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    • 2. 发明申请
    • A TIRE RASP BLADE
    • 轮胎RASP刀片
    • WO2015197547A9
    • 2016-03-17
    • PCT/EP2015063959
    • 2015-06-22
    • B & J ROCKET SALES AG
    • ANDERSEN BENT TOFT
    • C21D9/22B23D71/02C21D1/42C21D9/24C21D11/00
    • C21D9/22B23D71/02B23D71/025C21D1/18C21D1/42C21D11/005Y02P10/253
    • In accordance with the invention, a method is provided for treating a shaped tire rasp blade for mounting on a rasp hub, said tire rasp blade comprising a blade body and blade teeth, wherein the method comprises an austenitising process for austenitising the main part of the tire rasp blade by heating it to an austenitisation temperature, a subsequent quenching process and finally a tempering process for tempering the tire rasp blade. The austenitising process is performed by using induction heating for heating of said tire rasp blade. Thereby, tests have surprisingly shown that the durability of a rasp blade is significantly increased by 30 - 50 %. This increase could be because induction heating is a very fast heating method (austenitisation temperature can be reached within 15 seconds), wherein energy is focused into the rasp blade, and the austenitisation temperature can be reached quite fast throughout the entire rasp blade.
    • 根据本发明,提供了一种用于处理成形轮胎锉刀以安装在锉刀轮毂上的方法,所述轮胎锉刀包括刀片主体和刀片齿,其中所述方法包括用于奥氏体化的奥氏体化奥氏体化过程, 通过将轮胎锉刀加热到奥氏体化温度,随后的淬火处理和最后的回火处理来回火轮胎锉刀。 通过使用感应加热来对所述轮胎锉刀进行加热来进行奥氏体化处理。 因此,测试令人惊讶地表明,锉刀的耐久性显着提高了30-50%。 这种增加可能是因为感应加热是非常快速的加热方法(在15秒内达到奥氏体化温度),其中能量聚焦到锉刀中,并且在整个锉刀中可以相当快地达到奥氏体化温度。
    • 7. 发明申请
    • A TIRE RASP BLADE
    • 轮胎RASP刀片
    • WO2015197547A1
    • 2015-12-30
    • PCT/EP2015/063959
    • 2015-06-22
    • B & J ROCKET SALES AG
    • ANDERSEN, Bent Toft
    • C21D9/22C21D9/24B23D71/02C21D1/42C21D11/00
    • C21D9/22B23D71/02B23D71/025C21D1/18C21D1/42C21D11/005Y02P10/253
    • In accordance with the invention, a method is provided for treating a shaped tire rasp blade for mounting on a rasp hub, said tire rasp blade comprising a blade body and blade teeth, wherein the method comprises an austenitising process for austenitising the main part of the tire rasp blade by heating it to an austenitisation temperature, a subsequent quenching process and finally a tempering process for tempering the tire rasp blade. The austenitising process is performed by using induction heating for heating of said tire rasp blade. Thereby, tests have surprisingly shown that the durability of a rasp blade is significantly increased by 30 - 50 %. This increase could be because induction heating is a very fast heating method (austenitisation temperature can be reached within 15 seconds), wherein energy is focused into the rasp blade, and the austenitisation temperature can be reached quite fast throughout the entire rasp blade.
    • 根据本发明,提供了一种用于处理成形轮胎锉刀以安装在锉刀轮毂上的方法,所述轮胎锉刀包括刀片主体和刀片齿,其中所述方法包括用于奥氏体化的奥氏体化奥氏体化过程, 通过将轮胎锉刀加热到奥氏体化温度,随后的淬火处理和最后的回火处理来回火轮胎锉刀。 通过使用感应加热来对所述轮胎锉刀进行加热来进行奥氏体化处理。 因此,测试令人惊讶地表明,锉刀的耐久性显着提高了30-50%。 这种增加可能是因为感应加热是非常快速的加热方法(在15秒内达到奥氏体化温度),其中能量聚焦到锉刀中,并且在整个锉刀中可以相当快地达到奥氏体化温度。