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    • 3. 发明授权
    • Precision casting system with lock
    • 精密铸造系统带锁
    • US5503215A
    • 1996-04-02
    • US435650
    • 1995-05-05
    • Ulrich BetzAlfred HennFranz HugoWolfgang Reuter
    • Ulrich BetzAlfred HennFranz HugoWolfgang Reuter
    • B22D21/02B22D23/00B22D47/00B22D18/06B22D27/00B22D37/54
    • B22D47/00
    • A furnace chamber (2) has a lock (14) provided with two sealing plates (18, 22), a melting furnace (3), and a casting mold carrier (25), which can be moved horizontally through the lock (14) in the horizontal direction into a casting position (34) in the furnace chamber. An outer sealing plate (22) is mounted on a first truck (21), carrying a first rail segment (23) for a second truck (24) on the other side of the sealing plate (22), the casting mold carrier (25) being mounted on this second truck. A horizontal drive (27) is used to move the second truck (24) with respect to the first (21), and in the interior of the furnace chamber (2) there is a second rail segment (32) to which the casting mold carrier (25) is transferred from the first rail segment (23). A heating chamber (8) can be raised and lowered above the casting position (34) in the furnace chamber, which is equipped with a filling hole (12) and with heating elements (35, 36, 37). The heating chamber can be lowered over the casting mold (26) and the casting mold carrier (25).
    • 炉室(2)具有设置有能够水平移动通过锁(14)的两个密封板(18,22),熔炉(3)和铸模托架(25)的锁(14) 在水平方向上进入炉室中的铸造位置(34)。 外密封板(22)安装在第一卡车(21)上,在密封板(22)的另一侧上承载用于第二卡车(24)的第一轨道段(23),铸模托架(25) )安装在第二辆卡车上。 水平驱动器(27)用于相对于第一(21)移动第二货车(24),并且在炉室(2)的内部具有第二轨道段(32),铸模 载体(25)从第一轨道段(23)传送。 加热室(8)可以在炉室中的铸造位置(34)的上方升高和降低,该炉室配备有填充孔(12)和加热元件(35,36,37)。 加热室可以在铸模(26)和铸模托架(25)上下降。
    • 4. 发明授权
    • Crucible for the inductive melting of metals
    • 适用于金属感应熔炼
    • US5677926A
    • 1997-10-14
    • US729587
    • 1996-10-11
    • Matthias BlumWilfried GoyFranz HugoKarlheinz Hock
    • Matthias BlumWilfried GoyFranz HugoKarlheinz Hock
    • F27B14/06H05B6/24H05B6/22
    • H05B6/24F27B14/063
    • Vertical, parallel palisades (3) are distributed around the perimeter of a circle, spaced apart by gaps, surrounding the melt. An annular plate (4) supports the palisades (3), the palisades being provided with cavities through which a coolant flows. An induction coil (20) surrounds the palisades (3) on the outside, an alternating current flowing through the coil. The plate (4) is provided with support surfaces (4a, 4b), equal in number to the number of palisades (3), their shape conforming to the base surfaces of the palisades (3). Seen in the circumferential direction, every second support surface (4a) is covered by an electrically insulating film (7). All of the palisades (3) together are surrounded by a ring (18) of electrically insulating material, which holds the palisades (3) on the plate (4).
    • 垂直的平行栅栏(3)分布在围绕熔体的间隙周围的圆周上。 环形板(4)支撑栅栏(3),栅栏设有空腔,冷却剂通过该空腔流动。 感应线圈(20)围绕外部的栅栏(3),流过线圈的交流电流。 板(4)设有与栅栏数(3)相等数量的支撑表面(4a,4b),它们的形状与栅栏(3)的基面相符。 在圆周方向看,每隔一个第二支撑面(4a)被电绝缘膜(7)覆盖。 所有的栅栏(3)一起被电绝缘材料的环(18)包围,该环保持板(4)上的栅栏(3)。
    • 5. 发明授权
    • Sealed evacuatable crucible for inductive melting or superheating
    • 密封可抽出的坩埚用于感应熔化或过热
    • US6101212A
    • 2000-08-08
    • US228568
    • 1999-01-12
    • Franz HugoThomas RuppelHans-Gunther Fellmann
    • Franz HugoThomas RuppelHans-Gunther Fellmann
    • C22B9/00F27B14/06F27B14/08F27B14/10F27D3/12F27D3/15H05B6/22
    • F27B14/0806C22B9/003F27B14/063F27D3/1536F27B2014/0812F27D2003/127Y02P10/253
    • A sealed evacuatable crucible (1) for inductive melting of metals or other electrically conductive materials, including a plurality of palisades (2,2', . . . ) which are arranged parallel to one another, and for enclosing the melt and forming the crucible wall, and having a crucible base part (3) which carries the palisades (2,2', . . . ), and having an induction coil (18) which is wound around the palisades (2,2', . . . ) from outside in direct manner distanced therefrom, and through which there flows an alternating current and which is movable in a vertical direction relative to the crucible (1), and having in the crucible base part (3) a discharge opening (25) which is closable by means of a stopper rod (13), there is provided below the crucible base part (3) an evacuatable chamber (10) which is formed of two parts (11, 12,) for receiving a vessel (14) for collecting the molten charge, which is placed below the discharge opening (25), wherein the lower chamber part (12) rests on the transporting surface of a lift-truck (16) and is movable therefrom towards the upper chamber part (11).
    • 一种用于金属或其它导电材料的感应熔化的密封可抽出的坩埚(1),包括彼此平行布置的多个栅栏(2,2',...),并且用于封闭熔体并形成坩埚 并且具有承载栅栏(2,2',...)的坩埚基部(3),并且具有卷绕在栅栏(2,2'...)周围的感应线圈(18) 从外部以直接方式从外部延伸,并且通过该外部流动交流电并且相对于坩埚(1)在垂直方向上移动,并且在坩埚基部(3)中具有排出口(25),该排出口 可通过塞杆(13)关闭,在坩埚基部(3)的下方设置有可抽出的腔室(10),该可抽空腔体(10)由两部分(11,12)形成,用于容纳容器(14) 位于排放口(25)下方的熔融电荷,其中下部腔部分(12)靠在排出口(25)上 搬运车(16)的运送表面并且能够朝向上部室部分(11)移动。
    • 8. 发明授权
    • Method of manufacturing directionally solidified castings
    • 定向凝固铸件的制造方法
    • US5197531A
    • 1993-03-30
    • US869906
    • 1992-04-15
    • Franz HugoHarald Bittenbrunn
    • Franz HugoHarald Bittenbrunn
    • B22D27/04C30B11/00
    • C30B11/003B22D27/045C30B11/00C30B29/52
    • The invention relates to a method of manufacturing directionally solidified and/or monocrystalline castings including at least one sensor for sensing temperatures in metal or allow melts contained in a mold, including a thermoelement 41 equipped with a heat resistant coating, this thermoelement being introduced into the melt. Subsequently, the position of the interface between liquidus and solidus is determined from the measured temperatures by means of interpolation, and the withdrawal speed of the casting is controlled such that during the withdrawal of the casting, the interface is always located in a desired area of the insulation 10 which slightly above the cooling head 14. For this purpose, it is advantageous that the temperature of the heating for heating up the mold be stored as a parameter in a computer over the distance covered by the mold and/or the respective position of the mold in the vacuum furnace. This heating temperature profile as a function of the respective position of the mold in the vacuum furnace in connection with the withdrawal speed of the mold is then available for further casting cycles in connection with the withdrawal speed profile as a reproducible value for subsequent casting cycles.
    • 本发明涉及一种制造定向凝固和/或单晶铸件的方法,其包括用于感测金属中的温度的至少一个传感器或允许包含在模具中的熔体,包括装备有耐热涂层的热电偶41,该热电偶被引入 熔化。 随后,通过插值从测量的温度确定液相线和固相线之间的界面的位置,并且控制铸件的提取速度,使得在铸件的退出期间,界面总是位于 绝缘体10,其稍微高于冷却头14.为此,有利的是,用于加热模具的加热温度作为参数存储在计算机中覆盖模具和/或相应位置的距离 的真空炉中的模具。 随着模具在真空炉中的相应位置的加热温度曲线与模具的提取速度相关联,随后的铸造循环的再现值可用于进一步的铸造循环。
    • 10. 发明申请
    • Skull reactor
    • 头骨反应堆
    • US20100047148A1
    • 2010-02-25
    • US12378250
    • 2009-02-11
    • Franz Hugo
    • Franz Hugo
    • C01B33/023B01J19/08
    • H05H1/50B01J19/088B01J2219/0009B01J2219/00135B01J2219/0871B01J2219/0879B01J2219/0894C01B33/027
    • A method for producing silicon or a reactive metal is disclosed herein that includes: introducing a silicon-bearing feed or reactive metal-bearing feed into a reactor chamber, wherein the reactor chamber includes a reactor chamber wall having (i) an inside surface facing a reaction space and (ii) an opposing outside surface; generating a first thermal energy within the reaction space sufficient to generate a liquid silicon product or a liquid reactive metal product; generating a second thermal energy exterior to the reactor chamber wall such that a heat flow from the second thermal energy initially impacts the outside surface of the reactor chamber wall; and establishing an inside surface wall temperature within a temperature range that is above or below a melting point temperature of the silicon or the reactive metal by controlling the first thermal energy source and the second thermal energy source.
    • 本文公开了一种用于生产硅或活性金属的方法,其包括:将含硅进料或反应性金属承载进料引入反应器室,其中所述反应器室包括反应器室壁,所述反应器室壁具有(i)面向 反应空间和(ii)相对的外表面; 在反应空间内产生足以产生液体硅产物或液体反应性金属产物的第一热能; 在反应室壁的外部产生第二热能,使得来自第二热能的热流最初冲击反应室壁的外表面; 以及通过控制第一热能源和第二热能源,在高于或低于硅或无机金属的熔点温度的温度范围内建立内表面壁温度。