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    • 8. 发明公开
    • ENERGY-SAVING SHEET AND MANUFACTURING METHOD THEREFOR
    • 节能板及其制造方法
    • EP3214052A1
    • 2017-09-06
    • EP14904692.2
    • 2014-11-07
    • Icesun Vacuum Glass Ltd.
    • TIAN, Yongjiang
    • C03B23/24C03B23/203C03C27/06C03C27/00E06B3/66
    • C03B23/203C03B23/24C03C27/00C03C27/06E06B3/66E06B3/6612E06B3/673Y02A30/25Y02B80/24
    • The present invention provides an energy-saving plate and a method for manufacturing the same. The energy-saving plate of the present invention includes: at least one upper plate, at least one lower plate, at least one inner plate, and a plurality of support structures; a top edge of the upper plate and a bottom edge of the lower plate appear as a straight line; the inner plate is provided between the upper plate and the lower plate, and adjacent plates are separated by the plurality of support structures; an exhausting opening is provided at a lateral side of the inner plate, which is a through-groove inter-penetrating upper and lower surfaces of the inner plate; the periphery of the upper plate, the lower plate, and the inner plate are sealed via a sealing material, so as to form vacuum layers between the plate layers; an exhausting pipe is arranged in the exhausting opening, with which the exhausting opening is sealed together via the sealing material, an open-end of the exhausting pipe is located inside the exhausting opening, and a closed-end of the exhausting pipe is located outside the exhausting opening and is located in the space formed between the upper plate and the lower plate. In the present invention, a total flat surface of the energy-saving plate is achieved without structure defects, thus enhancing the strength of the energy-saving plate.
    • 本发明提供了一种节能板及其制造方法。 本发明的节能板包括:至少一个上板,至少一个下板,至少一个内板和多个支撑结构; 上板的顶部边缘和下部板的底部边缘呈现为直线; 内板设置在上板和下板之间,并且相邻板由多个支撑结构分开; 在内板的侧面设置有排气口,该内板是内板的贯通槽贯通的上下面, 上板,下板和内板的周边通过密封材料密封,以在板层之间形成真空层; 排气口内设有排气管,排气口通过密封材料与排气口密封在一起,排气管的开口端位于排气口内,排气管的封闭端位于外部 排气口并位于上板和下板之间形成的空间内。 在本发明中,节能板的整个平坦表面没有结构缺陷,从而提高了节能板的强度。
    • 10. 发明公开
    • METHOD FOR MANUFACTURING TEMPERED VACUUMED GLASS
    • VERFAHREN ZUR HERSTELLUNG VONGEHÄRTETEMVAKUUMGLAS
    • EP3070060A4
    • 2017-07-26
    • EP13897220
    • 2013-12-24
    • QINGDAO HENGDA GLASS TECH CO LTD
    • WANG HUIXU ZHIWUHUA SHANLIU CHENGWEI
    • C03B23/24C03B27/00C03C27/10E06B3/66E06B3/663E06B3/673E06B3/677
    • E06B3/6612C03C27/10E06B3/66304E06B3/67326E06B3/6775Y02A30/25Y02B80/24
    • A method for manufacturing a tempered vacuumed glass, comprising: manufacturing of a support point (2), and, over-tempering treatment, compounding, sealing, and vacuuming of plate glasses (4 and 7), a total of five steps, among which, in the sealing step, a lead-free low-melting point glass powder containing a shortwave infrared-absorbing material is applied around a gap (3) between two sheets of over-tempered glasses (4 and 7) that are joined together, which are then introduced into an edge-sealing furnace to melt the lead-free low-melting point glass powder containing the shortwave infrared-absorbing material by means of employing a shortwave infrared for heating, thus sealing the gap (3) between the two sheets of over-tempered glasses (4 and 7) that are joined together. Employment of the method allows for a shortened time during which the tempered vacuumed glass is heated in the edge-sealing process, while ensuring the tempered strength of the glass.
    • 一种钢化真空玻璃的制造方法,其特征在于,包括:支撑点(2)的制造,平板玻璃(4,7)的过回火处理,复合,密封,抽真空,共计5个工序 在密封步骤中,将包含短波红外吸收材料的无铅低熔点玻璃粉末施加在两片接合在一起的过回火玻璃(4和7)之间的间隙(3)周围,其中 然后引入封边炉中,通过使用短波红外线进行加热来熔化含有短波红外吸收材料的无铅低熔点玻璃粉末,由此密封两片薄片之间的间隙(3) 过度钢化的玻璃(4和7)连接在一起。 采用该方法可以缩短回火真空玻璃在封边过程中被加热的时间,同时确保玻璃的回火强度。