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    • 7. 发明公开
    • DIE HEATING DEVICE
    • 模具加热装置
    • EP2455203A1
    • 2012-05-23
    • EP10799573.0
    • 2010-06-28
    • Kabushiki Kaisha Kobe Seiko Sho
    • FUJIEDA YasuhikoTOSHIMA, MasatakeMIZUTA, Yuichiro
    • B29C33/08B29C35/12B29L30/00
    • B29C33/06B29C35/0805B29C2035/0811B29C2035/0816B29D30/0606B29D2030/0674B29D2030/0677B29L2030/00
    • Provided is an easy-to-produce, and inexpensive mold heating device for heating a tire mold (M) which houses a green tire (T). The mold heating device is provided with an upper ring member (11) and a lower ring member (12) which are arranged so as to face one other in a specific direction with the space in which the tire mold (M) is disposed therebetween; a plurality of nonmagnetic members (13) which are disposed at a plurality of positions aligned in the circumferential direction of the ring members (11, 12) with spaces therebetween so as to connect the upper ring member (11) and the lower ring member (12); ferromagnetic non-conductive members (14) which are provided on the inner surfaces of the first plate members (13); and a coil (15) which is supported by the first plate members (13) with the second plate members (14) therebetween so as to surround the space where the tire mold (M) is disposed from the outside in the direction perpendicular to the aforementioned specific direction.
    • 本发明提供一种易于生产且廉价的模具加热装置,用于加热容纳生胎(T)的轮胎模具(M)。 所述模具加热装置具备:隔着轮胎金属模(M)配置的空间而在特定方向上相对配置的上部环部件(11)和下部环部件(12) 多个非磁性部件(13),其设置在沿环形部件(11,12)的圆周方向排列的多个位置处,其间具有间隔,以将上部环形部件(11)和下部环形部件( 12); 设置在第一板件(13)的内表面上的铁磁非导电件(14); 和线圈(15),所述线圈(15)在所述第一板构件(13)与所述第二板构件(14)之间由所述第一板构件(14)支撑,以便从垂直于所述轮胎模具 上述具体方向。
    • 10. 发明公开
    • MOLDED BODY MANUFACTURING METHOD
    • EP4286130A1
    • 2023-12-06
    • EP22745564.9
    • 2022-01-11
    • micro-AMS Inc.
    • KAGAWA, Shingo
    • B29C33/08B29C35/02B29C43/34B29C43/52
    • The present invention addresses the problem of providing a molded body manufacturing method for which a wide range of types of raw material is applicable. The problem is solved by a molded body manufacturing method in which, after a raw material is put into a cavity of a mold, at least a part of the mold is irradiated with electromagnetic waves, or at least a part of the mold is placed in an alternating electric field, to mold a molded body inside the cavity. The mold has a heating body, which absorbs the electromagnetic waves to generate heat or is placed in the alternating electric field to generate heat, outside the cavity. In at least a part of a space between the heating body and the cavity, a transmission amount suppressing body that suppresses the amount of transmission of the electromagnetic waves or the alternating electric field into the cavity is provided, or at least a part of the cavity is composed of the transmission amount suppressing body. When the heating body generates heat, the heat is transmitted to the raw material to perform molding.