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    • 31. 发明授权
    • System and method for manufacturing x-ray tubes having glass envelopes
    • 制造具有玻璃封套的x射线管的系统和方法
    • US5722870A
    • 1998-03-03
    • US576971
    • 1995-12-22
    • Thomas Robert RaberMark Gilbert BenzRobert John Zabala
    • Thomas Robert RaberMark Gilbert BenzRobert John Zabala
    • B23K20/14H01J9/385H01J35/16H01J9/40B23K31/02
    • H01J9/385B23K20/14H01J35/16
    • Improved systems and methods are disclosed for exhausting and combined exhausting and seasoning of x-ray tubes having glass envelopes for high performance x-ray system having a rotating anode therein. The systems and methods include using a metal tubulation having a diameter greater than about 20 mm operatively connected to a glass tubulation having a diameter greater than about 20 mm which is in turn connected to a glass x-ray tube envelope; positioning a metal disk inside the metal tubulation, the metal disk having a smaller diameter than at least one portion of the metal tubulation, and connecting a vacuum pump to the metal portion of the tubulation; positioning heating means on the outside of the metal portion of the tubulation, heating the anode of the x-ray tube to a temperature inside the x-ray tube envelope to about 1500.degree. C., positioning the metal disk inside the metal portion of the tubulation proximate the position of the heating means on the outside of the metal portion of the tubulation, heating the metal portion of the tubulation proximate the metal disk to about 500.degree. C. or a temperature sufficient to reflow the braze alloy, checking for bonding between the metal portion of the tubulation and the metal disk; and cooling the metal portion of the tubulation proximate the metal disk, thereby sealing the metal portion of the tubulation to the glass envelope/glass tubulation connection.
    • 公开了改进的系统和方法用于对具有其中具有旋转阳极的高性能x射线系统的具有玻璃封套的x射线管的排气和组合排气和调味。 该系统和方法包括使用直径大于约20mm的金属管道,其可操作地连接到具有大于约20mm的直径的玻璃管,该玻璃管又连接到玻璃X射线管外壳; 将金属盘定位在金属管内,金属盘的直径小于金属管的至少一部分,并将真空泵连接到管状金属部分; 将定位加热装置放置在管状金属部分的外侧,将X射线管的阳极加热至X射线管外壳内的温度至约1500℃,将金属盘定位在金属部分的金属部分内 在管状金属部分的外侧靠近加热装置的位置的管道,将接近金属盘的管道的金属部分加热至约500℃或足以回流钎焊合金的温度,检查 管状金属部分和金属盘; 并且在金属盘附近冷却管状金属部分,由此将管状物的金属部分密封到玻璃管/玻璃管连接。
    • 36. 发明授权
    • Systems for controlling the superheat of the metal exiting the CIG apparatus in an electroslag refining process
    • 用于控制在电渣精炼过程中离开CIG装置的金属的过热的系统
    • US06196427B1
    • 2001-03-06
    • US08576321
    • 1995-12-21
    • William Thomas Carter, Jr.Mark Gilbert BenzRobert John ZabalaBruce Alan KnudsenPaul Leonard Dupree
    • William Thomas Carter, Jr.Mark Gilbert BenzRobert John ZabalaBruce Alan KnudsenPaul Leonard Dupree
    • B22D3506
    • B22D23/10
    • Systems for controlling the superheat of the stream of molten metal from an electroslag refining apparatus is taught. The systems include the introduction of unrefined metal into an electroslag refining process apparatus in which the unrefined metal is first melted at the upper surface of the refining slag. The molten metal is refined as it passes through the molten slag. The refined metal is collected in a cold hearth apparatus having a skull of refined metal formed on the surface of the cold hearth for protecting the cold hearth from the leaching action of the refined molten metal. A cold finger bottom pour spout or exit orifice is formed at the bottom of the cold hearth to permit dispensing of molten refined metal from the cold hearth. The super heat of the molten metal flowing through the exit orifice of the cold finger apparatus is controlled, preferably utilizing a processor, such as a computer, by coordinating the rate of induction heat supplied to the metal within the cold finger apparatus and the rate of heat removal from the metal within the cold finger apparatus through the cold finger apparatus itself thereby providing metal having a specific superheat exiting the exit orifice.
    • 教导了用于从电渣精炼装置控制熔融金属流的过热的系统。 这些系统包括将未精制金属引入到电渣精炼处理装置中,其中未精炼的金属首先在精炼炉渣的上表面熔化。 当熔融金属通过熔渣时被精炼。 精制金属被收集在具有形成在冷柜的表面上的精制金属颅骨的冷炉床装置中,用于保护冷炉免受精炼熔融金属的浸出作用。 在冷底部的底部形成冷手指底部倒出口或出口孔,以允许从冷底座分配熔融精炼金属。 流经冷指装置的出口的熔融金属的超热被优选地利用诸如计算机的处理器来控制供应给冷指装置内的金属的感应热的速率和 通过冷指装置本身从冷指装置内的金属散热,从而提供具有离开出口的特定过热的金属。
    • 39. 发明授权
    • Method for manufacturing x-ray tubes
    • X射线管制造方法
    • US5733162A
    • 1998-03-31
    • US538144
    • 1995-10-02
    • Mark Gilbert BenzRobert John ZabalaThomas Robert RaberWilliam Joseph Jones
    • Mark Gilbert BenzRobert John ZabalaThomas Robert RaberWilliam Joseph Jones
    • H01J9/40H01J35/10
    • H01J9/40H01J35/10
    • Improved methods of exhausting and combined exhausting and seasoning of x-ray tube envelopes for high performance x-ray system having a rotating anode therein which includes providing a glass tubulation having a diameter greater than about 20 mm then operatively connecting the glass tubulation to the x-ray tube envelope, providing a disk inside the glass tubulation, the disk having a smaller diameter than the glass tubulation, providing a vacuum to the glass tubulation; positioning heating means on the outside of the glass tubulation, heating the anode of the x-ray tube to a temperature temperatures inside the x-ray tube envelope of about 1500.degree. C., positioning the disk inside the glass tubulation proximate the position of the heating means on the outside of the glass tubulation, heating the glass tubulation proximate the disk to about 1300.degree. C., checking for sealing contact between the glass tubulation and the disk; and cooling the glass tubulation proximate the disk until the temperature of the heated area is below about 300.degree. C., thereby sealing the tubulation/envelope connection are disclosed.
    • 改进了用于具有旋转阳极的高性能x射线系统的X射线管信封的排气和组合排气和调味的方法,其包括提供直径大于约20mm的玻璃管,然后将玻璃管道可操作地连接到x 提供玻璃管内的盘,盘具有比玻璃管更小的直径,为玻璃管形成真空; 将加热装置定位在玻璃管的外侧,将x射线管的阳极加热到X射线管外壳内的温度约1500℃,将盘定位在靠近玻璃管的位置 加热装置在玻璃管外面,将靠近盘的玻璃管加热至约1300℃,检查玻璃管和盘之间的密封接触; 并冷却盘附近的玻璃管,直到加热区域的温度低于约300℃,从而公开了封闭/封闭连接。
    • 40. 发明授权
    • Systems for recycling overspray powder during spray forming
    • 在喷雾成型期间回收过度喷涂粉末的系统
    • US5683653A
    • 1997-11-04
    • US537579
    • 1995-10-02
    • Mark Gilbert BenzWilliam Thomas Carter, Jr.Paul Leonard DupreeBruce Alan KnudsenRobert John Zabala
    • Mark Gilbert BenzWilliam Thomas Carter, Jr.Paul Leonard DupreeBruce Alan KnudsenRobert John Zabala
    • B22F3/115C21C7/076C22B9/18C23C4/12C21C1/00
    • C22B9/18B22F3/115C21C7/076C23C4/123B22F2998/00Y02P10/212Y02P10/242
    • A system for the recycling of overspray powder during spray forming is provided. The system involves providing a refining vessel to contain an electroslag refining layer floating on a layer of molten refined metal. An ingot of unrefined metal is lowered into the vessel into contact with the molten electroslag layer. A current is passed through the slag layer to the ingot to cause surface melting at the interface between the ingot and the electroslag layer. As the ingot is surface melted at its point of contact with the slag, droplets of the unrefined metal are formed and these droplets pass down through the slag and are collected in a body of molten refined metal beneath the slag. The refined metal is held within a cold hearth. At the bottom of the cold hearth, a cold finger orifice permits the withdrawal of refined metal from the cold hearth apparatus. The refined metal passes from the cold finger orifice as a stream. The stream is atomized for spray forming into a preform article on a spray collection station having a solid receiving surface for receiving the atomized metal thereon to form the preform article. The powder produced during the atomization which was not deposited on the solid receiving surface of the spray collection station is recycled onto the top of the molten slag in the electroslag refining station.
    • 提供了一种用于在喷雾成型期间回收过量喷粉的系统。 该系统包括提供精炼容器以容纳漂浮在熔融精炼金属层上的电渣精炼层。 将未精制金属锭放入容器中与熔融电渣层接触。 电流通过炉渣层进入铸锭,使铸锭和电渣层之间的界面发生表面熔化。 当锭在与渣的接触点处表面熔融时,形成未精制金属的液滴,并且这些液滴向下通过炉渣,并被收集在炉渣下面的熔融精炼金属体中。 精炼的金属被放在一个冷的炉膛内。 在冷底部的底部,冷手指孔允许精制金属从冷炉装置中取出。 精制金属作为流从冷指孔传递。 将该物流雾化成用于喷雾成型到具有用于在其上接收雾化金属的固体接收表面以形成预制品的喷雾收集站的预制品制品。 在雾化期间产生的未沉积在喷雾收集站的固体接收表面上的粉末被再循环到电渣精炼站的熔渣顶部。