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    • 1. 发明授权
    • Chill tube
    • 冷却管
    • US07198092B2
    • 2007-04-03
    • US10931766
    • 2004-09-01
    • Roland HauriRaimund Eichholz-BoldtDietmar KolbeckGerhard Hugenschütt
    • Roland HauriRaimund Eichholz-BoldtDietmar KolbeckGerhard Hugenschütt
    • B22D11/00B22D11/124
    • B22D11/0406
    • A chill tube (1) having a double T-shaped inner and outer cross section in beam blank format is encased in a water-guiding jacket (12) adapted to its outer contour while forming a water gap (14). The wall thickness (D) of chill tube (1) in the rounded transition regions (2) from middle crosspieces (4), which face each other head to head and are drawn in towards longitudinal axis (3), to the neighboring crosswise positioned flanges (5) is dimensioned at least partially smaller than in the remaining wall sections (6, 7). The reduction in wall thickness is implemented by longitudinal hollow recesses (8). These recesses (8) extend only in the height range of the bath level. Into the cross sectional regions which are formed by the outer contour of chill tube (1) as well as the inner contour of water-guiding jacket (12), filler pieces (17) are incorporated, adapted to this cross section.
    • 具有横梁坯料形式的双T形内外横截面的冷却管(1)被封装在适于其外轮廓的导水套(12)中,同时形成水隙(14)。 从中间挡块(4)的圆形过渡区域(2)中的冷却管(1)的壁厚(D),其相对头对头并且朝向纵向轴线(3)被拉伸到相邻的横向定位 凸缘(5)的尺寸至少部分地小于剩余的壁部分(6,7)中的尺寸。 壁厚的减小由纵向中空凹槽(8)实现。 这些凹槽(8)仅在浴液面的高度范围内延伸。 在由冷却管(1)的外轮廓以及导水套(12)的内轮廓形成的横截面区域中,加入填充片(17),适用于该横截面。
    • 2. 发明授权
    • Cast-rolling plant
    • 铸轧厂
    • US07028748B2
    • 2006-04-18
    • US11036397
    • 2005-01-14
    • Dietmar KolbeckHans-Günter WobkerKlaus Maiwald
    • Dietmar KolbeckHans-Günter WobkerKlaus Maiwald
    • B22D11/06
    • B22D11/0622B22D11/0651
    • A plant for the continuous casting of aluminum strip, according to current construction type, has two counterrotating continuous casting rolls (1, 2), between which a casting gap (4) is formed. According to the present invention, the 1. continuous casting roll (1) is made of a copper material at least in its circumferential edge region, and the other, 2. continuous casting roll (2) is made of a steel material at least in its circumferential edge region. The copper material should have a thermal conductivity λK of 230 to 260 W/m·K, and the steel material should have a thermal conductivity λS of 30 to 40 W/m·K. Rejecting the prevailing idea that casting can only be performed with two continuous casting roll materials of the same kind, so as to ensure uniform crystal growth, a continuous casting roll pairing of steel and copper is provided in the present invention. In order to ensure a qualitatively high value casting microstructure, the difference in the thermal conductivity of the continuous casting rolls should not exceed a factor from 5 to 9. A ratio of thermal conductivity λK of the copper material to thermal conductivity λS of the steel material of 6:1 to 8:1 has proven particularly favorable.
    • 根据目前的结构类型,用于连续铸造铝带的设备具有两个逆转连续铸造辊(1,2),在其间形成铸造间隙(4)。 根据本发明,连续铸造辊(1)至少在其周向边缘区域由铜材料制成,而另一个连续铸造辊(2)由钢材料制成,至少在 其周缘区域。 铜材料应具有230至260W / m.K的热导率λK,并且钢材应具有30至40W / m.K的热导率λS。 拒绝铸造只能用两种相同种类的连续铸辊材料进行铸造,以确保均匀的晶体生长,本发明提供了钢和铜的连续铸辊配对。 为了确保具有定性高价值的铸造微结构,连续铸辊的热导率差不应超过5至9的因子。铜材料的导热率λ
    • 8. 发明申请
    • Chill tube
    • 冷却管
    • US20050028960A1
    • 2005-02-10
    • US10931766
    • 2004-09-01
    • Roland HauriRaimund Eichholz-BoldtDietmar KolbeckGerhard Hugenschutt
    • Roland HauriRaimund Eichholz-BoldtDietmar KolbeckGerhard Hugenschutt
    • B22D11/00B22D11/04B67D5/62F25D3/08F25D11/00
    • B22D11/0406
    • A chill tube (1) having a double T-shaped inner and outer cross section in beam blank format is encased in a water-guiding jacket (12) adapted to its outer contour while forming a water gap (14). The wall thickness (D) of chill tube (1) in the rounded transition regions (2) from middle crosspieces (4), which face each other head to head and are drawn in towards longitudinal axis (3), to the neighboring crosswise positioned flanges (5) is dimensioned at least partially smaller than in the remaining wall sections (6, 7). The reduction in wall thickness is implemented by longitudinal hollow recesses (8). These recesses (8) extend only in the height range of the bath level. Into the cross sectional regions which are formed by the outer contour of chill tube (1) as well as the inner contour of water-guiding jacket (12), filler pieces (17) are incorporated, adapted to this cross section.
    • 具有横梁坯料形式的双T形内外横截面的冷却管(1)被封装在适于其外轮廓的导水套(12)中,同时形成水隙(14)。 从中间挡块(4)的圆形过渡区域(2)中的冷却管(1)的壁厚(D),其相对头对头并且朝向纵向轴线(3)被拉伸到相邻的横向定位 凸缘(5)的尺寸至少部分地小于其余的壁部分(6,7)中的尺寸。 壁厚的减小由纵向中空凹槽(8)实现。 这些凹槽(8)仅在浴液面的高度范围内延伸。 在由冷却管(1)的外轮廓以及导水套(12)的内轮廓形成的横截面区域中,加入填充片(17),适用于该横截面。
    • 10. 发明申请
    • Cast-rolling plant
    • 铸轧厂
    • US20050150630A1
    • 2005-07-14
    • US11036397
    • 2005-01-14
    • Dietmar KolbeckHans-Gunter WobkerKlaus Maiwald
    • Dietmar KolbeckHans-Gunter WobkerKlaus Maiwald
    • B22D11/12B22D11/00B22D11/059B22D11/06B22D11/128
    • B22D11/0622B22D11/0651
    • A plant for the continuous casting of aluminum strip, according to current construction type, has two counterrotating continuous casting rolls (1, 2), between which a casting gap (4) is formed. According to the present invention, the 1. continuous casting roll (1) is made of a copper material at least in its circumferential edge region, and the other, 2. continuous casting roll (2) is made of a steel material at least in its circumferential edge region. The copper material should have a thermal conductivity λK of 230 to 260 W/m·K, and the steel material should have a thermal conductivity λS of 30 to 40 W/m·K. Rejecting the prevailing idea that casting can only be performed with two continuous casting roll materials of the same kind, so as to ensure uniform crystal growth, a continuous casting roll pairing of steel and copper is provided in the present invention. In order to ensure a qualitatively high value casting microstructure, the difference in the thermal conductivity of the continuous casting rolls should not exceed a factor from 5 to 9. A ratio of thermal conductivity λK of the copper material to thermal conductivity λS of the steel material of 6:1 to 8:1 has proven particularly favorable.
    • 根据目前的结构类型,用于连续铸造铝带的设备具有两个逆转连续铸造辊(1,2),在其间形成铸造间隙(4)。 根据本发明,连续铸造辊(1)至少在其周向边缘区域由铜材料制成,而另一个连续铸造辊(2)由钢材料制成,至少在 其周缘区域。 铜材料应具有230至260W / m.K的热导率λK,并且钢材应具有30至40W / m.K的热导率λS。 拒绝铸造只能用两种相同种类的连续铸辊材料进行铸造,以确保均匀的晶体生长,本发明提供了钢和铜的连续铸辊配对。 为了确保具有定性高价值的铸造微结构,连续铸辊的热导率差不应超过5至9的因子。铜材料的导热率λ