US2018119260A1PendingUtilityA1

Al-Mg-Si ALUMINIUM ALLOY WITH IMPROVED PROPERTIES

Assignee: NORSK HYDRO ASPriority: Apr 25, 2012Filed: Nov 9, 2017Published: May 3, 2018
Est. expiryApr 25, 2032(~5.7 yrs left)· nominal 20-yr term from priority
C22F 1/043C22F 1/05C22C 21/02C22C 21/08C22F 1/047
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Claims

Abstract

Extrudeable Al—Mg—Si aluminium alloy with improved strength, corrosion resistance, crush properties and temperature stability, in particular useful in or close to the front part of vehicles. The composition of the alloy is defined within the following coordinate points of an Mg—Si diagram: a1-a2-a3-a4, where in wt % a1=0.60 Mg, 0.65Si, a2=0.90Mg, 1.0Si, a3=1.05Mg,0.75Si and a4=0.70Mg, 0.50Si and where the alloy has a non-recrystallised grain structure in the extruded profile containing in addition the following alloy components in wt %: Fe up to 0.30 Cu 0.1-0.4 Mn 0.4-1.0 Cr up to 0.25 Zr up to 0.25 and Ti 0.005-0.15 incidental impurities up to 0.1 each and including Zn up to 0.5 with balance Al.

Claims

exact text as granted — not AI-modified
1 . An extrudeable Al—Mg—Si aluminium alloy with improved strength, corrosion resistance, crush properties and temperature stability, useful in the front structure of vehicles,
 wherein: 
 the composition of the alloy is defined within the following coordinate points of an Mg—Si diagram: 
 a1-a2-a3-a4, 
 where in wt % a1=0.60Mg, 0.65Si, a2=0.90Mg, 1.0Si, a3=1.05Mg, 0.75Si and a4=0.70Mg, 0.50Si, and 
 the alloy has a non recrystallized grain structure in the extruded profile comprising in addition the following alloy components in wt %: 
 Fe up to 0.30, 
 Cu 0.1-0.4, 
 Mn 0.4-1.0, 
 Cr up to 0.25, 
 Zr up to 0.25, 
 Ti 0.005-0.15 and 
 incidental impurities up to 0.1 each and including Zn up to 0.5, with balance Al. 
 
     
     
         2 . The alloy according to  claim 1 ,
 wherein the Mg/Si ratio is between 0.9-1.4.   
     
     
         3 . The alloy according to  claim 1 ,
 wherein the alloy is defined within the coordinate points b1-b2-b3-b4, where in wt % b1=0.76 Mg, 0.55 Si, b2=1.02 Mg, 0.74 Si, b3=0.90 Mg, 0.91 Si and b4=0.67 Mg, 0.68 Si.   
     
     
         4 . The alloy according to  claim 1 ,
 wherein the alloy is defined between the coordinate points c1-c2-c3-c4, where in wt % c1=0.80 Mg, 0.59 Si, c2=0.94 Mg, 0.70 Si, c3=0.85 Mg, 0.84 Si and c4=0.72 Mg, 0.71 Si.   
     
     
         5 . The alloy according to  claim 1 ,
 wherein the Mg/Si ratio is between 1.0-1.3.   
     
     
         6 . The alloy according to  claim 1 ,
 comprising Fe between 0.10-0.28 wt %.   
     
     
         7 . The alloy according to  claim 1 ,
 comprising Cu between 0.15-0.30 wt %.   
     
     
         8 . The alloy according to  claim 1 ,
 comprising Mn between 0.50-0.70 wt % and Cr between 0.10-0.20 wt %, where Mn and Cr are both present in the alloy together.   
     
     
         9 . The alloy according to  claim 1 ,
 wherein the alloy is homogenized at a temperature of 520-590° C. for 0.5-24 hours and the cooling rate after homogenization is more than 200° C./hour in the interval from 520 to 250° C.   
     
     
         10 . The alloy according to  claim 1 ,
 wherein the alloy is homogenized at a temperature of 540-580° C. for 2-10 hours.   
     
     
         11 . The alloy according to  claim 1 ,
 wherein the alloy is cast to billets and then homogenized.   
     
     
         12 . The alloy according to  claim 1 ,
 wherein the alloy is reheated to a preferred temperature and then extruded.   
     
     
         13 . The alloy according to  claim 1 ,
 wherein the extruded profile produced from the alloy is water quenched from a temperature between 500-580 down to a temperature below 200° C.   
     
     
         14 . The alloy according to  claim 1 ,
 wherein the alloy is overaged at a temperature between 185-215° C. for a period between 1-25 hours.   
     
     
         15 . The alloy according to  claim 1 ,
 wherein the alloy is overaged at a temperature between 200-210° C. for a period between 2-8 hours.

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