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    • 3. 发明申请
    • Al-Mg-Si ALLOY SUITED FOR EXTRUSION
    • Al-Mg-Si合金用于挤压
    • WO2005038063A1
    • 2005-04-28
    • PCT/NO2004/000315
    • 2004-10-15
    • NORSK HYDRO ASAREISO, OddvinRØYSET, JosteinSÆTER, Jan AndersTUNDAL, UlfGJERTSEN, Gunnar
    • REISO, OddvinRØYSET, JosteinSÆTER, Jan AndersTUNDAL, UlfGJERTSEN, Gunnar
    • C22C21/08
    • C22C21/02C22C21/08C22F1/05
    • Aluminium alloy containing Mg and Si, in particular useful for extrusion purposes containing in wt%.: Mg 0,3 - 0,5; Si 0,35 - 0,6; Mn 0,02 - 0,08; Cr 0,05; Zn 0,15; Cu 0,1; Fe 0.08 - 0,28 and in addition grain refining elements up to 0,1 wt% and incidental impurities up to 0,15 wt%. The manganese (Mn), within the specified limits, has an additional positive effect on the extrudability of an AlMgSi alloy. In addition to promoting the transformation of the AlFeSi intermetallic phases, AlMnFeSi dispersoid particles are formed during homogenisation. These particles are acting as nucleation sites for Mg 2 Si particles during cooling after homogenisation. In a high quality billet the Mg 2 Si particles formed during cooling after homogenisation should easily dissolve during the preheating and the extrusion operation before the material reach the die opening.
    • 含有Mg和Si的铝合金,特别适用于以wt%计:Mg 0.3-3.5的挤出用途; Si 0,35 - 0,6; Mn 0.02-0.08; Cr 0,05; Zn 0,15; Cu 0.1; Fe 0.08-0.28,另外晶粒细化元素高达0.1重量%,杂质高达0.15重量%。 在规定限度内,锰(Mn)对AlMgSi合金的挤出性具有额外的积极作用。 除了促进AlFeSi金属间化合物相的转变之外,AlMnFeSi分散质颗粒在匀质化过程中形成。 这些颗粒在匀浆后的冷却过程中充当Mg2Si颗粒的成核位点。 在高质量的钢坯中,匀浆​​后冷却过程中形成的Mg2Si颗粒在材料到达模具开口之前,在预热和挤出操作过程中应易于溶解。
    • 7. 发明申请
    • METHOD FOR THE MANUFACTURING OF PRODUCTS WITH ANODIZED HIGH GLOSS SURFACES FROM EXTRUDED PROFILES OF AL-MG-SI OR AL-MG-SI CU EXTRUSION ALLOYS
    • 使用AL-MG-SI或AL-MG-SI CU挤出合金的精制型材制造具有阳离子高光面的产品的方法
    • WO2015147648A1
    • 2015-10-01
    • PCT/NO2015/000005
    • 2015-03-24
    • NORSK HYDRO ASA
    • TUNDAL, UlfREISO, Oddvin
    • C22F1/05C22C21/02C22C21/08
    • C22F1/043B21B3/00B21B2003/001B22D17/00B22D21/007B22D27/20C22C21/02C22C21/08C22F1/05
    • Method for the manufacturing of products with anodized high gloss surfaces from extruded profiles of Ai-Mg-Si or AS-Mg-Si-Cu, where the alloys initially are cast to extrusion billet(s), containing in wt.% Si: 0,25-1,00 Mg: 0,25-1,00 Fe: 0,00-0,15 Cu: 0,00-0,30 Mn: 0,00 -- 0,20 Cr: 0,00-0,10 Zr: 0,00 -0,10 Sc: 0.00 -0,10 Zn: 0,00-0,10 Ti: 0,00-0,05., and Including incidental impurities and balance A.L a) where the billet is homogenised at a holding temperature between 480°C and 620°C and soaked at this temperature for 0-12 hours, where after the billet is subjected to cooling from the homogenisation temperature at. a rate of 150°C/h or faster, b) the billet is preheated to a temperature between 400 and 540°C and extruded preferably to a solid shape profile and cooled rapidly down to room temperature, c) optionally artificially ageing the profile, d) deforming the profile more than 10% by a cold roiling operation, whereafter e) the profile is flash annealed with a heating time of maximum two minutes to a temperature of between 450 ~ 530 °C for not more than 5 minutes and subsequently quenched, and f) optionally the profile after flash annealing is further subjected to a cold deforming operation to remove residua! stresses from cooling and adjusting dimensional tolerances, and g) the profile is finally aged.
    • 由Al-Mg-Si或AS-Mg-Si-Cu的挤出型材制造具有阳极氧化高光泽表面的产品的方法,其中合金最初被浇铸成挤出坯料,其含有重量百分比的Si:0 ,25-1,00Mg:0,25-1,00Fe:0,00-0,15 Cu:0.00-0,30 Mn:0.00-0.0Cr:0,00-0 ,10 Zr:0.00-0.10 Sc:0.00-0.10 Zn:0.00-0.10 Ti:0.00-0.05,包括附带杂质和余量AL a)其中坯料 在保持温度在480℃和620℃之间进行均化,并在该温度下浸泡0-12小时,其中坯料从均化温度进行冷却。 速率为150℃/ h或更快,b)将坯料预热至400至540℃之间的温度,并优选挤压成固体形状并迅速冷却至室温,c)任选地人工老化轮廓, d)通过冷轧操作使型材变形超过10%,然后e)将轮廓在最大两分钟的加热时间闪光退火至450-530℃的温度不超过5分钟,随后淬火 ,f)任意地,闪光退火后的轮廓进一步进行冷变形操作以除去残留物! 冷却和调整尺寸公差的应力,g)轮廓终于老化了。