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    • 1. 发明申请
    • Method of Separating Non-Metallic Material Using Microwave Radiation
    • 使用微波辐射分离非金属材料的方法
    • US20080236199A1
    • 2008-10-02
    • US10594935
    • 2006-01-30
    • Vladislav SklyarevichMykhaylo Shevelev
    • Vladislav SklyarevichMykhaylo Shevelev
    • C03B33/09
    • C03B33/09C03B33/078Y10T225/12Y10T225/304
    • A method of high speed cutting of non-metallic materials (14), preferably glass and laminated glass, is described. In the inventive method a concentrated microwave radiation (1) with appropriate frequency and power density is chosen so as to accomplish heating of at least one selected area (2) of the body at the required separating propagation path (3) to required temperature in a selected short time while ensuring that this temperature is large enough to create a thermal stress (6) through the thickness of the selected area that results in the separating of the body material. In one embodiment of the invention a method of high speed cutting laminated glass is described wherein concentrated microwave radiation is used for delaminating adhesive film before the step of separating the glass body.
    • 描述了非金属材料(14),优选玻璃和夹层玻璃的高速切割的方法。 在本发明的方法中,选择具有适当频率和功率密度的浓缩微波辐射(1),以便在所需的分离传播路径(3)中将至少一个所选体积的所选区域(2)加热至所需温度 选择的短时间,同时确保该温度足够大以通过导致主体材料分离的所选区域的厚度产生热应力(6)。 在本发明的一个实施例中,描述了一种高速切割夹层玻璃的方法,其中在分离玻璃体的步骤之前使用浓缩的微波辐射来分层粘合剂膜。
    • 2. 发明授权
    • Method for laminating glass sheets using short wave radiation
    • 使用短波辐射层压玻璃板的方法
    • US07344613B2
    • 2008-03-18
    • US11327827
    • 2006-01-09
    • Vladislav SklyarevichMykhaylo Shevelev
    • Vladislav SklyarevichMykhaylo Shevelev
    • B32B37/06
    • B32B17/10972B32B17/10036B32B17/10816B32B17/10862B32B17/10871B32B17/10935B32B17/10954B32B17/1099B32B37/003B32B37/06B32B37/08B32B2309/68B32B2310/0862B32B2315/08
    • A method for laminating glass sheets wherein laminating film (1) is placed over one surface of a first glass sheet (2) and the film (1) is heated with short wave radiation (4) to a bonding temperature. Heated areas (8) of the film (1) are successively pressed to the glass sheet (2) in a continuous manner for purging air from between the film (1) and the first glass sheet (2) and for applying bonding pressure. The pressed film areas (8) are then cooled whereby an appropriate bond is attained between the film (1) and the first glass sheet (2). Thereafter the first glass sheet (2) with its bonded film is subjected to a partial vacuum and a second glass sheet (10) is positioned on the film (1) and the second glass sheet (10) is pressed (11) to the film (1). The film (1) is then reheated in selected areas with short wave radiation (12) to a bonding temperature and thereafter cooled whereby an appropriate bond is obtained between the selected film (1) areas and the second glass sheet (10) to provide a glass lamination.
    • 一种用于层压玻璃板的方法,其中将层压膜(1)放置在第一玻璃板(2)的一个表面上,并将膜(1)用短波辐射(4)加热至接合温度。 连续地将膜(1)的加热区域(8)按压到玻璃板(2),以从膜(1)和第一玻璃板(2)之间吹扫空气并施加结合压力。 然后将压膜区域(8)冷却,从而在膜(1)和第一玻璃板(2)之间获得适当的接合。 此后,将具有接合膜的第一玻璃板(2)进行部分真空,将第二玻璃板(10)定位在膜(1)上,并将第二玻璃板(10)压到膜 (1)。 然后将膜(1)在具有短波辐射(12)的选定区域中再加热至接合温度,然后冷却,从而在所选择的膜(1)区域和第二玻璃板(10)之间获得适当的接合,从而提供 玻璃层压。
    • 8. 发明授权
    • Method and apparatus for laminating glass sheets
    • 玻璃板层压方法及装置
    • US07476284B2
    • 2009-01-13
    • US11900099
    • 2007-09-10
    • Vladislav SklyarevichMykhaylo Shevelev
    • Vladislav SklyarevichMykhaylo Shevelev
    • B29C65/00
    • B32B37/06B32B17/10036B32B17/10761B32B17/10825B32B17/10871B32B17/1099B32B2309/68B32B2310/0806B32B2315/08
    • The invention relates to a method and apparatus for laminating glass articles without using an autoclave. The sandwich structure to be laminated is preheated than is placed in a controllable vacuum and subjected to electromagnetic radiation with specified frequencies and power. The final heating is provided by convectional heat source. Pressure that is applied continuously during the radiating, heating and cooling steps is also specified for achieving an appropriate bond. An apparatus appropriate for realizing the invented process is also provided. The apparatus includes a loading table, three furnaces, and a cooling chamber which are adjusted to and adjoined to each to other. These parts provide the necessary conditions for high-quality laminating simple and multi-sandwich structures with high production rate and efficiency. The apparatus is inexpensive and fits into the space of two glass article lengths.
    • 本发明涉及不使用高压釜而玻璃制品层压的方法和装置。 要层压的夹层结构被预热,而不是放置在可控制的真空中并经受具有特定频率和功率的电磁辐射。 最终加热由对流热源提供。 在辐射,加热和冷却步骤期间连续施加的压力也被指定用于实现适当的粘合。 还提供了适用于实现本发明方法的装置。 该装置包括一个装载台,三个炉和一个冷却室,这些冷却室被调整到每一个并连接到另一个。 这些部件为生产率高,效率高的高品质层压简易多层结构提供了必要的条件。 该设备便宜并且适合两个玻璃制品长度的空间。
    • 9. 发明授权
    • Method for laminating glass sheets using microwave radiation
    • 使用微波辐射层压玻璃板的方法
    • US07063760B2
    • 2006-06-20
    • US10802626
    • 2004-03-17
    • Vladislav SklyarevichMykhaylo Shevelev
    • Vladislav SklyarevichMykhaylo Shevelev
    • B32B37/06
    • B32B17/10862B32B17/10036B32B17/10871B32B17/10935B32B17/1099B32B37/003B32B37/06B32B37/08B32B2309/68B32B2310/0862B32B2315/08
    • A method for laminating glass sheets wherein laminating film is placed over one surface of a first glass sheet and the film is heated with microwave radiation to a bonding temperature. Heated areas of the film are successively pressed to the glass sheet in a continuous manner for purging air from between the film and the first glass sheet and for applying bonding pressure. The pressed film areas are then cooled whereby an appropriate bond is attained between the film and the first glass sheet. Thereafter the first glass sheet with its bonded film is subjected to a partial vacuum and a second glass sheet is positioned on the film and the second glass sheet is pressed to the film. The film is then reheated with microwave radiation to a bonding temperature and thereafter cooled whereby an appropriate bond is obtained between the film and the second glass sheet to provide a glass lamination.
    • 一种用于层压玻璃板的方法,其中将层压膜放置在第一玻璃板的一个表面上,并将膜用微波辐射加热至接合温度。 连续地将膜的加热区域连续地压在玻璃板上,以从膜和第一玻璃板之间吹扫空气并施加粘合压力。 然后将压制膜区域冷却,从而在膜和第一玻璃板之间获得适当的粘结。 此后,将具有接合膜的第一玻璃片进行部分真空,将第二玻璃片定位在膜上,并将第二玻璃片压到膜上。 然后用微波辐射将膜再加热至接合温度,然后冷却,从而在膜和第二玻璃板之间获得适当的粘合以提供玻璃层压。