Z46 | CuZn36Pb2As | CW602N | C35330 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L30 | CuNi30Mn1Fe | CW354H | C71500 |
eco LV3® | CuNi9Sn6* | - | C72700 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
M10 | CuZn10 | CW501L | C22000 | C2200 |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M20 | CuZn20 | CW503L | C24000 | C2400 |
M30/M34 | CuZn30 | CW505L | C26000 | C2600 |
M36 | CuZn36 | CW507L | C26800 / C27000 | C2700 |
M37/M38 | CuZn37 | CW508L | C27200 | C2720 |
eco M41® | CuZn38As | CW511L | C27453 | |
eco M57® | CuZn42 | CW510L | - | |
eco M58® | CuZn42 | CW510L | - | |
eco M59® | CuZn42 | CW510L | - | |
eco M60® | CuZn40 | CW509L | C27450 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
eco S34® | CuZn34Mn2SiAlNi* | - | C67340 |
eco SW1® | CuZn21Si3P | CW724R | C69300 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
B06 | CuSn6 | CW452K | C51900 |
B09/B10 | CuSn8 | CW453K | C52100 |
B09/B10 | CuSn8 | CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B44 | CuSn4Pb4Zn4 | CW456K | C54400 |
B45 | CuSn4Pb4Zn4 | CW456K | C54400 |
BV9 | CuSn6 | CW452K | C51900 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
U35 | CuAl10Ni5Fe4 | CW307G | C63020 |
U36 | CuAl11Fe6Ni6 | CW308G | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
N29 | CuNi18Zn20 | CW409J | - |
N31 | CuNi7Zn39Pb3Mn2 | CW400J | - |
N32 | CuNi12Zn30Pb1 | CW406J | - |
N37 | CuNi18Zn19Pb1 | CW408J | - |
N48 | CuNi12Zn38Mn5Pb2 | CW407J | - |
eco N59® | CuNi9Zn41FeMn* | - | - |

Materials
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
K12 | Cu-HCP | CW021A | C10300 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K20/K21/K28 | Cu-DHP | CW024A | C12200 | |
K30 | Cu-OF | CW008A | C10200 | |
K32 | Cu-ETP | CW004A | C11000 | C1100 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K41 | CuNi1Pb1P* | - | C19150 / C19160 |
K52 | CuNi2Si | CW111C | C70260 |
K54 | CuNi2SiCr* | - | C81540 |
K60 | CuCr1Zr | CW106C | C18150 |
K61 | CuCr1Zr | CW106C | C18200 |
K65 | CuFe2P | CW107C | C19400 |
K81 | CuSn0,15 | CW117C | C14415 |
KC1 | CuPb1P | CW113C | C18700 |
eco KS2® | CuSP | CW114C | C14700 |
eco KS4® | CuNi1SP* | - | - |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
K55 | CuNi3Si1Mg* | - | C70250 |
K88 | CuCrAgFeTiSi* | - | C18080 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
Z11 | CuZn35Pb1 | CW600N | C34000 | |
Z12 | CuZn35Pb2 | CW601N | C34200 / C34500 | |
Z14 | CuZn37Pb2 | CW606N | C35300 | |
Z21 | CuZn38Pb2 | CW608N | C3713 | |
Z23 | CuZn36Pb3 | CW603N | C36000 | |
Z29 | CuZn39Pb2 | CW612N | C37700 | |
Z31 | CuZn40Pb2 | CW617N | C38000 | |
Z32 | CuZn39Pb3 | CW614N | C38500 | |
Z33 | CuZn39Pb3 | CW614N | C38500 | |
Z40 | CuZn43Pb2Al | CW624N | - | |
Z41 | CuZn40Pb2 | CW617N | C38000 | |
Z43 | CuZn33Pb1AlSiAs | CW725R | - | |
Z45 | CuZn36Pb2As | CW602N | C35330 | |
Z46 | CuZn36Pb2As | CW602N | C35330 | |
Z48 | CuZn40Pb2 | CW617N | C38000 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L10/L13/L15 | CuNi10Fe1Mn | CW352H | C70600 |
L30 | CuNi30Mn1Fe | CW354H | C71500 |
eco LV3® | CuNi9Sn6* | - | C72700 |
Wieland | EN Designation | EN No. | ASTM UNS-No. | JIS-No. |
---|---|---|---|---|
M10 | CuZn10 | CW501L | C22000 | C2200 |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M15/M16/M17 | CuZn15 | CW502L | C23000 | |
M20 | CuZn20 | CW503L | C24000 | C2400 |
M30/M34 | CuZn30 | CW505L | C26000 | C2600 |
M30/M34 | CuZn30 | CW505L | C26000 | C2600 |
M36 | CuZn36 | CW507L | C26800 / C27000 | C2700 |
M37/M38 | CuZn37 | CW508L | C27200 | C2720 |
eco M41® | CuZn38As | CW511L | C27453 | |
eco M57® | CuZn42 | CW510L | - | |
eco M58® | CuZn42 | CW510L | - | |
eco M59® | CuZn42 | CW510L | - | |
eco M60® | CuZn40 | CW509L | C27450 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
S40 | CuZn37Mn3Al2PbSi | CW713R | C67420 |
eco S34® | CuZn34Mn2SiAlNi* | - | C67340 |
eco SW1® | CuZn21Si3P | CW724R | C69300 |
Wieland | EN Designation | EN No. | ASTM UNS-No. |
---|---|---|---|
B06 | CuSn6 | CW452K | C51900 |
B09/B10 | CuSn8 | CW453K | C52100 |
B09/B10 | CuSn8 | CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B12/B21 | CuSn8P/CuSn8 | CW459K/CW453K | C52100 |
B44 | CuSn4Pb4Zn4 | CW456K | C54400 |
B45 |