JP5240835B2 - Feeding container - Google Patents

Feeding container Download PDF

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JP5240835B2
JP5240835B2 JP2008172115A JP2008172115A JP5240835B2 JP 5240835 B2 JP5240835 B2 JP 5240835B2 JP 2008172115 A JP2008172115 A JP 2008172115A JP 2008172115 A JP2008172115 A JP 2008172115A JP 5240835 B2 JP5240835 B2 JP 5240835B2
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cylinder
peripheral surface
sealing
container
sealing ring
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JP2010011903A (en
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庄治 植平
誠 高見
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Daiwa Can Co Ltd
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Daiwa Can Co Ltd
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Description

本発明は、内容物である棒状の固形物を繰り出し・繰り入れ可能に収容する繰り出し容器に関する。   The present invention relates to a feeding container that accommodates a rod-shaped solid material as a content so as to be able to be fed and fed.

棒状化粧品(口紅等)の容器として、容器の外装部と棒状化粧品の保持部とを相対的に回転させることで、棒状化粧品を繰り出し・繰り入れできるような、繰り出し容器と言われる容器が従来から知られている。そのような繰り出し容器について、下記の特許文献には、「筒体からなり下部に長手方向に沿って摺動孔を設けた本体と、筒体からなり内側に上記本体を摺嵌しかつ内周面に螺旋溝を設けた回動自在の外筒体と、筒体からなり下端部に上記摺動孔を介して螺旋溝に摺動自在に係合される突起を有するとともに棒状化粧料を収容・保持する中皿体と、を具備してなる棒状化粧料容器において、上記本体の外周面に環状に突設された嵌合部を設け、周壁を肉厚に形成した外筒体の上端を中具の下端に一体に溶着し、該溶着した部分をもって上記嵌合部を摺動自在に挟持する」という構造が開示されている。
登録実用新案第3006522号公報
Conventionally known as a container for stick-shaped cosmetics (lipsticks, etc.), a container called a pay-out container that allows the stick-shaped cosmetics to be fed and unloaded by relatively rotating the exterior part of the container and the holding part of the stick-shaped cosmetics. It has been. Regarding such a feeding container, the following patent document states that “a main body made of a cylindrical body and provided with a sliding hole along the longitudinal direction in the lower part, and a main body made of a cylindrical body and slidingly fitting the main body on the inner side. A rotatable outer cylindrical body having a spiral groove on the surface, and a protrusion made of a cylindrical body and slidably engaged with the spiral groove via the sliding hole at the lower end portion and containing a rod-shaped cosmetic -In a stick-shaped cosmetic container comprising an inner dish body to be held, an upper end of an outer cylindrical body having a thick peripheral wall provided with a fitting portion projecting annularly on the outer peripheral surface of the main body. A structure is disclosed in which it is integrally welded to the lower end of the middle tool and the fitting portion is slidably held by the welded portion.
Registered Utility Model No. 3006522

ところで、上記の特許文献に記載された従来の繰り出し容器では、本体の外周面のうちで嵌合部の上方付近を、中具の内周面に突設されたリブにより摺接することで、本体と中具との密接による容器の密封性を確保しているが、そのような容器の密封性を充分に確保するためには、中具に形成されるリブを本体に強く当接させる必要がある。   By the way, in the conventional feeding container described in the above-mentioned patent document, the upper part of the outer peripheral surface of the main body is slidably contacted by a rib projecting from the inner peripheral surface of the middle tool by the main body. However, in order to ensure the sufficient sealing performance of such a container, it is necessary to strongly abut the rib formed on the inner tool against the main body. is there.

一方、キャップを装着する際に、キャップを押し下げることで、中具の外周面に形成された突部によってキャップを嵌合しているが、そのように中具を介してキャップを嵌合する場合に、上記のように中具に形成されるリブを本体に強く当接させていると、本体から中具に対して中具の外径を拡げるような反発力が働くため、キャップを嵌合し難くなるという問題がある。   On the other hand, when attaching the cap, the cap is fitted by the protrusion formed on the outer peripheral surface of the inner tool by pushing down the cap, but when the cap is fitted via the inner tool as such In addition, if the rib formed on the inner tool is in strong contact with the main body as described above, a repulsive force that expands the outer diameter of the inner tool from the main body to the inner tool acts, so the cap is fitted There is a problem that it becomes difficult to do.

本発明は、上記のような問題の解消を課題とするものであり、具体的には、繰り出し容器について、容器の密封性を充分に確保できて、しかも、キャップを容易に装着できるようにするということを課題とするものである。   An object of the present invention is to solve the above-described problems. Specifically, with respect to a feeding container, the container can be sufficiently sealed and the cap can be easily attached. That is the issue.

本発明は、上記のような課題を解決するために、棒状の内容物を保持する筒状の受筒の外周面にピンが突設され、受筒の外側に、受筒のピンを貫通させるガイド孔を下部に形成したガイド筒が設けられ、ガイド筒の下部の外側に、受筒のピンを受け入れるネジ溝を内周面に形成したネジ筒が設けられ、ネジ筒の外側に外装体が設けられ、外装体の上端部に封止筒が設けられた容器本体に対して、容器本体の封止筒の部分でキャップが係合される繰り出し容器において、
キャップの内周面に形成されたネジ部に対し、該ネジ部と螺合するネジ部が封止筒の外周面に形成され、封止筒の内周面に、ガイド筒の外周面と密接する密封リングが形成されてい、密封リングの容器半径方向外方に位置する封止筒の部分に空隙部が形成されていることで、密封リングの部分が容器半径方向で弾性変形可能となっていると共に、ガイド筒の外周面で、密封リングと密接する部分よりも上方の部分が、密封リングと密接する部分よりも外径の小さい小外径部となっていることを特徴とするものである。
In order to solve the above-described problems, the present invention has a pin projecting on the outer peripheral surface of a cylindrical receiving cylinder that holds a rod-shaped content, and the pin of the receiving cylinder passes through the outer side of the receiving cylinder. A guide tube having a guide hole formed at the bottom is provided, a screw tube having a screw groove formed on the inner peripheral surface for receiving a pin of the receiving tube is provided outside the lower portion of the guide tube, and an exterior body is provided outside the screw tube. In the feeding container in which the cap is engaged with the sealing cylinder part of the container main body, with respect to the container main body provided with the sealing cylinder at the upper end of the exterior body,
A screw portion that is screwed to the screw portion formed on the inner peripheral surface of the cap is formed on the outer peripheral surface of the sealing cylinder, and the inner peripheral surface of the sealing cylinder is in close contact with the outer peripheral surface of the guide cylinder. sealing ring be formed of, that air gap is formed in a portion of the sealing tube located in the container radially outward of the sealing ring, the portion of the sealing ring becomes elastically deformable container radially In addition, on the outer peripheral surface of the guide tube, the portion above the portion in close contact with the sealing ring is a small outer diameter portion having a smaller outer diameter than the portion in close contact with the sealing ring. It is.

上記のような本発明の繰り出し容器によれば、キャップが、封止筒の外周面に対して螺合により装着されるものであり、且つ、封止筒の内周面に形成された密封リングが、その外方の空隙部により容器半径方向で弾性変形可能となっていることから、キャップを装着する際には、容器周方向への回転力によりキャップを徐々に締め込むことができ、且つ、密封リングの部分で封止筒の外径を拡げるように働くガイド筒からの反発力を、密封リングの弾性変形により吸収することができて、キャップの装着を容易に行うことができると共に、密封リングが弾性変形してガイド筒に密接することで、密封リングは弾性復元力によりガイド筒に確実に密接するため、密封リングとガイド筒との密接による容器の密封性を充分に確保することができる。
また、ガイド筒の外周面で、密封リングと密接する部分よりも上方の部分が、密封リングと密接する部分よりも外径の小さい小外径部となっていることから、繰り出し容器の各部品の組み付けに際して、ガイド筒の外周面と封止筒の密封リングとの接触による抵抗を低減することができて、容器の組み付けを容易に行うことができる。
According to the feeding container of the present invention as described above, the cap is attached by screwing to the outer peripheral surface of the sealing cylinder, and the sealing ring formed on the inner peripheral surface of the sealing cylinder However, since it can be elastically deformed in the radial direction of the container by the outer space, when the cap is attached, the cap can be gradually tightened by the rotational force in the circumferential direction of the container, and The repulsive force from the guide cylinder that works to expand the outer diameter of the sealing cylinder at the sealing ring portion can be absorbed by the elastic deformation of the sealing ring, and the cap can be easily attached. Since the sealing ring is elastically deformed and is in close contact with the guide cylinder, the sealing ring is securely in close contact with the guide cylinder by the elastic restoring force, so that the container is sufficiently sealed by the close contact between the sealing ring and the guide cylinder. Can
In addition, since the portion above the portion in close contact with the sealing ring on the outer peripheral surface of the guide cylinder is a small outer diameter portion smaller than the portion in close contact with the sealing ring, each part of the feeding container When assembling, the resistance due to the contact between the outer peripheral surface of the guide cylinder and the sealing ring of the sealing cylinder can be reduced, and the container can be easily assembled.

棒状の内容物を保持する筒状の受筒の外周面にピンが突設され、受筒の外側に、受筒のピンを貫通させるガイド孔を下部に形成したガイド筒が設けられ、ガイド筒の下部の外側に、受筒のピンを受け入れるネジ溝を内周面に形成したネジ筒が設けられ、ネジ筒の外側に外装体が設けられ、外装体の上端部に封止筒が設けられた容器本体に対して、容器本体の封止筒の部分でキャップが係合される繰り出し容器について、容器の密封性を充分に確保できて、しかも、キャップを容易に装着できるようにするという目的を、最良の形態として以下の実施例に具体的に示すように、キャップの内周面に形成されたネジ部に対し、該ネジ部と螺合するネジ部を封止筒の外周面に形成し、封止筒の内周面に、ガイド筒の外周面と密接する密封リングを形成して、密封リングの容器半径方向外方に位置する封止筒の部分に空隙部を形成することで、密封リングの部分を容器半径方向で弾性変形可能にすると共に、ガイド筒の外周面で、密封リングと密接する部分よりも上方の部分を、密封リングと密接する部分よりも外径の小さい小外径部とする、ということで実現した。 A pin is provided on the outer peripheral surface of a cylindrical receiving cylinder that holds the rod-shaped contents, and a guide cylinder is formed on the outer side of the receiving cylinder. A screw cylinder in which a screw groove for receiving the pin of the receiving cylinder is formed on the inner peripheral surface is provided on the outer side of the lower part, an exterior body is provided on the outer side of the screw cylinder, and a sealing cylinder is provided on the upper end portion of the exterior body The object is to ensure sufficient sealing of the container for the feeding container in which the cap is engaged with the sealed cylinder part of the container body with respect to the container body, and to allow the cap to be easily attached. As shown in the following embodiment as the best mode, a screw portion that is screwed with the screw portion is formed on the outer peripheral surface of the sealing cylinder with respect to the screw portion formed on the inner peripheral surface of the cap. A sealing ring is formed on the inner peripheral surface of the sealing cylinder so as to be in close contact with the outer peripheral surface of the guide cylinder. And, by forming the gap portion in the portion of the sealing tube located in the container radially outward of the sealing ring, the portion of the sealing ring as well as to be elastically deformable in the vessel radially in the outer peripheral surface of the guide tube This is realized by setting the portion above the portion in close contact with the sealing ring as a small outer diameter portion having a smaller outer diameter than the portion in close contact with the sealing ring .

本実施例の繰り出し容器は、棒状化粧品(口紅等)のような棒状の固形物を内容物とするもので、図1に示すように、本実施例の繰り出し容器1は、棒状の内容物(図示せず)を保持するための筒状の受筒3と、受筒3の外側に設けられるガイド筒4と、ガイド筒4の下部の外側に設けられるネジ筒5と、ネジ筒5の外側に設けられる外装体6と、外装体6の上端部に設けられる封止筒7とからなる容器本体2に対して、容器本体2の封止筒7との螺合によりキャップ8が装着されるものである。なお、キャップ8には、その天板部の内面(下面)に、別体のシール部材9が一体的に付設されている。   The feeding container of the present embodiment is a stick-shaped solid material such as a stick-shaped cosmetic product (lipstick, etc.), and as shown in FIG. (Not shown) a cylindrical receiving tube 3, a guide tube 4 provided outside the receiving tube 3, a screw tube 5 provided outside the lower portion of the guide tube 4, and an outside of the screw tube 5 A cap 8 is attached to the container body 2 composed of the exterior body 6 provided in the container and the sealing cylinder 7 provided at the upper end of the exterior body 6 by screwing with the sealing cylinder 7 of the container body 2. Is. The cap 8 is integrally provided with a separate seal member 9 on the inner surface (lower surface) of the top plate portion.

上記のような各部品からなる本実施例の繰り出し容器は、合成樹脂材料により形成されたものであって、容器の外殻部分である外装体6とキャップ8は、比較的硬質なポリプロピレン樹脂から形成され、封止筒7も、外装体6に溶着し易いように、外装体6と同様のポリプロピレン樹脂から形成されている。一方、キャップ8に付設されるシール部材9は、ポリプロピレン樹脂よりも軟質な低密度ポリエチレンから形成されており、また、受筒3とガイド筒4とネジ筒5は、強度や摺動特性に優れたポリアセタール樹脂等から形成されている。   The feeding container of the present embodiment comprising the above-described parts is formed of a synthetic resin material, and the outer shell 6 and the cap 8 which are the outer shell portions of the container are made of a relatively hard polypropylene resin. The formed sealing cylinder 7 is also made of the same polypropylene resin as that of the exterior body 6 so as to be easily welded to the exterior body 6. On the other hand, the seal member 9 attached to the cap 8 is made of low-density polyethylene which is softer than polypropylene resin, and the receiving tube 3, the guide tube 4 and the screw tube 5 are excellent in strength and sliding characteristics. Polyacetal resin or the like.

繰り出し容器の各部品の構造について説明すると、容器本体2の受筒3には、棒状の内容物を保持するための円板状の台座31が筒内に形成されていて、台座31には、図3に示すように、内容物充填用の充填口32が台座31の中央に開口され、内容物係止用の爪部33が、それぞれ外方且つ上方に突出するように、充填口32の周縁部に等間隔で4箇所に形成され、充填口32よりも面積の小さいガス抜き用の開口部34が、台座31の外周部に等間隔で4箇所に形成されている。   The structure of each part of the feeding container will be described. The receiving cylinder 3 of the container body 2 is formed with a disk-shaped pedestal 31 for holding a rod-shaped content in the cylinder. As shown in FIG. 3, the filling port 32 for filling the contents is opened at the center of the base 31, and the claw portions 33 for locking the contents protrude outward and upward, respectively. Degassing openings 34 having a smaller area than the filling port 32 are formed at four positions at equal intervals on the peripheral edge, and four openings are formed at equal intervals on the outer periphery of the base 31.

また、受筒3には、台座31よりも上方で受筒3の内周面に、周方向に延びる内容物係止用のリブ35が等間隔で4箇所に形成され、受筒3の下部の外周面に、外方に突出するピン36が対称位置で2箇所に突設されていて、このピン36は、図1に示すように、ガイド筒4のガイド孔45を貫通してネジ筒5のネジ溝51に受け入れられている。なお、受筒3の上端部の外周面には、図6に示すように、ガイド筒4の内周面と密接するシール突起37が環状に形成されている。   In addition, ribs 35 for locking contents in the circumferential direction are formed at four locations on the inner peripheral surface of the receiving cylinder 3 above the pedestal 31 at equal intervals on the inner periphery of the receiving cylinder 3. As shown in FIG. 1, the pins 36 projecting outward from the outer peripheral surface of the guide tube 4 are projected in two positions at symmetrical positions. 5 of the screw groove 51. As shown in FIG. 6, a seal protrusion 37 that is in close contact with the inner peripheral surface of the guide tube 4 is formed in an annular shape on the outer peripheral surface of the upper end portion of the receiving tube 3.

受筒3の外側に設けられるガイド筒4は、図4に示すように、周突条44が形成された中間筒部42と、中間筒部42よりも上方に延びる上部筒部41と、中間筒部42よりも下方に延びる下部筒部43とからなり、上部筒部41と中間筒部42の内径は略同じであるが、それらよりも下部筒部43の内径は大きくなっており、一方、中間筒部42と下部筒部43の外径は略同じであるが、上部筒部41の外径はそれらよりも小さい小外径部となっていて、中間筒部42の厚さは、上部筒部41や下部筒部43の厚さよりも厚くなっている。   As shown in FIG. 4, the guide tube 4 provided outside the receiving tube 3 includes an intermediate tube portion 42 in which a circumferential protrusion 44 is formed, an upper tube portion 41 extending above the intermediate tube portion 42, and an intermediate tube portion 42. The upper cylindrical portion 41 and the intermediate cylindrical portion 42 have substantially the same inner diameter, but the inner diameter of the lower cylindrical portion 43 is larger than those, while the lower cylindrical portion 43 extends downward from the cylindrical portion 42. The outer cylindrical portion 42 and the lower cylindrical portion 43 have substantially the same outer diameter, but the upper cylindrical portion 41 has a smaller outer diameter than that, and the thickness of the intermediate cylindrical portion 42 is It is thicker than the thickness of the upper cylinder part 41 and the lower cylinder part 43.

ガイド筒4には、中間筒部42の外周面から外方に全周的に突出するように周突条44が形成され、周突条44の外周面には、ストッパー用の凸部44aが周方向に等間隔で3箇所に形成されていて、図6および図7に示すように、この凸部44aの内方に位置する周突条44の部分には、凸部44aを内方に弾性的に変位可能とするための間隙部44bが形成されている。また、ガイド筒4には、受筒3のピン36を貫通させるためのガイド孔45が、ガイド筒4の下端から周突条44の下方付近に至る範囲にまで連続するように、下部筒部43に対称位置で2箇所に形成されている。   A circumferential protrusion 44 is formed on the guide cylinder 4 so as to protrude outward from the outer peripheral surface of the intermediate cylindrical portion 42, and a convex portion 44 a for a stopper is formed on the outer peripheral surface of the peripheral protrusion 44. As shown in FIG. 6 and FIG. 7, the protrusion 44a is formed inward at the portion of the circumferential protrusion 44 located inward of the protrusion 44a. A gap 44b is formed to be elastically displaceable. Further, the guide tube 4 has a lower tube portion in which a guide hole 45 for allowing the pin 36 of the receiving tube 3 to pass through is continuous from the lower end of the guide tube 4 to the vicinity of the lower portion of the circumferential protrusion 44. 43 is formed at two positions symmetrically.

ガイド筒4の下部の外側に設けられるネジ筒5には、図5に示すように、その内周面に、受筒3の2つのピン36をそれぞれ受け入れるための2条のネジ溝51が形成されており、また、その外周面には、図示していないが、外装体6の内周面の係止突条と係合して外装体6に対して周方向で不動となるように、縦方向(容器軸線方向)に延びる多数のローレット溝が形成されている。   As shown in FIG. 5, the screw cylinder 5 provided on the outer side of the lower portion of the guide cylinder 4 is formed with two thread grooves 51 for receiving the two pins 36 of the receiving cylinder 3 on its inner peripheral surface. In addition, although not shown in the drawing on the outer peripheral surface thereof, the outer peripheral body 6 is engaged with the locking protrusion on the inner peripheral surface so as to be immovable in the circumferential direction. A number of knurled grooves extending in the vertical direction (the container axis direction) are formed.

ネジ筒5の外側に設けられる外装体6は、図1に示すように、ネジ筒5の外周側に位置する胴部61と、受筒3やガイド筒4やネジ筒5を支持する底部62とを有するもので、外装体6の胴部61の内周面には、図示していないが、ネジ筒5の外周面のローレット溝と係合する係止突条が6箇所に形成されており、外装体6の底部62の中央部には、内容物を充填するための開口部63が開口されている。この開口部63は、内容物を充填した後で、アルミ箔を主体とするシート蓋によってシールされることとなる。   As shown in FIG. 1, the exterior body 6 provided on the outer side of the screw tube 5 includes a body portion 61 positioned on the outer peripheral side of the screw tube 5 and a bottom portion 62 that supports the receiving tube 3, the guide tube 4, and the screw tube 5. On the inner peripheral surface of the body portion 61 of the exterior body 6, although not shown in the drawing, locking protrusions that engage with the knurled grooves on the outer peripheral surface of the screw cylinder 5 are formed at six locations. An opening 63 for filling the contents is opened at the center of the bottom 62 of the exterior body 6. The opening 63 is sealed with a sheet lid mainly composed of an aluminum foil after filling the contents.

外装体6の上端部に設けられる封止筒7は、外装体6の胴部61の上端部に超音波等により溶着されるものであって、図6に示すように、封止筒7では、下筒部72の上端から上方且つ内方にずれた状態で上筒部71が接続されており、下筒部72の外周面から外方に突出するように、外装体6の上端面に溶着される環状の凸部73が形成されていて、上筒部71の外周面にはネジ部(雄ネジ)74が形成され、下筒部72の外周面で環状凸部73の上方には環状溝75が形成されている。この環状溝75は、容器の不使用時にキャップ8が緩むのを防止するために、キャップ8のネジ部83の下方に形成された突起84を係止するものである。   The sealing cylinder 7 provided at the upper end of the exterior body 6 is welded to the upper end of the body 61 of the exterior body 6 by ultrasonic waves or the like. As shown in FIG. The upper cylinder 71 is connected in a state of being displaced upward and inward from the upper end of the lower cylinder 72, and is projected on the upper end of the exterior body 6 so as to protrude outward from the outer peripheral surface of the lower cylinder 72. An annular convex portion 73 to be welded is formed, a screw portion (male screw) 74 is formed on the outer peripheral surface of the upper cylindrical portion 71, and an upper peripheral surface of the lower cylindrical portion 72 is above the annular convex portion 73. An annular groove 75 is formed. The annular groove 75 locks a protrusion 84 formed below the threaded portion 83 of the cap 8 in order to prevent the cap 8 from loosening when the container is not used.

また、封止筒7には、上筒部71の内周面側から下方に延びるように、上筒部71の内周面よりも内方に突出した内周面を有する密封リング76が一体的に形成されている。この密封リング76の外周面は、下筒部72の内周面から離隔されており、密封リング76と下筒部72の間(密封リング76の外方に位置する封止筒7の部分)には空隙部77が形成されていて、この空隙部77により、密封リング76は容器半径方向で外方に容易に弾性変形できるようになっている。   Further, the sealing cylinder 7 is integrally provided with a sealing ring 76 having an inner peripheral surface protruding inward from the inner peripheral surface of the upper cylinder portion 71 so as to extend downward from the inner peripheral surface side of the upper cylinder portion 71. Is formed. The outer peripheral surface of the sealing ring 76 is separated from the inner peripheral surface of the lower cylinder portion 72, and is between the sealing ring 76 and the lower cylinder portion 72 (the portion of the sealing cylinder 7 located outside the sealing ring 76). A gap portion 77 is formed in the seal ring 76 so that the seal ring 76 can be easily elastically deformed outward in the radial direction of the container.

密封リング76の内周面は、ガイド筒4の周突条44の上方で、ガイド筒4の中間筒部42の略垂直な筒状の外周面と密接するように形成されている。ガイド筒4と密封リング76の密接箇所は、密封リング76と下筒部72との間の空隙部77を介して、封止筒7の環状溝75の裏側付近に位置するようになっていて、この密接箇所は、容器軸線方向(上下方向)で見て、封止筒7とキャップ8とが重なる範囲に位置している。   The inner peripheral surface of the sealing ring 76 is formed so as to be in close contact with the substantially vertical cylindrical outer peripheral surface of the intermediate cylinder portion 42 of the guide cylinder 4 above the peripheral protrusion 44 of the guide cylinder 4. The intimate part of the guide cylinder 4 and the sealing ring 76 is located in the vicinity of the back side of the annular groove 75 of the sealing cylinder 7 through a gap 77 between the sealing ring 76 and the lower cylinder part 72. This close portion is located in a range where the sealing cylinder 7 and the cap 8 overlap each other when viewed in the container axial direction (vertical direction).

なお、封止筒7の下筒部72の内周面には、少なくともガイド筒4の周突条44と対向する部分に、図7に示すように、縦方向に延びる凹部78が周方向で小さな間隔をおいて多数形成されており、この封止筒の多数の凹部78の何れかに、ガイド筒4の周突条44の外周面に形成されたストッパー用の凸部44aが係合することで、封止筒7(および外装体6)に対してガイド筒44を相対回転させる際に、ガイド筒4の凸部44aが封止筒7の凹部78を所定の抵抗感を持って乗り越えるようになっている。   In addition, on the inner peripheral surface of the lower cylinder portion 72 of the sealing cylinder 7, at least in a portion facing the circumferential protrusion 44 of the guide cylinder 4, as shown in FIG. A large number of small intervals are formed, and a stopper convex portion 44a formed on the outer peripheral surface of the peripheral protrusion 44 of the guide tube 4 engages with any of the many concave portions 78 of the sealing tube. Thus, when the guide cylinder 44 is rotated relative to the sealing cylinder 7 (and the exterior body 6), the protrusion 44a of the guide cylinder 4 gets over the recess 78 of the sealing cylinder 7 with a predetermined resistance. It is like that.

すなわち、このガイド筒4の周突条44の凸部44aと封止筒7の下筒部72の凹部78との係合構造は、所定の回転トルクを与えることでガイド筒4と外装体6を相対回転させる際にストッパー機構となるものである。なお、ガイド筒4の周突条44の上方に封止筒7の密封リング76が位置していることによって、ガイド筒4を上方へ動かしても、周突条44の上面と密封リング76の下端とが当接することで、ガイド筒4が抜けるのを防止することができる。   In other words, the engagement structure between the convex portion 44a of the circumferential protrusion 44 of the guide tube 4 and the recess 78 of the lower tube portion 72 of the sealing tube 7 provides the guide tube 4 and the exterior body 6 by applying a predetermined rotational torque. It becomes a stopper mechanism when relatively rotating the. Since the sealing ring 76 of the sealing cylinder 7 is positioned above the circumferential protrusion 44 of the guide cylinder 4, even if the guide cylinder 4 is moved upward, the upper surface of the circumferential protrusion 44 and the sealing ring 76. It is possible to prevent the guide tube 4 from coming off by contacting the lower end.

容器本体2の封止筒7に係合されるキャップ8では、図1に示すように、円板状の天板部81の周縁部からスカート部82が垂下されていて、天板部81の内面(下面)の外周部には、スカート部82の内周面から少し離れた箇所に、シール部材9を位置決めするための突起85が形成されている。また、スカート部82の下部の内周面には、図6に示すように、封止筒7のネジ部(雄ネジ)74と螺合するネジ部(雌ネジ)83が形成され、ネジ部83の下方に、封止筒7の環状溝75に係止される係止突起84が周方向に等間隔で4箇所に形成されている。   In the cap 8 engaged with the sealing cylinder 7 of the container body 2, as shown in FIG. 1, a skirt portion 82 is suspended from the peripheral edge portion of the disk-shaped top plate portion 81. A protrusion 85 for positioning the seal member 9 is formed on the outer peripheral portion of the inner surface (lower surface) at a position slightly away from the inner peripheral surface of the skirt portion 82. Further, as shown in FIG. 6, a screw portion (female screw) 83 that is screwed with the screw portion (male screw) 74 of the sealing cylinder 7 is formed on the inner peripheral surface of the lower portion of the skirt portion 82. Below 83, the latching protrusion 84 latched by the annular groove 75 of the sealing cylinder 7 is formed in four places at equal intervals in the circumferential direction.

キャップ8に付設されるシール部材9では、円板部91の周縁部から下方に円筒状の周壁上部92が延び、周壁上部92の下端から下方外方にテーパー状の周壁下部93が延びていて、円筒状の周壁上部92の下端部の内周面には、ガイド筒4の上端付近の外周面に密接される環状突条が形成され、テーパー状の周壁下部93の下端は、キャップ8のスカート部82の内周面に当接している。また、シール部材9の円板部91の外面(上面)には、平面視で半円状のリブが同心円上に複数個形成されている。   In the sealing member 9 attached to the cap 8, a cylindrical peripheral wall upper part 92 extends downward from the peripheral part of the disk part 91, and a tapered peripheral wall lower part 93 extends downward and outward from the lower end of the peripheral wall upper part 92. An annular ridge that is in close contact with the outer peripheral surface near the upper end of the guide tube 4 is formed on the inner peripheral surface of the lower end portion of the cylindrical peripheral wall upper portion 92, and the lower end of the tapered peripheral wall lower portion 93 is It is in contact with the inner peripheral surface of the skirt portion 82. In addition, a plurality of semicircular ribs are formed concentrically on the outer surface (upper surface) of the disc portion 91 of the seal member 9 in plan view.

キャップ8とシール部材9は、ホットメルト接着剤等により固着されており、キャップ8の天板部81内面(下面)の中央部付近にホットメルト接着剤を塗布し、位置決め用突起85の内周縁にシール部材9の円板部91の外周縁を嵌め込むようにシール部材9の円板部91をキャップ8の天板部81に押し当てることで、ホットメルト接着剤が円板部91の半円状リブの隙間を流動して、キャップ8とシール部材9とは強固に接着されることとなる。   The cap 8 and the seal member 9 are fixed by a hot melt adhesive or the like, and the hot melt adhesive is applied to the vicinity of the center portion of the inner surface (lower surface) of the top plate 81 of the cap 8, and the inner peripheral edge of the positioning projection 85 By pressing the disc portion 91 of the seal member 9 against the top plate portion 81 of the cap 8 so that the outer peripheral edge of the disc portion 91 of the seal member 9 is fitted to the top of the disc portion 91, the hot melt adhesive is half of the disc portion 91. The cap 8 and the seal member 9 are firmly bonded by flowing through the gaps of the circular ribs.

上記のような各部品からなる繰り出し容器の使用状態について説明すると、内容物を使用する際には、先ず、容器本体2に対してキャップ8を開栓方向に回転させ、容器本体2とキャップ8との螺合を解除することで、図2に示すように、キャップを取り外した状態にした後、次いで、ガイド筒4に対して外装体6を周方向に回転させ、外装体6と(ローレット溝に係合により)周方向で不動に固定されたネジ筒5を回転させて、ガイド筒4のガイド孔45を貫通させた受筒3のピン36を、回転するネジ筒5のネジ溝51により押し上げ、ガイド筒4のガイド孔45に沿って上昇させることで、受筒3を上昇させて、受筒3の台座31に保持された内容物を上昇させ、ガイド筒4の上端から内容物を突出させて、内容物が使用可能な状態となるようにする。   The usage state of the feeding container composed of the above parts will be described. When using the contents, first, the cap 8 is rotated in the opening direction with respect to the container body 2, and the container body 2 and the cap 8 are then rotated. 2, after the cap is removed as shown in FIG. 2, the exterior body 6 is then rotated in the circumferential direction with respect to the guide cylinder 4, and the exterior body 6 and (knurls) are removed. The screw cylinder 5 fixed in the circumferential direction (by engagement with the groove) is rotated, and the pin 36 of the receiving cylinder 3 penetrating the guide hole 45 of the guide cylinder 4 is rotated into the screw groove 51 of the rotating screw cylinder 5. Is lifted up along the guide hole 45 of the guide cylinder 4 to raise the receiving cylinder 3 to raise the contents held on the pedestal 31 of the receiving cylinder 3, and the contents from the upper end of the guide cylinder 4 And the contents are ready for use To so that.

また、内容物を使用した後は、上記の手順とは逆の手順を行う、即ち、先ず、ガイド筒4に対して外装体6を逆方向に回転させて、突出した内容物をガイド筒4の内部に下降させた後、次いで、容器本体2にキャップ8を被せて、キャップ8を閉栓方向に回転させ、容器本体2とキャップ8を螺合して、容器本体2にキャップ8を装着することにより、内容物を使用する前の状態となるようにする。   In addition, after the contents are used, a procedure reverse to the above procedure is performed. That is, first, the exterior body 6 is rotated in the opposite direction with respect to the guide cylinder 4, and the protruding contents are guided to the guide cylinder 4. Then, the cap 8 is put on the container body 2, the cap 8 is rotated in the closing direction, the container body 2 and the cap 8 are screwed together, and the cap 8 is attached to the container body 2. As a result, the contents are brought into a state before being used.

上記のような本実施例の繰り出し容器によれば、キャップ8が、封止筒7の外周面に対して螺合により係合されるものであり、且つ、封止筒7の内周面に形成された密封リング76が、その外方(容器半径方向で外方)の空隙部77により外方に弾性変形し易くなっていることから、キャップ8を装着する際には、容器周方向への回転力によりキャップ8を徐々に締め込むことができ、且つ、密封リング76の部分で封止筒7の外径を拡げるように働くガイド筒4から反発力を、密封リング76の弾性変形により吸収することができて、キャップ8の装着を容易に行うことができると共に、密封リング76が弾性変形してガイド筒4に密接することで、密封リング76は弾性復元力によりガイド筒4に確実に密接するため、密封リング76とガイド筒4との密接による容器の密封性を充分に確保することができる。   According to the feeding container of the present embodiment as described above, the cap 8 is engaged with the outer peripheral surface of the sealing cylinder 7 by screwing, and on the inner peripheral surface of the sealing cylinder 7. Since the formed sealing ring 76 is easily elastically deformed outward by the outer space 77 (outward in the container radial direction), when the cap 8 is attached, the seal ring 76 is moved in the container circumferential direction. The cap 8 can be gradually tightened by the rotational force of the sealing ring 76, and the repulsive force from the guide cylinder 4 that works to expand the outer diameter of the sealing cylinder 7 at the portion of the sealing ring 76 is caused by the elastic deformation of the sealing ring 76. The cap 8 can be easily attached, and the sealing ring 76 is elastically deformed and is brought into close contact with the guide cylinder 4 so that the sealing ring 76 is securely attached to the guide cylinder 4 by the elastic restoring force. Sealing ring 76 and It is possible to sufficiently ensure the sealing performance of a container according closely with id tube 4.

特に、本実施例では、外装体6とキャップ8が比較的硬質なポリプロピレン樹脂から形成され、封止筒7も、外装体6に溶着し易いように、外装体6と同様のポリプロピレン樹脂から形成されているため、封止筒7の密封リング76それ自体は弾性の小さいものとなっているが、空隙部77によって密封リング76が外方に弾性変形し易くなっていることから、上記のようにキャップ8の装着を容易に行うことができることとなる。   In particular, in this embodiment, the exterior body 6 and the cap 8 are formed from a relatively hard polypropylene resin, and the sealing cylinder 7 is also formed from the same polypropylene resin as the exterior body 6 so as to be easily welded to the exterior body 6. Therefore, the sealing ring 76 of the sealing cylinder 7 itself has a small elasticity, but the sealing ring 76 is easily elastically deformed outward by the gap portion 77. Therefore, the cap 8 can be easily attached.

また、本実施例では、容器軸線方向で見て、封止筒7の密封リング76とガイド筒4との密接箇所が、キャップ8を装着したときに封止筒7とキャップ8とが重なる範囲に位置しているが、それにより、密封リング76をキャップ8により充分に締め付けることができて、ガイド筒4と封止筒7とによる密封性をより向上させることができる。   Further, in this embodiment, as viewed in the container axial direction, a close range between the sealing ring 76 of the sealing cylinder 7 and the guide cylinder 4 is a range where the sealing cylinder 7 and the cap 8 overlap when the cap 8 is attached. However, the sealing ring 76 can be sufficiently tightened by the cap 8, and the sealing performance by the guide tube 4 and the sealing tube 7 can be further improved.

また、本実施例では、容器半径方向で見て、密封リング76の内周面が、封止筒7の他の内周面よりも内方に突出しており、密封リング76を外方に弾性変形させることで、ガイド筒4の略垂直な筒状の外周面に密封リング76の内周面を密接させているが、それにより、例えば、ガイド筒の外周面から外方に突出した環状の凸部に密封リングを密接させるような場合と比べて、全周で均一な密封面を形成し易くなって、安定した密封性を確保することができる。   In this embodiment, the inner peripheral surface of the sealing ring 76 protrudes inward from the other inner peripheral surface of the sealing cylinder 7 when viewed in the container radial direction, and the sealing ring 76 is elastically outward. By deforming, the inner peripheral surface of the sealing ring 76 is brought into close contact with the substantially vertical cylindrical outer peripheral surface of the guide tube 4, and thereby, for example, an annular shape protruding outward from the outer peripheral surface of the guide tube Compared to the case where the sealing ring is brought into close contact with the convex portion, a uniform sealing surface can be easily formed on the entire circumference, and stable sealing performance can be ensured.

さらに、本実施例では、ガイド筒4の外周面で、密封リング76と密接する部分よりも上方の部分(上部筒部41)が、密封リング76と密接する部分(中間筒部42)よりも外径の小さい小外径部となっているが、それにより、繰り出し容器の各部品の組み付けに際して、受筒3とガイド筒4とネジ筒5とを予め組み付けた状態で、外装体6の内部に挿入しながら、封止筒7を上方から外装体6の上端に嵌入するときに、封止筒7が通過するガイド筒4の外周面を小外径部としていることで、ガイド筒4の外周面と封止筒7の密封リング76との接触による抵抗を低減することができて、繰り出し容器の組み付けが容易にできる。   Further, in the present embodiment, the portion (upper cylinder portion 41) above the portion in close contact with the sealing ring 76 on the outer peripheral surface of the guide cylinder 4 is more than the portion in contact with the sealing ring 76 (intermediate cylinder portion 42). Although it has a small outer diameter portion with a small outer diameter, when the parts of the feeding container are assembled, the interior of the exterior body 6 with the receiving cylinder 3, the guide cylinder 4 and the screw cylinder 5 assembled in advance. When the sealing cylinder 7 is inserted into the upper end of the exterior body 6 from above while being inserted into the outer periphery of the guide cylinder 4, the outer peripheral surface of the guide cylinder 4 through which the sealing cylinder 7 passes is made a small outer diameter portion. Resistance due to contact between the outer peripheral surface and the sealing ring 76 of the sealing cylinder 7 can be reduced, and the assembly of the feeding container can be facilitated.

以上、本発明の繰り出し容器の一実施例について説明したが、本発明は、上記の実施例に示したような具体的な構成にのみ限定されるものではなく、例えば、受筒に設けるピン(及びガイド筒に設けるガイド孔)の数や、受筒の台座に形成する内容物係止用の爪部、ガス抜き用の開口部、内容物係止用のリブの数などは適宜に変えても良い等、適宜に設計変更可能なものであることはいうまでもない。   As mentioned above, although one Example of the delivery container of this invention was described, this invention is not limited only to the specific structure as shown in said Example, For example, the pin ( The number of guide holes provided in the guide cylinder, the number of claw portions for locking contents, the opening for venting gas, and the number of ribs for locking contents are appropriately changed. Needless to say, the design can be appropriately changed.

本発明の繰り出し容器の一実施例について、容器の全体構造を示す縦断面図。The longitudinal cross-sectional view which shows the whole structure of a container about one Example of the delivery container of this invention. 図1に示した繰り出し容器でキャップを外した状態を示す側面図。The side view which shows the state which removed the cap with the feeding container shown in FIG. 図1に示した繰り出し容器の受筒の部分を示す上面図。The top view which shows the part of the receiving cylinder of the feeding container shown in FIG. 図1に示した繰り出し容器のガイド筒の部分を示す縦断面図。The longitudinal cross-sectional view which shows the part of the guide cylinder of the feeding container shown in FIG. 図1に示した繰り出し容器のネジ筒の部分を示す縦断面図。The longitudinal cross-sectional view which shows the part of the screw cylinder of the feeding container shown in FIG. 図1に示した繰り出し容器のストッパー機構の部分を拡大して示す縦断面図。The longitudinal cross-sectional view which expands and shows the part of the stopper mechanism of the feeding container shown in FIG. 図6に示したストッパー機構の部分のA−A線に沿った横断面図。The cross-sectional view along the AA line of the part of the stopper mechanism shown in FIG.

符号の説明Explanation of symbols

1 繰り出し容器
2 容器本体
3 受筒
4 ガイド筒
5 ネジ筒
6 外装体
7 封止筒
8 キャップ
36 ピン
45 ガイド孔
51 ネジ溝
74 (封止筒の)ネジ部
76 (封止筒の)密封リング
77 (封止筒の)空隙部
83 (キャップの)ネジ部
DESCRIPTION OF SYMBOLS 1 Feeding container 2 Container main body 3 Receptacle cylinder 4 Guide cylinder 5 Screw cylinder 6 Exterior body 7 Sealing cylinder 8 Cap 36 Pin 45 Guide hole 51 Screw groove 74 (Seal cylinder) Screw part 76 (Seal cylinder) Seal ring 77 Gaps (of the sealing cylinder) 83 Screws (of the cap)

Claims (3)

棒状の内容物を保持する筒状の受筒の外周面にピンが突設され、受筒の外側に、受筒のピンを貫通させるガイド孔を下部に形成したガイド筒が設けられ、ガイド筒の下部の外側に、受筒のピンを受け入れるネジ溝を内周面に形成したネジ筒が設けられ、ネジ筒の外側に外装体が設けられ、外装体の上端部に封止筒が設けられた容器本体に対して、容器本体の封止筒の部分でキャップが係合される繰り出し容器において、
キャップの内周面に形成されたネジ部に対し、該ネジ部と螺合するネジ部が封止筒の外周面に形成され、封止筒の内周面に、ガイド筒の外周面と密接する密封リングが形成されてい、密封リングの容器半径方向外方に位置する封止筒の部分に空隙部が形成されていることで、密封リングの部分が容器半径方向で弾性変形可能となっていると共に、ガイド筒の外周面で、密封リングと密接する部分よりも上方の部分が、密封リングと密接する部分よりも外径の小さい小外径部となっていることを特徴とする繰り出し容器。
A pin is provided on the outer peripheral surface of a cylindrical receiving cylinder that holds the rod-shaped contents, and a guide cylinder is formed on the outer side of the receiving cylinder. A screw cylinder in which a screw groove for receiving the pin of the receiving cylinder is formed on the inner peripheral surface is provided on the outer side of the lower part, an exterior body is provided on the outer side of the screw cylinder, and a sealing cylinder is provided on the upper end of the exterior body In the feeding container in which the cap is engaged with the sealing cylinder part of the container body with respect to the container body,
A screw portion that is screwed to the screw portion formed on the inner peripheral surface of the cap is formed on the outer peripheral surface of the sealing cylinder, and the inner peripheral surface of the sealing cylinder is in close contact with the outer peripheral surface of the guide cylinder. sealing ring be formed of, that air gap is formed in a portion of the sealing tube located in the container radially outward of the sealing ring, the portion of the sealing ring becomes elastically deformable container radially In addition, on the outer peripheral surface of the guide cylinder, the portion above the portion in close contact with the sealing ring is a small outer diameter portion having a smaller outer diameter than the portion in close contact with the sealing ring. container.
容器軸線方向で見て、封止筒の密封リングとガイド筒との密接箇所が、キャップを装着したときに封止筒とキャップとが重なる範囲に位置していることを特徴とする請求項1に記載の繰り出し容器。   2. The close position between the sealing ring of the sealing cylinder and the guide cylinder as viewed in the container axial direction is located in a range where the sealing cylinder and the cap overlap when the cap is attached. The feeding container described in 1. 容器半径方向で見て、密封リングの内周面が、封止筒の他の内周面よりも内方に突出しており、密封リングを外方に弾性変形させることで、ガイド筒の略垂直な筒状の外周面に密封リングの内周面を密接させていることを特徴とする請求項1又は2に記載の繰り出し容器。   When viewed in the radial direction of the container, the inner peripheral surface of the sealing ring protrudes inward from the other inner peripheral surface of the sealing cylinder, and the guide ring is elastically deformed outward, so that the guide cylinder is substantially vertical. The feeding container according to claim 1 or 2, wherein the inner peripheral surface of the sealing ring is in close contact with a cylindrical outer peripheral surface.
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JP6499845B2 (en) * 2014-10-30 2019-04-10 株式会社吉野工業所 Feeding container
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JP2805452B2 (en) * 1995-03-31 1998-09-30 株式会社ヒダン Cosmetic container
JP3006522U (en) * 1994-07-11 1995-01-24 株式会社資生堂 Stick cosmetic container
JP3513549B2 (en) * 1994-09-27 2004-03-31 株式会社吉野工業所 Feeding container

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