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Wenn du auf unsere Webseite klickst oder hier navigierst, stimmst du der Erfassung von Informationen durch Cookies auf und außerhalb von Facebook zu.Weitere Informationen zu unseren Cookies und dazu, wie du die Kontrolle darüber behältst, findest du hier: Cookie-Richtlinie. In some embodiments of the present invention, the Cu content of the alloy is increased to increase the alloy's Ultimate Tensile Strength (UTS) and Tensile Yield Strength (TYS) at room temperature (22°C) and at high temperatures, wherein high temperature ranges from 100C.Although, it is understood that with increasing temperature the Ultimate Tensile Strength (UTS) and Tensile Yield Strength (TYS) generally decreases, it is noted that the incorporation of Cu generally increases high temperature strength properties when compared to similar Al Si Mg alloys without the incorporation of Cu.
The precision of the data initially was ±0.04 Å, and this was later increased to ±0.015 Å, resulting in a sensitivity of approximately 2×10 for relative length changes of a 10-cm-long sample.The shaped casting of Claim 9 wherein at high temperatures said shaped casting heat treated to said T6 condition has an ultimate tensile strength 10% to 20% greater than similiarly processed castings formed of E357 alloy.12.The shaped casting of Claim 8 wherein said Cu is present in greater than 2 %, Zn is present at less than about 3 %, said Mg is present at 0.45 to 0.55 wt % and said Si has a concentration of about 7%. The shaped casting of Claim 12 wherein at high temperatures said shaped casting heat treated to said T6 condition has an ultimate tensile strength 20% to 30% greater than similiarly processed castings formed of E357 alloy.0.1% - 0.7% Mg; less than or equal to 5% Zn; less than 0.15% Fe; less than 4% Cu; less than 0.3% Mn; less than 0.05% B; less than 0.15% Ti; and the remainder consisting essentially of aluminum; and forming an aluminum alloy product from said molten metal mass.16.In order to obtain lighter weight parts, material with higher strength and higher ductility is needed with established material properties for design. A variety of alternative alloys exist and are registered that exhibit higher strength.