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    • 32. 发明公开
    • METHOD FOR MANUFACTURING VACUUM HEAT INSULATOR AND VACUUM HEAT INSULATOR
    • 制造真空绝热器和真空绝热器的方法
    • EP3181980A1
    • 2017-06-21
    • EP16002614.2
    • 2016-12-08
    • ASAHI GLASS COMPANY, LIMITED
    • Shinohara, NobuhiroHayashi, TomoharuHamada, Yuya
    • F16L59/065
    • There are provided a method for easily and economically manufacturing a vacuum heat insulator in which the decrease in degree of vacuum is suppressed in a long-term use, and a vacuum heat insulator in which the decrease in degree of vacuum is suppressed in a long-term use. A method for manufacturing a vacuum heat insulator, including the steps of: 1) housing the core member (4) in an envelope (3) having an unwelded part; 2), after 1), welding the heat-weld layers (1) of the envelope under reduced pressure while leaving an unwelded part of a predetermined width from an outer edge of the envelope (3) housing the core member (4); 3) cleaning the surfaces of the unwelded part left outside the welded part (X1, X2); and 4I) forming a protective welded (Y) part by heat-welding the cleaned surfaces.
    • 本发明提供一种容易且经济地制造长期使用时抑制了真空度的降低的真空绝热体的方法以及在长期使用中抑制真空度降低的真空绝热体的方法, 长期使用。 一种制造真空绝热体的方法,包括以下步骤:1)将芯部件(4)容纳在具有未焊接部分的封套(3)中; 2)之后,在1)之后,在减压下焊接封壳的热熔层(1),同时从容纳芯部件(4)的封套(3)的外边缘留下预定宽度的未焊接部分; 3)清理留在焊接部分外部的未焊接部分(X1,X2)的表面; 和4I)通过热焊接清洁过的表面而形成保护性焊接(Y)部分。
    • 35. 发明公开
    • METHOD FOR EVALUATING WEATHERABILITY OF FLUORINATED COATING FILM
    • VERFAHREN ZUR BEWERTUNG DERWETTERBESTÄNDIGKEITEINES FLUORIERTEN BESCHICHTUNGSFILMS
    • EP3153842A1
    • 2017-04-12
    • EP15807547.3
    • 2015-06-09
    • Asahi Glass Company, Limited
    • SAITO, ShunAIKAWA, Masataka
    • G01N17/00
    • G01N17/00G01N17/004G01N33/442
    • To provide a method for evaluating the weather resistance by which the weather resistance of a fluorinated coating film can be evaluated accurately in a short time.
      A method for evaluating the weather resistance of a fluorinated coating film, which comprises a fluorinated coating film deterioration step (I) comprising a step (ia) of exposing the fluorinated coating film to xenon arc radiation and a step (ib) of attaching an aqueous hydrogen peroxide solution to the fluorinated coating film under xenon arc radiation to wet the fluorinated coating film, and an evaluation step (II) of comparing characteristics of the fluorinated coating film as between before and after the deterioration step (I) to evaluate the weather resistance of the fluorinated coating film.
    • 提供一种用于评估耐候性的方法,通过该方法可以在短时间内精确评估氟化涂膜的耐候性。 一种用于评价氟化涂膜的耐候性的方法,其包括含氟涂膜劣化步骤(I),所述步骤包括将所述氟化涂膜暴露于氙弧辐射的步骤(ia);以及步骤(ib) 在氙弧辐射下向氟化涂膜上加入过氧化氢溶液以润湿氟化涂膜,以及比较在劣化步骤(I)之前和之后的氟化涂膜的特性以评估耐候性的评价步骤(II) 的氟化涂膜。
    • 36. 发明公开
    • LAMINATED PLATE, AND METHOD OF PRODUCING LAMINATED PLATE
    • LERINITE PLATTE UND VERFAHREN ZUR FERTIGUNG EINER LAMINIERTEN PLATTE
    • EP3138689A1
    • 2017-03-08
    • EP16185665.3
    • 2016-08-25
    • Asahi Glass Company, Limited
    • NOTSU, KeijiSADAKANE, ShunsukeNARITA, MakotoNISHIHAMA, Jirou
    • B32B17/10
    • B32B17/10036B32B17/10137B32B17/1055B32B17/10889B32B2250/40B32B2605/006
    • A laminated plate includes a first plate; a second plate; and an intermediate film for bonding the first plate and the second plate, wherein the first plate includes a first main surface arranged at a side opposite to the intermediate film, and a second main surface that contacts the intermediate film, wherein the second plate has a third main surface that contacts the intermediate film, and a fourth main surface arranged at a side opposite to the intermediate film, wherein, upon the bonding by the intermediate film being released, a radius of curvature of the second main surface is smaller than that of the third main surface both in a transverse section and in a longitudinal section, and wherein a maximum value of bending compressive stress at an outer peripheral portion of the fourth main surface is less than or equal to 100 MPa.
    • 层压板包括第一板; 第二盘 以及用于接合所述第一板和所述第二板的中间膜,其中所述第一板包括布置在与所述中间膜相对的一侧的第一主表面和与所述中间膜接触的第二主表面,其中所述第二板具有 与中间膜接触的第三主表面和布置在与中间膜相对的一侧的第四主表面,其中当中间膜被粘合时,第二主表面的曲率半径小于 第三主表面在横截面和纵向截面中,并且其中第四主表面的外周部分处的弯曲压缩应力的最大值小于或等于100MPa。