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EP1157140A1 - Use of zinc alloys - Google Patents

Use of zinc alloys

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Publication number
EP1157140A1
EP1157140A1 EP99960970A EP99960970A EP1157140A1 EP 1157140 A1 EP1157140 A1 EP 1157140A1 EP 99960970 A EP99960970 A EP 99960970A EP 99960970 A EP99960970 A EP 99960970A EP 1157140 A1 EP1157140 A1 EP 1157140A1
Authority
EP
European Patent Office
Prior art keywords
zinc
weight
ppm
alloys
sheets
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP99960970A
Other languages
German (de)
French (fr)
Other versions
EP1157140B1 (en
Inventor
Michael Knepper
Jochen Spriestersbach
Andrea Winkels
Jürgen Wisniewski
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Grillo Werke AG
Original Assignee
Grillo Werke AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Application filed by Grillo Werke AG filed Critical Grillo Werke AG
Priority to SI9930136T priority Critical patent/SI1157140T1/en
Publication of EP1157140A1 publication Critical patent/EP1157140A1/en
Application granted granted Critical
Publication of EP1157140B1 publication Critical patent/EP1157140B1/en
Anticipated expiration legal-status Critical
Revoked legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/12Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements of metal or with an outer layer of metal or enameled metal
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/02Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
    • E04C2/08Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of metal, e.g. sheet metal

Definitions

  • the present invention relates to the use of zinc alloys as construction zinc for strips and sheets.
  • strips and sheets made of alloyed zinc for construction purposes contain, apart from zinc, a content of 99.99% 0.005 to 0.05% by weight aluminum and additions of 0.05 to 0.2% by weight titanium and copper.
  • This alloy is described, for example, in DE 17 58 498 and corresponds to DIN 17 770, part 1.
  • This material is generally produced using the casting-rolling process, in which strips are produced in predetermined thicknesses in an uninterrupted ner-process step (melting - casting - rolling - winding), which are then cut into narrow strips or sheets on scissor lines.
  • This material is very stable in the atmosphere.
  • the surface initially reacts with the oxygen in the air to form zinc oxide.
  • the action of water then forms zinc hydroxide, which is converted into a dense, firmly adhering and water-insoluble cover layer of basic zinc carbonate by reaction with the carbon dioxide in the air.
  • This protective layer is also responsible for the high corrosion resistance of such strips and sheets.
  • the underside of the zinc strips and tablets In contrast to the behavior of the surface of the zinc facing the free atmosphere, the following applies to the underside of the zinc strips and tablets, ie to that of the Weather-facing side, other criteria. If, in addition, the underside of the zinc strips and sheets is exposed to moisture or condensed water for a long period due to inadequate ventilation, increased corrosion due to these structural and installation errors must be expected. Such water inclusions, water ingress and condensation eventually lead to point-by-point deep corrosion (pitting), which can spread out in areas.
  • DD-4822 discloses the use of zinc aluminum alloys which contain 1 to 63% aluminum and 99 to 37% zinc, which are made suitable by a special heat treatment for objects with high resilience, ie the so-called superplastic behavior. This is important for the drawing of wires as well as rolling, extrusion, forging, deep drawing of metal sheets and when bending. There are none Indications of the corrosion behavior of these alloys and thus their usability as construction zinc for strips and sheets.
  • DE-30 07 850 C describes the use of a zinc alloy as a powder for mechanical plating. In addition to improved corrosion resistance, above all a perfect adhesion of the coating to the base should be achieved. It is therefore another use than that of these alloys as construction zinc for beams and sheets.
  • the task of providing strips and sheets of alloyed zinc as building zinc that meet even higher requirements is now achieved by adjusting the aluminum content in particular to 5 to 35% by weight, preferably 5 to 20% by weight. , in particular 8 to 15% by weight. Further improvements are achieved by alloying 0.002 to 0.04% by weight indium and / or 0.002 to 0.04% by weight calcium and / or 0.002 to 0.4% by weight titanium and / or 0.05 to 0.8% by weight of manganese. Copper, iron and lead should only be included in the amounts that are inevitable as contamination of the zinc and aluminum. Further improvements in the properties are possible with 3 to 100 ppm boron, 3 to 100 ppm carbon, 3 to 50 ppm magnesium, 2 to 500 ppm vanadium, 2 to 500 ppm silicon and / or 2 to 500 ppm nickel.
  • the improved properties of the alloys used according to the invention result from comparative corrosion tests with the salt spray test according to DIN 500 21-ss (aging 7 and 14 days) and the denswasser / S0 2 test according to DIN 50 018 KFW 0.2s (aging 22 cycles). After aging, the changes in mass and the visual appearance of the corrosion of the sheets are determined.
  • the preferably alloyed elements indium, calcium, titanium and manganese mainly affect the mechanical properties, but also improve the corrosion behavior. Particularly good results are achieved with alloys with an aluminum content of 5 to 20% by weight aluminum, the range from 8 to 15% by weight aluminum being particularly preferred.
  • Impurities of more than 0.1% by weight of copper and more than 0.1% by weight of iron lead to deteriorated mechanical properties and, in particular, increase intergranular corrosion. These metals and other impurities should therefore only be present in the usual unavoidable amounts.
  • indium, calcium, titanium and manganese can be increased in principle, but this only leads to an unnecessary increase in the cost of the material without significantly improving the properties.
  • the strips and sheets that can be used as construction zinc can be produced by the usual casting-rolling process.
  • all zinc qualities according to EN 1179 can be used as zinc qualities, with the zinc grade ZI being preferred because it contains relatively little lead, iron and copper.
  • Aluminum as an alloy component is preferably used in the qualities according to EN 576.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Prevention Of Electric Corrosion (AREA)
  • Manufacture And Refinement Of Metals (AREA)
  • Preventing Corrosion Or Incrustation Of Metals (AREA)
  • Glass Compositions (AREA)
  • Laminated Bodies (AREA)

Abstract

The present invention relates to zinc alloys that contain between 5 and 35 wt % of aluminium as well as other optional alloy components, wherein said zinc alloys can be used as construction zinc for bands or tables.

Description

Verwendung von Zinklegierungen Use of zinc alloys
Gegenstand der vorliegenden Erfindung ist die Verwendung von Zinklegierungen als Bauzink für Bänder und Tafeln.The present invention relates to the use of zinc alloys as construction zinc for strips and sheets.
Bänder und Tafeln aus legiertem Zink für Bauzwecke enthalten bisher außer Zink mit einem Gehalt von 99,99% 0,005 bis 0,05 Gew.-% Aluminium sowie Zusätze von 0,05 bis 0,2 Gew.-% Titan und Kupfer. Diese Legierung ist beispielsweise beschrieben in der DE 17 58 498 und entspricht der DIN 17 770, Teil 1.To date, strips and sheets made of alloyed zinc for construction purposes contain, apart from zinc, a content of 99.99% 0.005 to 0.05% by weight aluminum and additions of 0.05 to 0.2% by weight titanium and copper. This alloy is described, for example, in DE 17 58 498 and corresponds to DIN 17 770, part 1.
Die Herstellung dieses Werkstoffs erfolgt im allgemeinen unter Anwendung der Gieß- Walz-Verfahrens, bei dem in einem ununterbrochenen Nerfahrensgang (Schmelzen - Gießen - Walzen - Aufwickeln) Bänder in vorgegebenen Dicken hergestellt werden, die anschließend auf Scherenlinien zu Schmalbänder oder Tafeln geschnitten werden.This material is generally produced using the casting-rolling process, in which strips are produced in predetermined thicknesses in an uninterrupted ner-process step (melting - casting - rolling - winding), which are then cut into narrow strips or sheets on scissor lines.
Dieser Werkstoff ist in der Atmosphäre gut beständig. Die Oberfläche reagiert zunächst unter Bildung von Zinkoxid mit dem Sauerstoff in der Luft. Durch Einwirkung von Wasser bildet sich dann Zinkhydroxid, welches durch Reaktion mit dem Kohlendioxid der Luft zu einer dichten, festhaftenden und wasserunlöslichen Deckschicht aus basischem Zinkkarbonat umgewandelt wird. Diese Schutzschicht ist auch verantwortlich für den hohen Korrosionswiderstand derartiger Bänder und Tafeln.This material is very stable in the atmosphere. The surface initially reacts with the oxygen in the air to form zinc oxide. The action of water then forms zinc hydroxide, which is converted into a dense, firmly adhering and water-insoluble cover layer of basic zinc carbonate by reaction with the carbon dioxide in the air. This protective layer is also responsible for the high corrosion resistance of such strips and sheets.
Im Gegensatz zum Verhalten der der freien Atmosphäre zugewandten Oberfläche des Zinks gelten an der Unterseite der Zinkbänder und -tafeln, d.h. auf der von den Witterungseinflüssen abgewandten Seite, andere Kriterien. Wird darüber hinaus die Unterseite der Zinkbänder und -tafeln durch Feuchtigkeit oder Kondenswasser infolge mangelhafter Be- und Entlüftung über einen längeren Zeitraum belastet, muß, verursacht durch diese bauphysikalischen und verlegungstechnische Fehler, mit verstärkter Korrosion gerechnet werden. Derartige Wassereinschlüsse, Wassereinbrüche und Tauwasser führen schließlich zu einer punktweisen Tiefenkorrosion (Lochfraß), die sich flächenförmig ausbreiten kann.In contrast to the behavior of the surface of the zinc facing the free atmosphere, the following applies to the underside of the zinc strips and tablets, ie to that of the Weather-facing side, other criteria. If, in addition, the underside of the zinc strips and sheets is exposed to moisture or condensed water for a long period due to inadequate ventilation, increased corrosion due to these structural and installation errors must be expected. Such water inclusions, water ingress and condensation eventually lead to point-by-point deep corrosion (pitting), which can spread out in areas.
Um diese Folgen zu vermeiden, ist für eine ausreichende Be- und Entlüftung der Unterkonstruktion von Zinkband- oder -tafeldeckungen zu sorgen, indem die Vorschriften und Bestimmungen der VOB und DIN-Normen sowie Fachregeln des Handwerks und Verordnungen der Baubehörden beachtet werden.In order to avoid these consequences, adequate ventilation of the substructure of zinc tape or sheet coverings must be ensured by observing the regulations and provisions of the VOB and DIN standards as well as specialist rules of the trade and ordinances of the building authorities.
Gestiegene ökologische Anforderungen an die Beständigkeit dieser Werkstoffe haben die Aufgabe gestellt, Werkstoffe zu entwickeln mit vergleichbaren mechanischen Eigenschaften, die jedoch deutlich günstigere Korrosionseigenschaften aufweisen. Die bisher verwendeten Bänder und Tafeln verlieren als Bauzink 4 bis 5 μm pro Jahr.Increased ecological requirements for the durability of these materials have given rise to the task of developing materials with comparable mechanical properties, but which have significantly more favorable corrosion properties. The strips and sheets previously used lose 4 to 5 μm per year as building zinc.
Ein derartig verbessertes Material ist beschrieben in der DE-A-195 45 487, welches sich durch ein Kupfergehalt von 0,02 bis 0,075 Gew.-% und ein Mangangehalt von 0,075 bis 0,75 Gew.-% auszeichnet. Die Erprobung dieses Materials hat jedoch ergeben, daß, trotz der nicht unerheblichen Verbesserungen, die Anforderungen in der Praxis an ein derartiges Material noch bei weitem nicht erfüllt sind.Such an improved material is described in DE-A-195 45 487, which is characterized by a copper content of 0.02 to 0.075% by weight and a manganese content of 0.075 to 0.75% by weight. However, testing of this material has shown that, despite the not inconsiderable improvements, the requirements in practice for such a material are still far from being met.
Aus der DD-4822 ist die Verwendung von Zmkaluminium-Legierungen bekannt, die 1 bis 63 % Aluminium und 99 bis 37 % Zink enthalten, welche durch eine spezielle Wärmebehandlung geeignet gemacht werden für Gegenstände mit hohem Formänderungsvermögen, d.h. dem sogenannten superplastischen Verhalten. Dies ist von Bedeutung für das Ziehen von Drähten sowie das Walzen, Strangpressen, Schmieden, Tiefziehen von Blechen sowie beim Biegen. Es finden sich keine Hinweise auf das Korrosionsverhalten dieser Legierungen und damit die Verwendbarkeit als Bauzink für Bänder und Tafeln.DD-4822 discloses the use of zinc aluminum alloys which contain 1 to 63% aluminum and 99 to 37% zinc, which are made suitable by a special heat treatment for objects with high resilience, ie the so-called superplastic behavior. This is important for the drawing of wires as well as rolling, extrusion, forging, deep drawing of metal sheets and when bending. There are none Indications of the corrosion behavior of these alloys and thus their usability as construction zinc for strips and sheets.
Die DE-30 07 850 C beschreibt die Verwendung einer Zinklegierung als Pulver für das mechanische Plattieren. Dabei soll außer verbesserter Korrosionsbeständigkeit vor allen Dingen eine einwandfreie Haftung des Überzuges auf der Unterlage erzielt werden. Es handelt sich somit wiederum um eine andere Verwendung als die dieser Legierungen als Bauzink für Träger und Tafeln.DE-30 07 850 C describes the use of a zinc alloy as a powder for mechanical plating. In addition to improved corrosion resistance, above all a perfect adhesion of the coating to the base should be achieved. It is therefore another use than that of these alloys as construction zinc for beams and sheets.
Die DE 914 785 beschreibt eine Lagerlegierung aus Zink, Aluminium sowie weiteren Komponenten, wobei der Gehalt an Kupfer und/oder Mangan etwa 1 % betragen soll. Diese Legierungen sind für Lager- und als Knetlegierungen verwendbar. Dies sind völlig andere Aufgabenstellungen als die Verwendung von Zinklegierungen als Bauzink für Bänder und Tafeln.DE 914 785 describes a bearing alloy made of zinc, aluminum and other components, the content of copper and / or manganese should be about 1%. These alloys can be used for storage and as wrought alloys. These are completely different tasks than the use of zinc alloys as construction zinc for strips and sheets.
Die Aufgabe, Bänder und Tafeln aus legiertem Zink als Bauzink zur Verfügung zu stellen, die noch höheren Anforderungen genügen, wird jetzt dadurch gelöst, dass vor allem der Aluminiumgehalt eingestellt wird auf 5 bis 35 Gew.-%, vorzugsweise 5 bis 20 Gew.%, insbesondere 8 bis 15 Gew.%. Weitere Verbesserungen werden erzielt durch Zulegieren von 0,002 bis 0,04 Gew.-% Indium und/oder 0,002 bis 0,04 Gew.-% Calcium und/oder 0,002 bis 0,4 Gew.-% Titan und/oder 0,05 bis 0,8 Gew.-% Mangan. Kupfer, Eisen und Blei sollten nur in den Mengen enthalten sein, die als Verunreinigung des Zinks und Aluminiums unvermeidlich sind. Weitere Verbesserungen der Eigenschaften sind möglich durch 3 bis 100 ppm Bor, 3 bis 100 ppm Kohlenstoff, 3 bis 50 ppm Magnesium, 2 bis 500 ppm Vanadium, 2 bis 500 ppm Silicium und/oder 2 bis 500 ppm Nickel.The task of providing strips and sheets of alloyed zinc as building zinc that meet even higher requirements is now achieved by adjusting the aluminum content in particular to 5 to 35% by weight, preferably 5 to 20% by weight. , in particular 8 to 15% by weight. Further improvements are achieved by alloying 0.002 to 0.04% by weight indium and / or 0.002 to 0.04% by weight calcium and / or 0.002 to 0.4% by weight titanium and / or 0.05 to 0.8% by weight of manganese. Copper, iron and lead should only be included in the amounts that are inevitable as contamination of the zinc and aluminum. Further improvements in the properties are possible with 3 to 100 ppm boron, 3 to 100 ppm carbon, 3 to 50 ppm magnesium, 2 to 500 ppm vanadium, 2 to 500 ppm silicon and / or 2 to 500 ppm nickel.
Die verbesserten Eigenschaften der erfindungsgemäß verwendeten Legierungen ergeben sich durch vergleichende Korrosionsuntersuchungen mit dem Salzsprühtest nach DIN 500 21- ss (Auslagerung 7 und 14 Tagen) sowie dem Kon- denswasser/S02-Test nach DIN 50 018 KFW 0,2s (Auslagerung 22 Zyklen). Nach der Auslagerung werden die Massenveränderungen und das optische Erscheinungsbild der Korrosion der Bleche ermittelt.The improved properties of the alloys used according to the invention result from comparative corrosion tests with the salt spray test according to DIN 500 21-ss (aging 7 and 14 days) and the denswasser / S0 2 test according to DIN 50 018 KFW 0.2s (aging 22 cycles). After aging, the changes in mass and the visual appearance of the corrosion of the sheets are determined.
Es wurde dabei festgestellt, dass im Salzsprühtest die erfindungsgemäßen Tafeln und Bänder eine deutlich verbesserte Korrosionsbeständigkeit gegenüber den bisher eingesetzten Feinzinklegierungen aufweisen, was sich in einem um eine Zehnerpotenz verringerten Abtrag zeigt. Im Kondenswassertest- S02-Test nach DIN 50 018 KFW 0,2s wurde ebenfalls eine deutlich verbesserte Korrosionsbeständigkeit gegenüber bisher eingesetzten Feinzinklegierungen nachgewiesen.It was found that in the salt spray test the sheets and strips according to the invention have a significantly improved corrosion resistance compared to the fine zinc alloys used hitherto, which is shown by a reduction in power of ten. In the condensate test S0 2 test according to DIN 50 018 KFW 0.2s, a significantly improved corrosion resistance compared to previously used fine zinc alloys was also demonstrated.
Vergleichende Untersuchungen im Salzsprühtext nach DIN 50 021-ss im Vergleich zu Feinzinklegierungen I und II in der DE-A-195 45 487 haben ergeben, daß der Massenverlust um mindestens weitere 80% gesenkt werden kann. Im S02-Test nach DIN 50 018 KFW 0,2s sinkt der Massenverlust gegenüber diesen Legierungen um mindestens weitere 70%.Comparative investigations in the salt spray text according to DIN 50 021-ss compared to fine zinc alloys I and II in DE-A-195 45 487 have shown that the loss of mass can be reduced by at least another 80%. In the S0 2 test according to DIN 50 018 KFW 0.2s, the mass loss compared to these alloys decreases by at least another 70%.
Von besonderer Bedeutung ist, dass bei den erfindungsgemäßen Legierungen die Gefahr einer punktweisen Tiefenkorrosion als Folge bauphysikalischer Fehler und/oder nicht fachgerechter Verlegung deutlich gesenkt wird und dass ein Verlust von Metall minimiert werden kann. Es wird somit auch der Eintrag von ausgewaschenen Metallen in die Umgebung deutlich verringert. Dieses wird beispielsweise von den niederländischen Behörden gefordert.It is of particular importance that the risk of point-to-point deep corrosion as a result of structural-physical errors and / or improper laying is significantly reduced in the alloys according to the invention and that loss of metal can be minimized. The entry of washed-out metals into the environment is thus significantly reduced. This is demanded, for example, by the Dutch authorities.
Die vorzugsweise zulegierten Elemente Indium, Calcium, Titan und Mangan beeinflussen vor allem die mechanischen Eigenschaften, verbessern aber obendrein auch noch das Korrosionsverhalten. Besonders gute Ergebnisse werden erzielt bei Legierungen mit einem Aluminiumgehalt von 5 bis 20 Gew.-% Aluminium, wobei der Bereich von 8 bis 15 Gew.-% Aluminium besonders bevorzugt ist.The preferably alloyed elements indium, calcium, titanium and manganese mainly affect the mechanical properties, but also improve the corrosion behavior. Particularly good results are achieved with alloys with an aluminum content of 5 to 20% by weight aluminum, the range from 8 to 15% by weight aluminum being particularly preferred.
Verunreinigungen von mehr als 0,1 Gew.-% Kupfer und mehr als 0,1 Gew.-% Eisen führen zu verschlechterten mechanischen Eigenschaften und verstärken insbesondere die interkristalline Korrosion. Diese Metalle und sonstige Verunreinigungen sollten somit nur in den üblichen unvermeidbaren Mengen vorhanden sein.Impurities of more than 0.1% by weight of copper and more than 0.1% by weight of iron lead to deteriorated mechanical properties and, in particular, increase intergranular corrosion. These metals and other impurities should therefore only be present in the usual unavoidable amounts.
Der Gehalt an Indium, Calcium, Titan und Mangan kann zwar prinzipiell erhöht werden, jedoch führt dies nur zu einer unnötigen Verteuerung des Materials, ohne die Eigenschaften noch merklich zu verbessern.The content of indium, calcium, titanium and manganese can be increased in principle, but this only leads to an unnecessary increase in the cost of the material without significantly improving the properties.
Die als Bauzink verwendbaren Bänder und Tafeln können durch das übliche Gießen- Walz- Verfahren hergestellt werden. Als Zinkqualitäten können prinzipiell alle Zinkqualitäten gemäß EN 1179 verwendet werden, wobei die Zinksorte ZI bevorzugt ist, da sie relativ wenig Blei, Eisen und Kupfer enthält.The strips and sheets that can be used as construction zinc can be produced by the usual casting-rolling process. In principle, all zinc qualities according to EN 1179 can be used as zinc qualities, with the zinc grade ZI being preferred because it contains relatively little lead, iron and copper.
Aluminium als Legierungskomponente wird vorzugsweise eingesetzt in den Qualitäten gemäß EN 576. Aluminum as an alloy component is preferably used in the qualities according to EN 576.

Claims

Patentansprüche claims
1. Verwendung von Zinklegierungen mit 5 bis 35 Gew.% Aluminium sowie gegebenenfalls weiteren Legierungskomponenten als Bauzink für Bänder und Tafeln.1. Use of zinc alloys with 5 to 35% by weight of aluminum and, if appropriate, further alloy components as construction zinc for strips and sheets.
2. Verwendung gemass Anspruch 1, gekennzeichnet durch einen Aluminiumgehalt von 5 bis 20, vorzugsweise 8 bis 15 Gew.%.2. Use according to claim 1, characterized by an aluminum content of 5 to 20, preferably 8 to 15 wt.%.
3. Verwendung gemass den Ansprüchen 1 oder 2, gekennzeichnet durch:3. Use according to claims 1 or 2, characterized by:
0,002 bis 0,04 Gew.% Indium und/oder0.002 to 0.04% by weight indium and / or
0,002 bis 0,04 Gew.% Calcium und/oder0.002 to 0.04% by weight calcium and / or
0,002 bis 0,4 Gew.% Titan und/oder0.002 to 0.4% by weight of titanium and / or
0,05 bis 0,8 Gew.% Mangan,0.05 to 0.8% by weight of manganese,
als weitere Legierungskomponenten.as further alloy components.
4. Verwendung gemäß einem der Ansprüche 1 bis 3, gekennzeichnet durch 3 bis 100 ppm Bor, 3 bis 100 ppm Kohlenstoff, 3 bis 50 ppm Magnesium, 2 bis 500 ppm Vanadium und 2 bis 500 ppm Silicium und/oder 2 bis 500 ppm Nickel als weitere Legierungskomponenten. 4. Use according to one of claims 1 to 3, characterized by 3 to 100 ppm boron, 3 to 100 ppm carbon, 3 to 50 ppm magnesium, 2 to 500 ppm vanadium and 2 to 500 ppm silicon and / or 2 to 500 ppm nickel as further alloy components.
EP99960970A 1998-11-17 1999-11-11 Use of zinc alloys Revoked EP1157140B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI9930136T SI1157140T1 (en) 1998-11-17 1999-11-11 Use of zinc alloys

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE19852987 1998-11-17
DE19852987 1998-11-17
PCT/EP1999/008664 WO2000029630A1 (en) 1998-11-17 1999-11-11 Use of zinc alloys

Publications (2)

Publication Number Publication Date
EP1157140A1 true EP1157140A1 (en) 2001-11-28
EP1157140B1 EP1157140B1 (en) 2002-08-14

Family

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Application Number Title Priority Date Filing Date
EP99960970A Revoked EP1157140B1 (en) 1998-11-17 1999-11-11 Use of zinc alloys

Country Status (8)

Country Link
EP (1) EP1157140B1 (en)
AT (1) ATE222298T1 (en)
DE (1) DE59902386D1 (en)
DK (1) DK1157140T3 (en)
ES (1) ES2182587T3 (en)
PL (1) PL190116B1 (en)
PT (1) PT1157140E (en)
WO (1) WO2000029630A1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2302084A1 (en) * 2009-06-29 2011-03-30 Grillo-Werke AG Zinc alloy with improved mechanical-chemical characteristics

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE715511C (en) * 1937-02-02 1941-12-23 Metallgesellschaft Ag Use of zinc alloys for deep drawing purposes
GB2046302A (en) * 1979-03-02 1980-11-12 Mitsui Mining & Smelting Co Zinc alloy powder
JPS607018B2 (en) * 1979-08-27 1985-02-21 財団法人電気磁気材料研究所 Aluminum-based vibration absorbing alloy with large damping capacity and its manufacturing method
US4808243A (en) * 1982-12-20 1989-02-28 Mitsubishi Metal Corporation High damping zinc alloy with good intergranular corrosion resistance and high strength at both room and elevated temperatures
JPH10176256A (en) * 1996-10-14 1998-06-30 Nkk Corp Plated steel sheet for steel house member
JP3617234B2 (en) * 1997-02-21 2005-02-02 Jfeスチール株式会社 Hot-dip Zn-Al alloy plated steel sheet with excellent surface smoothness and method for producing the same

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO0029630A1 *

Also Published As

Publication number Publication date
DE59902386D1 (en) 2002-09-19
ATE222298T1 (en) 2002-08-15
PL190116B1 (en) 2005-11-30
DK1157140T3 (en) 2002-12-02
EP1157140B1 (en) 2002-08-14
PT1157140E (en) 2002-12-31
WO2000029630A1 (en) 2000-05-25
ES2182587T3 (en) 2003-03-01
PL348762A1 (en) 2002-06-03

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