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    • 4. 发明公开
    • DEVICE FOR SEPARATELY ARRANGING SUPPORTS FOR VACUUM INSULATED GLAZING, AND METHOD
    • EP4137427A1
    • 2023-02-22
    • EP21788449.3
    • 2021-03-04
    • Luoyang Landglass Technology Co., Ltd.
    • ZHAO, YanWANG, ZhangshengLI, JinyuWU, Haiyan
    • B65G47/14B65G47/88C03C27/06
    • Provided is a device for separately arranging supports for vacuum insulated glazing and a method. The device for separately arranging supports for vacuum insulated glazing includes a base (1), a vibrator (11), a separation chamber assembly (7), a separation actuator, a feed tube (8), and a drive device. The drive device is provided at a side of the base and connected to the separation actuator, and the separation chamber assembly, the separation actuator, and the feed tube are provided at another side of the base. The vibrator is provided on the separation chamber assembly. The separation chamber assembly is provided with a feed inlet, an accommodation cavity, and a dispensing outlet. The feed inlet is communicated with the accommodation cavity. The dispensing outlet is communicated with the feed tube. The separation chamber assembly is inclinedly arranged with respect to a horizontal plane. The separation actuator passes through the separation chamber assembly, and is provided at a lower portion of the accommodation cavity in a reciprocatingly movable manner. An upper edge of the separation actuator at a side close to the dispensing outlet is provided with a recess capable of accommodating one support. During reciprocating movements of the separator actuator, the accommodation cavity is communicated with the dispensing outlet via the recess of the separation actuator. When the device is arranging supports, one reciprocating movement of the separation actuator can only transport one support, thereby eliminating the case in which multiple supports are arranged in one operation.
    • 7. 发明公开
    • TEMPERED VACUUM GLASS
    • EP3483130A1
    • 2019-05-15
    • EP16907997.7
    • 2016-09-12
    • Luoyang Landglass Technology Co., Ltd.
    • ZHAO, YanLI, YanbingLIANG, XipingLI, Suzhen
    • C03C27/08
    • Tempered vacuum glass, including at least two glass sheets (1) arranged parallel to each other. At least one of the glass sheets (1) is tempered glass. Peripheries of adjacent glass sheets (1) are sealed using an edge sealing body (2). Support members (3) are disposed in an array between the glass sheets to form a vacuum space. The edge sealing body (2) is a metallic edge sealing structure formed by sealing the peripheries of the adjacent glass sheets (1) with metal. The edge sealing body (2) is composed of a transition layer, a metallized layer, an intermetallic compound layer, a solder layer, an intermetallic compound layer, a metallized layer, and a transition layer stacked in sequence. The metallized layer is a spongy skeleton structure formed by sintering a metal paste. After being heated and melted, solder fills pores of the spongy skeleton structures on the surfaces of adjacent metallized layers to form the intermetallic compound layers. The tempered glass has the advantages of both tempered glass and vacuum glass, and the edge sealing body (2) can satisfy the requirements for edge sealing tightness of the vacuum glass and ensure mechanical performance, durability, and weathering resistance of the tempered vacuum glass
    • 9. 发明公开
    • METHOD FOR MANUFACTURING COLUMNAR CURVED TEMPERED GLASS
    • VERFAHREN ZUR HERSTELLGEGEKRÜMMTENSÄULENFÖRMIGENGEHÄRTETENGLASES
    • EP2831008A1
    • 2015-02-04
    • EP12873348.2
    • 2012-07-12
    • Luoyang Landglass Technology Co., Ltd.
    • ZHAO, YanZHANG, Kezhi
    • C03B23/033C03B27/044
    • C03B23/033C03B27/0447C03B35/166C03B35/187C03B35/189
    • The present invention discloses a method for processing a columnar curved tempered glass. The method specifically comprises the following steps. Bending and tempering of the high temperature flat glass are divided into two stations. Bending is firstly carried out on the high temperature flat glass output by a heating furnace; the columnar extending direction of the curved glass is perpendicular to the direction the glass output from the heating furnace in the bending process, and then the formed curved glass is output to a tempering station in the columnar extending direction thereof to undergo tempering. In the present invention, bending and tempering of the high temperature flat glass are completed by two stations to break the normal procedure that bending and tempering are carried out by a single bending device intensively, thereby providing a novel technological approach for processing the columnar curved tempered glass.
    • 本发明公开了一种加工柱状弯曲钢化玻璃的方法。 该方法具体包括以下步骤。 高温平板玻璃的弯曲和回火分为两个台站。 首先在加热炉的高温平板玻璃输出上进行弯曲; 弯曲玻璃的柱状延伸方向在弯曲加工中与加热炉输出的玻璃的方向垂直,然后将形成的弯曲玻璃输出到回转台的柱状延伸方向进行回火。 在本发明中,高温平板玻璃的弯曲和回火由两个台站完成,以破坏通过单个弯曲装置进行弯曲和回火的正常过程,从而提供了一种用于加工柱状弯曲回火的新技术方法 玻璃。
    • 10. 发明公开
    • VACUUM GLASS SEALING METHOD AND DEVICE
    • DICHTUNGSVERFAHREN UND VORRICHTUNGFÜRUNTERDRUCKGLAS
    • EP2729422A1
    • 2014-05-14
    • EP11869133.6
    • 2011-08-09
    • Luoyang Landglass Technology Co., Ltd.
    • ZHAO, YanLI, YanbingWANG, ZhangshengSHI, JianboPANG, Shitao
    • C03B23/24
    • C03B23/245C03C27/08E06B3/6612E06B3/6775Y02A30/25Y02B80/24
    • The present invention discloses a vacuum glass sealing method and a sealing device using the method. The sealing device comprises a bottom plate, an annular side wall, a cover plate, a partition plate and a heating device, wherein the lower end of the annular side wall is situated on the bottom plate and air-tightly connected with the bottom plate; the cover plate is air-tightly covered at the upper end of the annular side wall; the partition plate is arranged on the middle part of the height direction of the annular side wall; after the periphery of the partition plate is air-tightly connected with the inner surface of the annular side wall, the partition plate divides the space encircled by the bottom plate, the annular side wall and the cover plate into a first closed space and a second closed space; and the two closed spaces are provided with an air extraction port for vacuumizing respectively.
    • 本发明公开了一种使用该方法的真空玻璃密封方法和密封装置。 密封装置包括底板,环形侧壁,盖板,隔板和加热装置,其中环形侧壁的下端位于底板上并与底板气密连接; 盖板在环形侧壁的上端气密地覆盖; 分隔板设置在环形侧壁的高度方向的中间部分; 在分隔板的周边与环形侧壁的内表面气密连接之后,隔板将由底板,环形侧壁和盖板包围的空间划分成第一封闭空间和第二封闭空间 封闭空间; 并且两个封闭空间分别设有用于抽真空的抽气口。