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    • 3. 发明专利
    • VIBRATING PILLAR PUMP
    • JPH01219400A
    • 1989-09-01
    • JP4212388
    • 1988-02-26
    • JAPAN RES DEV CORPEBARA CORPEBARA RES CO LTDHASHIMOTO HIROYUKI
    • MORI SATOSHIHIYAMA HIROKUNIHASHIMOTO HIROYUKI
    • F04F7/00B06B1/04
    • PURPOSE:To make the maximum vibrator force of a pump chageable by forming the pump such that plural units, which each comprise a stator consisting of an electromagnetic yoke and electromagnetic coils surrounding the exterior of an amarture consisting of a vibrating pipe, permanent magnets and spacers, align axially of a pipe. CONSTITUTION:Outside a vibrating pipe 1 of a magnetic material, permanent magnets 4 align by differing from one another directions of magnetic poles and are fixed axially via non-magnetic spacers 5 to thereby form an armature. As for a stator, a unit is formed by grooves 12 on inner perimeter of a U-shaped electromagnetic yoke 6 and stator coils 7 annularly surrounding the vibrating pipe, and several such units are joined axially of the pipe. In operating the above-mentioned mechanism, when alternating electric currents are passed to the electromagnetic coils 7 in opposite directions with each other coil, axial electromagnetic force generated by each of the stator magnetic poles 6 and 7 gives iterative thrust axially of the amarture to move the vibrating pipe 1 virtically, and, as a result, a pump function which is almost the same as the conventional one is effected. By multiplying the electromagnetic yokes axially, the maximum vibratory force becomes changeable and the maximum pumping up force can be easily changed.
    • 7. 发明专利
    • VIBRATING COLUMN PUMP
    • JPH02218897A
    • 1990-08-31
    • JP3926289
    • 1989-02-21
    • JAPAN RES DEV CORPEBARA CORPEBARA RES CO LTDHASHIMOTO HIROYUKI
    • HIYAMA HIROKUNIYAMAMOTO KAZUYOSHIHASHIMOTO HIROYUKI
    • F04B17/04F04F7/00
    • PURPOSE:To obtain a high discharge pressure by connecting an accumulator to a specified position in the middle of a discharge pipeline, thereby causing a significant pressure fluctuation in the liquid in a liquid guide tube in a one pressurizing and discharging the liquid sucked into the liquid guide pipe by the longitudinal vibration of a vibrating tube. CONSTITUTION:A vibrating column pump has an electromagnetic coil 5 as an exciting means for longitudinally vibrating a vibrating tube 1 by applying a sinusoidal current thereto. A valve 3 is opened in the lowering process of the vibrating tube 1 to run a liquid in the vibrating tube 1 into a liquid guide tube 11, and the valve 3 is closed in the successive raising process of the vibrating tube 1, whereby the liquid in the liquid guide tube 11 is discharged through a discharge pipeline 9 by the piston action of the vibrating tube 1. In this case, an accumulator (air chamber) 7 is connected to the middle of the discharge pipeline 9 in the position of a length L from the liquid guide tube 11. The length L is set in such a manner that the standing wave of pressure pulsation of a line formed of the liquid guide tube 11 and the discharge pipeline 9 up to the accumulator 7 accords with the frequency of the vibrating tube 1.
    • 8. 发明专利
    • METHOD FOR SEPARATING AND REMOVING NON-FERROUS METALS IN WASTE
    • JP2000026924A
    • 2000-01-25
    • JP21027698
    • 1998-07-10
    • EBARA CORP
    • UCHIDA TAKAHARUHASHIMOTO HIROYUKINAGAI HIROSHI
    • B09B3/00C22B7/00C22B7/02
    • PROBLEM TO BE SOLVED: To provide a method for separating and removing non-ferrous metals from waste which is capable of efficiently separating the non-ferrous metals in the waste and decomposing org. chlorine compds. without the generation of dioxin. SOLUTION: The method for separating and removing the non-ferrous metals from the waste consists in mixing the waste and the org. chlorine compds. in such a manner that the total molar number of the non-ferrous metals in the waste and the chlorine molar number in the org. chlorine compds. attain 1:1 to 5, more particularly 1:2 in conversion. The non-ferrous metals in the waste are brought into reaction with the chlorine and carbon in the org. chlorine compds. under a reducing atmosphere under which the quantity of the oxygen existing during the reaction stage attains the theoretical quantity necessary for conversion of all the carbon-components in the supplied org. chlorine compds. to CO or below at a reaction temp. of 500 to 1200 deg.C, by which the non-ferrous metals are evaporated away in the form of metal chlorides. One or more kinds among vinyl chloride, vinylidene chloride, PCB, CNP, PCP, 2, 4, 5-T, 2, 4-D, PCDD and PCDF are usable as the org. chlorine compds.
    • 9. 发明专利
    • VIBRATING COLUMN PUMP
    • JPH02218899A
    • 1990-08-31
    • JP3926489
    • 1989-02-21
    • JAPAN RES DEV CORPEBARA CORPEBARA RES CO LTDHASHIMOTO HIROYUKI
    • HIYAMA HIROKUNIYAMAMOTO KAZUYOSHIHASHIMOTO HIROYUKI
    • F04B17/04F04F7/00
    • PURPOSE:To obtain a high discharge pressure by forming a part extending the intake passage sectional area between a static tube and a vibrating tube to increase the pressure fluctuation in the vibrating tube in a one pressurizing and discharging a liquid sucked into a liquid guide tube through the static tube by the longitudinal vibration of the vibrating tube. CONSTITUTION:A vibrating column pump has an electromagnetic coil 5 as an exciting means for longitudinally vibrating a vibrating tube 1 by applying a sinusoidal current thereto. A valve 3 is opened in the lowering process of the vibrating tube 1 to run a liquid in the vibrating tube communicated with the liquid into a liquid guide tube 9 through a static tube 6, and the valve 3 is closed in the successive raising process of the vibrating tube 1, whereby the liquid in the liquid guide tube 9 is discharged through a discharge opening 8 by the piston action of the vibrating tube 1. In this case, an extending part for extending the diameter from the inner diameter d3 of the static tube 6 to the inner diameter d2 of a vibrating tube passage 7a corresponding to the vibrating tube 1 outer diameter is formed between the lower end of the vibrating tube 1 and the static tube 6. Hence, the pressure fluctuation in the vibrating tube 1 is increased to increase the discharge pressure.
    • 10. 发明专利
    • VIBRATING COLUMN PUMP
    • JPH02218898A
    • 1990-08-31
    • JP3926389
    • 1989-02-21
    • JAPAN RES DEV CORPEBARA CORPEBARA RES CO LTDHASHIMOTO HIROYUKI
    • HIYAMA HIROKUNIYAMAMOTO KAZUYOSHIHASHIMOTO HIROYUKI
    • F04B17/04F04F7/00
    • PURPOSE:To obtain a high discharge pressure by providing a check valve in a discharge opening part so that a liquid in a vibrating tube can be supplied into a liquid guide tube when the discharge side pressure is high in a one pressurizing and discharging the liquid sucked into the liquid guide tube by the longitudinal vibration of the vibrating tube. CONSTITUTION:A vibrating column pump has an electromagnetic coil 5 as an exciting means for longitudinally vibrating a vibrating tube 1 by applying a sinusoidal current thereto. A valve 3 is opened in the lowering process of the vibrating tube 1 to run a liquid in the vibrating tube 1 into a liquid guide tube 9, and the valve 3 is closed in the successive raising process of the vibrating tube 1, whereby the liquid in the liquid guide tube 9 is discharged through a discharge opening 8 by the piston action of the vibrating tube 1. In this case, a check valve 10 is provided in a position close to the discharge opening 8 of a discharge pipe 12. Hence, when the discharge side pressure is high, the pressure in the liquid guide tube 9 is interrupted from the discharge side pressure in the sucking stroke of the liquid into the liquid guide tube 9, enabling the supplement of the liquid from the vibrating tube 1 into the liquid guide tube 9.