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    • 92. 发明申请
    • Copper alloy and process for producing the same
    • 铜合金及其制造方法
    • US20060239853A1
    • 2006-10-26
    • US11378646
    • 2006-03-20
    • Yasuhiro MaeharaMitsuharu YonemuraTakashi MaedaKeiji NakajimaTsuneaki Nagamichi
    • Yasuhiro MaeharaMitsuharu YonemuraTakashi MaedaKeiji NakajimaTsuneaki Nagamichi
    • C22C9/00
    • C22C9/00B22D11/004B22D21/025B22D23/006C22F1/002C22F1/08
    • A copper alloy consisting of two or more of Cr, Ti and Zr, and the balance Cu and impurities, in which the relationship between the total number N and the diameter X satisfies the following formula (1). Ag, P, Mg or the like may be included instead of a part of Cu. This copper alloy is obtained by cooling a bloom, a slab, a billet, or a ingot in at least in a temperature range from the bloom, the slab, the billet, or the ingot temperature just after casting to 450° C., at a cooling rate of 0.5° C./s or more. After the cooling, working in a temperature range of 600° C. or lower and further heat treatment of holding for 30 seconds or more in a temperature range of 150 to 750° C. are desirably performed. The working and the heat treatment are most desirably performed for a plurality of times. log N≦0.4742+17.629×exp(−0.1133×X)  (1)
    • 由两种或多种Cr,Ti和Zr组成的铜合金,余量为Cu和杂质,其中总数N和直径X之间的关系满足下式(1)。 可以包括Ag,P,Mg等代替Cu的一部分。 该铜合金是通过在铸造后至少在温度范围内至少在铸坯的温度范围内,将铸坯,板坯,坯料或铸锭冷却至450℃而获得的, 冷却速度为0.5℃/ s以上。 冷却后,在温度范围为600℃以下的温度范围内进行加热,在150〜750℃的温度范围内进一步保持30秒以上的热处理。 工作和热处理最理想地执行多次。 <?in-line-formula description =“In-line Formulas”end =“lead”?> log N <= 0.4742 + 17.629xexp(-0.1133xX)(1)<?in-line-formula description =“In- 行公式“end =”tail“?>
    • 95. 发明授权
    • Method of casting by pouring metal from a melt supply through a feeder into a mold
    • 通过将饲料从熔融金属中提取的金属投入模具中的方法
    • US3863704A
    • 1975-02-04
    • US32068673
    • 1973-01-02
    • KAHN FREIDHELM
    • KAHN FREIDHELM
    • B22D23/00B22D33/02
    • B22D23/006
    • A method of producing castings from a melt in a tank comprises the steps of filling the mold while rotating or tilting the mold about an outside axis in a vertical plane through different positions relative to the direction of gravity with a pipe connecting the tank and the mold acting as the feeder still in connection with the melt supply. During the rotation after filling the solidification progresses in different main directions. After solidification the casting is removed either from the mold or together with the mold and the connecting pipe which is a part of the tank is moved back to its starting position. By the method of the varying direction of solidification the feeders remain constantly open, thereby besides other advantages - improving considerably the structure and high density of the casting.
    • 从罐中的熔体制造铸件的方法包括以下步骤:在连接罐和模具的管道的同时,使模具围绕垂直平面内的外部轴线相对于重力的不同位置旋转或倾斜模具 作为仍然与熔体供应相关联的进料器。 填充后的旋转期间,固化在不同的主要方向上进行。 在凝固之后,铸模从模具中或与模具一起移除,并且作为罐的一部分的连接管被移回到其起始位置。 通过凝固变化方向的方法,进料器保持恒定打开​​,除了其他优点外,还可显着提高铸件的结构和高密度。