COMPRESSION MOLDING SYSTEM
    91.
    发明公开
    COMPRESSION MOLDING SYSTEM 有权
    压缩成型系统

    公开(公告)号:EP2692499A1

    公开(公告)日:2014-02-05

    申请号:EP12764962.2

    申请日:2012-02-02

    IPC分类号: B29C43/04 B29B11/12 B29C43/58

    摘要: To detect, by using an inexpensive device, a molten resin mass that is defectively handed from a molten resin mass conveyer device over to the metal mold and to enable the production to be quickly resumed after the apparatus has been halted eliminating the waste of the material.
    In handing the molten resin masses from a molten resin mass-feeding device 3 over to the female molds 20 of a compression-forming machine 4, an infrared thermometer 13 detects the molten resin masses that are defectively handed over by measuring the temperature of a portion of the female mold 20 on the outer side of an allowable range in which the molten resin masses are fed to the female molds 20. The temperature is high if the molten resin mass is present and is low if it is not present. Therefore, a defectively handed-over position can be detected relying on the molten resin mass that is decided to be present at the above portion.

    摘要翻译: 为了通过使用廉价的装置将从熔融树脂传送装置不良地传送的熔融树脂块检测到金属模具上并且在装置停止后能够快速恢复生产,消除了材料的浪费 。 在将来自熔融树脂块供给装置3的熔融树脂块交接到压缩成形机4的阴模20时,红外线温度计13通过测量部分的温度来检测交换不良的熔融树脂块 在将熔融树脂块供给至阴模20的允许范围的外侧。在存在熔融树脂块的情况下温度高,如果不存在则温度低。 因此,可以依靠决定存在于上述部分处的熔融树脂质量来检测出有缺陷的交接位置。

    SEAMLESS CAN AND COATED METAL PLATE
    93.
    发明公开

    公开(公告)号:EP4382446A1

    公开(公告)日:2024-06-12

    申请号:EP22853050.7

    申请日:2022-08-02

    摘要: The present invention relates to a seamless can including an inner surface coating film at least on a can inner surface side and a coated metal sheet that can be used to mold the seamless can. The inner surface coating film contains a polyester resin and a resol-type phenolic resin and/or an amino resin as a curing agent, and the inner surface coating film has a gel fraction (A) represented by Formula below of 55% or more and less than 90%. This makes it possible to provide a seamless can, in particular, a drawn and wall-ironed can, that has excellent retort whitening resistance and temporal embrittlement resistance, does not experience coating film peeling during heat treatment after molding, and has an excellent coating film covering property. Gel fraction (A) = (W2a/W1a) × 100 (%), where W1a represents a mass of the inner surface coating film isolated from a coated metal substrate cut out from the seamless can, and W2a represents a mass of the isolated inner surface coating film after being immersed in MEK at ordinary temperature for 60 minutes and then taken out and dried.

    METHOD FOR MANUFACTURING CELL CULTURE CONTAINER, AND CELL CULTURE CONTAINER

    公开(公告)号:EP4375357A1

    公开(公告)日:2024-05-29

    申请号:EP22845839.4

    申请日:2022-07-14

    IPC分类号: C12M1/00 C12M3/00

    CPC分类号: C12M1/00 C12M3/00

    摘要: A method for producing a cell culture vessel without a protrusion portion or a thin portion on a culture surface is provided. The method for producing the cell culture vessel having the culture surface of cells includes: using a primary mold (10) including a projecting portion (11) to form an uneven pattern structure (31) on a surface of a vessel base material (30) and a secondary mold (20) including a projecting portion (21, 22) to flatten a part of the surface of the vessel base material (30); pressing the primary mold (10) against the vessel base material (30) to form the uneven pattern structure (31) on the vessel base material (30); pressing the secondary mold (20) against a thin portion (33) formed on the vessel base material (30) to modify the thin portion (33) to a flattened portion (35); and configuring the surface of the vessel base material (30) including the uneven pattern structure (31) formed with at least a part of the modified flattened portion (35) as the culture surface to form the cell culture vessel.

    RESIN-COATED ALUMINUM-ALLOY DRAWN-AND-IRONED CAN

    公开(公告)号:EP4365096A1

    公开(公告)日:2024-05-08

    申请号:EP22892394.2

    申请日:2022-09-06

    IPC分类号: B65D1/16

    CPC分类号: B65D1/12 B65D1/16

    摘要: The present invention prevents cracking of a can body during stripping. Provided is a resin-coated aluminum-alloy drawn-and-ironed can characterized by comprising a bottomed cylindrical can body 10 having: a can bottom 11; and a cylindrical can body 12 that extends from the outer periphery of the can bottom along a can axis and that is centered on the can axis; The resin-coated aluminum-alloy drawn-and-ironed can is also characterized in that: the can body has a can height, from a ground section of the can bottom to the top end of the can body, in a range from 151 mm to 160 mm; the can body has an outer diameter which is a diameter in a range from 45 mm to 59 mm, and, has a tapered section 122, in which the thickness of the can body gradually increases toward the interior of the can body, in at least a section, the bottom of which is 80 mm from the ground section 112A of the can bottom to the top end of the can body and the top of which is 140 mm from the ground section 112A of the can bottom to the top end of the can body; and the angle of the tapered section relative to the can axis is from 50 seconds to 1 minute 30 seconds.

    CAN BODY PRODUCTION METHOD AND CAN BODY PRODUCTION LINE

    公开(公告)号:EP4201547A1

    公开(公告)日:2023-06-28

    申请号:EP21866351.6

    申请日:2021-07-12

    摘要: Provided are a can body production method which is capable of producing a can body in which a coating film is accurately formed in the curved end section of a floor section, and a can body produced via said production method.A can body production method having: a preform can molding step for molding a preform can by molding a dome section which recesses toward the inside of a bottomed cylinder in the floor section of said bottomed cylinder, and also molding a leg section which is ring-shaped and projects toward the side opposite the side toward which the dome section recesses in a manner such that the inner-circumferential section of said leg section is angled relative to the can axis direction with the ground-contacting point of the leg section as the reference point in a vertical cross-sectional view in the can axis direction; a coating step for coating the inner surface and/or the outer surface of the preform can; and a bottom re-forming step for molding a molded can which has a curved end section in the periphery of the dome section, by applying pressure to the inner surface of the dome section of the preform can which has been coated during the coating step.