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    • 5. 发明授权
    • Welding/sealing glass-enclosed space in a vacuum
    • 在真空中焊接/密封玻璃封闭空间
    • US5489321A
    • 1996-02-06
    • US274788
    • 1994-07-14
    • C. Edwin TracyDavid K. Benson
    • C. Edwin TracyDavid K. Benson
    • C03B23/24C03B23/203
    • C03C27/06C03B23/245E06B3/6612Y02B80/24
    • A method of welding and sealing the edges of two juxtaposed glass sheets together to seal a vacuum space between the sheets comprises the steps of positioning a radiation absorbant material, such as FeO, VO.sub.2, or NiO, between the radiation transmissive glass sheets adjacent the edges and then irradiating the absorbant material, preferably with a laser beam, through at least one of the glass sheets. Heat produced by the absorbed radiation in the absorbant material melts glass in the portions of both glass sheets that are adjacent the absorbant material, and the melted glass from both sheets flows together to create the weld when the melted glass cools and hardens. The absorbant material can be dissolved and diffused into the melted glass to the extent that it no longer absorbs enough energy to keep the glass melted, thus, with appropriate proportioning of absorbant material to source energy power and welding heat needed, the process can be made self-stopping.
    • 将两个并置的玻璃板的边缘焊接和密封在一起以密封片材之间的真空空间的方法包括以下步骤:在邻近边缘的辐射透射玻璃板之间放置诸如FeO,VO2或NiO的辐射吸收材料 然后通过至少一个玻璃板照射吸收材料,优选用激光束照射。 由吸收材料中的吸收辐射产生的热量在与吸收材料相邻的玻璃板的部分中熔化玻璃,并且当熔融的玻璃冷却和硬化时,来自两片的熔融玻璃流动在一起形成焊缝。 吸收剂材料可以溶解并扩散到熔融玻璃中,使其不再吸收足够的能量以保持玻璃熔化,从而通过适当的吸收材料配比对源能量和所需的焊接热量进行处理, 自我停止
    • 6. 发明授权
    • Laser sealed vacuum insulation window
    • 激光密封真空保温窗
    • US4683154A
    • 1987-07-28
    • US767218
    • 1985-08-19
    • David K. BensonC. Edwin Tracy
    • David K. BensonC. Edwin Tracy
    • C03B23/24E06B3/663E06B3/24E06B7/12B32B17/00
    • E06B3/6612C03B23/245E06B3/66304Y02B80/24
    • A laser sealed evacuated window panel is comprised of two glass panes held spaced apart in relation to each other by a plurality of spherical glass beads and glass welded around the edges to provide an evacuated space between the glass panes that is completely glass sealed from the exterior. The glass welded edge seal is obtained by welding the edges of the glass panes together with a laser beam while the glass panes and bead spacers are positioned in a vacuum furnace and heated to the annealing point of the glass to avoid stress fracture in the area of the glass weld. The laser welding in the furnace can be directed around the perimeter of the glass panel by a combination of rotating the glass panel and linearly translating or aiming the laser with a relay mirror.
    • 激光密封的抽真空窗板由两个玻璃板组成,两个玻璃板通过多个球形玻璃珠彼此隔开间隔开,并且玻璃焊接在边缘周围,以在玻璃板之间提供抽真空的空间,玻璃板从外部完全玻璃密封 。 玻璃焊接边缘密封是通过将玻璃板的边缘与激光束焊接在一起而获得的,同时将玻璃板和珠粒间隔件定位在真空炉中并加热到玻璃的退火点,以避免在 玻璃焊接。 炉中的激光焊接可以通过旋转玻璃面板并使激光器与中继反射镜线性地平移或对准的组合而围绕玻璃面板的周边定向。
    • 9. 发明授权
    • Cooking utensil with improved heat retention
    • 具有改善保温性能的炊具
    • US5643485A
    • 1997-07-01
    • US343081
    • 1994-11-21
    • Thomas F. PotterDavid K. BensonSteven D. Burch
    • Thomas F. PotterDavid K. BensonSteven D. Burch
    • A47J27/00A47J41/02B64G1/22B64G1/50B64G1/58E04B1/76E06B3/663F01N3/20F01N3/28F01N5/02F01N13/02F28F13/00H05B6/12A47G23/04
    • A47J41/028A47J27/002A47J41/02B64G1/22B64G1/226B64G1/50B64G1/58E06B3/66304F01N13/0097F01N3/2006F01N3/2882F01N3/2889F01N5/02F28F13/00B64G1/503E04B2001/7691F01N2240/02F01N2240/10F01N2260/08F01N2330/06F28F2013/008Y02T10/16Y02T10/26Y10S99/14
    • A cooking utensil with improved heat retention includes an inner pot received within an outer pot and separated in a closely spaced-apart relationship to form a volume or chamber therebetween. The chamber is evacuated and sealed with foil leaves at the upper edges of the inner and outer pot. The vacuum created between the inner and outer pot, along with the minimum of thermal contact between the inner and outer pot, and the reduced radiative heat transfer due to low emissivity coatings on the inner and outer pot, provide for a highly insulated cooking utensil. Any combination of a plurality of mechanisms for selectively disabling and re-enabling the insulating properties of the pot are provided within the chamber. These mechanisms may include: a hydrogen gas producing and reabsorbing device such as a metal hydride, a plurality of metal contacts which can be adjusted to bridge the gap between the inner and outer pot, and a plurality of bimetallic switches which can selectively bridge the gap between the inner and outer pot. In addition, phase change materials with superior heat retention characteristics may be provided within the cooking utensil. Further, automatic and programmable control of the cooking utensil can be provided through a microprocessor and associated hardware for controlling the vacuum disable/enable mechanisms to automatically cook and save food.
    • 具有改进的保温性的烹饪器具包括容纳在外锅内并以彼此间隔开的关系分开的内锅,以在它们之间形成体积或室。 室内抽真空并在内锅和外锅的上边缘用箔叶密封。 在内罐和外锅之间产生的真空以及内罐和外罐之间的最小热接触以及由于内罐和外罐上的低发射率涂层而减少的辐射热传递提供了高度绝缘的烹饪器具。 在室内提供用于选择性地禁用和重新启用罐的绝缘性质的多个机构的任何组合。 这些机构可以包括:氢气生成和再吸收装置,例如金属氢化物,可以调节以跨越内锅和外罐之间的间隙的多个金属触点,以及多个双金属开关,其可以选择性地桥接间隙 内锅和外锅之间。 此外,可以在炊具内提供具有优异保温特性的相变材料。 此外,可以通过微处理器和相关联的硬件来提供烹饪器具的自动和可编程控制,以控制真空禁用/启用机构以自动烹饪和保存食物。