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    • 2. 发明授权
    • Apparatus for compressively holding casting nozzles
    • 用于压缩保持铸造喷嘴的装置
    • US4693401A
    • 1987-09-15
    • US759638
    • 1985-07-26
    • Takahiro NishimuraMasao Ohnuma
    • Takahiro NishimuraMasao Ohnuma
    • B22D41/56B22D37/00
    • B22D41/56
    • An apparatus for changing casting nozzles such as immersion nozzles easily, quickly, and reliably. The apparatus has a holder frame fixed to the bottom of a molten metal pouring device and defining a substantially C-shaped casting nozzle travel passageway composed of a new-nozzle insertion passage, an old-nozzle ejection passage extending parallel thereto in spaced-apart relationship, and a joint passage connecting the new-nozzle insertion passage and the old-nozzle ejection passage to each other, and having a casting position where the casting nozzle is held under compression; a spring box mounted in the holder frame and having outer side portions resiliently supported by springs on opposite sides of the holder frame across the casting nozzle travel passageway, the spring box having on inner sides thereof guide rails forming part of side portions of the casting nozzle travel passageway, a nozzle moving mechanism mounted on the holder frame for moving the casting nozzle along the guide rails; and a lifting mechanism for lifting the casting nozzle in unison with the spring box in response to movement of the casting nozzle along the guide rails until the casting nozzle is fittingly held against the bottom of the molten metal pouring device.
    • 一种容易,快速,可靠地更换诸如浸入式喷嘴的喷嘴的装置。 该装置具有固定在熔融金属浇注装置的底部的支架框架,并且限定了基本上为C形的铸造喷嘴行进通道,其由新的喷嘴插入通道,与其间隔开的关系延伸的旧喷嘴喷射通道 以及将新喷嘴插入通路和旧喷嘴喷出通路相互连接并具有铸造用喷嘴保持压缩的铸造位置的接合通路; 安装在保持架框架中的弹簧箱,并且具有通过弹簧在支架框架的相对侧上弹性地支撑在铸造喷嘴行进通道上的外侧部分,弹簧箱的内侧具有形成铸造喷嘴的侧部的一部分的导轨 行进通道,安装在保持架上的喷嘴移动机构,用于沿着导轨移动铸造喷嘴; 以及提升机构,用于响应于铸造喷嘴沿着导轨的移动而与铸弹嘴一致地提升铸造喷嘴,直到铸造喷嘴适当地保持在熔融金属浇注装置的底部。
    • 3. 发明授权
    • Sliding nozzle apparatus
    • 滑动喷嘴装置
    • US4660749A
    • 1987-04-28
    • US774198
    • 1985-09-09
    • Nobuyuki YokoiToshimitsu TairaKoji Tsuyuguchi
    • Nobuyuki YokoiToshimitsu TairaKoji Tsuyuguchi
    • B22D41/34B22D37/00B22D41/40B22D41/08C21C5/48
    • B22D41/40
    • A sliding nozzle apparatus for a molten metal holding vessel including a fixed nozzle member and a fixed plate therefor which are supported by an upper or fixed bracket secured to the vessel, and a movable nozzle member and a slidable plate therefor which are supported by a lower or movable bracket having one edge hinged to the upper bracket, while its opposite edge remote from its hinged connection to the upper bracket is removably connectable to the upper bracket to bring the slidable plate into contact with the fixed plate. A first set of coil springs are located adjacent to the edge of the lower bracket at which it is hinged to the upper bracket, and a second set of coil springs are located adjacent to the opposite edge of the lower bracket. The first set of coil springs are deflected to a greater degree than the second set of coil springs, or are, in other words, preloaded differently from the second set of springs.
    • 一种用于熔融金属保持容器的滑动喷嘴装置,其包括固定喷嘴构件和固定板,其由固定到容器的上部或固定支架支撑,以及可移动喷嘴构件和可滑动板,其由下部 或具有与上支架铰接的一个边缘的可移动支架,而其远离其与上支架的铰接连接的相对边缘可拆卸地连接到上支架以使可滑动板与固定板接触。 第一组螺旋弹簧位于下支架的边缘附近,在该边缘处铰接到上支架,第二组螺旋弹簧位于下支架的相对边缘附近。 第一组螺旋弹簧偏转到比第二组螺旋弹簧更大的程度,或者换句话说,与第二组弹簧预加载。
    • 7. 发明授权
    • Method and apparatus for preventing the inclusion of slag into the
molten steel tapped from a converter
    • 用于防止炉渣从转炉中抽出的钢水中的方法和装置
    • US4431169A
    • 1984-02-14
    • US278117
    • 1981-06-29
    • Koichiro FuziiSueki Kubo
    • Koichiro FuziiSueki Kubo
    • C21C5/46F27D3/14F27D3/15C21C5/28
    • C21C5/4653F27D3/14F27D3/15F27D3/1536
    • The method for preventing the inclusion of slag into the molten steel tapped from a converter is disclosed. Such method comprises immersing an elongated stopper in a molten steel contained in the converter until the stopper is positioned at a predetermined height above the inside opening of a tap hole, directing the elongated stopper to the inside opening irrespective of tilting of the converter such that the stopper could maintain the predetermined position while allowing a constant flow-out of the molten steel into the tap hole through the space formed between the stopper and the inside opening of the tap hole, and lowering the elongated stopper to close the tap hole when the slag floating above the molten steel is about to flow into the tap hole through the space, whereby the inclusion of the slag into the tapped molten steel can be prevented effectively. The apparatus which can efficiently conduct the above method is also disclosed.
    • 公开了一种用于防止将炉渣包含在从转炉中抽出的钢水中的方法。 这种方法包括将细长的止动件浸入包含在转炉中的钢水中,直到止动器定位在抽头孔的内部开口上方的预定高度,将细长止动件引导到内部开口,而不管转换器的倾斜如何, 止挡件可以保持预定位置,同时允许钢水通过塞子和分接孔的内部开口之间形成的空间流出到出气孔中,并且当炉渣 浮在钢水上方即将通过该空间流入分接孔,从而可以有效地防止炉渣包含在水龙头中。 还公开了能够有效地进行上述方法的装置。
    • 10. 发明授权
    • Method for bonding ceramics
    • 粘结陶瓷的方法
    • US4832771A
    • 1989-05-23
    • US174194
    • 1988-03-28
    • Takashi HamamatuNobuhiro SatoHaruyuki Ueno
    • Takashi HamamatuNobuhiro SatoHaruyuki Ueno
    • C04B37/00C04B35/584C04B35/591C04B35/64
    • C04B35/591
    • A complex-shaped bonded body of silicon nitride having a high bonding strength of more than 30 kg/mm.sup.2 as flexural strength and continuously homogenous microstructure through the bonded portion can be obtained by the method comprising the following five steps:(a) molding a body from a mixture of silicon powder having a diameter of less than 44 .mu.m and non-oxide ceramics powder having a diameter of less than 44 .mu.m,(b) heating a molded body obtained by step (a) at a temperature of 600 to 1500.degree. C. in a non-oxide atmosphere such as nitrogen or argon gas to sinter said silicon powder and partially convert to silicon nitride retaining 60 to 100 wt. % unreacted silicon powder therein,(c) grinding a surface to be bonded together with other bodies of said presintered body obtained by step (b) to dispose of unreacted silicon thereon,(d) placing a bonding agent containing silicon powder having a diameter of less than 44 .mu.m and polycarboxy silane resin between two bonding surfaces prepared by step (c), pressing together and drying said bonding agent, and(e) sintering the two presintered bodies pressed together in nitrogen atmosphere at a temperature of 1200.degree. to 1500.degree. C. without melting said disposed unreacted silicon.
    • 通过包括以下五个步骤的方法可以获得具有大于30kg / mm 2的高粘合强度的复合形状的粘合体,作为弯曲强度和通过粘合部分的连续均匀的微结构,(a)成型体 从直径小于44μm的硅粉混合物和直径小于44μm的非氧化物陶瓷粉末混合,(b)在600℃的温度下加热由步骤(a)得到的成型体,至 在非氧化物气氛如氮气或氩气中1500℃烧结所述硅粉,并部分转化成保留60至100重量%的氮化硅。 %未反应的硅粉末,(c)将与步骤(b)获得的所述预烧结体的其它体相结合的表面研磨以在其上处理未反应的硅,(d)将包含直径为 (c)制备的两个粘合面之间的多羧基硅烷树脂,挤压在一起并干燥所述粘合剂,和(e)在氮气气氛中在1200℃至1500℃的温度下烧结两个预烧结体 不熔化所述未反应的硅。