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    • 4. 发明授权
    • Gas-tight closure
    • 气密封闭
    • US4313704A
    • 1982-02-02
    • US32495
    • 1979-04-23
    • Werner KucharzykWolfgang Rohde
    • Werner KucharzykWolfgang Rohde
    • B65D90/54B08B9/08B08B9/087B65D90/62C10B31/02C10J3/50
    • C10B31/02B65D90/626
    • The gas-tight closure comprises a thin walled tubular piece projecting from a feeding duct into a filling space, a thin walled conical jacket having its larger bottom base provided with a rigid seal reinforcing member cooperating with the lower rim of the intake tubular piece. The outer periphery of the reinforcing member is slanted about a small angle to snugly fit into the tubular piece and adjust the form thereof when upward pull is exerted upon the conical jacket by means of an actuation rod passing outwardly through the wall of the feeding duct. The actuation rod has preferably the form of a hollow shaft which accommodates the manipulation rod of a scraper projecting radially below the reinforcing member into the filling space. The outside portion of the actuation rod is provided with a control device in the form of clamping plates cooperating with abutment plates resting on the guiding sleeve for the actuation rod. The clamping plates are manipulated by means of separate levers.
    • 气密闭合件包括从进料管道突出到填充空间的薄壁管状件,薄壁锥形夹套,其较大的底部基部设置有与进气管件的下边缘配合的刚性密封加强件。 加强构件的外周边以小的角度倾斜以紧密地配合到管状件中,并且当通过向外穿过供给管的壁的致动杆向上拉动作用在锥形护套上时调节其形状。 致动杆优选地具有中空轴的形式,该空心轴容纳在加强构件的径向下方突出到填充空间中的刮刀的操纵杆。 致动杆的外侧部分设有一个控制装置,该控制装置与夹持在用于致动杆的导向套筒上的抵靠板配合。 夹板通过单独的杠杆操纵。
    • 5. 发明授权
    • Arrangement for pneumatically regulating the introduction of substances
into chambers
    • US4058230A
    • 1977-11-15
    • US662017
    • 1976-02-27
    • Heinz BellenbergWerner KucharzykWolfgang RohdeWerner Siebert
    • Heinz BellenbergWerner KucharzykWolfgang RohdeWerner Siebert
    • G01F17/00C10B31/00F23K3/00
    • C10B31/00C10B41/005
    • An arrangement for regulating the introduction of substances into chambers is disclosed and is particularly well-suited for the feeding of coal into coke ovens. The arrangement includes a chamber which is to be filled to a predetermined level and a feeding device is provided for feeding material into the chamber. The feeding device has a switch which stops the introduction of the material to the chamber when the level of the material reaches the predetermined level. The switch for the feeding device is electrically connected with a differential pressure switch which is actuated upon the generating of a predetermined pressure differential across it. The requisite pressure differential is generated by introducing pressurized gas into the chamber and an air compressor may be provided for this purpose. A sensing conduit, which is connected with one terminal of the differential pressure switch, extends into the chamber and has an end positioned at the predetermined level to which the chamber is to be filled. The pressurized gas admitted into the chamber sets up certain pressure characteristics in the sensing conduit which are changed when the level of material in the chamber reaches the predetermined level so that the gas no longer has free access to the open end of the sensing conduit. The change in the pressure characteristics causes a pressure differential to be established across the differential pressure switch which, in turn, activates the feeding device switch to stop the introduction of material into the chamber. In order to compensate for shock waves which may be generated in the chamber by the feeding of the material and which may cause a false signal to be transmitted to the switch of the feeding device, a compensating conduit is provided which has an end in the chamber and is connected with the terminal of the differential pressure switch opposite that to which the sensing conduit is connected. A supply conduit for the pressurized gas is also provided and introduces the pressurized gas into the chamber in the vicinity of the end of the sensing conduit.