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    • 3. 发明专利
    • Ladle heating device and method
    • 加热装置和方法
    • JP2012250238A
    • 2012-12-20
    • JP2011122145
    • 2011-05-31
    • Toyota Motor Corpトヨタ自動車株式会社
    • OKUMURA KATSUTOSHIUSUI TSUNENARITANI TAISHIRO
    • B22D41/015
    • PROBLEM TO BE SOLVED: To provide a heating device and a heating method for a ladle, which can improve a work environment, and can heat the ladle provided with a nozzle part uniformly with high preheating efficiency.SOLUTION: A thermal insulation member 11 that composes an underlayer of a ladle lid 7 is brought into close contact with an opening 3 of the ladle 2 so that flame noise due to diffusion from a gap between the ladle lid 7 (burner substrate 10) and the opening 3 of the ladle 2 is muffled. As a result, a noise level is decreased and the work environment is improved. Moreover, the ladle 2 provided with a nozzle part 4 can be heated uniformly with high preheating efficiency by intensively discharging a combustion gas from a gas discharge port 12 formed to the nozzle part 4.
    • 要解决的问题:提供一种用于钢包的加热装置和加热方法,其可以改善工作环境,并且可以以高预热效率对设置有喷嘴部分的钢包进行均匀加热。 解决方案:构成浇包盖7的底层的隔热构件11与浇包2的开口3紧密接触,使得由于浇包盖7(燃烧器基板)之间的间隙扩散引起的火焰噪音 10),并且钢包2的开口3被消音。 结果,噪声水平降低,工作环境得到改善。 此外,具有喷嘴部4的浇包2可以通过从形成于喷嘴部4的气体排出口12集中排放燃烧气体而以高预热效率被均匀地加热。版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • METHOD AND APPARATUS FOR CONTROLLING DUST COLLECTING AIR FLOW RATE
    • JPS647926A
    • 1989-01-11
    • JP16156887
    • 1987-06-29
    • TOYOTA MOTOR CORP
    • USUI TSUNENARIOE HIROSHIKAYAMA YUTAKA
    • B01D46/44B08B15/00
    • PURPOSE:To minimize the pressure loss of filter and the operational power of fan and to eliminate the useless electric power consumption by controlling the number of revolutions of motor so that the measured flow rate is to be within a set air flow rate and keeping the air flow rate passing through a dust collector being constant. CONSTITUTION:After the revolution of the motor 3 is started and reached to a specified number of revolutions, a suction fan 15 is started in operation. In this state, the practical air flow is measured by a flow rate sensor 2 to compare it to a set air flow rate in a flow rate calculating, indicating and setting device 5 from which the calculated output is sent to a central processing unit 8 to determine whether the measured flow rate is within the set air flow rate or not. If the flow rate is within the set value, the revolution of a motor 3 is kept as it is, and if the flow rate is larger than the set value, the revolution of the motor 3 is controlled through a revolution control device 6. If the flow rate is smaller than the set flow rate, it is judged to be the clogging of a filter 14, and a direction is outputted to a dust removing control unit 7 to operate a dust removing device 9 during the period of specified count.