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Sintered Extruded PTFE Film is a high modulus PTFE film manufactured by extrusion and sintering processes. The physical properties of sintered extruded PTFE film exceed the physical properties of skived PTFE films. Features/Benefits • High dielectric strength • High chemical resistance • Low moisture absorption • Resistance to permeability • High temperature insulation • High modulus • Operating temperature range -100°F (-73°C) to +500°F (260°C) • RoHS and REACH compliant Applications • High temperature wire and cable • Coil winding • Gaskets • Diaphragms
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Black Unsintered Extruded PTFE Film is engineered with a carbon based PTFE filler to enhance conductivity and facilitate the dissipation of static electricity. It can be used for shielding high temperature wires and cables, wall construction of convoluted hose or when carbon black offers color advantages over other black pigments. Physical properties and conductivity are maximized after sintering. Features/Benefits • Enhanced Conductivity • Outstanding heat and chemical resistance • RoHS and REACH compliant Applications • High temperature wire and cable • Convoluted hose
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POSSIBILITY OF SUPPLY: Whitout coating: Annealed, N/A and Hard Drawn ( Grey) Whith coating: Annealed Galvanised and Hard Galvanised ( Grey) TYPES OF COATING: Galvanised - Reinforced galvanised - ZA - Reinforced ZA
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APPLICATION: Wire for alloy and non-alloy steel spring for use with severe dynamic stresses, such as prings for valves. According to EN 10270-2
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APPLICATION: Wire for alloy and non-alloy steel spring for use with severe dynamic stresses, such as prings for valves. According to EN 10270-2 and ASTM A 877
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APPLICATION: Steel wire for spring with medium factigue levels, such as that required for alloy and non-alloy steel clutch springs According to EN 10270-2 and ASTM 2 A 1000-5 Grade D
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For final diameters between 1.50 mm and 8.00 mm and for the VD-type wires, the wire can be trimmed or straightened (shaved). According to EN 10270-2 and ASTM A 1000-5 Grade A
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For final diameters between 1.50 mm and 8.00 mm and for the VD-type wires, the wire can be trimmed or straightened (shaved). According to EN 10270-2 and ASTM A 401
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APPLICATION: Suitable for static applications. According to EN 10270-2 and ASTM A 229
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APPLICATION OF HARD DRAWN STEEL WIRE Compression springs, extension springs,and torsion springs for high and dynamic stresses. According to DIN 17223:1964-1
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APPLICATION OF HARD DRAWN STEEL WIRE Tension, compression and torsion springs that are mainly submitted to high static strains and to medium levels of dynamic strains. EN 10270-1 ASTM A 228
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APPLICATION OF HARD DRAWN STEEL WIRE Tension, compression or torsion springs that are subjected to medium-high dynamic stresses. Also for wire shapes that require severe bending. According to EN 10270-1 and ASTM A 227
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APPLICATION OF HARD DRAWN STEEL WIRE Tension, compression or torsion springs that are subjected to high static stresses or moderately dynamic stresses.
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APPLICATION OF HARD DRAWN STEEL WIRE Tension, compression or torsion springs that are subjected to medium-high static stresses or, rarely, dynamic stresses.
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APPLICATION OF HARD DRAWN STEEL WIRE Tension, compression or torsion springs that are chiefly subjected to low static stress. According to EN 10270-1 and ASTM A 227
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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CHEMICAL COMPOSITION (HEAT ANALYSIS OF MARTENSITIC AND PRECIPITATION-HARDENED STAINLESS STEEL, FERRITIC STAINLESS STEEL AND AUSTENITIC STAINLESS STEEL) ACCORDING TO EN 10088-3
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composition : X1NiCrMoCu25-20-5 According to EN 10270-7904L and AISI 904L The surface of the stainless steel wire must be smooth and, insofar as is possible, free of scratches, pitting and other surface defects that may make the wire unusable. The alternating torsion test is one method that makes it possible to detect surface discontinuities. If the wire is to be used for manufacturing springs that are used for high stresses, the special surface quality requirements and tests can be agreed on the customer's instruction when the quote is requested or the order is placed. SURFACE QUALITY EN 10088-3 Minor surface irregularities that are inherent to the manufacturing process are permitted. When necessary, it is possible to agree on more specific surface quality requirements when placing the order, based on the EN 10221 Standard.
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composition : X5CrNi18-10 (NS / HS) According to EN 10270-6304 and AISI 304 The surface of the stainless steel wire must be smooth and, insofar as is possible, free of scratches, pitting and other surface defects that may make the wire unusable. The alternating torsion test is one method that makes it possible to detect surface discontinuities. If the wire is to be used for manufacturing springs that are used for high stresses, the special surface quality requirements and tests can be agreed on the customer's instruction when the quote is requested or the order is placed. SURFACE QUALITY EN 10088-3 Minor surface irregularities that are inherent to the manufacturing process are permitted. When necessary, it is possible to agree on more specific surface quality requirements when placing the order, based on the EN 10221 Standard.
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