WO2015105023A1 - Nozzle and fluid discharge device - Google Patents

Nozzle and fluid discharge device Download PDF

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Publication number
WO2015105023A1
WO2015105023A1 PCT/JP2014/084525 JP2014084525W WO2015105023A1 WO 2015105023 A1 WO2015105023 A1 WO 2015105023A1 JP 2014084525 W JP2014084525 W JP 2014084525W WO 2015105023 A1 WO2015105023 A1 WO 2015105023A1
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WO
WIPO (PCT)
Prior art keywords
nozzle
valve body
cylindrical body
fluid
tube
Prior art date
Application number
PCT/JP2014/084525
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French (fr)
Japanese (ja)
Inventor
嘉壽江 駒井
Original Assignee
株式会社ナオミ
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Publication date
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Publication of WO2015105023A1 publication Critical patent/WO2015105023A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/12Machines, pumps, or pumping installations having flexible working members having peristaltic action
    • F04B43/1253Machines, pumps, or pumping installations having flexible working members having peristaltic action by using two or more rollers as squeezing elements, the rollers moving on an arc of a circle during squeezing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/30Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means designed to control volume of flow, e.g. with adjustable passages
    • B05B1/32Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means designed to control volume of flow, e.g. with adjustable passages in which a valve member forms part of the outlet opening
    • B05B1/323Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means designed to control volume of flow, e.g. with adjustable passages in which a valve member forms part of the outlet opening the valve member being actuated by the pressure of the fluid to be sprayed
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K15/00Check valves
    • F16K15/14Check valves with flexible valve members
    • F16K15/144Check valves with flexible valve members the closure elements being fixed along all or a part of their periphery
    • F16K15/147Check valves with flexible valve members the closure elements being fixed along all or a part of their periphery the closure elements having specially formed slits or being of an elongated easily collapsible form
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B39/00Nozzles, funnels or guides for introducing articles or materials into containers or wrappers
    • B65B39/001Nozzles, funnels or guides for introducing articles or materials into containers or wrappers with flow cut-off means, e.g. valves

Definitions

  • the present invention relates to a fluid discharge device used when various fluids are refilled from a large container such as a drum can and a tank to another container, and a nozzle used for the fluid discharge device.
  • a tube pump is also used for filling.
  • the tube pump is formed by attaching a rotary head having a plurality of rollers to a rotary shaft extending from a motor, and arranging a tube made of an elastic material on the rotation trajectory of the rotary head.
  • the tube pump is configured to cause the fluid to flow through the tube while intermittently squeezing the tube with each roller by rotating the rotary head at a constant speed according to the drive of the motor, and to fill the container with the fluid.
  • This filling device equipped with a tube pump can be easily cleaned by passing a cleaning liquid through the tube, and depending on the content of the fluid, the tube may not be reused, and different fluids can be obtained by replacing the tube. The filling operation can be continued.
  • the inventor is formed of a flexible material on the distal end side of the tube, and is configured to be equally distributed at the distal end portion of the cylindrical body and the cylindrical body, and is configured to open and close according to the internal pressure of the cylindrical body.
  • a nozzle having a plurality of petal-like valve bodies, a means for reversely rotating the motor and sucking back the inside of the tube, and a means for adjusting the reverse rotation speed or reverse rotation time of the motor or both was developed (Patent Document 1).
  • this tube-type filling device when a fluid is filled in a container, a predetermined internal pressure is applied to the tube by pumping the fluid into the tube according to the driving of the pump, whereby the valve body of the nozzle And the fluid can be satisfactorily filled into the container from the opened portion.
  • the pump is stopped and the pump motor is reversely rotated to suck back the tube and generate negative pressure.
  • the fluid inside is sucked in the direction opposite to the filling direction, and the valve body of the nozzle is closed. Therefore, dripping of the fluid on the tip side of the tube is prevented.
  • the reverse rotation speed or the reverse rotation time of the motor it is possible to prevent dripping of various fluids having different viscosities and the like.
  • a force acts so that a portion (boundary portion) where the valve bodies of the nozzle are connected to each other during filling is opened to the left and right, and the nozzle is made of rubber, synthetic resin, or the like. Since it is formed of a soft material, there is a problem in that cleavage is likely to occur, and the resulting section may be mixed into the fluid. And there also existed a possibility that the nozzle itself might fall in a fluid.
  • This invention is made
  • Another object of the present invention is to provide a nozzle that can detect when a slice or itself is mixed in a fluid, and a fluid discharge device including the nozzle.
  • the nozzle according to the present invention includes a cylindrical body and at least four or more rhomboid valve bodies that are equally distributed at the tip of the cylindrical body and configured to open and close according to the internal pressure of the cylindrical body.
  • the valve bodies are connected at adjacent vertices, and each valve body is valley-folded along a diagonal line in the longitudinal direction of the cylindrical body so that the portions corresponding to the sides on the distal end side of the adjacent valve bodies are in contact with each other.
  • Each valve body is configured to be closed, and a portion where two adjacent valve bodies are connected has a U-shape, the inside of the U-shape is opposed to the central axis of the cylindrical body, and the inside is It is characterized by comprising a rib provided so as to be spaced a predetermined distance from the tip of the portion with which the valve body abuts.
  • the boundary portion of the valve body is reinforced, and even if the valve body is about to run out, the progress is stopped at the rib, and the occurrence of tearing is well suppressed.
  • the cylindrical body and the valve body include 95 mass% to 30 mass% of elastomer and 5 mass% to 70 mass% of stainless steel as main components, and the Hs hardness is 45 degrees or less. It is characterized by.
  • stainless steel is included in the present invention, when a metal detector is used, it is possible to reliably detect when a section or the whole of the nozzle is mixed in the fluid.
  • Stainless steel is a non-magnetic material and is not easily rusted. And in this invention, a restoring force is favorable, the adhesiveness when an adjacent valve body closes is favorable, and the long-term use which can endure the repetition of a valve body is attained.
  • a fluid discharge apparatus includes the nozzle described above, and is configured to stop discharge / discharge of a fluid flowing through the cylindrical body by opening / closing the valve body.
  • a fluid discharge device includes a pump having a motor capable of rotating in the forward and reverse directions, and a tube having one end connected to the pump and the other end connected to the nozzle, and reverses the motor. It is configured to rotate and suck back the fluid flowing through the tube and the nozzle.
  • a U-shape is formed at a portion where two adjacent valve bodies are connected, the inside of the U-shape is opposed to the central axis of the cylindrical body, and the inside is in contact with the valve body. Since the rib provided so as to be spaced a predetermined distance from the tip of the portion is provided, it is well prevented that the tearing occurs when the valve body is opened.
  • the cylinder and the valve body include 95 mass% to 30 mass% of elastomer and 5 mass% to 70 mass% or less of stainless steel, and the Hs hardness is 45 degrees or less. It is possible to detect when a section or the whole of the nozzle is mixed in the fluid.
  • Embodiment 1 of this invention It is a perspective view which shows the nozzle which concerns on Embodiment 1 of this invention. It is a top view which shows the state to which the internal pressure was provided to the cylinder and the valve body opened. It is a front view which shows the tube type filling apparatus which concerns on Embodiment 1 of this invention. It is a perspective view which shows the nozzle which concerns on Embodiment 2 of this invention.
  • FIG. 1 is a perspective view showing a nozzle 1 according to Embodiment 1 of the present invention.
  • the nozzle 1 includes a cylindrical body 11, four valve bodies 12 that are equally arranged at the tip of the cylindrical body 11, and a mounting flange 13 that is provided at the other end of the cylindrical body 11.
  • Each valve body 12 has a rhombus shape in a side view, is connected at adjacent vertices, and is folded at a diagonal line in the longitudinal direction of the cylindrical body 11.
  • the four valve bodies 12 are configured to be closed when the end face 122 corresponding to the side of the front end side of the rhomboid half body 121 of the valve body 12 comes into contact with the end face 122 of the adjacent valve body 12.
  • the valve body 12 opens when a predetermined internal pressure is applied to the cylinder body 11 and closes when the fluid body flowing through the cylinder body 11 is sucked back and sucked in the reverse direction. As shown in FIG. 1, each valve body 12 of the nozzle 1 is closed so that the end face 122 forms a cross shape.
  • FIG. 2 is a plan view showing a state in which the internal pressure is applied to the cylindrical body 11 and the valve body 12 is opened.
  • the mounting flange 13 has a rectangular shape. And it is comprised so that the attachment flange 13 side of the cylinder 11 may be fitted by the fluid through which the fluid flows, such as a tube.
  • the base material of the nozzle 1 is made of synthetic rubber such as silicone rubber, urethane rubber, chloroprene rubber or acrylic rubber, and elastomer containing natural rubber or synthetic resin.
  • silicone rubber is preferable from the viewpoint of having good flexibility and thermal stability.
  • a pigment can be mixed in the base material of the nozzle 1.
  • the pigment include titanium dioxide, magnesium carbonate, carbon black, magnetite, bengara, siena, and cobalt.
  • silicone rubber When silicone rubber is used as the base material of the nozzle 1, the silicone rubber is kneaded with a roll machine, and at the same time, processing aids such as a vulcanizing agent and a silica-based powder filler, and a pigment are added and molded to produce the nozzle 1. To do.
  • ribs 123 extending in the circumferential direction of the cylindrical body 11 are provided on the base end side portions (boundary portions) of the end faces 122 and 122 of the two adjacent valve bodies 12.
  • the rib 123 has a U-shape in plan view, the inside of the U-shape is opposed to the central axis of the cylinder 11, and the inside is spaced apart from the tip of the portion with which the valve body 12 abuts. And provided on the end faces 122 and 122.
  • the nozzle 1 according to the present embodiment includes the ribs 123 as described above, even when the valve body 12 is opened at the time of filling and a load is applied to the base end portion of the end surface 122, the occurrence of tearing is well suppressed.
  • the rib 123 is provided on the end surface 122 in a state where the inner side of the U-shape is spaced a predetermined distance from the tip of the portion where the valve body 12 abuts. Is secured.
  • silicone rubber is used as the base material of the nozzle 1, since the restoring force is good, the Hs hardness of the nozzle 1 can be increased to 70 degrees.
  • FIG. 3 is a front view showing the tube-type filling device (hereinafter referred to as a filling machine) 100.
  • the filling machine 100 includes a tube pump 4, a weighing machine 2 having a plurality of weight setting buttons 21, and a control box 3 having a controller 7 for controlling the tube pump 4.
  • the tube pump 4 includes a motor 41 that can be rotated forward and backward, and a rotary head 43 is mounted on a rotary shaft 42 extending from the motor 41.
  • Four rollers 44 are supported by the rotary head 43 on the same circumference.
  • a tube receiving plate 45 having a semicircular arc shape is provided on the outer peripheral side of the rotating head 43, and a tube 46 made of an elastic material is detachably interposed between the tube receiving plate 45 and the rotating head 43.
  • the tube pump 4 is configured to pump the fluid while intermittently squeezing the tube 46 by each roller 44 by rotating the rotary head 43 as the motor 41 is driven.
  • the casing 40 of the tube pump 4 is provided with a rotation adjustment dial 47 of a motor 41 used during manual filling, a forward / reverse switch 48 used during manual filling, and a reverse adjustment dial 49 when the motor 41 is rotated in reverse. ing.
  • One end side of the tube 46 in the longitudinal direction is inserted into a large container (not shown) such as a drum can filled with a fluid.
  • the other end side of the tube 46 is supported by the gantry 5.
  • a pulsation preventer 8 is interposed in the middle of the tube 46.
  • the other end of the tube 46 is connected to one end of the connecting pipe 10, and the nozzle 1 is attached to the other end of the connecting pipe 10 by fitting the mounting flange 13 side.
  • a filling destination container 6 is placed on the weighing machine 2, and the valve body 12 of the nozzle 1 is opposed to the opening of the container 6.
  • the pulsation preventer 8 prevents pulsation that occurs when the rollers 44 transfer the fluid while squeezing the tube 46.
  • the control box 3 includes a start switch 31 for starting rotation of the motor 41 of the tube pump 4, a stop switch 32 for stopping rotation of the motor 41, and an automatic manual switching switch 33 that is selectively switched when the filling operation is performed manually or automatically. , And a stop timer 34.
  • the stop timer 34 counts a predetermined time in order to perform the filling operation again after completing the filling operation to the container 6.
  • the container 6 When the container 6 is automatically filled with the fluid, the container 6 is placed on the weighing machine 2, the mass of the fluid to be filled in the container 6 is set with the setting button 21 of the weighing machine 2, and manual automatic switching is performed.
  • the switch 33 is switched to the automatic side, the start switch 31 is turned on, and the motor 41 of the tube pump 4 is rotated forward. According to the forward rotation of the motor 41, the fluid is pumped into the tube 46 and a predetermined internal pressure is applied to the tube 46, so that the valve body 12 of the nozzle 1 is opened and the fluid is discharged to the container 6.
  • the controller 7 rotates the motor 41 of the tube pump 4 at a high speed based on the measured value by the measuring machine 2.
  • the internal pressure of the tube 46 is large, the valve body 12 of the nozzle 1 is greatly opened, and the fluid is filled into the container 6 at a high speed.
  • the controller 7 rotates the motor 41 at a low speed while braking the motor 41. At this time, the fluid is filled into the container 6 at a low speed.
  • the controller 7 stops the rotation of the motor 41 and rotates the motor 41 in the reverse direction.
  • the inside of the tube 46 is sucked back and the fluid inside is sucked in the direction opposite to the filling direction, so that the valve body 12 is quickly closed, and the fluid from the nozzle 1 is surely drained. Is prevented.
  • the speed at which the motor 41 is rotated forward or backward can be adjusted in accordance with the difference in viscosity of the fluid, that is, the difference in liquid breakage.
  • the discharge of the fluid is controlled by the weight of the fluid filled in the container 6.
  • the present invention is not limited to this and may be performed by setting the time. Good.
  • the base material of the nozzle 1 is silicone rubber and contains a pigment
  • the thing of the hue which has visibility with respect to the color of a fluid can be selected as this pigment.
  • the color of the fluid is white, a brown pigment can be used.
  • Embodiment 2 The nozzle 9 according to Embodiment 2 of the present invention has the same configuration as the nozzle 1 according to Embodiment 1 except that it contains a nonmagnetic metal.
  • FIG. 4 is a perspective view showing the nozzle 9.
  • the nozzle 9 includes a cylindrical body 91, four valve bodies 92 that are equally arranged at the tip of the cylindrical body 91, and a mounting flange 93 provided at the other end of the cylindrical body 91.
  • Each valve body 92 has a rhombus shape in side view, is connected at adjacent vertices, and is folded at a diagonal line in the longitudinal direction of the cylindrical body 91.
  • the four valve bodies 92 are configured to be closed by the end surface 922 corresponding to the side on the tip end side of the rhomboid half body 921 of the valve body 92 coming into contact with the end surface 922 of the adjacent valve body 92.
  • the valve body 92 opens when a predetermined internal pressure is applied to the cylinder body 91, and closes when the cylinder body 91 is sucked back and the fluid flowing through the cylinder body 91 is sucked in the reverse direction.
  • the plan view has a cross shape.
  • the mounting flange 93 has a ring shape larger in diameter than the cylindrical body 91 and is configured to be fitted into a fluid such as a tube.
  • ribs 923 extending in the circumferential direction of the cylindrical body 91 are provided on the proximal end portions (boundary portions) of the end faces 922 and 922 of the two adjacent valve bodies 92.
  • the rib 923 has a U-shape in plan view, the end faces 922 and 922 so that the inside of the U-shape faces the center of the cylindrical body 91 and is spaced a predetermined distance from the tip of the portion where the valve body 92 abuts. Arranged above.
  • the valve body 92 is opened during filling and a load is applied to the base end portion of the end surface 922 while ensuring the movable range of the valve body 92. Also, the occurrence of tearing is well suppressed.
  • the base material of the nozzle 9 is made of synthetic rubber such as silicone rubber, urethane rubber, chloroprene rubber or acrylic rubber, and elastomer containing natural rubber, or synthetic resin. Silicone rubber is preferred as the substrate.
  • the nozzle 9 When the base material of the nozzle 9 is an elastomer such as silicone rubber, the nozzle 9 includes 95% by mass to 30% by mass of the elastomer and 5% by mass to 70% by mass of the stainless steel.
  • stainless steel When stainless steel is included in an amount of 5 to 70% by mass or more, when the section of the nozzle 9 or the nozzle 9 itself is mixed into the fluid, it can be easily detected by a metal detector, and the wear resistance and molding of the nozzle 9 It can have a good balance of sex. Since stainless steel is contained as a metal, for example, when filling food, it is stable and non-toxic, and rust or the like does not occur.
  • the stainless steel preferably has a particle size of 20 ⁇ m or less. When it has a particle diameter of 20 ⁇ m or less, it can be uniformly dispersed when it is mixed with the base material of the nozzle 1 and molded.
  • a pigment can be mixed in the base material of the nozzle 9.
  • the pigment include titanium dioxide, magnesium carbonate, carbon black, magnetite, bengara, siena, and cobalt.
  • silicone rubber When silicone rubber is used as the base material of the nozzle 9, the silicone rubber is kneaded with a roll machine, and at the same time, processing aids such as a vulcanizing agent and silica-based powder filler, a pigment, and stainless steel are added, and the nozzle 9 is molded. Is made.
  • the Hs hardness of the nozzle 9 is preferably 45 degrees or less, and more preferably 30 degrees or less. When the Hs hardness is 45 degrees or less, it is confirmed by an evaluation test described later that the restoring force of the nozzle 9 is good.
  • the hardness is adjusted by, for example, the amount of silica-based powder filler added. When the addition amount of the silica-based powder filler is small, the Hs hardness is small.
  • the main component of the composition of the nozzle 9 there is a case of 43% silicone polymer and 57% SUS.
  • the nozzle 9 according to the present embodiment can be applied to a tube-type filling device as in the first embodiment.
  • the nozzle 1 of the filling machine 100 according to Embodiment 1 can be changed to the nozzle 9 and used.
  • the container 6 filled with the fluid is checked for the presence of metal by a metal detector.
  • the metal detector detects the presence of the metal in the fluid from the change of the magnetic field, and the section Or the contamination of itself is grasped. As a result, defective products including foreign substances are reliably detected.
  • “70 °, 65 °, 60 °, 55 °, 50 °, 40 °” on the horizontal axis in Table 1 is the Hs hardness of the nozzle 9, and “ ⁇ 12, ⁇ 16, ⁇ 19” is the inner diameter (mm) of the nozzle 9. ).
  • the evaluation content of “restoring power” in the vertical axis item of Table 1 is as follows. ⁇ ... No problem ⁇ ... Open about 1mm (closes with time) ⁇ : Opening of about 2 mm (slightly closes over time) ⁇ : Approximately 2 mm open (does not close even after time) XX ... Opening of about 2mm or more (Does not close even after time)
  • Table 1 shows that when the Hs hardness is 45 ° or less, the restoring force is good.
  • the nozzle 9 was attached to the fluid discharge device by the following combinations (1) to (3), and the dripping prevention effect was confirmed.
  • 6ZR Control of discharge of fluid is performed by measuring mass before and after injection into the container (type of filling machine 100).
  • a silicone blade hose having a small inner diameter (SBH: hose connected to the nozzle 9, that is, the tube 46 of the filling machine 100) is used, and the nozzle 9 having an inner diameter of 10 mm and 12 mm is used.
  • 8ZR Fluid discharge is controlled by measuring the mass before and after injection into the container.
  • SBH having a large inner diameter is used, and nozzles 9 having an inner diameter of 16 mm and 19 mm are used.
  • SBH inner diameter ( ⁇ 10, ⁇ 12, ⁇ 16, ⁇ 19 [mm])
  • Joint part of nozzle and SBH in the case of filling machine 100, connecting pipe 10) T ...
  • Cylinder-shaped joint part with a length of 30 mm L ... L-shaped joint part Standard ...
  • the length of each side of the L-shape is 100 mm Short ...
  • the length of each side of L-shape is 70mm
  • Table 2 and Table 3 below show the results obtained by attaching the nozzle 9 to the fluid discharge device having the combination of (1) to (3) and evaluating the liquid dripping prevention effect.
  • the items on the horizontal axis in Tables 2 and 3 are as follows. 50 °, 40 ° ... Hs hardness of nozzle 9 SBH10 ⁇ ... SBH inner diameter is 10mm SBH12 ⁇ ... SBH inner diameter is 12mm SBH16 ⁇ ... SBH inner diameter is 16mm SBH19 ⁇ ... SBH inner diameter is 19mm T12 * 10: The joint part is “T”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm.
  • L12 * 10 standard The joint part is “L standard”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm.
  • L12 * 10 short The joint part is “L short”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm (hereinafter the same).
  • the items on the vertical axis in Tables 2 and 3 are as follows. ⁇ 12A: Nozzle 9 diameter is 12 mm (without mounting flange 93 in FIG. 4) ⁇ 16A: Nozzle 9 diameter is 16 mm (without mounting flange 93 in FIG. 4) ⁇ 19M ... The diameter of the nozzle 9 is 19 mm (with the mounting flange 93 in FIG. 4)
  • Table 2 and Table 3 The evaluation contents of Table 2 and Table 3 are as follows. ⁇ ... 100% ⁇ ... 90-80% ⁇ ... NG For example, “ ⁇ 10/10” indicates “10 out of 10 times, ⁇ ”.
  • the Hs hardness of the nozzle 9 is 45 ° or less, the dripping prevention effect is good. From the above, it can be seen that when the nozzle contains stainless steel, the Hs hardness is preferably 45 ° or less.
  • the nozzles 1 and 9 are applied to the filling machine 100 that is a tube-type filling device has been described, but the present invention is not limited to this.
  • the nozzles 1 and 9 according to the present invention can be used in various filling devices including the above-described piston type and rotary type displacement pumps, other tube pumps, and the like.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Check Valves (AREA)
  • Details Of Reciprocating Pumps (AREA)
  • Reciprocating Pumps (AREA)
  • Nozzles (AREA)
  • Supply Of Fluid Materials To The Packaging Location (AREA)

Abstract

Provided are a nozzle with which tearing is prevented from taking place when a valve body is opened, and a fluid discharge device provided with the nozzle. A nozzle (1) is provided with a cylindrical body (11), and a valve body (12) forming a plurality of petal shapes that are arranged at equal intervals at a distal end section of the cylindrical body (11) and are configured so as to open and close in accordance with cylindrical body (11) internal pressure. The valve body (12) forms a diamond shape as seen in side view, links at adjacent vertices, and has valley folds at diagonal lines of the longitudinal direction of the cylindrical body (11). An end surface (122) corresponding to a side of a half (121) of the diamond on the distal end section-side of the valve body (12) abuts against an end surface (122) of the adjacent valve body (12), whereby four valve bodies (12) are closed. At portions where two adjacent valve bodies (12) are linked, there are provided ribs (123) that form a U-shape and are provided so that the inside of the U-shape faces a center axis of the cylindrical body (11), and so that the inside of the U-shape is spaced apart by a predetermined interval from a distal end section of the portion where the valve bodies (12) abut.

Description

ノズル、及び流動体吐出装置Nozzle and fluid discharge device
 本発明は、各種の流動体をドラム缶及びタンク等の大型容器から別の容器に詰め替える場合に使用される流動体吐出装置、及びこれに使用するノズルに関する。 The present invention relates to a fluid discharge device used when various fluids are refilled from a large container such as a drum can and a tank to another container, and a nozzle used for the fluid discharge device.
 従来、ピストンタイプ及びロータリータイプ等の容量式ポンプを備える充填装置を使用して、ドラム缶、タンク等の大型容器に収容された、調味料,タレ,香料等の食品、洗剤,塗料,シャンプー,リンス,化粧品,医薬品等の化学製品等の流動体をビン、カップ、ケース等の容器に詰め替えることが行われている。
 この容量式ポンプを用いて流動体を容器に充填させる場合、取り扱い対象物の内容が変わる都度、ポンプを綿密に洗浄する必要がある。また、タンク等の大型容器に充填された流動体の液面の高さが経時的に変化して圧力が変動した場合、ポンプに通流される流動体の重量が変化し、各容器への充填量に誤差が生じるという問題があった。さらに、ロータリータイプのポンプを用いる場合、該ポンプを通過する際に通流物がこね混ぜられて物性変化を起こすという問題もあった。
Conventionally, foods such as seasonings, sauces, fragrances, detergents, paints, shampoos, rinses, etc., housed in large containers such as drums and tanks using filling devices equipped with piston-type and rotary-type capacity pumps Liquids such as chemical products such as cosmetics and pharmaceuticals are refilled into containers such as bottles, cups and cases.
When filling a container with a fluid using this capacity type pump, it is necessary to wash | clean a pump carefully whenever the content of the handling object changes. In addition, when the liquid level of the fluid filled in a large container such as a tank changes over time and the pressure fluctuates, the weight of the fluid flowing through the pump changes, and the filling of each container There was a problem that an error occurred in the amount. Further, when a rotary type pump is used, there is also a problem that the flowed material is kneaded when passing through the pump and changes in physical properties.
 また、充填にはチューブポンプも使用されている。チューブポンプは、モータから延びる回転軸に複数のローラを有する回転ヘッドを取付け、回転ヘッドの回転軌跡上に弾性材料からなるチューブを配してなる。チューブポンプは、モータの駆動に従い回転ヘッドを一定速度で回転させることにより、各ローラでチューブを間欠的に絞りながら流動体を通流させ、流動体を容器に充填させるように構成されている。
 このチューブポンプを備える充填装置は、チューブ内に洗浄液を通すことにより簡単に洗浄することができ、また、流動体の内容によってはチューブを再使用せず、チューブを交換することで、異なる流動体の充填作業を続行することができる。
A tube pump is also used for filling. The tube pump is formed by attaching a rotary head having a plurality of rollers to a rotary shaft extending from a motor, and arranging a tube made of an elastic material on the rotation trajectory of the rotary head. The tube pump is configured to cause the fluid to flow through the tube while intermittently squeezing the tube with each roller by rotating the rotary head at a constant speed according to the drive of the motor, and to fill the container with the fluid.
This filling device equipped with a tube pump can be easily cleaned by passing a cleaning liquid through the tube, and depending on the content of the fluid, the tube may not be reused, and different fluids can be obtained by replacing the tube. The filling operation can be continued.
 これらの充填装置においては、定量の流動体を効率良く(短時間で)、正確に(安定して)各容器に充填することが求められている。
 しかし、いずれのポンプを備える充填装置においても、詰め替え側の端部から流動体が液だれするという問題がある。液だれが生じた場合、充填作業を停止して煩雑な拭き取り作業を行い、充填を調整することになり、生産効率が低下するという問題がある。
In these filling apparatuses, it is required to fill each container with a fixed amount of fluid efficiently (in a short time) and accurately (stablely).
However, in any of the filling devices including the pump, there is a problem that the fluid leaks from the end portion on the refill side. When dripping occurs, the filling operation is stopped and a complicated wiping operation is performed to adjust the filling, resulting in a problem that the production efficiency is lowered.
 そこで、本発明者は、チューブの先端側に、柔軟性に富む材料で形成され、筒体と、該筒体の先端部に等配され、筒体の内圧に応じて開閉するように構成された複数の花弁状をなす弁体とを備えるノズルを取り付けてあり、モータを逆回転させ、チューブ内をサックバックさせる手段と、モータの逆転速度若しくは逆転時間又は両方を調整可能とした手段とを備えるチューブ式充填装置を開発した(特許文献1)。 Therefore, the inventor is formed of a flexible material on the distal end side of the tube, and is configured to be equally distributed at the distal end portion of the cylindrical body and the cylindrical body, and is configured to open and close according to the internal pressure of the cylindrical body. A nozzle having a plurality of petal-like valve bodies, a means for reversely rotating the motor and sucking back the inside of the tube, and a means for adjusting the reverse rotation speed or reverse rotation time of the motor or both A tube-type filling device was developed (Patent Document 1).
 このチューブ式充填装置においては、容器内に流動体を充填させる場合には、ポンプの駆動に従いチューブ内に流動体を圧送することにより、チューブに所定の内圧が付与され、これによりノズルの弁体が開いて、その開放部分から容器内に流動体を良好に充填させることができる。そして、容器内に所定量の流動体が充填されて充填作業を終了する場合、ポンプの駆動を停止し、ポンプのモータを逆回転させることにより、チューブ内がサックバックされ、負圧が発生し、内部の流動体が充填方向とは逆方向に吸引されて、ノズルの弁体が閉じられる。従って、チューブの先端側における流動体の液だれが防止される。そして、モータの逆転速度又は逆転時間を調整することで、粘度等が異なる種々の流動体に対し、液だれを防止することができる。 In this tube-type filling device, when a fluid is filled in a container, a predetermined internal pressure is applied to the tube by pumping the fluid into the tube according to the driving of the pump, whereby the valve body of the nozzle And the fluid can be satisfactorily filled into the container from the opened portion. When the container is filled with a predetermined amount of fluid and the filling operation is terminated, the pump is stopped and the pump motor is reversely rotated to suck back the tube and generate negative pressure. The fluid inside is sucked in the direction opposite to the filling direction, and the valve body of the nozzle is closed. Therefore, dripping of the fluid on the tip side of the tube is prevented. And by adjusting the reverse rotation speed or the reverse rotation time of the motor, it is possible to prevent dripping of various fluids having different viscosities and the like.
特許第2813599号公報Japanese Patent No. 2813599
 上述の特許文献1のチューブ式充填装置においては、充填時にノズルの各弁体が繋がっている部分(境界部分)が左右に開くように力が作用し、しかも、このノズルはゴム及び合成樹脂等の柔らかい材料により形成されているため、開裂が生じ易く、これにより生じた切片が流動体に混入する虞があるという問題があった。そして、ノズル自体が流動体中に落下する虞もあった。 In the tube-type filling device of Patent Document 1 described above, a force acts so that a portion (boundary portion) where the valve bodies of the nozzle are connected to each other during filling is opened to the left and right, and the nozzle is made of rubber, synthetic resin, or the like. Since it is formed of a soft material, there is a problem in that cleavage is likely to occur, and the resulting section may be mixed into the fluid. And there also existed a possibility that the nozzle itself might fall in a fluid.
 本発明は斯かる事情に鑑みてなされたものであり、弁体が開いたときに切り裂きが生じるのが防止されたノズル、及び該ノズルを備える流動体吐出装置を提供することを目的とする。
 そして、本発明は切片又は自体が流動体に混入した場合に検知することができるノズル、及び該ノズルを備える流動体吐出装置を提供することを目的とする。
This invention is made | formed in view of such a situation, and it aims at providing the fluid discharge apparatus provided with the nozzle by which it was prevented that a tearing arises when a valve body opens.
Another object of the present invention is to provide a nozzle that can detect when a slice or itself is mixed in a fluid, and a fluid discharge device including the nozzle.
 本発明に係るノズルは、筒体と、該筒体の先端部に等配され、前記筒体の内圧に応じて開閉するように構成された少なくとも4以上の菱形状をなす弁体とを備え、各弁体は隣り合う頂点で繋がり、各弁体は前記筒体の長手方向の対角線で谷折りしてあり、隣り合う弁体の先端部側の辺に対応する部分同士が当接することで、各弁体が閉じるように構成され、隣り合う2つの弁体が繋がる部分に、コの字状をなし、コの字の内側が前記筒体の中心軸に対向し、かつ前記内側が、前記弁体が当接する部分の先端部から所定間隔を隔てるように設けられたリブを備えることを特徴とする。 The nozzle according to the present invention includes a cylindrical body and at least four or more rhomboid valve bodies that are equally distributed at the tip of the cylindrical body and configured to open and close according to the internal pressure of the cylindrical body. The valve bodies are connected at adjacent vertices, and each valve body is valley-folded along a diagonal line in the longitudinal direction of the cylindrical body so that the portions corresponding to the sides on the distal end side of the adjacent valve bodies are in contact with each other. , Each valve body is configured to be closed, and a portion where two adjacent valve bodies are connected has a U-shape, the inside of the U-shape is opposed to the central axis of the cylindrical body, and the inside is It is characterized by comprising a rib provided so as to be spaced a predetermined distance from the tip of the portion with which the valve body abuts.
 本発明においては、弁体の可動域は確保しつつ、弁体の境界部分が補強され、万一弁体が切れかけた場合でもリブで進行が停止し、開裂が生じるのが良好に抑制される。 In the present invention, while ensuring the movable range of the valve body, the boundary portion of the valve body is reinforced, and even if the valve body is about to run out, the progress is stopped at the rib, and the occurrence of tearing is well suppressed. The
 本発明に係るノズルは、前記筒体及び前記弁体は、主成分としてエラストマー95質量%~30質量%と、ステンレス5質量%~70質量%とを含み、Hs硬度が45度以下であることを特徴とする。 In the nozzle according to the present invention, the cylindrical body and the valve body include 95 mass% to 30 mass% of elastomer and 5 mass% to 70 mass% of stainless steel as main components, and the Hs hardness is 45 degrees or less. It is characterized by.
 本発明においてはステンレスを含むので、金属探知機を用いることにより、ノズルの切片又は全体が流動体に混入した場合にこれを確実に検知することができる。また、ステンレスは非磁性体であり、錆びにくい。
 そして、本発明においては、復元力が良好であり、隣り合う弁体が閉じるときの密着性が良好であり、弁体の繰り返しに耐える長期の使用が可能になる。
Since stainless steel is included in the present invention, when a metal detector is used, it is possible to reliably detect when a section or the whole of the nozzle is mixed in the fluid. Stainless steel is a non-magnetic material and is not easily rusted.
And in this invention, a restoring force is favorable, the adhesiveness when an adjacent valve body closes is favorable, and the long-term use which can endure the repetition of a valve body is attained.
 本発明に係る流動体吐出装置は、上述のノズルを備え、前記筒体内を通流される流動体を前記弁体の開/閉により吐出/吐出の停止を行うように構成されていることを特徴とする。 A fluid discharge apparatus according to the present invention includes the nozzle described above, and is configured to stop discharge / discharge of a fluid flowing through the cylindrical body by opening / closing the valve body. And
 本発明においては、流動体の液だれが良好に防止される。 In the present invention, dripping of the fluid is satisfactorily prevented.
 本発明に係る流動体吐出装置は、正逆回転可能なモータを備えたポンプと、一端部が前記ポンプに接続され、他端部が前記ノズルに接続されたチューブとを備え、前記モータを逆回転させ、前記チューブ及び前記ノズル内を通流する流動体をサックバックさせるように構成されていることを特徴とする。 A fluid discharge device according to the present invention includes a pump having a motor capable of rotating in the forward and reverse directions, and a tube having one end connected to the pump and the other end connected to the nozzle, and reverses the motor. It is configured to rotate and suck back the fluid flowing through the tube and the nozzle.
 本発明においては、液だれがより良好に防止される。 In the present invention, dripping is better prevented.
 本発明のノズルによれば、隣り合う2つの弁体が繋がる部分に、コの字状をなし、コの字の内側が筒体の中心軸に対向し、かつ内側が、弁体が当接する部分の先端部から所定間隔を隔てるように設けられたリブを備えるので、弁体が開いたときに切り裂きが生じるのが良好に防止されている。 According to the nozzle of the present invention, a U-shape is formed at a portion where two adjacent valve bodies are connected, the inside of the U-shape is opposed to the central axis of the cylindrical body, and the inside is in contact with the valve body. Since the rib provided so as to be spaced a predetermined distance from the tip of the portion is provided, it is well prevented that the tearing occurs when the valve body is opened.
 また、本発明のノズルによれば、筒体及び前記弁体は、エラストマー95質量%~30質量%と、ステンレス5質量%~70質量%以下とを含み、Hs硬度が45度以下であるので、ノズルの切片又は全体が流動体に混入した場合に検知することができる。 Further, according to the nozzle of the present invention, the cylinder and the valve body include 95 mass% to 30 mass% of elastomer and 5 mass% to 70 mass% or less of stainless steel, and the Hs hardness is 45 degrees or less. It is possible to detect when a section or the whole of the nozzle is mixed in the fluid.
本発明の実施の形態1に係るノズルを示す斜視図である。It is a perspective view which shows the nozzle which concerns on Embodiment 1 of this invention. 筒体に内圧が付与され、弁体が開いた状態を示す平面図である。It is a top view which shows the state to which the internal pressure was provided to the cylinder and the valve body opened. 本発明の実施の形態1に係るチューブ式充填装置を示す正面図である。It is a front view which shows the tube type filling apparatus which concerns on Embodiment 1 of this invention. 本発明の実施の形態2に係るノズルを示す斜視図である。It is a perspective view which shows the nozzle which concerns on Embodiment 2 of this invention.
 以下、本発明をその実施の形態に基づいて具体的に説明する。
(実施の形態1)
 図1は、本発明の実施の形態1に係るノズル1を示す斜視図である。
 ノズル1は、筒体11と、筒体11の先端部に等配された4つの弁体12と、筒体11の他端部に設けられた取付フランジ13とを備える。
 各弁体12は、側面視が菱形状をなし、隣り合う頂点で繋がり、それぞれ筒体11の長手方向の対角線で谷折りしてある。弁体12の菱形の半体121の先端部側の辺に対応する端面122が、隣り合う弁体12の端面122と当接することで、4つの弁体12が閉じるように構成されている。弁体12は、筒体11に所定の内圧が付与された場合に開き、筒体11がサックバックされて筒体11内を通流する流動体が逆方向に吸引された場合に閉じる。図1に示すように、ノズル1の各弁体12は、端面122が十字形をなすように閉じる。
Hereinafter, the present invention will be specifically described based on the embodiments.
(Embodiment 1)
FIG. 1 is a perspective view showing a nozzle 1 according to Embodiment 1 of the present invention.
The nozzle 1 includes a cylindrical body 11, four valve bodies 12 that are equally arranged at the tip of the cylindrical body 11, and a mounting flange 13 that is provided at the other end of the cylindrical body 11.
Each valve body 12 has a rhombus shape in a side view, is connected at adjacent vertices, and is folded at a diagonal line in the longitudinal direction of the cylindrical body 11. The four valve bodies 12 are configured to be closed when the end face 122 corresponding to the side of the front end side of the rhomboid half body 121 of the valve body 12 comes into contact with the end face 122 of the adjacent valve body 12. The valve body 12 opens when a predetermined internal pressure is applied to the cylinder body 11 and closes when the fluid body flowing through the cylinder body 11 is sucked back and sucked in the reverse direction. As shown in FIG. 1, each valve body 12 of the nozzle 1 is closed so that the end face 122 forms a cross shape.
 図2は、筒体11に内圧が付与され、弁体12が開いた状態を示す平面図である。
 取付フランジ13は矩形状をなす。そして、チューブ等の、流動体が通流される通流体に、筒体11の取付フランジ13側が嵌められるように構成されている。
FIG. 2 is a plan view showing a state in which the internal pressure is applied to the cylindrical body 11 and the valve body 12 is opened.
The mounting flange 13 has a rectangular shape. And it is comprised so that the attachment flange 13 side of the cylinder 11 may be fitted by the fluid through which the fluid flows, such as a tube.
 ノズル1の基材は、シリコーンゴム,ウレタンゴム,クロロプレンゴム,アクリルゴム等の合成ゴム、及び天然ゴムを含むエラストマー、又は合成樹脂等からなる。基材としては、良好な柔軟性及び熱安定性を有するという観点からシリコーンゴムが好ましい。 The base material of the nozzle 1 is made of synthetic rubber such as silicone rubber, urethane rubber, chloroprene rubber or acrylic rubber, and elastomer containing natural rubber or synthetic resin. As the base material, silicone rubber is preferable from the viewpoint of having good flexibility and thermal stability.
 ノズル1の基材には顔料が混合され得る。顔料としては、例えば二酸化チタン、炭酸マグネシウム、カーボンブラック、マグネタイト、ベンガラ、シエナあるいはコバルト等が挙げられる。 A pigment can be mixed in the base material of the nozzle 1. Examples of the pigment include titanium dioxide, magnesium carbonate, carbon black, magnetite, bengara, siena, and cobalt.
 ノズル1の基材としてシリコーンゴムを用いる場合、シリコーンゴムをロール機で練り、同時に加硫剤、シリカ系粉体充填剤等の加工補助剤、及び顔料を添加し、成形してノズル1を作製する。 When silicone rubber is used as the base material of the nozzle 1, the silicone rubber is kneaded with a roll machine, and at the same time, processing aids such as a vulcanizing agent and a silica-based powder filler, and a pigment are added and molded to produce the nozzle 1. To do.
 本実施の形態においては、隣り合う2つの弁体12の端面122,122の基端側部分(境界部分)に、筒体11の周方向に延びるリブ123が設けられている。リブ123は平面視がコの字状をなし、コの字の内側が筒体11の中心軸に対向し、かつ前記内側が、弁体12が当接する部分の先端部から所定間隔を隔てる状態で、端面122,122上に設けられている。 In the present embodiment, ribs 123 extending in the circumferential direction of the cylindrical body 11 are provided on the base end side portions (boundary portions) of the end faces 122 and 122 of the two adjacent valve bodies 12. The rib 123 has a U-shape in plan view, the inside of the U-shape is opposed to the central axis of the cylinder 11, and the inside is spaced apart from the tip of the portion with which the valve body 12 abuts. And provided on the end faces 122 and 122.
 本実施の形態に係るノズル1は、上述したようにリブ123を備えるので、充填時に弁体12が開き、端面122の基端部に負荷がかかる場合においても、切り裂きが生じるのが良好に抑制されている。上述したように、リブ123はコの字の内側が、弁体12が当接する部分の先端部から所定間隔を隔てる状態で、端面122に設けられているので、弁体12の開閉の可動域は確保されている。
 ノズル1の基材としてシリコーンゴムを使用する場合、復元力が良好であるので、ノズル1のHs硬度を70度まで高めることができる。
Since the nozzle 1 according to the present embodiment includes the ribs 123 as described above, even when the valve body 12 is opened at the time of filling and a load is applied to the base end portion of the end surface 122, the occurrence of tearing is well suppressed. Has been. As described above, the rib 123 is provided on the end surface 122 in a state where the inner side of the U-shape is spaced a predetermined distance from the tip of the portion where the valve body 12 abuts. Is secured.
When silicone rubber is used as the base material of the nozzle 1, since the restoring force is good, the Hs hardness of the nozzle 1 can be increased to 70 degrees.
 以下、本実施の形態に係るノズル1をチューブ式充填装置に適用した場合につき、説明する。
 図3は、このチューブ式充填装置(以下、充填機という)100を示す正面図である。
 充填機100は、チューブポンプ4、複数の重量設定ボタン21を備えた計量機2、及びチューブポンプ4を制御するコントローラ7を内装したコントロールボックス3を備える。
 チューブポンプ4は正逆転可能なモータ41を備え、モータ41から延びる回転軸42上に回転ヘッド43を取付けてある。回転ヘッド43には、同一円周上に4つのローラ44が支持されている。回転ヘッド43の外周側には半円弧状をなすチューブ受板45が設けられており、チューブ受板45と回転ヘッド43との間に弾性材料からなるチューブ46が着脱可能に介装されている。チューブポンプ4は、モータ41の駆動に伴い回転ヘッド43を回転させることにより、各ローラ44によりチューブ46を間欠的に絞りながら流動体の圧送を行うように構成されている。
 また、チューブポンプ4のケーシング40には、手動充填時に使用されるモータ41の回転調整ダイヤル47、手動充填時に使用される正逆転スイッチ48、モータ41を逆転させる場合の逆転調整ダイヤル49が設けられている。
Hereinafter, the case where the nozzle 1 according to the present embodiment is applied to a tube-type filling device will be described.
FIG. 3 is a front view showing the tube-type filling device (hereinafter referred to as a filling machine) 100.
The filling machine 100 includes a tube pump 4, a weighing machine 2 having a plurality of weight setting buttons 21, and a control box 3 having a controller 7 for controlling the tube pump 4.
The tube pump 4 includes a motor 41 that can be rotated forward and backward, and a rotary head 43 is mounted on a rotary shaft 42 extending from the motor 41. Four rollers 44 are supported by the rotary head 43 on the same circumference. A tube receiving plate 45 having a semicircular arc shape is provided on the outer peripheral side of the rotating head 43, and a tube 46 made of an elastic material is detachably interposed between the tube receiving plate 45 and the rotating head 43. . The tube pump 4 is configured to pump the fluid while intermittently squeezing the tube 46 by each roller 44 by rotating the rotary head 43 as the motor 41 is driven.
The casing 40 of the tube pump 4 is provided with a rotation adjustment dial 47 of a motor 41 used during manual filling, a forward / reverse switch 48 used during manual filling, and a reverse adjustment dial 49 when the motor 41 is rotated in reverse. ing.
 チューブ46の長手方向の一端側は、流動体が充填されたドラム缶等の大型容器(不図示)内に挿入されている。チューブ46の他端側は架台5に支持されている。チューブ46の中途部には脈動防止器8が介装されている。チューブ46の他端部は連結管10の一端部に接続され、連結管10の他端部には、取付フランジ13側を嵌めることによってノズル1が取り付けられている。計量機2上に充填先の容器6が載置されており、該容器6の開口部にノズル1の弁体12が対向させられている。
 脈動防止器8は、各ローラ44がチューブ46を絞りながら流動体を移送させるときに発生する脈動を防止する。
One end side of the tube 46 in the longitudinal direction is inserted into a large container (not shown) such as a drum can filled with a fluid. The other end side of the tube 46 is supported by the gantry 5. A pulsation preventer 8 is interposed in the middle of the tube 46. The other end of the tube 46 is connected to one end of the connecting pipe 10, and the nozzle 1 is attached to the other end of the connecting pipe 10 by fitting the mounting flange 13 side. A filling destination container 6 is placed on the weighing machine 2, and the valve body 12 of the nozzle 1 is opposed to the opening of the container 6.
The pulsation preventer 8 prevents pulsation that occurs when the rollers 44 transfer the fluid while squeezing the tube 46.
 コントロールボックス3は、チューブポンプ4のモータ41を回転開始させるスタートスイッチ31、モータ41を回転停止させるストップスイッチ32、充填作業を手動又は自動的に行う場合に選択的に切換えられる自動手動切換スイッチ33、及び停止タイマー34を備える。停止タイマー34は、容器6への充填作業を終了した後で、再度充填作業を行うために、所定時間をカウントする。 The control box 3 includes a start switch 31 for starting rotation of the motor 41 of the tube pump 4, a stop switch 32 for stopping rotation of the motor 41, and an automatic manual switching switch 33 that is selectively switched when the filling operation is performed manually or automatically. , And a stop timer 34. The stop timer 34 counts a predetermined time in order to perform the filling operation again after completing the filling operation to the container 6.
 容器6へ流動体を自動的に充填する場合、容器6を計量機2上に載置し、容器6内に充填する流動体の質量を計量機2の設定ボタン21で設定し、手動自動切換スイッチ33を自動側に切換え、スタートスイッチ31をオンし、チューブポンプ4のモータ41を正回転させる。
 モータ41の正回転に従い、チューブ46内に流動体が圧送され、チューブ46に所定の内圧が付与されるので、ノズル1の弁体12が開き、流動体が容器6へ吐出される。
When the container 6 is automatically filled with the fluid, the container 6 is placed on the weighing machine 2, the mass of the fluid to be filled in the container 6 is set with the setting button 21 of the weighing machine 2, and manual automatic switching is performed. The switch 33 is switched to the automatic side, the start switch 31 is turned on, and the motor 41 of the tube pump 4 is rotated forward.
According to the forward rotation of the motor 41, the fluid is pumped into the tube 46 and a predetermined internal pressure is applied to the tube 46, so that the valve body 12 of the nozzle 1 is opened and the fluid is discharged to the container 6.
 充填開始から容器6内に所望量の流動体が充填されるまで、コントローラ7は、計量機2による計量値に基づき、チューブポンプ4のモータ41を高速度で正回転させる。チューブ46の内圧は大きく、ノズル1の弁体12が大きく開き、容器6内に流動体が高速度で充填される。 From the start of filling until the container 6 is filled with a desired amount of fluid, the controller 7 rotates the motor 41 of the tube pump 4 at a high speed based on the measured value by the measuring machine 2. The internal pressure of the tube 46 is large, the valve body 12 of the nozzle 1 is greatly opened, and the fluid is filled into the container 6 at a high speed.
 計量機2による計量値が第1所定値になったとき、コントローラ7は、モータ41にブレーキをかけながら、モータ41を低速度で正回転させる。このとき、流動体は容器6内に低速度で充填される。 When the measured value by the weighing machine 2 reaches the first predetermined value, the controller 7 rotates the motor 41 at a low speed while braking the motor 41. At this time, the fluid is filled into the container 6 at a low speed.
 計量機2による計量値が第1所定値より大きい第2所定値になったとき、コントローラ7は、モータ41の回転を停止し、モータ41を逆回転させる。これにより、チューブ46内がサックバックされて、内部の流動体が充填方向とは逆方向に吸引されるので、弁体12は速やかに閉じられ、流動体のノズル1からの液だれが確実に防止される。
 本実施の形態においては、流動体の粘度の差、すなわち液切れの差等に対応して、モータ41を正回転又は逆回転させるときの速度を調整することができるように構成されている。
When the measured value by the weighing machine 2 becomes a second predetermined value larger than the first predetermined value, the controller 7 stops the rotation of the motor 41 and rotates the motor 41 in the reverse direction. As a result, the inside of the tube 46 is sucked back and the fluid inside is sucked in the direction opposite to the filling direction, so that the valve body 12 is quickly closed, and the fluid from the nozzle 1 is surely drained. Is prevented.
In the present embodiment, the speed at which the motor 41 is rotated forward or backward can be adjusted in accordance with the difference in viscosity of the fluid, that is, the difference in liquid breakage.
 充填機100の使用後は、チューブ46内に洗浄液を通すことにより簡単に洗浄することができる。また、香料及び雑菌を含む流動体等を通流させ、チューブ46を洗浄しても臭い及び雑菌が残存する虞があり、チューブ46の再使用が困難である場合、チューブ46を新しいものと交換するのみで、異なる流動体の充填作業を続行することができる。そして、チューブポンプ4を使用する場合、ロータリータイプのポンプ等のように、流動体がこね混ぜられて、物性変化が生じるのが防止されている。 After use of the filling machine 100, cleaning can be easily performed by passing the cleaning liquid through the tube 46. In addition, if there is a possibility that odors and germs may remain even if a fluid containing a fragrance and germs is passed through and the tube 46 is washed, it is difficult to reuse the tube 46, and the tube 46 is replaced with a new one. Only then can the filling operation of the different fluids be continued. When the tube pump 4 is used, it is prevented that the fluid is kneaded and the physical properties are changed as in the rotary type pump.
 なお、本実施の形態においては、流動体の吐出の制御を、容器6に充填される流動体の重量により行っているが、これに限定されるものではなく、時間設定により行うことにしてもよい。
 また、ノズル1の基材がシリコーンゴムであり、顔料を含む場合、この顔料として、流動体の色に対して視認性を有する色相のものを選択することができる。例えば流動体の色が白色である場合、茶色の顔料を使用することができる。これにより、顔料の色の視認により、ノズル1の切片又は自体の流動体への混入を把握することができる。
In the present embodiment, the discharge of the fluid is controlled by the weight of the fluid filled in the container 6. However, the present invention is not limited to this and may be performed by setting the time. Good.
Moreover, when the base material of the nozzle 1 is silicone rubber and contains a pigment, the thing of the hue which has visibility with respect to the color of a fluid can be selected as this pigment. For example, when the color of the fluid is white, a brown pigment can be used. As a result, it is possible to grasp the mixing of the nozzle 1 segment or the fluid itself by visual recognition of the color of the pigment.
(実施の形態2)
 本発明の実施の形態2に係るノズル9は、非磁性金属を含有すること以外は、実施の形態1に係るノズル1と同様の構成を有する。
(Embodiment 2)
The nozzle 9 according to Embodiment 2 of the present invention has the same configuration as the nozzle 1 according to Embodiment 1 except that it contains a nonmagnetic metal.
 図4は、ノズル9を示す斜視図である。
 ノズル9は、筒体91と、筒体91の先端部に等配された4つの弁体92と、筒体91の他端部に設けられた取付フランジ93とを備える。
 各弁体92は、側面視が菱形状をなし、隣り合う頂点で繋がり、それぞれ筒体91の長手方向の対角線で谷折りしてある。弁体92の菱形の半体921の先端部側の辺に対応する端面922が、隣り合う弁体92の端面922と当接することで、4つの弁体92が閉じるように構成されている。弁体92は、筒体91に所定の内圧が付与された場合に開き、筒体91がサックバックされて筒体91内を通流する流動体が逆方向に吸引された場合に閉じる。図4に示すように、ノズル9の各弁体92が閉じた場合、平面視は十字状をなす。
 取付フランジ93は筒体91より大径のリング状をなし、チューブ等の通流体に嵌められるように構成されている。
FIG. 4 is a perspective view showing the nozzle 9.
The nozzle 9 includes a cylindrical body 91, four valve bodies 92 that are equally arranged at the tip of the cylindrical body 91, and a mounting flange 93 provided at the other end of the cylindrical body 91.
Each valve body 92 has a rhombus shape in side view, is connected at adjacent vertices, and is folded at a diagonal line in the longitudinal direction of the cylindrical body 91. The four valve bodies 92 are configured to be closed by the end surface 922 corresponding to the side on the tip end side of the rhomboid half body 921 of the valve body 92 coming into contact with the end surface 922 of the adjacent valve body 92. The valve body 92 opens when a predetermined internal pressure is applied to the cylinder body 91, and closes when the cylinder body 91 is sucked back and the fluid flowing through the cylinder body 91 is sucked in the reverse direction. As shown in FIG. 4, when each valve element 92 of the nozzle 9 is closed, the plan view has a cross shape.
The mounting flange 93 has a ring shape larger in diameter than the cylindrical body 91 and is configured to be fitted into a fluid such as a tube.
 本実施の形態においては、隣り合う2つの弁体92の端面922,922の基端側部分(境界部分)に、筒体91の周方向に延びるリブ923が設けられている。リブ923は平面視がコの字状をなし、コの字の内側が筒体91の中心を向き、かつ弁体92が当接する部分の先端部から所定間隔を隔てるように、端面922,922上に配されている。 In the present embodiment, ribs 923 extending in the circumferential direction of the cylindrical body 91 are provided on the proximal end portions (boundary portions) of the end faces 922 and 922 of the two adjacent valve bodies 92. The rib 923 has a U-shape in plan view, the end faces 922 and 922 so that the inside of the U-shape faces the center of the cylindrical body 91 and is spaced a predetermined distance from the tip of the portion where the valve body 92 abuts. Arranged above.
 本実施の形態に係るノズル9は、上述したようにリブ923を備えるので、弁体92の可動域を確保しつつ、充填時に弁体92が開き、端面922の基端部に負荷がかかる場合においても、切り裂きが生じるのが良好に抑制されている。 Since the nozzle 9 according to the present embodiment includes the rib 923 as described above, the valve body 92 is opened during filling and a load is applied to the base end portion of the end surface 922 while ensuring the movable range of the valve body 92. Also, the occurrence of tearing is well suppressed.
 ノズル9の基材は、シリコーンゴム,ウレタンゴム,クロロプレンゴム,アクリルゴム等の合成ゴム、及び天然ゴムを含むエラストマー、又は合成樹脂等からなる。基材としてはシリコーンゴムが好ましい。 The base material of the nozzle 9 is made of synthetic rubber such as silicone rubber, urethane rubber, chloroprene rubber or acrylic rubber, and elastomer containing natural rubber, or synthetic resin. Silicone rubber is preferred as the substrate.
 ノズル9の基材がシリコーンゴム等のエラストマーである場合、ノズル9は、エラストマー95質量%~30質量%と、ステンレス5質量%~70質量%とを含む。
 ステンレスを5~70質量%以上含む場合、ノズル9の切片又はノズル9自体が流動体に混入したときに、金属探知機により容易に検出することができるとともに、ノズル9の耐磨耗性及び成形性をバランス良く有することができる。
 金属としてステンレスを含有するので、例えば食品を充填する場合、安定かつ無毒であり、錆等が発生しない。
 ステンレスは20μm以下の粒子径を有することが好ましい。20μm以下の粒子径を有する場合、ノズル1の基材に混ぜて成形するときに均一に分散され得る。
When the base material of the nozzle 9 is an elastomer such as silicone rubber, the nozzle 9 includes 95% by mass to 30% by mass of the elastomer and 5% by mass to 70% by mass of the stainless steel.
When stainless steel is included in an amount of 5 to 70% by mass or more, when the section of the nozzle 9 or the nozzle 9 itself is mixed into the fluid, it can be easily detected by a metal detector, and the wear resistance and molding of the nozzle 9 It can have a good balance of sex.
Since stainless steel is contained as a metal, for example, when filling food, it is stable and non-toxic, and rust or the like does not occur.
The stainless steel preferably has a particle size of 20 μm or less. When it has a particle diameter of 20 μm or less, it can be uniformly dispersed when it is mixed with the base material of the nozzle 1 and molded.
 ノズル9の基材には顔料が混合され得る。顔料としては、例えば二酸化チタン、炭酸マグネシウム、カーボンブラック、マグネタイト、ベンガラ、シエナあるいはコバルト等が挙げられる。 A pigment can be mixed in the base material of the nozzle 9. Examples of the pigment include titanium dioxide, magnesium carbonate, carbon black, magnetite, bengara, siena, and cobalt.
 ノズル9の基材としてシリコーンゴムを用いる場合、シリコーンゴムをロール機で練り、同時に加硫剤、シリカ系粉体充填剤等の加工補助剤、顔料、及びステンレスを添加し、成形してノズル9を作製する。 When silicone rubber is used as the base material of the nozzle 9, the silicone rubber is kneaded with a roll machine, and at the same time, processing aids such as a vulcanizing agent and silica-based powder filler, a pigment, and stainless steel are added, and the nozzle 9 is molded. Is made.
 ノズル9のHs硬度は45度以下であるのが好ましく、30度以下であるのがより好ましい。Hs硬度が45度以下である場合、ノズル9の復元力が良好であることが後述の評価試験により確認されている。硬度は例えばシリカ系粉体充填剤の添加量により調整する。シリカ系粉体充填剤の添加量が少ない場合、Hs硬度は小さくなる。
 ノズル9の配合の主成分の一例として、シリコーンポリマー43%、SUS57%の場合が挙げられる。
The Hs hardness of the nozzle 9 is preferably 45 degrees or less, and more preferably 30 degrees or less. When the Hs hardness is 45 degrees or less, it is confirmed by an evaluation test described later that the restoring force of the nozzle 9 is good. The hardness is adjusted by, for example, the amount of silica-based powder filler added. When the addition amount of the silica-based powder filler is small, the Hs hardness is small.
As an example of the main component of the composition of the nozzle 9, there is a case of 43% silicone polymer and 57% SUS.
 本実施の形態に係るノズル9は、実施の形態1と同様に、チューブ式充填装置に適用することができる。例えば、実施の形態1に係る充填機100のノズル1をノズル9に変えて使用することができる。
 そして、流動体を充填された容器6は、金属探知機により金属含有の有無が確認される。
The nozzle 9 according to the present embodiment can be applied to a tube-type filling device as in the first embodiment. For example, the nozzle 1 of the filling machine 100 according to Embodiment 1 can be changed to the nozzle 9 and used.
The container 6 filled with the fluid is checked for the presence of metal by a metal detector.
 本実施の形態に係るノズル1はステンレスを含むので、ノズル1の切片又は自体が流動体に混入した場合に、金属探知機が磁場の変化から流動体中の金属の存在を検知し、前記切片又は自体の混入が把握される。これにより、異物を含む不良品が確実に検出される。 Since the nozzle 1 according to the present embodiment includes stainless steel, when the section of the nozzle 1 or itself is mixed into the fluid, the metal detector detects the presence of the metal in the fluid from the change of the magnetic field, and the section Or the contamination of itself is grasped. As a result, defective products including foreign substances are reliably detected.
(ノズルの復元力、及び液だれ防止効果の評価)
 以下に、Hs硬度を変えた場合のノズル9の復元力、及び液だれ防止効果を評価した結果について説明する。
1.復元力の評価
 指の腹でノズル9を数秒押し潰した状態から開口部が復元して閉じるか否かを目視で確認した。
 下記の表1に、Hs硬度を40°、50°、55°、60°、65°、70°に調整した場合の各ノズル9の復元力を評価した結果を示す。
(Evaluation of nozzle restoring force and dripping prevention effect)
Hereinafter, the results of evaluating the restoring force of the nozzle 9 and the dripping prevention effect when the Hs hardness is changed will be described.
1. Evaluation of Restoring Force It was visually confirmed whether or not the opening was restored and closed from a state in which the nozzle 9 was crushed for several seconds by the belly of the finger.
Table 1 below shows the results of evaluating the restoring force of each nozzle 9 when the Hs hardness is adjusted to 40 °, 50 °, 55 °, 60 °, 65 °, and 70 °.
Figure JPOXMLDOC01-appb-T000001
Figure JPOXMLDOC01-appb-T000001
 表1の横軸の項目の「70°、65°、60°、55°、50°、40°」はノズル9のHs硬度であり、「φ12、φ16、φ19」はノズル9の内径(mm)である。
 表1の縦軸の項目の「復元力」の評価内容は以下の通りである。
  ◎…問題なし
  〇…約1mmの開きあり(時間経過とともに閉じる)
  △…約2mmの開きあり(時間経過により若干閉じる)
  ×…約2mmの開きあり(時間経過しても閉じない)
  ××…約2mm以上の開きあり(時間経過しても閉じない)
“70 °, 65 °, 60 °, 55 °, 50 °, 40 °” on the horizontal axis in Table 1 is the Hs hardness of the nozzle 9, and “φ12, φ16, φ19” is the inner diameter (mm) of the nozzle 9. ).
The evaluation content of “restoring power” in the vertical axis item of Table 1 is as follows.
◎… No problem 〇… Open about 1mm (closes with time)
Δ: Opening of about 2 mm (slightly closes over time)
×: Approximately 2 mm open (does not close even after time)
XX ... Opening of about 2mm or more (Does not close even after time)
 表1より、Hs硬度が45°以下である場合、復元力が良好であることが分かる。 Table 1 shows that when the Hs hardness is 45 ° or less, the restoring force is good.
2、液ダレ防止効果の評価
 ノズル9を以下の(1)~(3)の組み合わせで流動体吐出装置に取り付け、液ダレ防止効果を確認した。
(1)流動体吐出装置の機種(DT、6ZR、8ZR)
 DT…流動体の吐出の制御を、時間を計測することにより行う
 6ZR…流動体の吐出の制御を、容器への注入の前後の質量を計測することにより行う(充填機100のタイプ)。内径が小さいシリコーンブレードホース(SBH:ノズル9に接続するホース、すなわち充填機100のチューブ46)を用い、内径10mm、12mmのノズル9を用いる。
 8ZR…流動体の吐出の制御を、容器への注入の前後の質量を計測することにより行う。内径が大きいSBHを用い、内径16mm、19mmのノズル9を用いる。
(2)SBHの内径(φ10、φ12、φ16、φ19[mm])
(3)ノズルとSBHとのジョイント部品(充填機100の場合は連結管10)
 T…円筒状であり、長さ30mmのジョイント部品
 L…L字状のジョイント部品
   標準…L字の各辺の長さが100mm
   ショート…L字の各辺の長さが70mm
2. Evaluation of dripping prevention effect The nozzle 9 was attached to the fluid discharge device by the following combinations (1) to (3), and the dripping prevention effect was confirmed.
(1) Model of fluid discharge device (DT, 6ZR, 8ZR)
DT: Control of discharge of fluid is performed by measuring time. 6ZR: Control of discharge of fluid is performed by measuring mass before and after injection into the container (type of filling machine 100). A silicone blade hose having a small inner diameter (SBH: hose connected to the nozzle 9, that is, the tube 46 of the filling machine 100) is used, and the nozzle 9 having an inner diameter of 10 mm and 12 mm is used.
8ZR: Fluid discharge is controlled by measuring the mass before and after injection into the container. SBH having a large inner diameter is used, and nozzles 9 having an inner diameter of 16 mm and 19 mm are used.
(2) SBH inner diameter (φ10, φ12, φ16, φ19 [mm])
(3) Joint part of nozzle and SBH (in the case of filling machine 100, connecting pipe 10)
T ... Cylinder-shaped joint part with a length of 30 mm L ... L-shaped joint part Standard ... The length of each side of the L-shape is 100 mm
Short ... The length of each side of L-shape is 70mm
 ノズル9を上記の(1)~(3)の組み合わせの流動体吐出装置に取り付け、液ダレ防止効果を評価した結果を下記の表2及び表3に示す。 Table 2 and Table 3 below show the results obtained by attaching the nozzle 9 to the fluid discharge device having the combination of (1) to (3) and evaluating the liquid dripping prevention effect.
Figure JPOXMLDOC01-appb-T000002
Figure JPOXMLDOC01-appb-T000002
Figure JPOXMLDOC01-appb-T000003
Figure JPOXMLDOC01-appb-T000003
 表2及び表3の横軸の項目は以下の通りである。
 50°、40°・・・ノズル9のHs硬度
 SBH10φ…SBHの内径が10mm
 SBH12φ…SBHの内径が12mm
 SBH16φ…SBHの内径が16mm
 SBH19φ…SBHの内径が19mm
 T12*10…ジョイント部品が「T」で、ノズル9側の径が12mm、SBH側の径が10mm
 L12*10標準…ジョイント部品が「L標準」であり、ノズル9側の径が12mm、SBH側の径が10mm。
 L12*10ショート…ジョイント部品が「Lショート」であり、ノズル9側の径が12mm、SBH側の径が10mm(以下、同様)。
The items on the horizontal axis in Tables 2 and 3 are as follows.
50 °, 40 ° ... Hs hardness of nozzle 9 SBH10φ ... SBH inner diameter is 10mm
SBH12φ ... SBH inner diameter is 12mm
SBH16φ ... SBH inner diameter is 16mm
SBH19φ ... SBH inner diameter is 19mm
T12 * 10: The joint part is “T”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm.
L12 * 10 standard: The joint part is “L standard”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm.
L12 * 10 short: The joint part is “L short”, the diameter on the nozzle 9 side is 12 mm, and the diameter on the SBH side is 10 mm (hereinafter the same).
 表2及び表3の縦軸の項目は以下の通りである。
 φ12A…ノズル9の径が12mm(図4における取付フランジ93なし)
 φ16A…ノズル9の径が16mm(図4における取付フランジ93なし)
 φ19M…ノズル9の径が19mm(図4における取付フランジ93あり)
The items on the vertical axis in Tables 2 and 3 are as follows.
φ12A: Nozzle 9 diameter is 12 mm (without mounting flange 93 in FIG. 4)
φ16A: Nozzle 9 diameter is 16 mm (without mounting flange 93 in FIG. 4)
φ19M ... The diameter of the nozzle 9 is 19 mm (with the mounting flange 93 in FIG. 4)
 表2及び表3の評価内容は以下の通りである。
 ◎…100%
 〇…90~80%
 ×…NG
 例えば「◎10/10」は、「10回中10、◎であったこと」を示す。
The evaluation contents of Table 2 and Table 3 are as follows.
◎ ... 100%
〇… 90-80%
×… NG
For example, “◎ 10/10” indicates “10 out of 10 times, ◎”.
 表2及び表3より、ノズル9のHs硬度が45°以下である場合、液ダレ防止効果が良好であることが分かる。
 以上より、ノズルがステンレスを含有する場合、Hs硬度は45°以下であるのが好ましいことが分かる。
From Tables 2 and 3, it can be seen that when the Hs hardness of the nozzle 9 is 45 ° or less, the dripping prevention effect is good.
From the above, it can be seen that when the nozzle contains stainless steel, the Hs hardness is preferably 45 ° or less.
 今回開示した実施の形態は、全ての点で例示であって、制限的なものではないと考えるべきである。本発明の範囲は、請求の範囲内での全ての変更及び請求の範囲と均等の範囲が含まれることが意図される。
 例えば、前記実施の形態1及び2においては、ノズル1、9をチューブ式充填装置である充填機100に適用した場合につき説明しているがこれに限定されるものではない。本発明に係るノズル1、9は、上述のピストンタイプ及びロータリータイプ等の容量式ポンプ、他のチューブポンプ等を備える種々の充填装置に用いられ得る。
The embodiment disclosed herein should be considered as illustrative in all points and not restrictive. The scope of the present invention is intended to include all modifications within the scope of the claims and the scope equivalent to the scope of the claims.
For example, in the first and second embodiments, the case where the nozzles 1 and 9 are applied to the filling machine 100 that is a tube-type filling device has been described, but the present invention is not limited to this. The nozzles 1 and 9 according to the present invention can be used in various filling devices including the above-described piston type and rotary type displacement pumps, other tube pumps, and the like.
 1、9 ノズル
 11、91 筒体
 12、92 弁体
 121、921 半体
 122、922 端面
 123、923 リブ
 2 計量機
 3 コントロールボックス
 4 チューブポンプ
 46 チューブ
 7 コントローラ
 100 充填機(流動体吐出装置)
DESCRIPTION OF SYMBOLS 1, 9 Nozzle 11, 91 Tubular body 12, 92 Valve body 121, 921 Half body 122, 922 End surface 123, 923 Rib 2 Weighing machine 3 Control box 4 Tube pump 46 Tube 7 Controller 100 Filling machine (fluid discharge device)

Claims (4)

  1.  筒体と、
     該筒体の先端部に等配され、前記筒体の内圧に応じて開閉するように構成された少なくとも4以上の菱形状をなす弁体と
     を備え、
     各弁体は隣り合う頂点で繋がり、
     各弁体は前記筒体の長手方向の対角線で谷折りしてあり、
     隣り合う弁体の先端部側の辺に対応する部分同士が当接することで、各弁体が閉じるように構成され、
     隣り合う2つの弁体が繋がる部分に、コの字状をなし、コの字の内側が前記筒体の中心軸に対向し、かつ前記内側が、前記弁体が当接する部分の先端部から所定間隔を隔てるように設けられたリブを備えることを特徴とするノズル。
    A cylinder,
    A valve body having at least four or more rhombus shapes that are equally distributed at a distal end portion of the cylindrical body and configured to open and close according to an internal pressure of the cylindrical body,
    Each valve is connected at the apex next to it,
    Each valve body is valley-folded along a diagonal in the longitudinal direction of the cylindrical body,
    Each valve body is configured to be closed by contacting the portions corresponding to the side on the distal end side of the adjacent valve body,
    A portion where two adjacent valve bodies are connected has a U-shape, the inside of the U-shape is opposed to the central axis of the cylindrical body, and the inside is from the tip of the portion where the valve body abuts A nozzle comprising ribs provided at predetermined intervals.
  2.  前記筒体及び前記弁体は、主成分としてエラストマー95質量%~30質量%と、ステンレス5質量%~70質量%とを含み、
     Hs硬度が45度以下であることを特徴とする請求項1に記載のノズル。
    The cylindrical body and the valve body include, as main components, 95% by mass to 30% by mass of an elastomer and 5% by mass to 70% by mass of stainless steel,
    The nozzle according to claim 1, wherein Hs hardness is 45 degrees or less.
  3.  請求項1又は2に記載のノズルを備え、
     前記筒体内を通流される流動体を前記弁体の開/閉により吐出/吐出の停止を行うように構成されていることを特徴とする流動体吐出装置。
    A nozzle according to claim 1 or 2,
    A fluid discharge device configured to discharge / stop a fluid flowing through the cylindrical body by opening / closing the valve body.
  4.  正逆回転可能なモータを備えたポンプと、
     一端部が前記ポンプに接続され、他端部が前記ノズルに接続されたチューブと
     を備え、
     前記モータを逆回転させ、前記チューブ及び前記ノズル内を通流する流動体をサックバックさせるように構成されていることを特徴とする請求項3に記載の流動体吐出装置。
    A pump with a motor capable of rotating forward and reverse,
    A tube having one end connected to the pump and the other end connected to the nozzle;
    The fluid discharge device according to claim 3, wherein the fluid is configured to reversely rotate the motor to suck back the fluid flowing through the tube and the nozzle.
PCT/JP2014/084525 2014-01-10 2014-12-26 Nozzle and fluid discharge device WO2015105023A1 (en)

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JP2014003607A JP5677660B1 (en) 2014-01-10 2014-01-10 Nozzle and fluid discharge device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6642902B2 (en) 2015-03-11 2020-02-12 サーパス工業株式会社 Flow control device

Citations (5)

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Publication number Priority date Publication date Assignee Title
JPS56139066U (en) * 1980-03-24 1981-10-21
JPS57177472A (en) * 1981-04-01 1982-11-01 Tetra Pak Int Valve gear
JP2813599B2 (en) * 1995-06-06 1998-10-22 株式会社ナオミ Filling machine
WO2010052127A2 (en) * 2008-11-10 2010-05-14 Bühler AG Casting machine valve, dosing chamber, and casting machine
WO2012101154A1 (en) * 2011-01-25 2012-08-02 Bühler AG Casting machine valve

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0519649Y2 (en) * 1986-03-31 1993-05-24
JPH0622709B2 (en) * 1986-04-21 1994-03-30 エロパック・アー エス Fluid flow nozzle
JPH0747282Y2 (en) * 1989-08-24 1995-11-01 四国化工機株式会社 Liquid quantitative filling device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56139066U (en) * 1980-03-24 1981-10-21
JPS57177472A (en) * 1981-04-01 1982-11-01 Tetra Pak Int Valve gear
JP2813599B2 (en) * 1995-06-06 1998-10-22 株式会社ナオミ Filling machine
WO2010052127A2 (en) * 2008-11-10 2010-05-14 Bühler AG Casting machine valve, dosing chamber, and casting machine
WO2012101154A1 (en) * 2011-01-25 2012-08-02 Bühler AG Casting machine valve

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JP2015132312A (en) 2015-07-23

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