31.
    发明专利
    未知

    公开(公告)号:DE69616933T2

    公开(公告)日:2002-06-27

    申请号:DE69616933

    申请日:1996-10-03

    Applicant: SAINT GOBAIN

    Abstract: The protective material for equipment in contact with hot glass is a knitted fabric placed between them. The fabric has wales of stitches to form at least one flat surface. The knitted fabric has polygonal openings in it, formed by a number of non-bonded segments each of part of a wale and the bonded segments. Two to four stitches (m) are knitted together between adjacent wales (A,B) by a reciprocal transfer of the stitches (m) from one wale to another. The fabric is knitted on a twin-bed knitter, giving two surfaces on opposing planes, or a single-bed knitter giving one surface on a single plane. The fabric is knitted with metal or non-metal filaments such as of ceramics, silicon carbide or synthetics. The filaments can also be a hybrid of metal and non-metal materials. The metal filaments are of non-oxidizing steel, especially type 316L and pref. austenitic. The non-oxidizing steel has a chrome content of at least 17 % and especially 17-19 %, a nickel content of at least 12 % of especially 13-14 %, and a carbon content of ≤ 0.03 %. The fabric openings are in a symmetrical shape, with the same lengths for the bonded and non-bonded segments of the material, or they asymmetrical and in different lengths. The open zones are formed of ≥ 2 stitches and especially 2-10 stitches and preferably 2-6 stitches. The open zones are hexagonal. The width and/or shape of the openings are varied through the knitting of the material to give knitted zones of a different appearance and properties. The openings have a circumference of 8-80 mm and especially 20-40 mm. The fabric has floating stitches using spun filaments, monofilaments or multifilaments. The filaments are used singly, in a metric count of 1-30 such as 1.5-10.0 for metallic filaments, or a number of filaments and especially 2-5 filaments. Or the knitter uses at least 90 elementary filaments each with a diameter of ≤ 50 mu m and preferably 8-20 mu m. The knitted fabric has a thickness of ≤ 5 mm and especially 1-3 mm. The knitted fabric has a thermal conductivity of ≤ 3 W.m .K and especially 0.1-0.2 W.m .K . The fabric has an air permeability of at least 2 m/sec. The two surfaces of the fabric can be distinguished by the nature of the filaments forming the surfaces, or it has two identical surfaces.

    32.
    发明专利
    未知

    公开(公告)号:DE69616933D1

    公开(公告)日:2001-12-20

    申请号:DE69616933

    申请日:1996-10-03

    Applicant: SAINT GOBAIN

    Abstract: The protective material for equipment in contact with hot glass is a knitted fabric placed between them. The fabric has wales of stitches to form at least one flat surface. The knitted fabric has polygonal openings in it, formed by a number of non-bonded segments each of part of a wale and the bonded segments. Two to four stitches (m) are knitted together between adjacent wales (A,B) by a reciprocal transfer of the stitches (m) from one wale to another. The fabric is knitted on a twin-bed knitter, giving two surfaces on opposing planes, or a single-bed knitter giving one surface on a single plane. The fabric is knitted with metal or non-metal filaments such as of ceramics, silicon carbide or synthetics. The filaments can also be a hybrid of metal and non-metal materials. The metal filaments are of non-oxidizing steel, especially type 316L and pref. austenitic. The non-oxidizing steel has a chrome content of at least 17 % and especially 17-19 %, a nickel content of at least 12 % of especially 13-14 %, and a carbon content of ≤ 0.03 %. The fabric openings are in a symmetrical shape, with the same lengths for the bonded and non-bonded segments of the material, or they asymmetrical and in different lengths. The open zones are formed of ≥ 2 stitches and especially 2-10 stitches and preferably 2-6 stitches. The open zones are hexagonal. The width and/or shape of the openings are varied through the knitting of the material to give knitted zones of a different appearance and properties. The openings have a circumference of 8-80 mm and especially 20-40 mm. The fabric has floating stitches using spun filaments, monofilaments or multifilaments. The filaments are used singly, in a metric count of 1-30 such as 1.5-10.0 for metallic filaments, or a number of filaments and especially 2-5 filaments. Or the knitter uses at least 90 elementary filaments each with a diameter of ≤ 50 mu m and preferably 8-20 mu m. The knitted fabric has a thickness of ≤ 5 mm and especially 1-3 mm. The knitted fabric has a thermal conductivity of ≤ 3 W.m .K and especially 0.1-0.2 W.m .K . The fabric has an air permeability of at least 2 m/sec. The two surfaces of the fabric can be distinguished by the nature of the filaments forming the surfaces, or it has two identical surfaces.

    COATING FOR SURFACES CONTACTING HOT GL;ASS AND METHOD OF USING SAME

    公开(公告)号:PL182094B1

    公开(公告)日:2001-11-30

    申请号:PL31637596

    申请日:1996-10-03

    Abstract: The protective material for equipment in contact with hot glass is a knitted fabric placed between them. The fabric has wales of stitches to form at least one flat surface. The knitted fabric has polygonal openings in it, formed by a number of non-bonded segments each of part of a wale and the bonded segments. Two to four stitches (m) are knitted together between adjacent wales (A,B) by a reciprocal transfer of the stitches (m) from one wale to another. The fabric is knitted on a twin-bed knitter, giving two surfaces on opposing planes, or a single-bed knitter giving one surface on a single plane. The fabric is knitted with metal or non-metal filaments such as of ceramics, silicon carbide or synthetics. The filaments can also be a hybrid of metal and non-metal materials. The metal filaments are of non-oxidizing steel, especially type 316L and pref. austenitic. The non-oxidizing steel has a chrome content of at least 17 % and especially 17-19 %, a nickel content of at least 12 % of especially 13-14 %, and a carbon content of ≤ 0.03 %. The fabric openings are in a symmetrical shape, with the same lengths for the bonded and non-bonded segments of the material, or they asymmetrical and in different lengths. The open zones are formed of ≥ 2 stitches and especially 2-10 stitches and preferably 2-6 stitches. The open zones are hexagonal. The width and/or shape of the openings are varied through the knitting of the material to give knitted zones of a different appearance and properties. The openings have a circumference of 8-80 mm and especially 20-40 mm. The fabric has floating stitches using spun filaments, monofilaments or multifilaments. The filaments are used singly, in a metric count of 1-30 such as 1.5-10.0 for metallic filaments, or a number of filaments and especially 2-5 filaments. Or the knitter uses at least 90 elementary filaments each with a diameter of ≤ 50 mu m and preferably 8-20 mu m. The knitted fabric has a thickness of ≤ 5 mm and especially 1-3 mm. The knitted fabric has a thermal conductivity of ≤ 3 W.m .K and especially 0.1-0.2 W.m .K . The fabric has an air permeability of at least 2 m/sec. The two surfaces of the fabric can be distinguished by the nature of the filaments forming the surfaces, or it has two identical surfaces.

    COVER MATERIAL RESISTANT TO HIGH TEMPERATURE AND INTENDED FOR INTRODUCTION BETWEEN TOOLS AND PLATES OF HOT GLASS, AS WELL AS APPLICATION METHOD THEREOF

    公开(公告)号:CZ292396A3

    公开(公告)日:1997-07-16

    申请号:CZ292396

    申请日:1996-10-04

    Abstract: The protective material for equipment in contact with hot glass is a knitted fabric placed between them. The fabric has wales of stitches to form at least one flat surface. The knitted fabric has polygonal openings in it, formed by a number of non-bonded segments each of part of a wale and the bonded segments. Two to four stitches (m) are knitted together between adjacent wales (A,B) by a reciprocal transfer of the stitches (m) from one wale to another. The fabric is knitted on a twin-bed knitter, giving two surfaces on opposing planes, or a single-bed knitter giving one surface on a single plane. The fabric is knitted with metal or non-metal filaments such as of ceramics, silicon carbide or synthetics. The filaments can also be a hybrid of metal and non-metal materials. The metal filaments are of non-oxidizing steel, especially type 316L and pref. austenitic. The non-oxidizing steel has a chrome content of at least 17 % and especially 17-19 %, a nickel content of at least 12 % of especially 13-14 %, and a carbon content of ≤ 0.03 %. The fabric openings are in a symmetrical shape, with the same lengths for the bonded and non-bonded segments of the material, or they asymmetrical and in different lengths. The open zones are formed of ≥ 2 stitches and especially 2-10 stitches and preferably 2-6 stitches. The open zones are hexagonal. The width and/or shape of the openings are varied through the knitting of the material to give knitted zones of a different appearance and properties. The openings have a circumference of 8-80 mm and especially 20-40 mm. The fabric has floating stitches using spun filaments, monofilaments or multifilaments. The filaments are used singly, in a metric count of 1-30 such as 1.5-10.0 for metallic filaments, or a number of filaments and especially 2-5 filaments. Or the knitter uses at least 90 elementary filaments each with a diameter of ≤ 50 mu m and preferably 8-20 mu m. The knitted fabric has a thickness of ≤ 5 mm and especially 1-3 mm. The knitted fabric has a thermal conductivity of ≤ 3 W.m .K and especially 0.1-0.2 W.m .K . The fabric has an air permeability of at least 2 m/sec. The two surfaces of the fabric can be distinguished by the nature of the filaments forming the surfaces, or it has two identical surfaces.

    36.
    发明专利
    未知

    公开(公告)号:FR2739616A1

    公开(公告)日:1997-04-11

    申请号:FR9511711

    申请日:1995-10-05

    Abstract: The protective material for equipment in contact with hot glass is a knitted fabric placed between them. The fabric has wales of stitches to form at least one flat surface. The knitted fabric has polygonal openings in it, formed by a number of non-bonded segments each of part of a wale and the bonded segments. Two to four stitches (m) are knitted together between adjacent wales (A,B) by a reciprocal transfer of the stitches (m) from one wale to another. The fabric is knitted on a twin-bed knitter, giving two surfaces on opposing planes, or a single-bed knitter giving one surface on a single plane. The fabric is knitted with metal or non-metal filaments such as of ceramics, silicon carbide or synthetics. The filaments can also be a hybrid of metal and non-metal materials. The metal filaments are of non-oxidizing steel, especially type 316L and pref. austenitic. The non-oxidizing steel has a chrome content of at least 17 % and especially 17-19 %, a nickel content of at least 12 % of especially 13-14 %, and a carbon content of ≤ 0.03 %. The fabric openings are in a symmetrical shape, with the same lengths for the bonded and non-bonded segments of the material, or they asymmetrical and in different lengths. The open zones are formed of ≥ 2 stitches and especially 2-10 stitches and preferably 2-6 stitches. The open zones are hexagonal. The width and/or shape of the openings are varied through the knitting of the material to give knitted zones of a different appearance and properties. The openings have a circumference of 8-80 mm and especially 20-40 mm. The fabric has floating stitches using spun filaments, monofilaments or multifilaments. The filaments are used singly, in a metric count of 1-30 such as 1.5-10.0 for metallic filaments, or a number of filaments and especially 2-5 filaments. Or the knitter uses at least 90 elementary filaments each with a diameter of ≤ 50 mu m and preferably 8-20 mu m. The knitted fabric has a thickness of ≤ 5 mm and especially 1-3 mm. The knitted fabric has a thermal conductivity of ≤ 3 W.m .K and especially 0.1-0.2 W.m .K . The fabric has an air permeability of at least 2 m/sec. The two surfaces of the fabric can be distinguished by the nature of the filaments forming the surfaces, or it has two identical surfaces.

    dispositif et procédé de formage d’une feuille de verre

    公开(公告)号:FR3120624B1

    公开(公告)日:2025-02-21

    申请号:FR2102519

    申请日:2021-03-15

    Applicant: SAINT GOBAIN

    Abstract: La présente invention concerne une station de bombage (4) pour dispositif de bombage comprenant deux formes de bombage, un cadre de pressage (5) agencé pour s’ajuster à la feuille de verre et aller la presser contre une forme supérieure, la forme supérieure (6) comprenant une face de formage dont l’aire définie par la projection du contour de la forme supérieure sur un plan horizontal est supérieure à l’aire définie par la projection du contour extérieur du cadre de pressage et de la feuille de verre sur le même plan horizontal, le cadre de pressage (5) comprenant un anneau de pressage (50) ayant une surface continue, la forme supérieure comprenant une feuille souple (60) associée à une série supérieure d’éléments de translation (70), caractérisés en ce que la forme supérieure est apte à se déformer sous l’effet des éléments de translation de la série supérieure pour obtenir une valeur de flèche variant d’au moins 5mm. Fig 1

    Vidrio estratificado que comprende un conjunto de diodos

    公开(公告)号:ES2899948T3

    公开(公告)日:2022-03-15

    申请号:ES17725306

    申请日:2017-04-24

    Applicant: SAINT GOBAIN

    Abstract: Acristalamiento estratificado que comprende un conjunto (11a) de diodos y sus componentes electrónicos (11c) de control, que están conectados a un circuito impreso (11b) flexible delgado FPC y conectados a una tira de cable (11d) provista de un conector (11e) en su extremo; caracterizado por que incluye dos láminas de vidrio (2, 3), por que la unidad compuesta por el circuito impreso flexible (11b) y la tira (11d) de cable está oculta por el lado interior del acristalamiento mediante una capa (21) de esmalte depositada en la cara 4 del acristalamiento y que contiene aberturas (21a) orientadas hacia cada diodo (11a) para dejar pasar la luz emitida por el mismo, y por que la unidad compuesta por los diodos (11a), el circuito impreso (11b) flexible y la tira (11d) de cable está oculta por el lado exterior del acristalamiento mediante una capa (21') de esmalte depositada en la cara 2 del acristalamiento.

    УСТРОЙСТВО ДЛЯ ПОДДЕРЖКИ СТЕКЛЯННОГО ЛИСТА, В ЧАСТНОСТИ В УСТАНОВКЕ МОЙКИ

    公开(公告)号:RU2750476C2

    公开(公告)日:2021-06-28

    申请号:RU2018138585

    申请日:2017-04-05

    Applicant: SAINT GOBAIN

    Abstract: Устройство (1) дляудерживания, выполненноес возможностьютранспортировкилистастекла (2), содержитудерживающеесредство, котороепредназначенодляподдержкилистастеклав горизонтальномположении, раму (10) смножествомопорныхэлементов (11A-11N; 5; 6; 7), выполненныхс возможностьюлокальногоподдержаниялистастекла. Опорныеэлементысодержатподкладки (6). Удерживающеесредствосодержитсредство (10A) доставкинаходящихсяподдавлениемструйвоздухаи/иливодыв плоскости, перпендикулярнойплоскостирамы. Находящиесяподдавлениемструипредназначеныдляраспылениянаверхнейсторонелистастекла, котораянаходитсянапротивстороны, поддерживаемойподкладками. Каждаяподкладкаилинекоторыеизнихбылисвязаныс боковымконцевымстопором. Обеспечиваетсяпрочноеудерживаниелистастеклавовремяеготранспортировки. 3 н. и 12 з.п. ф-лы, 13 ил.

Patent Agency Ranking