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    • 2. 发明申请
    • Method and device for the selective laser sintering of metallic substances
    • 金属物质选择性激光烧结的方法和装置
    • US20040056022A1
    • 2004-03-25
    • US10467014
    • 2003-08-04
    • Wilhelm MeinersKonrad WissenbachChristoph Over
    • B05D003/00H05B006/10
    • B22F3/1055B22F2003/1056B23K35/0244B33Y10/00B33Y30/00B33Y40/00Y02P10/295
    • The present invention relates to a device and a method for the selective laser sintering of metallic substances. The construction volume of the device is delimited by side walls (2) and by a construction platform (3), which is adjustable in height, for building up a component (9). A heating plate (5) is placed on the construction platform (3) at a distance from the side walls (2) or is integrated in the surface of the construction platform (3). The heating plate (5) is designed and thermally insulated from the construction platform (3) by an insulation layer (4) in such a manner that it reaches temperatures of at least 500null C. during heating operation. With the device and the corresponding method, metallic components are maintained at temperatures above 500null C. during the building up process thereby reducing the danger of tensions or cracking in the component.
    • 本发明涉及金属物质的选择性激光烧结的装置和方法。 设备的结构体积由侧壁(2)和高度可调节的构造平台(3)限定,用于构建组件(9)。 加热板(5)与侧壁(2)隔开一段距离放置在施工平台(3)上,或者集成在施工平台(3)的表面上。 加热板(5)通过绝热层(4)与施工平台(3)设计和隔热,使得其在加热操作期间达到至少500℃的温度。 使用该装置和相应的方法,金属部件在建立过程中保持在高于500℃的温度,从而减少部件中的张力或开裂的危险。
    • 4. 发明申请
    • Apparatuses for heat-treatment of semiconductor films under low temperature
    • 低温半导体薄膜热处理设备
    • US20030197007A1
    • 2003-10-23
    • US10146504
    • 2002-05-14
    • Hyoung June KimDong Hoon Shin
    • H05B006/10
    • H05B6/105H01L21/67109
    • The present invention relates to apparatuses for continuous and efficient heat-treatment of semiconductor films upon thermally susceptible non-conducting substrates at a minimum thermal budget, and more particularly, to a polycrystalline silicon thin-film transistors (poly-Si TFTs) and PN diodes on glass substrates for various applications of liquid crystal displays (LCDs), organic light emitting diodes (OLEDs), and solar cells. According to the apparatuses of the present invention, the semiconductor films can be heat-treated without damaging the thermally susceptible substrates: e.g., crystallization of amorphous silicon films at the minimum thermal budget acceptable for the use of glass, enhancing kinetics of dopant activation at the minimum thermal budget acceptable for the use of glass.
    • 本发明涉及用于在热敏非导电衬底上以最小热量预算连续且有效地对半导体膜进行热处理的装置,更具体地说,涉及一种多晶硅薄膜晶体管(多晶硅TFT)和PN二极管 在用于液晶显示器(LCD),有机发光二极管(OLED)和太阳能电池的各种应用的玻璃基板上。 根据本发明的装置,可以对半导体膜进行热处理,而不损害热敏基片:例如,在玻璃的使用可接受的最小热预算下,非晶硅薄膜的结晶化,增强在玻璃的掺杂剂激活的动力学 玻璃使用的最低热预算可接受。
    • 7. 发明申请
    • Method of adhesive bonding by induction heating
    • 感应加热粘接方法
    • US20030121909A1
    • 2003-07-03
    • US10302158
    • 2002-11-22
    • Edward A. RiessAdam G. MalofskyJohn P. BarberDavid P. Bauer
    • H05B006/10
    • B23K13/01
    • An apparatus and system for using magnetic fields to heat magnetically susceptible materials within and/or adjacent to adhesives, resins, or composites so as to reversibly or irreversibly bond, bind, or fasten opaque or non-opaque solid materials to one another. The system makes use of the effect that alternating magnetic fields induce eddy currents and generate heat within susceptors, and the effect that alternating magnetic fields additionally induce magnetic hysteresis that occurs in magnetic materials and thereby generate heat. An induction heating tool is used to emit the magnetic field at its work coil, and an electronic controller measures the energy being used by a power converter that generates the alternating current driving the work coil which creates the magnetic field. The distance between the susceptor and work coil is repeatedly analyzed based upon the power converter's input energy, and the work coil is driven at a repeatedly corrected power level during the heating cycle. Once a sufficient accumulated energy has been delivered to the susceptor, the magnetic field is turned off automatically by the tool, thus preventing overheating of the susceptor.
    • 一种用于使用磁场来加热粘合剂,树脂或复合材料内部和/或与粘合剂,树脂或复合材料相邻的磁敏材料以便可逆地或不可逆地将不透明或非不透明固体材料彼此粘合,粘合或固定的装置和系统。 该系统利用交变磁场引起涡流并在感受体内产生热量的效果,以及交变磁场另外引起在磁性材料中发生磁滞的结果,从而产生热量。 使用感应加热工具在其工作线圈处发射磁场,并且电子控制器测量产生驱动工作线圈的产生磁场的交流电的功率转换器所使用的能量。 基于功率转换器的输入能量重复地分析基座和工作线圈之间的距离,并且在加热循环期间以工作线圈被重复校正的功率电平驱动。 一旦足够的积累的能量被传送到基座,磁场就被工具自动关闭,从而防止基座过热。