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    • 1. 发明专利
    • SHIP BOTTOM REINFORCING AND LABOR-SAVING SHIP
    • JPH08175479A
    • 1996-07-09
    • JP34091394
    • 1994-12-26
    • MORI SEISAKUSHO KK
    • MORI GORO
    • B63B3/62B63B11/00B63B13/00
    • PURPOSE: To reinforce a ship bottom and increase propulsion force by constituting the ship bottom of a hull by double bottom structure and providing several inclined cylindrical bodies whose inlet side through which sea water passes in the intermediate section has a large diameter and whose outlet side has a small diameter in parallel. CONSTITUTION: An inner ship bottom section is provided on a ship bottom 5 of a hull 1 to constitute a double bottom structure. Several inclined cylindrical bodies 7 which communicate a front section 2 of a ship with a stern section 3 and whose large diameter section 8 is the stern section 3 are provided in parallel between the ship bottom 5 and the inner ship bottom 6. When the hull 1 advances on the sea, sea water sucked from the large diameter section 8 of the inclined cylindrical body 7 is jetted from a small diameter section 9 while it is throttled in the inside of the inclined cylindrical body 7. Propulsion force which utilizes a difference in resistance of sea water is added to the hull 1 due to reaction of jetting so that acceleration force of the hull 1 is increased. Consequently, it is possible to reinforce the ship bottom and increase propulsion force of the hull 1.
    • 4. 发明专利
    • ROLLING CONTACT BEARING ASSEMBLY
    • JPS62120201A
    • 1987-06-01
    • JP25776785
    • 1985-11-19
    • MORI SEISAKUSHO KK
    • MORI MASAMI
    • B60B35/18
    • PURPOSE:To assemble an inside guide part simply and securely by forming a thread part having a lead part which is tightened in the rotating direction of a crankshaft, on said crankshaft and screwingly installing said inside guide part of a rotary body on said thread part. CONSTITUTION:A crankshaft 6 is rotated in the direction of A by a pedal operation via pedals 11, 12, and its turning force is transmitted from a crank gear 13 to a rear wheel. The crankshaft 6 is inserted into a bracket pipe 1, while being rotatably supported via plural balls 4, 5 which are provided in between a pair of flanged cups 2, 3 and a ball receiving part 6c provided in an integrated form with the crankshaft 6, and a ball pressing member 7' formed separately from the crankshaft 6, respectively. In this case, a thread part 6a' having a lead which is tightened in the rotating direction of the crankshaft 6, is formed on the crankshaft 6, and the ball pressing member 7' is screwed onto the thread part 6a'.
    • 5. 发明专利
    • ENDLESS CONVEYER
    • JPS6231607A
    • 1987-02-10
    • JP17029685
    • 1985-08-01
    • MORI SEISAKUSHO KK
    • MORI KEITARO
    • B65G17/16B65G17/48
    • PURPOSE:To prevent relative rotation between shanks of adjacent support members during turning of a link between the shanks to obtain stable and parallel movement of carriers at all times for safe and positive carrying of parts or the like by providing a relative rotation preventing mechanism between the shanks. CONSTITUTION:When a motor M is actuated to rotate a rotary disc 5 in the clockwise direction, support members 7 for carriers C are driven in the same direction, having the shanks 14 engaged in grooves of the rotary disc 5 one by one, and along therewith a lower rotary disc 6 also rotates, engaging the shanks 14. These support members 7 are coupled by links 16, and the support members 7 are further coupled by chains 19, so that, when these support members 7 move in an arcuate track, the adjacent support members 7 never rotate relatively and move in parallel at all times. Therefore, a carrier C fixed to each of the support members 7 moves at all times in a constantly directed condition with no inclination even in an arcuate track so as to stably carry parts.
    • 6. 发明专利
    • CRUSHER
    • JP2002126557A
    • 2002-05-08
    • JP2000318907
    • 2000-10-19
    • MORI SEISAKUSHO KK
    • MORI SEIICHI
    • B02C18/00B02C18/14B02C18/18B02C18/22B02C18/24B02C23/16B02C18/44
    • PROBLEM TO BE SOLVED: To efficiently prevent a rotary blade, and the like, from being frictionally damaged and thereby ensure the continued crushing of waste tires, PET bottles, and the like, with high operating efficiency and at a low cost for a long time. SOLUTION: This crusher comprises a casing 7, fixed to a machine frame, into which a material to be crushed can be loaded from the upper part, a rotating shaft 14 which is installed, in a freely rotating manner, on both end walls so that the rotating shaft 14 is positioned almost in the center of the casing 7, many pieces of the rotary blade 17 which are fitted in parallel to the rotating shaft 14 in such a manner that the blades 17 are deviated from each other and have each a plurality of cutting edges fitted to the outer peripheral part, at least one or more slide movable blades 28 which move by sliding in the escape direction when a load at or above a specified value is applied to the casing 7 and are installed through an urging mechanism so that a specified gap is always present between the tip parts of the blades 28 and the tip parts of the cutting edges of the rotatary blades 17, a filter 42 with numerous holes mounted through the tip parts of the rotary blades 17 and the specified gaps so as to cover the lower side of the casing 7, and a drive device 51, fitted to the machine frame, which rotates to drive the rotating shaft 14.
    • 7. 发明专利
    • APPARATUS FOR MOLDING SYNTHETIC RESIN CONTAINER USING TOGGLE LINK LAMP
    • JP2001239538A
    • 2001-09-04
    • JP2000057056
    • 2000-03-02
    • MORI SEISAKUSHO KK
    • MORI KIYOSHI
    • B29C43/36B29C33/20B29C43/02
    • PROBLEM TO BE SOLVED: To provide an apparatus for molding a synthetic resin container using a toggle link clamp, constituted so that a female mold is formed between a plurality of peripheral wall plates and one fixed bottom plate and a molten synthetic resin is inserted in the cavity between the female mold and a male mold to form the synthetic resin container having a predetermined shape. SOLUTION: A first arm, which has an elbow shaft, the fixed shaft connected to a fixed bottom plate attaching member and the drive shaft connected to a drive device, and the crank link shaft connected to a peripheral wall plate attaching member are provided and the second arm connected to the first arm through the elbow shaft is provided and the first arm is revolved around the fixed shaft by driving the drive shaft of the first arm by the drive device and the second arm is revolved centering around the crank link shaft accompanied by the revolution of the first arm and, when the female mold having a predetermined shape is formed by a plurality of the peripheral wall plates and one fixed bottom plate, the toggle link clamp is clamped.
    • 9. 发明专利
    • LOW CONCENTRATION ALCOHOL SENSOR AND APPLIED MACHINERY THEREOF
    • JPH0915185A
    • 1997-01-17
    • JP18816595
    • 1995-06-30
    • MORI SEISAKUSHO KK
    • YAMAZAKI NOBUHIROONO YOSHIO
    • G01N27/16
    • PURPOSE: To form a sensor easy to handle and high in accuracy by using a coil wherein a catalyst such as Pt black-Al2 O3 , or the like is electrodeposited on an Fe-Pd alloy wire large in specific resistance and temp. coefficient. CONSTITUTION: A coil obtained by electrodepositing a catalyst such as Pt black- Al2 O3 , or PdO-Al2 O3 , or an Fe-Pd alloy wire of 10-40μm is used in the activation part S and compensation part D of a circuit and bridge resistors γ1 -γ3 are arranged to the opposite side thereof in series and a sensitive meter V0 and a bridge power supply Vi are together provided to form a low concn. alcohol sensor. When bridge voltage of 6V is applied to this sensor, sensitivity of 11mV is obtained in the case of 100ppm of H3 OH and sensitivity of 56mV is obtained in the case of 500ppm of CH3 OH and good sensitivity is obtained even in the case of C2 H5 OH. At a time of measurement, the temp. of the sensor is set to 140-16 deg.C in the case of CH3 OH and set to 150-200 deg.C in the case of C2 H5 OH. When the Fe-Pd alloy wire is used in the activation part S and the compensation part D, the sensor good in sensitivity and excellent in uniformity and mass productivity is obtained.