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    • 3. 发明专利
    • GB331159A
    • 1930-06-26
    • GB3118629
    • 1929-10-14
    • MASCHINENFABRIK AUGSBURG-NURNBERG, AKTIENGESELLSCHAFT
    • B41F13/38
    • 331,159. Maschinenfabrik Augsburg- Niirnberg Akt.-Ges. Oct. 13, 1928, [Convention date]. Tripping-arrangements.-In a printing-machine of the kind which is tripped automatically if the sheet-feed fails, and is restored automatically to printing position upon re-establishment of correct feed, the tripping and untripping motions are controlled by electromagnets 14, 22 so arranged that the circuit to the magnet 22 is made by the tripping motion due to the energization of magnet 14. The magnet 14 attracts an armature 15 on a lever 16 formed with a guide 18 which controls a pawl 9 on a freely-mounted lever 10 oscillated on a shaft 8 by lever mechanism from a cam 13 on the shaft of the impression cylinder 1. The pawl 9 is thus made to engage a shoulder 21 of a recessed disc 7 fixed on shaft 8, and this shaft 8 is moved clockwise to rotate, via arm 6 and trip rod 5, the eccentric bearings in which the printing-cylinder 3 is mounted. The energization of magnet 14 takes place if a sheet fails to be fed over the table 2. Normally the sheet prevents contact of an oscillating contact 28 with a fixed contact 29, and if the sheet is absent the contacts 28, 29 complete a circuit from one main 27, through contact arm 26, contact 25, magnet 14, and contacts 28, 29 to the other main 30. The rotation of shaft 8 to tripping position completes the circuit to the magnet 22 from. main 27, arm 26, contact 31, contacts 32, 34, and contacts 35, 36 to contact 29, thence to main 30. This circuit is only closed during a part of the rotation of the impression cylinder. The magnet 22 although it is energized does not move its armature 23 until the magnet 14 is de-energized by the breaking of its circuit due to the passage of a sheet between the contacts 28, 29. The pawl 9 is then operated by lever 16 to engage the shoulder 24 of the recess in disc 7, and thus reverse the shaft 8 to throw the printing members into printing position. The lever 26 instead of engaging both contacts 25, 31 can be made to engage the contact 25 only if it is desired to keep the forme cylinder permanently tripped, or the contact 31. only if it is desired to keep the cylinders permanently in printing position. The invention is especially applicable to multi-colour machines by fitting each set of a. multi-colour machine with a tripping mechanism as described.
    • 5. 发明授权
    • Vertically adjustable emergency support of a car body
    • 车身垂直可调紧急支援
    • US4638742A
    • 1987-01-27
    • US698932
    • 1985-02-07
    • Gerd PotelKarl-Heinz Buchholz
    • Gerd PotelKarl-Heinz Buchholz
    • B61F5/00B61F5/16
    • B61F5/16
    • A vertically adjustable emergency support for the bodies of, for example, rail vehicles. Due to wear of the wheel tires, the bogie frame and the car body supported on it tend to descend. In the case of emergency supports in the region of the center pivot, where access is difficult, it is proposed, in order to compensate for this drop, to connect the striker plate which faces an emergency spring at a distance "w" to a box underneath which as vertically guided via guide elements on sliding-contact liners of a cut-out in the bogie frame. If the distance "w" increases due to wear of the wheel tires, an adjustment has to be made by raising the box via a plate connected to the center pivot. Plates of a thickness which compensates for the wear are inserted between the box and abutments which are connected to the bogie frame. After securing the plates via bolts, the car body is lowered again, whereupon the distance "w" is restored. In another embodiment for fixing the box relative to the bogie frame, after the box has been moved upwards far enough to restore the clearance "w" , it is fixed in its position by a saw tooth connection including saw teeth engaging in a positive connection produced between the box and the bogie frame.
    • 用于例如铁路车辆的车身的可垂直调节的紧急支架。 由于轮胎的磨损,支架上的转向架和车身倾向于下降。 在中心枢轴区域中的紧急支撑件的情况下,难以进入的地方,为了补偿该下落,建议将面对紧急弹簧的撞击板与距离“w”连接 在其下方,通过转向架框架中的切口的滑动接触衬套上的引导元件垂直引导。 如果距离“w”由于轮胎的磨损而增加,则必须通过经由连接到中心枢轴的板升高箱来进行调整。 补偿磨损的厚度的板被插入箱体和连接到转向架框架的基台之间。 通过螺栓固定板后,车身再次下降,从而恢复距离“w”。 在用于相对于转向架框架固定盒子的另一个实施例中,在盒子已经向上移动得足够远以恢复间隙“w”之后,它通过锯齿连接被固定在其位置,锯齿连接件包括啮合在正的连接件中的锯齿 在盒子和转向架之间。
    • 6. 发明授权
    • Reactor construction
    • 反应堆建设
    • US4632587A
    • 1986-12-30
    • US637759
    • 1984-08-06
    • Frohmut Vollhardt
    • Frohmut Vollhardt
    • B01J8/04C07C29/152F28D21/00
    • B01J8/0496B01J8/0453C07C29/152B01J2208/00132B01J2219/185
    • A reactor comprises a vertically elongated cylindrical housing with at least one bottom in the housing which supports a catalyst bed which is permeable to gas and through which heat exchanger tubes extend. The construction includes a cylindrical wall within the housing which encloses the catalyst. The housing is constructed so that a cover thereof may be removed to lift the bottom together with the cylindrical wall and the catalyst bed with the tubes out of the housing. The cylindrical wall is advantageously formed by finned tubes. The construction advantageously includes upper and lower header portions and the heat exchanger tubes which extend through the bed are bent at each end and extend into these headers. In an alternate embodiment, the reactor has more than one bottom at spaced vertical locations. Coolant is advantageously supplied through one of the headers of the heat exchanger tubes, for example, a lower one for exit out through the upper one. In addition, gases are circulated for example, through the catalyst bed upwardly. In the case of multiple bottoms, the gas may be admitted intermediate the length of the reactor and circulated both upwardly and downwardly through the catalyts beds.
    • 反应器包括垂直细长的圆柱形壳体,壳体中具有至少一个底部,其支撑可渗透气体并且热交换器管延伸的催化剂床。 该结构包括壳体内的包围催化剂的圆柱形壁。 壳体被构造成使得其盖可以被移除,以将圆柱形壁和催化剂床与壳体一起提升出底部。 圆柱形壁有利地由翅片管形成。 该结构有利地包括上和下集管部分,并且延伸穿过床的热交换器管在每一端弯曲并延伸到这些集管中。 在替代实施例中,反应器在间隔开的垂直位置具有不止一个底部。 冷却剂有利地通过热交换器管的集管中的一个供应,例如,较低的冷却剂,用于通过上部的出口排出。 此外,气体例如通过催化剂床向上循环。 在多个塔底物的情况下,气体可以被接纳在反应器长度的中间,并且通过催化床向上和向下循环。