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Production manner null of the aluminum make stringing beam body where corrosion resistance and fatigue strength

机译:铝的生产方式使弦梁体在其中具有耐腐蚀性和疲劳强度

摘要

PROBLEM TO BE SOLVED: To obtain a stringing beam body suppressing the growth of pitting deeply progressing to the inside of the material and maintaining excellent corrosion resistance and fatigue strength over an extremely long period. ;SOLUTION: In this stringing beam body, an extruded material having a compsn. contg. 0.65 to 0.75% Si, 0.60 to 0.70% Mg, 0.15 to 0.25% Fe, 0.12 to 0.18% Cu, 0.14 to 0.18% Mn, 0.05 to 0.09% Cr, 0.01 to 0.20% Ti, 0.0001 to 0.005% B, ≤0.05% Zn, and the balance substantial Al with other impurities by ≤0.10% in the total content, and in which, in the cross-section vertical to the extruding direction of the extruded material, excepting the recrystallized structure of ≤150 μm thickness generated on the surface of the extruded material, a fibrous structure is shown, and, in the cross-section parallel to the extruding direction of the extruded material, the part high in the concn. of Ti and the part low in the concn. of Ti extending to the extruding direction are laminated in layers is used.;COPYRIGHT: (C)2000,JPO
机译:要解决的问题:为了获得一种束状梁体,该束状梁体可抑制点蚀在材料内部深入发展,并在极长的时间内保持优异的耐腐蚀性和疲劳强度。 ;解决方案:在此穿线梁体内,是一种具有复合材料的挤压材料。续Si 0.65至0.75%,Mg 0.60至0.70%,Fe 0.15至0.25%,0.12至0.18%Cu,0.14至0.18%Mn,0.05至0.09%Cr,0.01至0.20%Ti,0.0001至0.005%B,≤ Zn含量为0.05%,剩余的Al与其他杂质的总量为总量的±0.10%,其中,在垂直于挤出材料的挤出方向的横截面中,≤150μmu的再结晶结构在挤出材料的表面上产生的厚度为m的纤维结构被示出,并且在平行于挤出材料的挤出方向的横截面中,浓稠的部分被示出。的Ti和浓度较低的部分。沿拉伸方向延伸的Ti的层状被层压。;版权所有:(C)2000,JPO

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