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PT_TD_lang (array):
vmAttributes (array):0 = '<table class="ewmPimTechData detail_table" data-date="2024-12-18 23:34:27" data-mainWp="" data-voltages="0" data-tablename="SZW_Kurzform" data-productid="22676"><tbody><tr data-fieldname=\'Normen_Coll\'><td class=\'td1\'>Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr data-fieldname=\'Normen_Coll\'><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr data-fieldname=\'Schweisspositionen\'><td class=\'td1\'>Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr data-fieldname=\'Einstellbereich_Schweissstrom_Schweissverfahren\'><td class=\'td1\'>Polarity</td><td><span title="">DC+</span> </td></tr><tr data-fieldname=\'Durchmesser_Coll\'><td class=\'td1\'>Ø</td><td>0.8 mm</td></tr><tr data-fieldname=\'Analyse_Werkstoff_Anteil_Coll\'><td class=\'td1\'>Chemical analysis (in %)</td><td><table><tbody><tr><td>Al</td><td>Mn</td><td>Ni</td><td>Cu</td><td>Others</td></tr><tr><td>7.5 % - 8 %</td><td>0.1 % - 0.3 %</td><td>0.1 % - 0.5 %</td><td>Remainder</td><td>max. 0.5 %</td></tr></tbody></table></td></tr><tr data-fieldname=\'Gas_Art_Name\'><td class=\'td1\'>Shielding gas</td><td><span title="">I1</span> </td></tr><tr data-fieldname=\'Zugfestigkeit_Coll\'><td class=\'td1\'>Tensile strength, Rm</td><td>430 MPa</td></tr><tr data-fieldname=\'Dehnung\'><td class=\'td1\'>Expansion, A5</td><td><span title="">40</span> %</td></tr><tr data-fieldname=\'Kerbschlagarbeit_Coll\'><td class=\'td1\'>Impact energy, Av</td><td>20 °C: 100 J</td></tr><tr data-fieldname=\'spulentyp\'><td class=\'td1\'>Packing drum</td><td><span title="">S200</span> </td></tr><tr data-fieldname=\'Gewicht_Coll\'><td class=\'td1\'>Weight</td><td>5 kg</td></tr><tr data-fieldname=\'Haerte_Coll\'><td class=\'td1\'>Hardness</td><td>100 HB</td></tr><tr data-fieldname=\'SZW_Werkstoffe_Wert\'><td class=\'td1\'>Base materials</td><td><span title="">CuAl5 | CuAl8 | CuAl9 | CuZn20Al</span> </td></tr></tbody></table>'
1 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>S200</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
2 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>0.8 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
3 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
4 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1.2 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
5 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1.6 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
6 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Drum Ø</td><td>510 mm</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>F200</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
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2 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>0.8 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
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6 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuAl7 (Cu 6100)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuAl-A1</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Drum Ø</td><td>510 mm</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>430 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 100 J</td></tr><tr><td class="td1">Packing drum</td><td>F200</td></tr><tr><td class="td1">Hardness</td><td>100 HB</td></tr><tr><td class="td1">Base materials</td><td>CuAl5 | CuAl8 | CuAl9 | CuZn20Al</td></tr></tbody></table>'
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4 = '{"Standards": "DIN EN ISO 24373 - CuAl7 (Cu 6100)","": "AWS A-5.7 - ER CuAl-A1","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1.2 mm","Chemical analysis (in %)": "Al : 7.5 % - 8 % : Mn : 0.1 % - 0.3 % : Ni : 0.1 % - 0.5 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "430 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 100 J","Packing drum": "B300","Hardness": "100 HB","Base materials": "CuAl5 | CuAl8 | CuAl9 | CuZn20Al"}'
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vmAttributes (array):0 = '<table class="ewmPimTechData detail_table" data-date="2024-12-17 10:31:00" data-mainWp="" data-voltages="0" data-tablename="SZW_Kurzform" data-productid="22671"><tbody><tr data-fieldname=\'Normen_Coll\'><td class=\'td1\'>Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr data-fieldname=\'Normen_Coll\'><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr data-fieldname=\'Schweisspositionen\'><td class=\'td1\'>Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr data-fieldname=\'Einstellbereich_Schweissstrom_Schweissverfahren\'><td class=\'td1\'>Polarity</td><td><span title="">DC+</span> </td></tr><tr data-fieldname=\'Durchmesser_Coll\'><td class=\'td1\'>Ø</td><td>0.8 mm</td></tr><tr data-fieldname=\'Analyse_Werkstoff_Anteil_Coll\'><td class=\'td1\'>Chemical analysis (in %)</td><td><table><tbody><tr><td>Si</td><td>Mn</td><td>Cu</td><td>Others</td></tr><tr><td>2.8 % - 2.95 %</td><td>0.75 % - 0.95 %</td><td>Remainder</td><td>max. 0.5 %</td></tr></tbody></table></td></tr><tr data-fieldname=\'Gas_Art_Name\'><td class=\'td1\'>Shielding gas</td><td><span title="">I1</span> </td></tr><tr data-fieldname=\'Zugfestigkeit_Coll\'><td class=\'td1\'>Tensile strength, Rm</td><td>350 MPa</td></tr><tr data-fieldname=\'Dehnung\'><td class=\'td1\'>Expansion, A5</td><td><span title="">40</span> %</td></tr><tr data-fieldname=\'Kerbschlagarbeit_Coll\'><td class=\'td1\'>Impact energy, Av</td><td>20 °C: 60 J</td></tr><tr data-fieldname=\'spulentyp\'><td class=\'td1\'>Packing drum</td><td><span title="">S200</span> </td></tr><tr data-fieldname=\'Gewicht_Coll\'><td class=\'td1\'>Weight</td><td>5 kg</td></tr><tr data-fieldname=\'Haerte_Coll\'><td class=\'td1\'>Hardness</td><td>80 HB</td></tr><tr data-fieldname=\'SZW_Werkstoffe_Wert\'><td class=\'td1\'>Base materials</td><td><span title="">CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</span> </td></tr></tbody></table>'
1 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>S200</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
2 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>0.8 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
3 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
4 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1.2 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
5 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Drum Ø</td><td>510 mm</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>F200</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
PT_TD_Vergl (array):1 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>S200</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
2 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>0.8 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
3 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
4 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Ø</td><td>1.2 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>B300</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
5 = '<table class="detail_table"><tbody><tr><td class="td1">Standards</td><td>DIN EN ISO 24373 - CuSi3Mn (Cu 6560)</td></tr><tr><td class="td1"/><td>AWS A-5.7 - ER CuSi-A</td></tr><tr><td class="td1"/><td>BS 2901 part 3</td></tr><tr><td class="td1"/><td>Material number</td></tr><tr><td class="td1">Welding positions</td><td>PA / PB / PC / PE / PF</td></tr><tr><td class="td1">Polarity</td><td>DC+</td></tr><tr><td class="td1">Drum Ø</td><td>510 mm</td></tr><tr><td class="td1">Ø</td><td>1 mm</td></tr><tr><td class="td1">Chemical analysis (in %)</td><td>Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %</td></tr><tr><td class="td1">Shielding gas</td><td>I1</td></tr><tr><td class="td1">Tensile strength, Rm</td><td>350 MPa</td></tr><tr><td class="td1">Expansion, A5</td><td>40 %</td></tr><tr><td class="td1">Impact energy, Av</td><td>20 °C / 60 J</td></tr><tr><td class="td1">Packing drum</td><td>F200</td></tr><tr><td class="td1">Hardness</td><td>80 HB</td></tr><tr><td class="td1">Base materials</td><td>CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15</td></tr></tbody></table>'
0 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "0.8 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "S200","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
1 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "S200","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
2 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "0.8 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
3 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
4 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1.2 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
5 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Drum Ø": "510 mm","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "F200","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
innoWeld (array):1 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "S200","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
2 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "0.8 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
3 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
4 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Ø": "1.2 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "B300","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
5 = '{"Standards": "DIN EN ISO 24373 - CuSi3Mn (Cu 6560)","": "AWS A-5.7 - ER CuSi-A","": "BS 2901 part 3","": "Material number","Welding positions": "PA / PB / PC / PE / PF","Polarity": "DC+","Drum Ø": "510 mm","Ø": "1 mm","Chemical analysis (in %)": "Si : 2.8 % - 2.95 % : Mn : 0.75 % - 0.95 % : Cu : 999 %Others : max. 0.5 %","Shielding gas": "I1","Tensile strength, Rm": "350 MPa","Expansion, A5": "40 %","Impact energy, Av": "20 °C / 60 J","Packing drum": "F200","Hardness": "80 HB","Base materials": "CuSi2Mn | CuSi3Mn | CuZn5 | CuZn10 | CuZn15"}'
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-
Solid wire electrode made of Cu-Al alloy
The weld metal is corrosion-resistant, seawater-resistant and wear-resistant
268,55 €* / 319,57 €** / spContent: 5 kg
53,71 €* / 63,91 €** / kg*excl./**incl. VAT.
plus shipping costs
-
Copper-based solid wire electrode
Low spatter formation
417,00 €* / 496,23 €** / spContent: 15 kg
27,80 €* / 33,08 €** / kg*excl./**incl. VAT.
plus shipping costs
-
Solid wire electrode made of Cu-Si alloy
Layer-wound
165,30 €* / 196,71 €** / spContent: 5 kg
33,06 €* / 39,34 €** / kg*excl./**incl. VAT.
plus shipping costs
-
Solid wire electrode made of copper-tin alloy
The weld metal is corrosion-resistant, seawater-resistant and wear-resistant
420,45 €* / 500,34 €** / spContent: 15 kg
28,03 €* / 33,36 €** / kg*excl./**incl. VAT.
plus shipping costs
-
*excl./**incl. VAT.
plus shipping costs