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    • 1. 发明授权
    • Pulverizing method and horizontal mill
    • 粉碎方法和水平轧机
    • US5544818A
    • 1996-08-13
    • US505636
    • 1995-07-21
    • Hirohisa YoshidaKatsuyuki Ueda
    • Hirohisa YoshidaKatsuyuki Ueda
    • B02C17/10B02C17/16B02C17/18B02C17/20B02C17/00
    • B02C17/166
    • A horizontal mill for ultra-fine pulverization which has enhanced pulverization characteristics and reduced power consumption while suppressing damage or wear of pulverizing media. The pulverizing media (balls) are provided in a pulverizing chamber defined by a space between an inner cylinder and an outer cylinder which are rotated relative to each other. Large diameter pulverizing media are used and the rotational speed is kept at a low level, which is opposite to the conventional theory of using small diameter media and high rotational speeds. Since the rotational speed is low, the corresponding wear of the pulverizing media is reduced. The degradation in pulverizing performance due to the low rotational speed may be recovered by using large diameter pulverizing media. Also, the dimensional ratio between the inner and outer cylinders, the interval between the inner and outer sleeves, and the axial interval between agitating vanes are suitably selected to enhance the mill performance.
    • 一种用于超细粉碎的卧式磨机,其具有增强的粉碎特性和降低的功率消耗,同时抑制粉碎介质的损坏或磨损。 粉碎介质(球)设置在由相对于彼此旋转的内筒和外筒之间的空间限定的粉碎室中。 使用大直径的粉碎介质并且转速保持在低水平,这与使用小直径介质和高转速的常规理论相反。 由于转速低,粉碎介质的相应磨损减小。 通过使用大直径的粉碎介质可以回收由于低转速引起的粉碎性能的劣化。 此外,适当地选择内筒和外筒之间的尺寸比,内套筒和外套筒之间的间隔以及搅拌叶片之间的轴向间隔,以提高轧机性能。
    • 5. 发明授权
    • Pulse generator for treating exhaust gas
    • 用于处理废气的脉冲发生器
    • US06344701B1
    • 2002-02-05
    • US09369842
    • 1999-08-09
    • Keisuke KawamuraTetsuro ShigemizuHirohisa YoshidaMasayoshi Murata
    • Keisuke KawamuraTetsuro ShigemizuHirohisa YoshidaMasayoshi Murata
    • H03K302
    • F01N3/0892B01D53/32B01D2259/818B01J19/088B01J2219/0807B01J2219/0875B01J2219/0894
    • An apparatus and method for treating exhaust gases. In this apparatus, a plurality of stages of reactor chambers (R1, R2, . . . Rn) are connected in series in the direction of an exhaust gas flow. Further, high-voltage power supplies (V1, V2, . . . and Vn) are connected to the reactor chambers (R1, R2, . . . and Rn), respectively. Moreover, in each of these reactor chambers, a streamer discharger plasma is generated. Furthermore, the more downstream a reactor chamber of a stage is placed, the lower energy to be cast into the reactor chamber becomes. The density of electrons generated in a gas decomposition unit is high in a portion thereof on the upstream side of the exhaust gas flow and the electron density is low in a portion thereof on the downstream side. Additionally, the present invention further provides a pulse generator in which a high voltage, which is an output voltage of a D.C. charger (V0), is simultaneously applied to a plurality of distributed constant lines (or transmission lines) (1−1, 1−2, 2−1, 2−2, . . . , N−1 and N−2), which are connected in parallel with one another, by means of a signal shortcircuit switch (S1).
    • 一种处理废气的设备和方法。 在这种装置中,多个反应室(R1,R2,...,Rn)在废气流的方向上串联连接。 此外,高压电源(V1,V2,...和Vn)分别连接到电抗器室(R1,R2,...和Rn)。 此外,在这些反应器室的每一个中,产生流光放电器等离子体。 此外,放置阶段的反应室的下游越下游,要投入反应器室的较低能量变为。 在气体分解单元中产生的电子的密度在排气流的上游侧的部分高,并且其下游侧的部分的电子密度低。 另外,本发明还提供一种脉冲发生器,其中作为直流充电器(V0)的输出电压的高电压同时施加到多个分布常数线路(或传输线路)(1-1,1) -2,2-1,2-2,...,N-1和N-2),它们通过信号短路开关(S1)彼此并联连接。
    • 6. 发明授权
    • Roller mill
    • 辊磨机
    • US5251831A
    • 1993-10-12
    • US823361
    • 1992-01-21
    • Hirohisa YoshidaTsugio YamamotoMasaaki KinoshitaHidenori SakamotoTakeshi Kunimoto
    • Hirohisa YoshidaTsugio YamamotoMasaaki KinoshitaHidenori SakamotoTakeshi Kunimoto
    • B02C15/00B02C23/32B02C23/08
    • B02C23/32B02C2015/002
    • Raw coal is caused to fall through a coal feed pipe and onto a table so as to be pulverized by a roll. Fine coal particles and coarse coal particles resulting from pulverization are moved upward between an auxiliary classifier cone and a mill casing by hot air supplied from below the mill casing. The hot air (upward stream) carrying the fine coal particles and the coarse coal particles moves across a space of triangular cross section formed between the inverted conical body of the auxiliary classifier cone and the side wall of the mill casing and is forced through blowoff openings defined between deflector plates so as to flow as a lateral rotative stream toward a rotary classifier. Upon impinging the downward-inclined rotating vanes of the rotary classifier, the coarse coal particles are sprung back toward a lower portion of the auxiliary classifier cone and are separated from the fine coal particles. The fine coal particles separated from the coarse coal particles are ejected out of the roller mill together with the upward air stream through a pulverized-coal eject pipe. Coarse coal particles sprung back toward the lower portion of the auxiliary classifier cone move along the inner surface of the auxiliary classifier cone and fall onto the table so that they are re-pulverized by the roll.
    • 使原煤通过供煤管落到台面上,以便通过轧辊粉碎。 由粉碎产生的细煤颗粒和粗煤颗粒在辅助分级锥体和轧机壳体之间通过从轧机壳体下方供应的热空气向上移动。 携带细煤颗粒和粗煤颗粒的热空气(向上流)穿过形成在辅助分级锥体的倒圆锥形体和磨机壳体的侧壁之间的三角形横截面的空间,并被迫通过吹气口 限定在偏转板之间,以便作为横向旋转流朝向旋转分选机流动。 当撞击旋转分选机的向下倾斜的旋转叶片时,粗煤颗粒向辅助分级锥体的下部弹回并与细煤颗粒分离。 与粗煤颗粒分离的细煤颗粒与向上的气流一起通过粉煤喷射管从辊磨机中排出。 沿着辅助分级锥体的内表面向辅助分级锥体的下部弹回的粗煤颗粒沿着辅助分级锥体的内表面移动并落在工作台上,以便它们被辊重新粉碎。