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    • 11. 发明专利
    • BOTTOM VALVE LOCKING DEVICE OF TANK LORRY
    • JPH10217835A
    • 1998-08-18
    • JP4171097
    • 1997-02-10
    • TATSUNO CO LTD
    • MOTOHASHI TOSHIAKI
    • B60P3/24B65D88/12
    • PROBLEM TO BE SOLVED: To provide a bottom valve lock device of tank lorry which can lock a handle at all times even if the turning amount of the handle has changed owing to wear of the packing of each bottom valve through years of service. SOLUTION: A bottom valve lock device of a tank lorry is structured so that a tank placed on the lorry is partitioned into a plurality of hatches, which are connected with a common discharge pipe through bottom valves, that the stem of each bottom valve is led out onto the ceiling plate of hatch, and that a bottom valve handle 9 is attached to the top of the stem, wherein the device further includes a chain 45 attached to the handle 9, a lock pin 40 connected with the chain 45 through a spring 44, a detent pin installed inside a body case 21 to detain the lock pin 40, and an unlocking means to disengage the detent pin from the lock pin. The unlocking means conducts disengagement upon receiving an unlock signal from an unloading control device.
    • 12. 发明专利
    • OIL SUPPLY NOZZLE
    • JPH10203597A
    • 1998-08-04
    • JP824297
    • 1997-01-21
    • TATSUNO CO LTD
    • MOTOHASHI TOSHIAKIYAMANE TETSUO
    • B67D7/06B67D5/06
    • PROBLEM TO BE SOLVED: To prevent oil from dripping from the front end of a nozzle after the oil, which is relatively viscous, is supplied, by attaching an oil-drip prevention device, having a plurality of holes, to a discharge opening in the front end of a tubular end piece. SOLUTION: In an oil supply nozzle N having a grip 1 and a tubular end piece 2 and also a lever 10 for operating a valve 6 which opens/closes an oil passage 3 inside, a drip prevention device 13 having a plurality of holes 13a having 1.5-3.0mm diameters is sealed on the discharge opening 12 in the front end of the tubular end piece 2 by means of an O-ring 15, and it is fastened by means of a screw 14 so that it is detachable. When the oil passage 3 is closed by means of the valve 6 by moving fingers off the operation lever 10, oil which is downstream from the valve 6 tends to flow out in the case the jetting opening 12 is facing down. However, because the drip prevention device 13 shuts the jetting opening 12, the oil between them does not flow by the surface tension of the oil in each hole 13a.
    • 13. 发明专利
    • OIL FEED CONTROL DEVICE FOR OIL TANK STATION
    • JPH10194398A
    • 1998-07-28
    • JP1742997
    • 1997-01-14
    • TATSUNO CO LTD
    • MOTOHASHI TOSHIAKI
    • B67D7/32B67D5/32
    • PROBLEM TO BE SOLVED: To control the loading to a lorry while limiting the installation cost. SOLUTION: There are provided a card reader 17 for reading car number cards on which car body data are recorded to specify lorrys, a hatch card sensor 11 provided near the forward end of a loading arm, a storage means 81 for storing the loading data of lorrys, a radio transmitting and receiving means 82, and a control means 80 which enables feed of oil by means of a loading arm, after hatch number is inputted, when kinds of oil registered in the loading arm coincide with the loading data stored beforehand in the means 81 and transmits the loading data of the means 81, as oil mixing preventive data at the time of unloading, after completion of feed of oil to all hatches, to a control device 70 by means of the means 82. Thus, the need for a large- scaled construction work such as laying of cables can be eliminated and mixing of oil at the time of loading and unloading can be prevented, while preventing the installation cost of control devices from increasing.
    • 15. 发明专利
    • OIL FEEDING DEVICE
    • JPH09226892A
    • 1997-09-02
    • JP6731496
    • 1996-02-28
    • TATSUNO CO LTD
    • MOTOHASHI TOSHIAKI
    • B67D7/04B67D7/16B67D5/16B67D5/04
    • PROBLEM TO BE SOLVED: To provide a suction pipe in which no oil in the suction pipe flows out when an oil feeding device is shifted to another oil storage container, and the resistance in the flow passage is small while oil is fed. SOLUTION: In an oil feeding device in which a pump 4 and a flow meter 6 connected to an outflow pipe of the pump are provided in a body case 2 loaded on an oil storage container 1, a suction pipe 10 of the pump is led out to a lower surface of the body case, an outflow pipe 21 of the flow meter is led out of the body case, a hose 23 provided with an oil feeding nozzle 22 on its forward end is connected to the outflow tube, and an indicator 7 to indicate the oil feed and an oil feed switch to output the signal of start/completion of the oil feed are provided on a body case surface, a valve chamber 11 to store an opening/closing valve 13 is provided on the tip of the suction pipe, a valve stem of the opening/closing valve is projected from the valve chamber, and the valve stem is abutted on a bottom of an oil storage container to open the opening/closing valve when the body case is loaded on the oil storage container.
    • 16. 发明专利
    • FLUID MASS MEASURING DEVICE
    • JPH0966999A
    • 1997-03-11
    • JP25025395
    • 1995-09-04
    • TATSUNO CO LTD
    • MOTOHASHI TOSHIAKI
    • B67D7/16B67D5/16
    • PROBLEM TO BE SOLVED: To enable measuring with a high degree of accuracy, in the continuous measuring of mass of fluid such as oil, liquefied gas using a load cell, by providing a specific number of measuring bodies and selectively opening or closing an inlet and an outlet valve of each measuring body to restrain waves of the fluid in a container. SOLUTION: Before measuring, containers 2 (2A-2C) of measuring bodies A-C are filled with fluid to be measured and all inlet valves 4 (4A-4C) and outlet valves 9 (9A-9C) are closed. And for filling fluid into a container, into which fluid is supplied, a nozzle 13 is connected to the container and a drive switch 18 is depressed to drive an inlet pump 6 and an outlet pump 11 by means of a control device 20, and at first, the outlet valve 9A of the body A is opened to fill the fluid in the container 2A into the container from the nozzle 13. At that time, reduction in quantity (charge quantity) of fluid is computed from output of a load cell 1A and the computed value is displayed on a display device 17. And fluid in the containers 2B, 2C is measured in a similar manner.