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公开(公告)号:US12281413B2
公开(公告)日:2025-04-22
申请号:US17767922
申请日:2020-10-16
Applicant: UBE EXSYMO CO., LTD.
Inventor: Seiji Tanaka
Abstract: To provide a wound yarn package and a method for manufacturing the same in which even if sea-island type fibers are wound around a bobbin one by one by a traverse mode, cob-webbing and curling are less likely to occur, and the variation in the heat shrinkage rate between layers constituting the yarn layer is reduced. When winding sea-island type fibers with a fineness of 100 to 6400 dtex around a bobbin one by one by a traverse mode to form a yarn layer, each yarn constituting the n-th yarn layer is wound at a position 0 to x mm away from each yarn constituting the (n−1)-th yarn layer, with the yarn width of the sea-island type fiber being taken as x (mm), to fabricate a wound yarn package.
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公开(公告)号:US20230002936A1
公开(公告)日:2023-01-05
申请号:US17902461
申请日:2022-09-02
Applicant: UBE EXSYMO CO., LTD.
Inventor: Hirohumi YASHIRO , Kouki ENDOU , Tatsunori TSUKAHARA
IPC: D01F8/06 , D04H1/541 , D01D5/34 , D04H1/4291 , D04H1/4382 , D01F1/10 , B29C48/05 , D01D5/12 , D01F6/46 , B29K23/00
Abstract: Provided are a method for producing a drawn conjugated fiber, capable of producing a conjugated fiber having a high strength and a thin fineness, and a drawn conjugated fiber. A drawn conjugated fiber is produced by performing a spinning step of obtaining an undrawn fiber having a core-sheath structure in which a core material is a resin containing, as a main component, a crystalline propylene polymer and a sheath material is a resin containing, as a main component, an olefin polymer having a melting point lower than that of the core material, by means of melt-spinning (step S1); and a drawing step of drawing the undrawn fiber (step S2).
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公开(公告)号:US11985762B2
公开(公告)日:2024-05-14
申请号:US17157695
申请日:2021-01-25
Applicant: UBE EXSYMO CO., LTD.
Inventor: Eisuke Tachibana , Taro Suzuki , Makoto Totani , Kouji Kondoh , Eijirou Miyagawa , Junya Kasahara , Takao Arima
IPC: B32B15/08 , B29C43/48 , B29C48/88 , B32B3/08 , B32B7/04 , B32B7/06 , B32B15/088 , B32B15/09 , B32B15/098 , B32B15/18 , B32B15/20 , B32B27/28 , B32B27/36 , B32B27/42 , B32B37/06 , B32B37/08 , B32B37/10 , H05K1/03 , H05K1/09 , H05K1/11 , H05K3/02 , H05K3/46 , B65G15/12 , H05K3/06 , H05K3/22
CPC classification number: H05K1/0393 , B29C48/9145 , B32B3/08 , B32B7/04 , B32B7/06 , B32B15/08 , B32B15/088 , B32B15/09 , B32B15/098 , B32B15/18 , B32B15/20 , B32B27/28 , B32B27/281 , B32B27/283 , B32B27/36 , B32B27/42 , B32B37/06 , B32B37/08 , B32B37/10 , B32B37/1027 , H05K1/09 , H05K1/115 , H05K3/022 , H05K3/4655 , B29C43/48 , B32B2250/02 , B32B2250/03 , B32B2250/40 , B32B2307/30 , B32B2307/302 , B32B2307/306 , B32B2307/50 , B32B2307/538 , B32B2307/546 , B32B2307/732 , B32B2307/734 , B32B2307/748 , B32B2309/02 , B32B2309/04 , B32B2405/00 , B32B2457/08 , B32B2457/20 , B65G15/12 , H05K3/067 , H05K3/227 , H05K2201/0141 , H05K2201/0191 , H05K2201/068 , H05K2203/066 , H05K2203/1194 , H05K2203/1545
Abstract: A flexible laminated sheet manufacturing method includes thermocompression-bonding an insulation film formed of a liquid crystal polymer onto a metal foil between endless belts to form a flexible laminated sheet. The thermocompression bonding includes heating the flexible laminated sheet so that the maximum temperature of the sheet is in the range from a temperature that is 45° C. lower than the melting point of the liquid crystal polymer to a temperature that is 5° C. lower than the melting point. The thermocompression bonding also includes slowly cooling the flexible laminated sheet so that an exit temperature, which is a temperature of the sheet when transferred out of the endless belts, is in the range from a temperature that is 235° C. lower than the melting point of the liquid crystal polymer to a temperature that is 100° C. lower than the melting point.
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公开(公告)号:US20210153348A1
公开(公告)日:2021-05-20
申请号:US17157695
申请日:2021-01-25
Applicant: UBE EXSYMO CO., LTD.
Inventor: Eisuke TACHIBANA , Taro SUZUKI , Makoto TOTANI , Kouji KONDOH , Eijirou MIYAGAWA , Junya KASAHARA , Takao ARIMA
IPC: H05K1/03 , B32B15/08 , B32B15/088 , B32B37/10 , H05K3/02 , B32B3/08 , B32B15/20 , B32B7/04 , B32B15/098 , B32B7/06 , B32B27/36 , B32B27/42 , B32B15/18 , B32B27/28 , B32B15/09 , B32B37/06 , B32B37/08 , H05K1/09 , H05K1/11 , H05K3/46
Abstract: A flexible laminated sheet manufacturing method includes thermocompression-bonding an insulation film formed of a liquid crystal polymer onto a metal foil between endless belts to form a flexible laminated sheet. The thermocompression bonding includes heating the flexible laminated sheet so that the maximum temperature of the sheet is in the range from a temperature that is 45° C. lower than the melting point of the liquid crystal polymer to a temperature that is 5° C. lower than the melting point. The thermocompression bonding also includes slowly cooling the flexible laminated sheet so that an exit temperature, which is a temperature of the sheet when transferred out of the endless belts, is in the range from a temperature that is 235° C. lower than the melting point of the liquid crystal polymer to a temperature that is 100° C. lower than the melting point.
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公开(公告)号:US20200002480A1
公开(公告)日:2020-01-02
申请号:US16490724
申请日:2018-03-05
Applicant: Ube Exsymo Co., Ltd.
Inventor: Naoki Okamoto
Abstract: The present invention provides organic-inorganic composite particles of which the creep deformation is further suppressed; and a method for producing the same. Organic-inorganic composite particles 10 include a compound having a siloxane bond and has a particle diameter d0, and when a load is applied such that an amount of displacement Ds satisfies 0.08d0≤Ds≤0.15d0 and is held for 180 seconds, conditions of the following Formulae (1) and (2) are satisfied: (D180−Ds)/d0≤1% Formula(1); and (Dmax−Ds)/d0≤1% Formula (2), wherein d0 is an average particle diameter, D180 is an amount of displacement of the particle diameter after 180 seconds of application of the load, and Dmax is the maximum amount of displacement of the particle diameter during the 180 seconds.
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公开(公告)号:US20230312355A1
公开(公告)日:2023-10-05
申请号:US18010994
申请日:2021-05-11
Applicant: UBE EXSYMO CO., LTD.
Inventor: Hidenori MIYOSHI , Tatsuya NAKANO
IPC: C01B33/18
CPC classification number: C01B33/18 , C01P2004/34 , C01P2004/61 , C01P2004/62
Abstract: Provided is a hollow inorganic particle having excellent strength despite having high porosity. Provided is a hollow inorganic particle including an outer shell, the thinnest part of the outer shell/the thickest part of the outer shell being 0.80 or more. The hollow inorganic particle according to the present technology can be produced by a production method including: a coating step of coating core particles made of an organic polymer with a silicone-based compound; and a core particle removal step of removing the core particles. The coating step includes: a dispersant addition step of adding a dispersant to a core particle dispersion; and, after the dispersant addition step, a surfactant addition step of adding a cationic surfactant.
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公开(公告)号:US20220389622A1
公开(公告)日:2022-12-08
申请号:US17767259
申请日:2020-09-29
Applicant: UBE EXSYMO CO., LTD.
Inventor: Isamu KOGURE
IPC: D01F8/06 , D06M15/643 , D01D5/34 , D04H1/728 , D01D10/00 , D01F11/06 , D06M13/292 , D04H1/4382 , D04H1/4291
Abstract: Provided are staple fibers for air laid capable of improving dispersibility, and a method for producing the same. The staple fibers for air laid are characterized by including stable fibers to which a fiber treatment agent containing a hydrophilic oil agent and a silicone-containing oil agent is adhered in an amount of 0.7 to 2 wt % of a weight of the staple fibers, wherein a weight ratio of the hydrophilic oil agent and the silicone-containing oil agent contained in the fiber treatment agent (a weight of the hydrophilic oil agent/a weight of the silicone-containing oil agent) is within a range of 60/40 to 90/10, and a moisture content is 2 to 13%.
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公开(公告)号:US11499027B2
公开(公告)日:2022-11-15
申请号:US16488487
申请日:2018-02-27
Applicant: UBE EXSYMO CO., LTD.
Inventor: Masahiko Yokokita
IPC: B32B5/08 , C08J9/00 , B29C44/12 , B29C44/58 , B32B5/24 , C08J9/232 , C08L23/12 , C08L23/26 , D03D15/00 , D03D15/283 , D03D15/587 , B29K701/12 , B29L9/00
Abstract: The present invention can provide a fiber-reinforced expanded particle molded article having a reinforcing material fused and integrated with the surface of an expanded molded article, wherein the reinforcing material is a fabric or a braided product produced by weaving a linear composite material produced by melting and integrating a thermoplastic fiber comprising a low-melting component fiber and a high-melting component fiber, as two or more threads selected from the group consisting of a warp, a weft and a slant thread, the fiber-reinforced expanded particle molded article exhibiting an excellent reinforcing effect; and a method for economically producing the molded article by in-mold molding with a small number of steps.
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公开(公告)号:US11225392B2
公开(公告)日:2022-01-18
申请号:US16496675
申请日:2018-03-23
Applicant: UBE EXSYMO CO., LTD.
Inventor: Seiji Tanaka , Yasushi Kato , Kousuke Kanno , Kazuyoshi Shimizu
Abstract: There is provided a wound thread package that is unlikely to cause problems such as cob-webbing and collapse at the time of unwinding even when the wound thread is a multi-filament thread or tape-like thread, and a manufacturing method for the same.
To manufacture a wound thread package 1 by winding a plurality of multi-filament threads or tape-like threads having a total fineness of 100 to 6400 dtex per thread around a bobbin 2 by a traverse method, the threads constituting a thread layer 3 are arranged at intervals therebetween and wound with the same in traverse width w and at different traverse reverse positions.-
公开(公告)号:US12264418B2
公开(公告)日:2025-04-01
申请号:US17902461
申请日:2022-09-02
Applicant: UBE EXSYMO CO., LTD.
Inventor: Hirohumi Yashiro , Kouki Endou , Tatsunori Tsukahara
IPC: C08K5/1575 , B29C48/05 , C08K5/00 , C08K5/52 , C08K5/521 , D01D5/08 , D01D5/098 , D01D5/12 , D01D5/34 , D01F1/10 , D01F8/06 , D02J1/22 , D04H1/4291 , D04H1/4382 , D04H1/541 , B29K23/00 , D01F6/46
Abstract: Provided are a method for producing a drawn conjugated fiber, capable of producing a conjugated fiber having a high strength and a thin fineness, and a drawn conjugated fiber. A drawn conjugated fiber is produced by performing a spinning step of obtaining an undrawn fiber having a core-sheath structure in which a core material is a resin containing, as a main component, a crystalline propylene polymer and a sheath material is a resin containing, as a main component, an olefin polymer having a melting point lower than that of the core material, by means of melt-spinning (step S1); and a drawing step of drawing the undrawn fiber (step S2).
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