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    • 71. 发明申请
    • WELDED SEALING OF PRESSURE CYLINDER VESSEL
    • 压力缸体的焊接密封
    • US20130334232A1
    • 2013-12-19
    • US13978180
    • 2011-01-07
    • Mats Gärdin
    • Mats Gärdin
    • F17C1/04
    • F17C1/04B22F3/003B30B11/002B30B15/042F16J12/00
    • A pressure vessel for isostatic pressing and a press comprising such a pressure vessel, wherein the pressure vessel comprises at least two sub-cylinders which are axially connected to form a force absorbing pressure vessel cylinder for enclosing a pressure medium during said isostatic pressing, wherein the axially connected sub-cylinders are welded along the joint(s) of the connected sub-cylinders. The pressure vessel comprises axially pre-stressing means arranged for exerting axial compressive forces on the sub-cylinders for attaining axial compressive stress at said joint(s) when the pressure medium is pressurized, and radially pre-stressing means arranged for exerting radial compressive forces on the sub-cylinders for attaining tangential compressive stress at the joint(s) when the pressure medium is pressurized.
    • 一种用于等静压的压力容器和包括这种压力容器的压力机,其中压力容器包括至少两个子气缸,其轴向连接以形成用于在所述等静压过程中封闭压力介质的吸力压力容器气缸,其中 轴向连接的子气缸沿连接的副气缸的接头焊接。 压力容器包括轴向预应力装置,其布置成在压力介质被加压时在子气缸上施加轴向压缩力,以在所述接头处获得轴向压缩应力;以及径向预应力装置,用于施加径向压缩力 在子气缸上,以便在压力介质被加压时在接头处获得切向压缩应力。
    • 75. 发明申请
    • METHOD AND DEVICE FOR MANUFACTURING TITANIUM OBJECTS
    • 用于制造钛金属物体的方法和装置
    • US20120193335A1
    • 2012-08-02
    • US13390203
    • 2010-08-11
    • Sigrid Guldberg
    • Sigrid Guldberg
    • B23K9/00
    • B23K10/027B22F3/1055B22F2003/1056B22F2003/1057B22F2998/00B23K9/044B23K9/162B23K9/173B23K15/0086B23K15/0093B23K15/10B23K37/0229B23K37/0461B23K2103/14B23K2103/42B23P2700/12B29C64/141B29C64/20B29C65/022B33Y10/00B33Y50/02B33Y70/00G05B19/4099Y02P10/295B22F3/003
    • This invention relates to a method and reactor of manufacturing an object by solid freeform fabrication, especially an object made of titanium or titanium alloys. The reactor of production of an object of a weldable material by solid freeform fabrication comprises a reactor chamber which is closed to the ambient atmosphere, wherein the reactor is given a design such that all adjacent wall elements forming the reactor chamber are joined with an obtuse angle (larger than 90°), the actuator located below the reactor chamber is given a design such that the actuator protrudes into the reactor chamber through an opening at the bottom of the reactor chamber holding the support substrate inside the reactor chamber, the opening is sealed by at least one elastic gas impermeable membrane which is gas tight attached to the reactor wall at the opening and to the actuator, the actuator located outside the reactor chamber is given a design such that the actuator protrudes into the reactor chamber through an opening at the side of the reactor chamber holding the high energy plasma transferred arc welding torch with wire feeder of the weldable material inside the reactor chamber, the opening is sealed by the at least one elastic gas impermeable membrane which is gas tight attached to the reactor wall at the opening and to the actuator, and the reactor is equipped with at least one closable gas inlet located at the lowest level of the reactor chamber and at least one closable gas outlet located at the highest level of the reactor chamber.
    • 本发明涉及通过固体自由形成制造制造物体的方法和反应器,特别是由钛或钛合金制成的物体。 通过固体自由形成制造可焊接材料的对象的反应器包括与大气环境接近的反应室,其中反应器具有使得形成反应室的所有相邻壁元件以钝角连接的设计 (大于90°),位于反应室下方的致动器具有这样的设计,使得致动器通过在反应器室的底部的开口突出到反应室中,该开口将反应器室内的支撑基板保持在内,开口被密封 通过在开口处和致动器处气密地连接到反应器壁的至少一个弹性气体不可渗透膜,位于反应器室外部的致动器被给予设计,使得致动器通过在该反应器室处的开口突出到反应室中 在反应室的一侧保持高能等离子体转移电弧焊炬与可焊材料的供线器在t内 所述开口由所述至少一个弹性气体不可渗透膜密封,所述弹性气体不可渗透膜在开口处和致动器处气密地附接到反应器壁,并且反应器配备有至少一个位于最低处的可关闭气体入口 反应室的高度和位于反应器室最高水平的至少一个可闭合气体出口。