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    • 32. 发明申请
    • EXHAUST GAS PROCESSING METHOD
    • 排气处理方法
    • WO1998015340A1
    • 1998-04-16
    • PCT/JP1997003641
    • 1997-10-09
    • SUMITOMO HEAVY INDUSTRIES, LTD.
    • SUMITOMO HEAVY INDUSTRIES, LTD.TAKAHASHI, KazuyoshiYAMADA, ShinichiGOTOU, KouheiWATANABE, TeruoTANAKA, Hiromi
    • B01D53/86
    • B01D53/8609B01D53/88B01D2251/2062
    • To prevent large quantities of ammonia gas from mixing into a collected sulfur oxide, an exhaust gas processing is carried out by dividing an exhaust gas flow into a plurality of branches, charging an ammonia gas into predetermined ones of these branched exhaust gas flows and supplying the exhaust gas into which the ammonia gas is charged to a predetermined portion of a transverse moving layer (52) in which a carbonaceous catalyst is accommodated. The charging quantity of the ammonia gas is adjusted so that the molar ratio of NH4 /S4O absorbed to the carbonaceous catalyst discharged from the bottom of the moving layer (52) and supplied to a regenerator (18) becomes not greater than 1. Since the carbonaceous catalyst absorbs SO4 as the moving layer (52) moves down, the molar ratio of NH4 /SO4 in the carbonaceous catalyst discharged from a moving layer reactor (11) becomes sufficiently small.
    • 为了防止大量氨气混入收集的硫氧化物中,废气处理通过将排气流分成多个分支,将氨气充入这些分支排气流中的预定的一部分,并将 其中氨气被加入其中容纳有碳质催化剂的横向移动层(52)的预定部分的废气。 调节氨气的填充量,使从吸附到移动层(52)的底部排出并供给到再生器(18)的碳质催化剂的NH 4+ / SO 4 2-的摩尔比变成为再生器(18) 不大于1.由于随着移动层(52)向下移动,碳质催化剂吸收SO4 <2->,从移动层反应器排出的碳质催化剂中NH4 + / SO4 <2->的摩尔比 11)变得足够小。
    • 33. 发明申请
    • LOCALIZED PRESSURIZING TYPE INJECTION MOLDING MACHINE
    • 本地加压型注塑机
    • WO1993024298A1
    • 1993-12-09
    • PCT/JP1992001667
    • 1992-12-18
    • SUMITOMO HEAVY INDUSTRIES, LTD.
    • SUMITOMO HEAVY INDUSTRIES, LTD.MORIKITA, Nobuo
    • B29C45/56
    • B29C45/5675B29C45/572
    • A localized pressurizing type injection molding machine for applying various processings to moldings during the injection molding cycle, and the injection molding machine can apply various processings to the moldings after the injection molding process. The injection molding machine comprises a stationary platen (12) and a movable platen (14). A pressurizing pin (24) extends through at least a portion of either one of the two platens and the forward end thereof is linearly movably disposed inside a cavity. A pressurizing cylinder (32) is provided in the rear of the above-mentioned pressurizing pin (24), whereby a hydraulic pressure supplying means supplies pulse-form hydraulic pressure to the above-mentioned pressurizing cylinder (32), so that the pressurizing pin (24) can be oscillated. The pulse-from pressurizing force is applied to the resin after the fill-up, so that a predetermined processing is applied to the molding. Accordingly, a highly accurate processed surface can be obtained.
    • 一种局部加压型注射成型机,用于在注射成型周期中对模制品进行各种加工,注射成型机可以在注塑成型之后对模制品施加各种加工。 注塑机包括固定压板(12)和可动压板(14)。 加压销(24)延伸穿过两个压板中的任一个的至少一部分,并且其前端线性地可移动地设置在空腔内。 在上述加压销(24)的后方设置有加压缸(32),由此液压供给装置向上述加压缸(32)供给脉冲形式的液压,使加压销 (24)可以摆动。 在填充之后,将脉冲加压施加到树脂上,从而对模制件施加预定的处理。 因此,可以获得高精度的加工表面。
    • 36. 发明申请
    • EPICYCLIC REDUCTION GEAR
    • 环形减速齿轮
    • WO1988006688A1
    • 1988-09-07
    • PCT/JP1988000210
    • 1988-02-26
    • SUMITOMO HEAVY INDUSTRIES, LTD.OGATA, SeishiroTAKI, Katsumi
    • SUMITOMO HEAVY INDUSTRIES, LTD.
    • F16H01/32
    • F16H1/32
    • An epicyclic reduction gear has an internally meshing epicyclic gear means (100; 600) and a planetary epicyclic gear means (130; 630) engaging with the former. One of an internal gear (108; 602) and a flange (115; 608) in the internally meshing epicyclic gear means works as an output member, and the other as a fixed member. The rotation of an input shaft (131; 631) of the planetary epicyclic gear means is transmitted to a planetary carrier via an external sun gear (132; 635) and a planetary gear (133; 636) to rotate the planetary carrier in the direction in which the input shaft is rotated. The rotation of the planetary carrier is transmitted to the output member via at least one eccentric member (102a, 102b; 613a, 613b) and at least one external gear (103a, 103b; 601a, 601b) in the internally meshing epicyclic gear means to rotate the output member in the direction opposite to the direction in which the planetary carrier is rotated. The rotation transmitted from the external sun gear to the planetary gear is further transmitted therefrom to the planetary carrier, eccentric member, external gear, output member and internal sun gear (138; 640) in the mentioned order and then returned to the planetary gear, the transmitting of this rotation being done in a closed loop.