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    • 51. 发明专利
    • METHOD AND APPARATUS FOR HEATING FIBER REINFORCED COMPOSITE MATERIAL
    • JPH08164523A
    • 1996-06-25
    • JP31100394
    • 1994-12-14
    • KOBE STEEL LTD
    • YOKUMOTO TAKAOKONO TATSUOOTANI KEIICHIMORIMOTO KOTAROOKUMURA TOSHIAKITOMITA MASAHIROOGAWA KATSUMI
    • B29B13/02B29B15/00B29K105/08
    • PURPOSE: To shorten a heating time to enhance productivity by infiltrating heating gas into the composite material preformed object within a wide passage to heat and melt the preformed object and preheating the composite material preformed object fed through a narrow passage by the infiltrated heating gas. CONSTITUTION: A heating chamber 3 has the small diameter part 3f of a narrow passage and the large diameter part 3d of the wide passage continued to the lower part of the small diameter part and transferring a composite material preformed object P in a close contact open state. A heating gas supply means 6 is constituted of the N2 gas introducing and discharge nozzles, discharge pipes 6a, 6b, pipeline 6c, blower 6d and heater 6 attached to the body part of the heating chamber 3 partitioned by shutters 4a, 4b. The head of the composite material preformed object P is released from a close contact state in the large diameter part 3d and the reinforcing fibers of the preformed object generate spring back by heating and heating gas becomes easy to pass through the preformed object and the preformed object is heated by the heating gas introduced from the circumference. The composite material preformed object P transferred through the small diameter part 3f of the heating chamber 3 in a close contact state is preheated by the heating gas not flowing along the outer surface of the preformed object but only flowing through the interior thereof.
    • 56. 发明专利
    • VIBRATION TYPE VISCOMETER
    • JPH03140839A
    • 1991-06-14
    • JP28028289
    • 1989-10-26
    • KOBE STEEL LTD
    • TOMITA MASAHIRONIMURA YOSHITAKAOGAWA KATSUMIUMEDA NORIHIKOSASAHARA SHIGEKI
    • G01N11/16G01N11/00
    • PURPOSE:To automatically measure the viscosity of a fluid to be measured by providing a means for moving the respective centers of an electric furnace and a liquid container to the place just under a moving piece and a means for raising and lowering the electric furnace and the liquid container just under the vibration piece. CONSTITUTION:When the position of the through-hole 23 of a dolly 25 coincides with the position just under a vibration piece 3 vibrated at predetermined amplitude by a viscometer main body (m) by the operation of a horizontal cylinder 24, the dolly 25 is stopped. Subsequently, the operation of a lift cylinder 26 is started and the rod 26a of the cylinder 26 passes through the through-hole 23 to successively raise an electric furnace 17 and a liquid container 18 placed so as to be matched with the center of the through-hole 23 and the vibration piece 3 is immersed in a fluid 1 to be measured, a standard viscosity liquid or a washing solution 19 by predetermined depth at the stroke end of the lift cylinder 26. The movement/stop of the dolly 25 and the operative control of the lift cylinder 26 are automatically carried out and the labor of a measuring person is reduced to a large extent. In addition, the irregularity of measured viscosity based on the individual difference between measuring person can be reduced because of automatic operation.
    • 57. 发明专利
    • METHOD FOR IMMERSING VIBRATING PIECE OF VIBRATING VISCOMETER
    • JPH03123839A
    • 1991-05-27
    • JP26255089
    • 1989-10-06
    • KOBE STEEL LTD
    • TOMITA MASAHIRONIMURA YOSHITAKAOGAWA KATSUMIUMEDA NORIHIKOSASAHARA SHIGEKI
    • G01N11/16
    • PURPOSE:To establish the immersing method which can immerse the vibrating piece into fluid to be measured at always the specified depth by vertically moving at least either of the vibrating viscometer or the fluid to be measured while vibrating the vibrating piece at a prescribed amplitude by an exciter. CONSTITUTION:The vibrating piece 3 provided at the bottom end of a vibrating rod 4 is immersed in the fluid 1 to be provided in a sample vessel 2. Either of the vibrating viscometer or the fluid 1 to be measured is vertically moved by a vertical moving means while the vibrating piece 3 is kept vibrated at the prescribed amplitude via the vibrating rod 4 by the exciter 11. The vibrating piece 3 receives the resistance of the fluid 1 to be measured and the amplitude thereof decreases instantaneously when the bottom end of the vibrating piece 3 touches the fluid surface of the fluid 1. The vertical movement of either of the viscometer and the fluid 1 is stopped upon lapse of the specified time by a timer from the point of the time when the decrease in the amplitude is detected by an optical displacement detecting sensor 12. Thus, the vibrating piece 3 is immersed always at the prescribed depth into the fluid 1 regardless of the level of the liquid surface thereof.
    • 58. 发明专利
    • METHOD FOR MEASURING VISCOSITY OF LIQUID AND VIBRATION TYPE VISCOMETER
    • JPH0328740A
    • 1991-02-06
    • JP16487489
    • 1989-06-27
    • KOBE STEEL LTD
    • TOMITA MASAHIRONIMURA YOSHITAKAOGAWA KATSUMIINABA SHINICHISASAHARA SHIGEKIKATO MINORU
    • G01N11/16
    • PURPOSE:To measure the viscosity of even low-viscosity liquid with high accuracy by transmitting vibration from an exciting means to an elastic body through an interme diate elastic body which has a smaller spring constant than the elastic body. CONSTITUTION:A spring supporting body 9 is provided on the lower end of a 1st upper vibration lever 4c fixed to a leaf spring 7, the external edge part of an intermedi ate leaf spring 10 is fixed to its external projection edge part 9a, and a 2nd upper vibration lever 4d is fixed in the center of reverse surface of the spring 10. The spring 10 is, for example, discoid and long punch holes 10a which are longer and longer as they are farther and farther from the center, shift in position alternately, and are bent while projecting it out side are formed concentrically. Consequently, the relation between the physical quantity rho.mu (rho: density, mu: viscosity) of the liquid 1 to be measured and the amplitude of the vibration of a vibrator 3 has superior linearly within a certain viscosity range. Further, the spring constant of the spring 7 is set to >=8 times as large as that of the spring 10. The spring constant of the spring 10 can be varied by varying the leaf spring thickness, so a measurement is taken over a wide range from high viscosity to low viscosity.
    • 59. 发明专利
    • MELTING DEVICE OF FOOD INGREDIENT UNDER PRESSURE
    • JPH01300841A
    • 1989-12-05
    • JP13120488
    • 1988-05-27
    • KOBE STEEL LTD
    • KANDA TAKESHISAKASHITA YOSHIHIKOHASHIZUME SHINJIOGAWA KATSUMI
    • A22C25/00A23L13/00B01J3/04
    • PURPOSE:To obtain a device capable of extremely stably pressurizing and melting a food ingredient consisting essentially of animal protein such as fish meat, by connecting a pressure cylinder, pressure container, back pressure container, heater, cooler, etc., in a specific state. CONSTITUTION:An ingredient to be treated degassed in a hopper 7 is fed from a feeder 8 through a supply channel B into the interior of a pressure container 2 and a valve 9 is closed. In the operation, a piston rod 3a of a pressure cylinder 3 directly connected to a back pressure container 4 has been advanced to a lowering end. Then valves 20 and 21 in a pipeline A are opened, all other valves 19, 18, 26, 28 and 29 are closed and the piston rod of the pressure cylinder 3 of the pack pressure container 4 is moved backward while a piston rod 1a of a pressure cylinder 1 is advanced and given pressure is applied to the ingredient to be treated to transfer the ingredient to be treated from the pressure container 2 to the back pressure container 4. The ingredient is pressurized and melted by heating and cooling by a heater 5 and a cooler 6 set in the pipeline A set between the pressure container and the back pressure container.
    • 60. 发明专利
    • FILTER DRYER
    • JPS6384611A
    • 1988-04-15
    • JP23051386
    • 1986-09-29
    • KOBE STEEL LTD
    • OGAWA KATSUMIMORIMOTO HIROYUKIOUCHI KENICHIRO
    • B01D29/11B01D29/01B01D35/18F26B7/00
    • PURPOSE:To obtain dried cake in a short time from a slurry of metal powder and reinforcing fiber in an org. solvent by providing a special suction filtration accelerating plate in a supply barrel. CONSTITUTION:The suction filtration accelerating plate 44 provided with sticking rods 43 is furnished in the supply barred 2a fitted with a slurry supply pipe 13 opened only at the lower end and a heated gas supply pipe 12, and made free to move up and down. Plural through holes are provided in the slurry 41 by the sticking rods 43 at the start of suction filtration or during the filtration. As a result, high-quality cake can be obtained in a short time. Since the heated gas passes through the through holes, the solvent remaining in the cake is completely removed, and the cake can be rapidly and completely dried in a short time. In this case, a structure for heating the sticking rod 43 and a structure for preventing the floatation of a filter 25 are added, and effective and sure suction filtration and a drying effect can be exhibited.