JP2003326197A - Content discharge mechanism, aerosol-type product and pressure accumulation-type product using the mechanism - Google Patents

Content discharge mechanism, aerosol-type product and pressure accumulation-type product using the mechanism

Info

Publication number
JP2003326197A
JP2003326197A JP2002134848A JP2002134848A JP2003326197A JP 2003326197 A JP2003326197 A JP 2003326197A JP 2002134848 A JP2002134848 A JP 2002134848A JP 2002134848 A JP2002134848 A JP 2002134848A JP 2003326197 A JP2003326197 A JP 2003326197A
Authority
JP
Japan
Prior art keywords
passage
discharge
contents
content
push button
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2002134848A
Other languages
Japanese (ja)
Other versions
JP4234354B2 (en
Inventor
Yasuo Oshima
保夫 大島
Hideo Okada
英雄 岡田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitani Valve Co Ltd
Original Assignee
Mitani Valve Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitani Valve Co Ltd filed Critical Mitani Valve Co Ltd
Priority to JP2002134848A priority Critical patent/JP4234354B2/en
Publication of JP2003326197A publication Critical patent/JP2003326197A/en
Application granted granted Critical
Publication of JP4234354B2 publication Critical patent/JP4234354B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • 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
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/16Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets
    • B05B1/1627Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock
    • B05B1/1636Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative rotative movement of the valve elements
    • B05B1/1645Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative rotative movement of the valve elements the outlets being rotated during selection
    • B05B1/1654Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative rotative movement of the valve elements the outlets being rotated during selection about an axis parallel to the liquid passage in the stationary valve element
    • 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
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/16Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets
    • B05B1/1627Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock
    • B05B1/1636Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative rotative movement of the valve elements
    • B05B1/1645Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening having selectively- effective outlets with a selecting mechanism comprising a gate valve, a sliding valve or a cock by relative rotative movement of the valve elements the outlets being rotated during selection
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/28Nozzles, nozzle fittings or accessories specially adapted therefor

Landscapes

  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Closures For Containers (AREA)
  • Nozzles (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To reduce a change in a discharge state generated accompanied by the alteration of a content discharge range. <P>SOLUTION: A push button 21, to which an exclusive upper inflow port 21a and an exclusive under inflow port 21b both of which communicate with an upper discharge hole 11a and a lower discharge hole 11b are formed, is attached to a changeover member 31 having a slit 31 for opening and closing the lower inflow port formed thereto in a revolvable manner. The upper inflow port 21a always communicates with an inner space 31i through a space region 31j. In a one-way mode, the under inflow port 21b is closed by a cylindrical part 31b and content is discharged to a narrow range only from the upper discharge hole 11a. When the push button 21 is revolved, a two-way mode can be set and the under inflow port 21b communicates with the inner space 31i (upstream passage) through the slit 31c of the changeover member 31 and the content is discharged to a wide range from both discharge ports 11a and 11b. Since the downstream passages to the respective discharge ports are independent, even if a discharge mode is changed, the change in the state of the discharged content is small. <P>COPYRIGHT: (C)2004,JPO

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明は、内容物放出機構な
らびにこの機構を備えたエアゾール式製品および蓄圧式
製品に関し、特に内容物放出用の上流側通路と、これと
は独立した形の、当該上流側通路に続いて放出口までい
たる下流側通路と、に対する相対的な回動操作により、
内容物の放出範囲を変更できるようにしたものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a content discharging mechanism and an aerosol type product and a pressure accumulating type product equipped with the mechanism, and more particularly to an upstream passage for discharging the content and an independent form thereof. By the relative rotation operation with respect to the downstream passage that reaches the discharge port following the upstream passage,
The release range of the contents can be changed.

【0002】この内容物放出機構は、エアゾールタイプ
およびポンプ(蓄圧)タイプの何れの容器にも適用でき
るが、本明細書では説明の便宜上、必要に応じてエアゾ
ール容器への適用例を前提とする。また、内容物を収納
した容器側を「下」、放出操作を行う押釦側を「上」と
する。
This content discharging mechanism can be applied to both an aerosol type container and a pump (pressure accumulating) type container, but in the present specification, for convenience of explanation, an application example to an aerosol container is assumed as a prerequisite. . Further, the side of the container accommodating the contents is "down", and the side of the push button for the discharging operation is "up".

【0003】[0003]

【従来の技術】従来、ステムから放出孔に至る単一の内
容物通路の途中部分の流れを調整する回動部材を設け、
当該部材に対する回動操作でこの単一通路途中の内容物
通過用孔部の有効個数を調整して内容物の放出範囲を可
変できるようにした内容物放出機構がある(特開200
1−300356号公報参照)。
2. Description of the Related Art Conventionally, a rotating member for adjusting the flow in the middle of a single content passage from a stem to a discharge hole is provided.
There is a contents discharge mechanism in which the discharge range of contents can be varied by adjusting the effective number of contents passage holes in the middle of a single passage by rotating the member.
(See Japanese Patent Publication No. 1-33006).

【0004】この内容物放出機構の場合、回動部材の操
作で、(1)通路途中の内容物通過用孔部の作動個数を
例えば一つにしてそこでの流れを絞り込むことにより、
外部空間の内容物放出範囲を狭空間域とする、絞り込み
モードと、(2)通路途中の内容物通過用孔部の作動個
数を例えば二つにしてそこでの流れを特に絞り込むこと
なしに、外部空間の内容物放出範囲を広空間域とする、
非絞り込みモードと、を選択的に設定している。
In the case of this content discharging mechanism, by operating the rotating member, (1) the operating number of the content passage holes in the middle of the passage is set to, for example, 1 to narrow the flow there.
The narrowing mode for narrowing the content discharge range of the external space, and (2) the number of operating contents passing holes in the middle of the passage is set to, for example, 2 and the flow there is not particularly narrowed, The content release range of the space is wide,
The non-narrowing mode is selectively set.

【0005】この内容物通過用孔部から放出口までのい
わば(単一の)下流側通路の内周面の一部に凸状部を形
成し、絞り込みモードのときには、当該凸状部で内容物
通過用孔部の一つを塞いでいる。
A convex portion is formed on a part of the inner peripheral surface of the so-called (single) downstream passage from the content passage hole to the discharge port. One of the object passage holes is blocked.

【0006】そのため、絞り込みモードと非絞り込みモ
ードとではこの単一下流側通路における内容物の流れの
態様が異なる。
Therefore, the flow mode of the contents in the single downstream passage differs between the narrowed mode and the non-throttled mode.

【0007】[0007]

【発明が解決しようとする課題】このように、従来の内
容物放出機構では、絞り込みモード/非絞り込みモード
の切換にともなって、ステムから放出口に至る単一の内
容物通路の途中の空間状態(通路途中の内容物通過用孔
部の作動個数)を積極的に変化させることにより、放出
口からの内容物放出範囲を狭空間域と広空間域とに設定
している。この設定手法でも外部空間の内容物放出範囲
を有効に変更することができる。
As described above, in the conventional contents discharging mechanism, the spatial condition in the middle of the single contents passage from the stem to the discharge port is accompanied by the switching between the narrowing mode and the non-narrowing mode. By positively changing (the number of actuated content passage holes in the middle of the passage), the content discharge range from the discharge port is set to a narrow space area and a wide space area. This setting method can also effectively change the content discharge range of the external space.

【0008】本発明では、従来の内容物放出機構とは見
方をかえて、放出口にいたる下流側通路自体には特別の
構成要素を設けることなしに内容物放出範囲を変更し
(図9参照)、また、複数の放出口と、当該放出口のそ
れぞれと対応した下流側通路とを設け、この個々の下流
側通路と例えば単一の上流側通路との連通関係を切り換
えて内容物放出範囲を変更することにより、この放出範
囲の変更にともなって生じる各放出口から外部空間への
放出内容物の状態変化(速度,量など)の低減化を図る
とともに、放出範囲変更機能を持つ内容物放出機構につ
いての技術の豊富化を図ることを目的とする。
In the present invention, in contrast to the conventional contents discharging mechanism, the contents discharging range is changed without providing any special component in the downstream passage itself reaching the discharging port (see FIG. 9). ), A plurality of outlets and downstream passages corresponding to the respective outlets are provided, and the communication relation between each of the downstream passages and, for example, a single upstream passage is switched to change the content discharge range. By changing the release range, the state change (speed, amount, etc.) of the release content from each release port to the external space caused by the change of the release range can be reduced, and the content with the release range changing function can be reduced. The purpose is to enrich the technology of the release mechanism.

【0009】[0009]

【課題を解決するための手段】本発明は、この課題を、
次の事項からなる内容物放出機構により解決する。 (1)内容物放出用の上流側通路と、当該上流側通路に
続いて放出口までいたる下流側通路とを、内容物の放出
範囲を変更するための構成要素を持つことのない態様で
形成し、前記上流側通路の部分と前記下流側通路の部分
とを、両者間で相対的に回動して、内容物の放出範囲が
上下方向の面内の異なる方向に選択的に設定される構造
とする(図9参照)。 (2)内容物放出用の上流側通路と、当該上流側通路に
続いて放出口にいたる複数の下流側通路とを備え、前記
上流側通路の部分および前記下流側通路の部分を両者間
で相対的に回動できる構造とし、前記上流側通路として
筒状部の内部空間を少なくとも用い、当該筒状部の周面
に、前記回動の操作に応じて前記下流側通路を選択的に
当該内部空間と連通させるための貫通部またはスリット
状部を、設ける(図1〜図6参照)。 (3)上記(2)において、前記筒状部の下流側に続く
空間域と、特定の下流側通路とを回動操作にかかわらず
常に連通させる。 (4)内容物放出用の上流側通路と、当該上流側通路に
続いて放出口にいたる複数の下流側通路とを備え、前記
上流側通路の部分および前記下流側通路の部分を両者間
で相対的に回動できる構造とし、前記上流側通路として
筒状部の内部空間およびこれの下流側に続く空間域を少
なくとも用い、当該筒状部の外周面に、前記回動の操作
に応じて前記下流側通路を選択的に当該空間域と連通さ
せるための溝状部を、設ける(図7,8,10,11参
照)。 (5)上記(4)において、前記溝状部の一部分または
前記空間域と、特定の前記下流側通路とを前記回動の操
作にかかわらず常に連通させる。
The present invention solves this problem by
It is solved by the content release mechanism consisting of the following items. (1) The upstream passage for discharging the contents and the downstream passage extending from the upstream passage to the discharge port are formed in a manner that does not have a component for changing the discharge range of the contents. However, the portion of the upstream passage and the portion of the downstream passage are relatively rotated between them to selectively set the discharge range of the contents in different directions in the vertical plane. The structure (see FIG. 9). (2) An upstream passage for discharging contents, and a plurality of downstream passages reaching the discharge port following the upstream passage are provided, and the portion of the upstream passage and the portion of the downstream passage are provided between them. The structure is relatively rotatable, and at least the internal space of the tubular portion is used as the upstream passage, and the downstream passage is selectively provided on the peripheral surface of the tubular portion in response to the turning operation. A penetrating portion or a slit-shaped portion for communicating with the internal space is provided (see FIGS. 1 to 6). (3) In the above (2), the space area continuing to the downstream side of the tubular portion and the specific downstream passage are always communicated with each other regardless of the turning operation. (4) An upstream passage for discharging the contents, and a plurality of downstream passages reaching the discharge port following the upstream passage are provided, and a portion of the upstream passage and a portion of the downstream passage are provided between them. The structure is configured to be relatively rotatable, and at least the internal space of the tubular portion and the space region continuing to the downstream side of the tubular portion are used as the upstream passage, and the outer peripheral surface of the tubular portion is adapted to the rotation operation. Grooves are provided to selectively communicate the downstream passage with the space area (see FIGS. 7, 8, 10, and 11). (5) In the above (4), a part of the grooved portion or the space area and the specific downstream passage are always communicated with each other regardless of the turning operation.

【0010】本発明は、上記(1)のように、ともに内
容物の放出範囲変更のための構成要素を新たに設けてい
ない上流側通路および下流側通路の相対的な回動操作
で、内容物放出範囲を(容器の)上下方向の面内の異な
る方向、例えば水平方向と垂直方向とに設定し、これに
より放出内容物の状態変化の低減化を図るとともに、放
出範囲変更機能についての技術の豊富化を図っている。
According to the present invention, as described in (1) above, the relative rotation operation of the upstream side passage and the downstream side passage, which are not newly provided with the constituent elements for changing the discharge range of the contents, enables the contents to be changed. Technology for the discharge range changing function is set while the discharge range is set in different directions in the vertical plane (of the container), for example, in the horizontal direction and the vertical direction, thereby reducing the change in the state of the discharge contents. We are trying to enrich

【0011】また、上記(2),(4)のように、内容
物放出用の下流側通路を複数形成してこの中から回動操
作で選択したものと、上流側通路形成用の筒状部の周面
に設けた貫通部,スリット状部,溝状部とを連通させて
内容物放出範囲の変更を行ない、この連通部で内容物の
流れ方向が変化するようにして、これにより内容物の新
たな放出範囲変更手段の具体化や、下流側通路へと流れ
る内容物の混合・均一化を図っている。
Further, as in the above (2) and (4), a plurality of downstream passages for discharging the contents are formed and selected from among them by a turning operation, and a tubular shape for forming the upstream passage. The through-hole, the slit-shaped portion, and the groove-shaped portion provided on the peripheral surface of the portion are communicated with each other to change the content discharge range, and the flow direction of the content is changed at this communication portion, whereby the content is changed. We are trying to realize a new means for changing the discharge range of substances and to mix and homogenize the contents flowing to the downstream passage.

【0012】また、上記(3),(5)のように、特定
の下流側通路を上流側通路に常に連通させ、利用者が回
動操作を特に意識しなくてもこの下流側通路からは内容
物が放出されるように設定し、これにより放出操作の負
担の低減化を図っている。
Further, as described in (3) and (5) above, the specific downstream passage is always communicated with the upstream passage so that the downstream passage can be opened even if the user is not particularly aware of the turning operation. The contents are set to be discharged, thereby reducing the burden of discharging operation.

【0013】本発明は、以上の特徴を持つ内容物放出機
構を対象とするとともに、これを備えた蓄圧方式製品お
よびエアゾール方式製品も対象にしている。
The present invention is directed to the content discharging mechanism having the above characteristics, and also to a pressure accumulating type product and an aerosol type product provided with the mechanism.

【0014】[0014]

【発明の実施の形態】図1乃至図11を用いて本発明の
実施の形態を説明する。なお、以下の説明では内容物放
出用の個々の下流側通路(ステム側の共通の上流側通路
に続いて各放出口に至る個々の通路)を「ウェイ」と記
載する。
DETAILED DESCRIPTION OF THE INVENTION An embodiment of the present invention will be described with reference to FIGS. In the following description, individual downstream passages for discharging the contents (individual passages leading to the common upstream upstream passage on the stem side and reaching the respective discharge ports) are referred to as “ways”.

【0015】図1乃至図8は押釦の回動操作によって内
容物の放出範囲・放出量を変更する内容物放出機構を示
し、図9は押釦に設けた回動部材の回動操作によって放
出範囲を変更する内容物放出機構を示し、図10,図1
1は押釦に設けた回動部材の回動操作によって放出範囲
・放出量を変更する内容物放出機構を示している。
1 to 8 show a contents discharging mechanism for changing the discharging range and discharging amount of contents by rotating a push button, and FIG. 9 shows a discharging range by rotating a rotating member provided on the push button. FIG. 10 and FIG. 1 show the contents release mechanism for changing
Reference numeral 1 denotes a contents discharging mechanism for changing a discharging range and a discharging amount by rotating a rotating member provided on a push button.

【0016】図1および図2は2ウェイの内容物放出機
構Aを示す説明図である。図1は1ウェイモードを示
し、図2は2ウェイモードを示している。
1 and 2 are explanatory views showing a 2-way content discharging mechanism A. As shown in FIG. FIG. 1 shows the 1-way mode, and FIG. 2 shows the 2-way mode.

【0017】図1および図2において、Aは2ウェイの
内容物放出機構,11は上下の放出孔を備えた放出孔部
材,11aは上方斜めに向けて形成された上側放出孔,
11bは略水平方向に向けて形成された下側放出孔,1
1cは上側放出孔11aに対応する上側筒状部,11d
は下側放出孔11bに対応する下側筒状部,11eは後
述の押釦21と嵌合する突状部,21は上下の内容物の
流入口を備えた押釦,21aは後述の空間域31jに常
に連通する上側流入口,21bは後述の内部空間31i
に選択的に連通する下側流入口,21cは後述の凹部3
1fまたは31gと係合して当該押釦の回動操作位置を
保持する凸状部,21dは1ウェイモード/2ウェイモ
ードの切替用目印,21eは放出孔部材11の上側筒状
部11cとの間に形成される上側通路(ウェイ),21
fは下側筒状部11dとの間に形成される下側通路(ウ
ェイ),31は後述のステム51aに取り付けられた回
動操作用の基部,31aは当該基部を肩カバー41に固
定するための切欠,31bは筒状部,31cは当該筒状
部の上側周面に形成した上下方向のスリット,31dは
押釦21の内周面に係合する環状突部,31eは押釦2
1の1ウェイモード設定の回動位置を保持するための凹
部,31fは押釦21の2ウェイモード設定の回動位置
を保持するための凹部,31gは凹部31eと凹部31
fの間の段部,31hは後述のステム51aと嵌合する
開口部,31iは上流側通路を形成する内部空間,31
jは当該内部空間に続く空間域,41は肩カバー,41
aは切欠31aに嵌合する突起,41bは1ウェイモー
ド表示部,41cは2ウェイモード表示部,41dは環
状突状部,51は容器,51aはステム, 51bはマウ
ンテンキャップ,51cは内容物を収納した容器本体,
をそれぞれ示している。
In FIGS. 1 and 2, A is a 2-way content discharging mechanism, 11 is a discharging hole member having upper and lower discharging holes, 11a is an upper discharging hole formed obliquely upward,
11b is a lower discharge hole formed in a substantially horizontal direction, 1
1c is an upper cylindrical portion corresponding to the upper discharge hole 11a, 11d
Is a lower cylindrical portion corresponding to the lower discharge hole 11b, 11e is a protruding portion that fits with a push button 21 described later, 21 is a push button having upper and lower inlets for contents, and 21a is a space area 31j described later. And an upper inlet 21b which is always in communication with the internal space 31i described later.
A lower inlet port 21c that selectively communicates with the
A convex portion that engages with 1f or 31g to hold the rotational operation position of the push button, 21d is a 1-way mode / 2-way mode switching mark, and 21e is an upper tubular portion 11c of the emission hole member 11. Upper passageway (way), 21 formed between
f is a lower passage (way) formed between the lower cylindrical portion 11d and the lower cylindrical portion 11d, 31 is a base portion for pivoting operation attached to a stem 51a described later, and 31a fixes the base portion to the shoulder cover 41. For forming a notch, 31b is a cylindrical portion, 31c is a vertical slit formed on the upper peripheral surface of the cylindrical portion, 31d is an annular protrusion that engages with the inner peripheral surface of the push button 21, and 31e is the push button 2.
1 is a concave portion for holding the rotational position of the 1-way mode setting, 31f is a concave portion for holding the rotational position of the push button 21 in the 2-way mode setting, 31g is a concave portion 31e and a concave portion 31.
f is a stepped portion, 31h is an opening portion that fits with a stem 51a described later, 31i is an internal space that forms an upstream passage, 31
j is a space area continuing to the internal space, 41 is a shoulder cover, 41
a is a protrusion that fits into the notch 31a, 41b is a 1-way mode display portion, 41c is a 2-way mode display portion, 41d is an annular protrusion, 51 is a container, 51a is a stem, 51b is a mountain cap, 51c is the contents Container body containing
Are shown respectively.

【0018】内容物放出機構Aは、 ・放出孔部材11および押釦21が、突状部11eの作
用により嵌合して固定化した操作側部分 ・基部31,肩カバー41,ステム51aおよびマウン
テンキャップ51bなどが、切欠31a,突起41a,
開口部31hおよび環状突状部41dなどの作用により
嵌合して固定化した容器側部分に大別される。
The contents discharging mechanism A includes: an operation side portion in which the discharging hole member 11 and the push button 21 are fitted and fixed by the action of the projection 11e; the base 31, the shoulder cover 41, the stem 51a and the mountain cap. 51b etc. are notches 31a, protrusions 41a,
It is roughly divided into a container-side portion that is fitted and fixed by the action of the opening 31h and the annular protrusion 41d.

【0019】押釦21は、その凸状部21cが基部31
の「凹部31e−段部31g−凹部31f」を移動する
範囲内で、回動できる。
In the push button 21, the convex portion 21c has a base portion 31c.
Within the range of moving the "recess 31e-step 31g-recess 31f" of FIG.

【0020】押釦21の基部31などに対する回動操作
により、 ・上側流入口21aのみが作動する1ウェイモード ・上側流入口21aおよび下側流入口21bがともに作
動する2ウェイモード を設定できる。
By rotating the push button 21 with respect to the base portion 31 or the like, it is possible to set a one-way mode in which only the upper inlet 21a operates, and a two-way mode in which both the upper inlet 21a and the lower inlet 21b operate.

【0021】内容物の通路は、 (1)図1の1ウェイモードの場合 ・内部空間31i−空間域31j−上側流入口21a−
上側通路21a−上側放出孔11a の1経路であり、 (2)図2の2ウェイモードの場合 ・内部空間31i−空間域31j−上側流入口21a−
上側通路21a−上側放出孔11a ・内部空間31i−スリット31c−下側流入口21b
−下側通路21f−下側放出孔11b の2経路となる。
The passages for the contents are as follows: (1) In the case of the one-way mode shown in FIG.
It is one path of the upper passage 21a-the upper discharge hole 11a, and (2) In the case of the two-way mode of Fig. 2.-Internal space 31i-Space region 31j-Upper inlet 21a-
Upper passage 21a-Upper discharge hole 11a-Internal space 31i-Slit 31c-Lower inlet 21b
-Lower passage 21f-Lower discharge hole 11b.

【0022】容器の内容物が当該通路を経て外部空間に
放出されるのは、勿論、押釦21を押し下げてステム3
1hと容器内部とが連通したときである。
The contents of the container are discharged into the external space through the passage, and of course, the push button 21 is pushed down to push the stem 3
It is when 1h communicates with the inside of the container.

【0023】1ウェイモードの設定状態、すなわち押釦
21の回動操作によりその目印21dを1ウェイモード
表示部41bに合わせた状態(図1参照)では、 ・押釦21の凸状部21cは基部31の凹部31eに係
止され、 ・押釦21の上側流入口21aは基部31の筒状部31
bに続く空間域31jと連通し、 ・押釦21の下側流入口21bは基部31の筒状部31
bで閉塞されている。
In the setting state of the 1-way mode, that is, in the state where the mark 21d is aligned with the 1-way mode display portion 41b by the rotation operation of the push button 21 (see FIG. 1), the convex portion 21c of the push button 21 is the base portion 31. The upper inlet 21a of the push button 21 is the tubular portion 31 of the base 31.
It communicates with the space area 31j following b. The lower inlet 21b of the push button 21 is the cylindrical portion 31 of the base 31.
It is blocked at b.

【0024】2ウェイモードの設定状態、すなわち押釦
21の回動操作によりその目印21dを2ウェイモード
表示部41cに合わせた(図2参照)状態では、 ・押釦21の凸状部21cは基部31の凹部31fに係
止され、 ・押釦21の上側流入口21aは基部31の筒状部31
bに続く空間域31jと連通し、 ・押釦21の下側流入口21bは基部31のスリット3
1cと連通する位置になっている。
In the setting state of the 2-way mode, that is, in the state where the mark 21d is aligned with the 2-way mode display portion 41c by the rotation operation of the push button 21 (see FIG. 2), the convex portion 21c of the push button 21 is the base portion 31. The upper inlet 21a of the push button 21 is the cylindrical portion 31 of the base 31.
The lower inlet 21b of the push button 21 communicates with the slit 3 of the base 31.
It is in a position to communicate with 1c.

【0025】1ウェイモードと2ウェイモードとを切り
換える回動操作の途中では、押釦21は、その突状部2
1cが基部31の段部31gに乗り上げてこれに慴動し
ながら当該基部に対して回動する。これと同様のこと
は、後述の内容物放出機構B,C,Dのそれぞれの場合
にもいえる。
During the pivoting operation for switching between the 1-way mode and the 2-way mode, the push button 21 has the protrusion 2
1c rides on a stepped portion 31g of the base portion 31 and pivots on the stepped portion 31g with respect to the stepped portion 31g. The same thing can be said for each of the content release mechanisms B, C, and D described later.

【0026】図1の1ウェイモードから図2の2ウェイ
モードに切り換えた場合、下側放出孔11bからも内容
物が放出されることになるが、これによる、上側放出孔
11aからの内容物放出への影響はほとんど生じない。
When the 1-way mode of FIG. 1 is switched to the 2-way mode of FIG. 2, the contents are also discharged from the lower discharge hole 11b, which causes the contents to be discharged from the upper discharge hole 11a. Little impact on release occurs.

【0027】それは、押釦21の上側流入口21aから
放出孔部材11の上側放出孔11aに至る内容物通路が
何ら変化しないからである。すなわち、各放出孔への内
容物の共通供給源ともいえる筒状部31bの内部空間3
1iおよびこれに続く空間域31jに対して、上側放出
孔11aへの内容物通路と、下側放出孔11bへの内容
物通路とが個々に独立した形で連通するからである。
This is because the content passage from the upper inlet 21a of the push button 21 to the upper discharge hole 11a of the discharge hole member 11 does not change at all. That is, the internal space 3 of the tubular portion 31b, which can be said to be a common source of the content to each discharge hole.
This is because the content passage to the upper discharge hole 11a and the content passage to the lower discharge hole 11b communicate with 1i and the space region 31j subsequent thereto in an independent form.

【0028】このように、放出操作時間が同じであれ
ば、2ウェイモードの場合にも上側放出孔11aから放
出される内容物の量は1ウェイモードの場合のそれと略
同じになる。
As described above, if the discharge operation time is the same, the amount of the contents discharged from the upper discharge hole 11a in the 2-way mode is substantially the same as that in the 1-way mode.

【0029】したがって、2ウェイモードでは、上側放
出孔11aからは1ウェイモードのときと同様の態様
(速さ,量,圧力など)で内容物が外部空間に放出さ
れ、下側放出孔11aからの放出動作とあいまって放出
範囲を拡大することができる。放出内容物の総量が下側
放出孔11aからの分だけ増えることは勿論である。
Therefore, in the 2-way mode, the contents are discharged from the upper discharge hole 11a to the external space in the same manner (speed, amount, pressure, etc.) as in the 1-way mode, and the lower discharge hole 11a is discharged. The discharge range can be expanded in combination with the discharge operation described above. Of course, the total amount of the discharged contents is increased by the amount from the lower discharge hole 11a.

【0030】上側放出孔11aは上方に向き、下側放出
孔11bは略水平に向けて形成されているので、内容物
を上下方向に広い範囲に放出することができ、また、内
容物の放出範囲が重複することが少なく内容物を均等に
放出することができる。
Since the upper discharge hole 11a faces upward and the lower discharge hole 11b is formed substantially horizontally, the contents can be discharged in a wide range in the vertical direction, and the contents can be discharged. The contents are less likely to overlap and the contents can be evenly released.

【0031】なお、基部31のスリット31cに代え
て、押釦21の下側流入口21bに対応する孔部を形成
してもよい。
Incidentally, instead of the slit 31c of the base 31, a hole corresponding to the lower inlet 21b of the push button 21 may be formed.

【0032】また、筒状部31bの端部を操作釦21に
当接させ(空間域31jを形成せずに)、当該筒状部
に、上側流入口21aおよび下側流入口21bのそれぞ
れに対応する孔部や、両方の流入口に対応する孔部を個
々に形成してもよい。
Further, the end of the tubular portion 31b is brought into contact with the operation button 21 (without forming the space region 31j), and the tubular portion is provided with the upper inlet 21a and the lower inlet 21b, respectively. Corresponding holes or holes corresponding to both inlets may be formed individually.

【0033】図3および図4は3ウェイの内容物放出機
構Bを示す説明図である。図3は1ウェイモードを示
し、図4は3ウェイモードをそれぞれ示している。
3 and 4 are explanatory views showing a 3-way content discharging mechanism B. As shown in FIG. FIG. 3 shows the 1-way mode, and FIG. 4 shows the 3-way mode.

【0034】図3および図4において、Bは3ウェイの
内容物放出機構,12は上下に三つの放出孔を備えた放
出孔部材,12aは略水平方向に向けて形成された中央
放出孔,12bは上方斜めに向けて形成された上側放出
孔,12cは下方斜めに向けて形成された下側放出孔,
12dは中央放出孔12aに対応する中央筒状部,12
eは上側放出孔12bに対応する上側筒状部,12fは
下側放出孔12cに対応する下側筒状部,12gは押釦
と嵌合する突状部,22は上下に内容物の流入口を備え
た押釦,22aは後述の内部空間32nに常に連通する
中央流入口,22bは後述の内部空間32nに選択的に
連通する上側流入口,22cは後述の内部空間32nに
選択的に連通する下側流入口,22dは後述の凹部32
jまたは凹部32kと係合して当該押釦の回動操作位置
を保持する凸状部,22eは1ウェイモード/3ウェイ
モード切替用目印,22fは放出孔部材12の中央筒状
部12dとの間に形成される中央通路(ウェイ),22
gは放出孔部材12の上側筒状部12eとの間に形成さ
れる上側通路(ウェイ),22hは放出孔部材12の下
側筒状部12fとの間に形成される下側通路(ウェ
イ),32は回動操作用の基部,32aは当該基部を肩
カバー41に固定するための切欠,32bは筒状部,3
2dは筒状部32bの外周面,32eは中央流入口22
aに対応する中央孔部,32fは上側流入口22bに対
応する上側孔部,32gは下側流入口22cに対応する
下側孔部,32hは押釦22の内周面に係合する環状突
部,32iは押釦22の1ウェイモード設定の回動位置
を保持するための凹部,32jは押釦22の3ウェイモ
ード設定の回動位置を保持するための凹部,32kは凹
部32iと凹部32jとの間の段部,32mはステム5
1aと嵌合する開口部,32nは上流側通路を形成する
内部空間,をそれぞれ示している。
In FIGS. 3 and 4, B is a 3-way content discharge mechanism, 12 is a discharge hole member having three discharge holes vertically, 12a is a central discharge hole formed in a substantially horizontal direction, 12b is an upper discharge hole formed obliquely upward, 12c is a lower discharge hole formed obliquely downward,
12d is a central cylindrical portion corresponding to the central emission hole 12a, 12
Reference numeral e is an upper cylindrical portion corresponding to the upper discharge hole 12b, 12f is a lower cylindrical portion corresponding to the lower discharge hole 12c, 12g is a protruding portion to be fitted with a push button, 22 is an inlet and outlet for contents vertically. A push button 22a, a central inlet 22a which always communicates with an internal space 32n described later, an upper inlet 22b which selectively communicates with an internal space 32n described later, and 22c selectively communicates with an internal space 32n described later. The lower inlet port, 22d is a recess 32 described later.
j is a convex portion that engages with the concave portion 32k or the concave portion 32k to hold the rotational operation position of the push button, 22e is a 1-way mode / 3-way mode switching mark, and 22f is a central cylindrical portion 12d of the emission hole member 12. Central passage (way) formed between 22
g is an upper passage (way) formed between the discharge hole member 12 and the upper cylindrical portion 12e, and 22h is a lower passage (way) formed between the discharge hole member 12 and the lower cylindrical portion 12f. ), 32 is a base portion for rotating operation, 32a is a notch for fixing the base portion to the shoulder cover 41, 32b is a tubular portion, 3
2d is the outer peripheral surface of the tubular portion 32b, and 32e is the central inlet 22.
a central hole corresponding to a, 32f an upper hole corresponding to the upper inlet 22b, 32g a lower hole corresponding to the lower inlet 22c, 32h an annular protrusion engaging the inner peripheral surface of the push button 22. Reference numeral 32i denotes a concave portion for holding the rotational position of the push button 22 for setting the 1-way mode, 32j denotes a concave portion for holding the rotational position of the push button 22 for the 3-way mode setting, 32k denotes the concave portion 32i and the concave portion 32j. 32m is the stem 5 between the steps
1a is fitted into the opening, and 32n is an internal space forming the upstream passage.

【0035】なお、放出孔部材12、押釦22、基部3
2、肩カバー41の取り付け態様は、内容物放出機構A
と同様である。肩カバー41および容器51は、内容物
放出機構Aと同様であり、同一の参照番号を用いて説明
する。
The discharge hole member 12, the push button 22, the base 3
2, the attachment mode of the shoulder cover 41, the content discharge mechanism A
Is the same as. The shoulder cover 41 and the container 51 are the same as those of the content discharging mechanism A, and will be described using the same reference numerals.

【0036】押釦22を回動することによって中央放出
孔12aのみから内容物を放出する1ウェイモードと、
中央放出孔12a,上側放出孔12b,下側放出孔12
cの全放出孔から内容物を放出する3ウェイモードとを
選択することができる。
A one-way mode in which the contents are discharged only from the central discharge hole 12a by rotating the push button 22,
Central discharge hole 12a, upper discharge hole 12b, lower discharge hole 12
It is possible to select the 3-way mode in which the contents are discharged from all the discharge holes of c.

【0037】内容物の通路は、 (1)図3の1ウェイモードの場合、 ・内部空間32n−中央孔部32e−中央流入口22a
−中央通路22f−中央放出孔12aの1経路であり、 (2)図4の3ウェイモードの場合、 ・内部空間32n−上側孔部32f−上側流入口22b
−上側通路22g−上側放出孔12b ・内部空間32n−中央孔部32e−中央流入口22a
−中央通路22f−中央放出孔12a ・内部空間32n−下側孔部32g−下側流入口22c
−下側通路22h−下側放出孔12c の3経路となる。
The contents passages are as follows: (1) In the case of the one-way mode shown in FIG. 3, internal space 32n-central hole 32e-central inlet 22a
-Central passage 22f-One path of the central discharge hole 12a, (2) In the case of the three-way mode of Fig. 4, -Internal space 32n-Upper hole 32f-Upper inlet 22b
-Upper passage 22g-Upper discharge hole 12b-Internal space 32n-Center hole 32e-Center inlet 22a
-Central passage 22f-Central discharge hole 12a-Internal space 32n-Lower hole portion 32g-Lower inlet 22c
-Lower side passage 22h-Lower side discharge hole 12c.

【0038】1ウェイモードの設定状態、すなわち押釦
22の回動操作によりその目印21eを1ウェイモード
表示部41bに合わせた状態では、 ・押釦22の凸状部22dが第1凹部32iに係止さ
れ、 ・押釦22の中央流入口22aが中央孔部32eに位置
して内部空間32nと連通し、 ・上側流入口22bおよび下側流入口22cはともに外
周面32dで閉塞されている。
In the setting state of the 1-way mode, that is, in the state where the mark 21e is aligned with the 1-way mode display portion 41b by the rotation operation of the push button 22, the convex portion 22d of the push button 22 is locked in the first concave portion 32i. The central inlet 22a of the push button 22 is located in the central hole 32e and communicates with the internal space 32n, and both the upper inlet 22b and the lower inlet 22c are closed by the outer peripheral surface 32d.

【0039】3ウェイモードの設定状態、すなわち押釦
22の回動操作によりその目印22eを3ウェイモード
表示部41cに合わせた状態では、 ・押釦22の凸状部22dは基部32の凹部32jに係
止され、 ・中央流入口22a,上側流入口22b,下側流入口が
22c、それぞれ中央孔部32e,上側孔部32f,下
側孔部32gに位置して内部空間32nと連通する。
In the setting state of the 3-way mode, that is, in the state where the mark 22e is aligned with the 3-way mode display portion 41c by the rotation operation of the push button 22, the convex portion 22d of the push button 22 is engaged with the concave portion 32j of the base portion 32. The central inlet 22a, the upper inlet 22b, and the lower inlet 22c are located in the central hole 32e, the upper hole 32f, and the lower hole 32g, respectively, and communicate with the internal space 32n.

【0040】図3の1ウェイモードから図4の3ウェイ
モードに切り換えた場合、上側放出孔12bと下側放出
孔12cからも内容物が放出されることになるが、これ
による中央放出孔12aからの内容物放出への影響は、
内容物放出機構Aの場合と同様に、ほとんどない。
When the 1-way mode of FIG. 3 is switched to the 3-way mode of FIG. 4, the contents are also discharged from the upper discharge hole 12b and the lower discharge hole 12c, which results in the central discharge hole 12a. The effect on the release of the contents from
As in the case of the content release mechanism A, there is almost no.

【0041】したがって、3ウェイモードでは、上側放
出孔12bと下側放出孔12cからは1ウェイモードの
ときと同様の態様(速さ,量,圧力など)で内容物を外
部空間に放出し、中央放出孔12aからの放出動作とあ
いまって放出量や放出範囲を拡大することができる。
Therefore, in the 3-way mode, the contents are discharged from the upper discharge hole 12b and the lower discharge hole 12c to the external space in the same manner (speed, amount, pressure, etc.) as in the 1-way mode, The amount of discharge and the range of discharge can be expanded together with the discharge operation from the central discharge hole 12a.

【0042】さらに、中央放出孔12aは略水平方向、
上側放出孔12bは上方向、下側放出孔12cは下方向
に向けて形成されているので、内容物の放出範囲が重な
ることが少なく、均等に放出することができる。
Further, the central discharge hole 12a is in a substantially horizontal direction,
Since the upper discharge hole 12b is formed in the upper direction and the lower discharge hole 12c is formed in the lower direction, the discharge ranges of the contents do not overlap each other, and the contents can be discharged uniformly.

【0043】なお、上側流入口22b,中央流入口22
a,下側流入口22cのそれぞれに対応する孔部を基部
32にどのように形成するかは任意であり、例えば、1
ウェイモード/2ウェイモードを選択できるように、上
側流入口22bのみが内部空間32nに連通する位置に
上側孔部を形成し、中央流入口22aと下側流入口22
cがともに内部空間32nに連通する位置に中央孔部と
下側孔部を形成してもよい。
The upper inlet 22b and the central inlet 22
a, it is arbitrary how to form the holes corresponding to the lower inlet 22c in the base 32, for example, 1
In order to select the way mode / 2 way mode, an upper hole is formed at a position where only the upper inlet 22b communicates with the inner space 32n, and the central inlet 22a and the lower inlet 22 are formed.
A central hole and a lower hole may be formed at positions where both c communicate with the inner space 32n.

【0044】図5および図6は2ウェイの内容物放出機
構Cを示す説明図である。図5は左方向1ウェイモー
ド、図6(a)は2ウェイモード、図6(b)は右方向
1ウェイモードをそれぞれ示している。
5 and 6 are explanatory views showing a 2-way content discharging mechanism C. FIG. 5 shows the leftward one-way mode, FIG. 6A shows the two-way mode, and FIG. 6B shows the rightward one-way mode.

【0045】図5および図6において、Cは2ウェイの
内容物放出機構,13は周方向に二つの放出孔を備えた
放出孔部材,13aは左側放出孔,13bは右側放出
孔,13cは左側放出孔13aに対応する左側筒状部,
13dは右側放出孔13bに対応する右側筒状部,13
eは押釦23と嵌合する突状部,23は周方向に二つの
内容物流入口を備えた押釦,23aは後述の回動操作用
基部33の内部空間33jに選択的に連通する左側流入
口,23bは後述の回動操作用基部33の内部空間33
jに選択的に連通する右側流入口,23cは左方向1ウ
ェイモード/2ウェイモード/右方向1ウェイ放出モー
ドの切替用目印,23dは放出孔部材13の左側筒状部
13cとの間に形成される左側通路,23eは放出孔部
材13の右側筒状部13dとの間に形成される右側通
路,33は幅広スリットを形成した回動操作用の基部,
33aは基部33を肩カバー42に固定的に取り付ける
切欠,33bは筒状部,33cは幅広スリット,33d
は押釦23の内周面に係合する環状突部,33eは押釦
23の左方向1ウェイモード設定の回動位置を保持する
ための凹部,33fは押釦23の2ウェイモード設定の
回動位置を保持するための凹部,33gは押釦23の右
方向1ウェイモード設定の回動位置を保持するための凹
部,33hは凹部33eと33fとの間の段部,33i
は凹部33fと33gとの間の段部,33jは内部空
間,42は三つの表示部が設けられた肩カバー,42a
は基部33の切欠33aに嵌合する突起,42bは左方
向1ウェイモードを示す表示部,42cは2ウェイ放出
モードを示す表示部,42dは右方向1ウェイモードを
示す表示部,をそれぞれ示している。放出孔部材13、
押釦23、基部33、肩カバー42の取り付け態様は内
容物放出機構Aなどと同様である。
In FIGS. 5 and 6, C is a 2-way content discharge mechanism, 13 is a discharge hole member having two discharge holes in the circumferential direction, 13a is a left discharge hole, 13b is a right discharge hole, and 13c is a discharge hole member. A left cylindrical portion corresponding to the left discharge hole 13a,
13d is a right cylindrical portion corresponding to the right discharge hole 13b, 13
Reference numeral e is a protrusion fitting with the push button 23, reference numeral 23 is a push button provided with two contents distribution inlets in the circumferential direction, and reference numeral 23a is a left inlet which selectively communicates with an internal space 33j of a turning operation base 33 described later. , 23b are internal spaces 33 of a pivoting operation base 33 described later.
The right inlet which selectively communicates with j, 23c is a mark for switching leftward 1-way mode / 2-way mode / rightward 1-way discharge mode, and 23d is between the left cylindrical portion 13c of the discharge hole member 13. The formed left side passage, 23e is a right side passage formed between the discharge hole member 13 and the right side tubular portion 13d, and 33 is a base for rotation operation in which a wide slit is formed,
33a is a notch for fixedly attaching the base 33 to the shoulder cover 42, 33b is a cylindrical portion, 33c is a wide slit, 33d.
Is an annular projection that engages with the inner peripheral surface of the push button 23, 33e is a recess for holding the rotational position of the push button 23 in the left one-way mode setting, and 33f is the rotational position of the push button 23 in the two-way mode setting. Is a concave portion for holding the push button 23, a concave portion for holding the rotational position of the push button 23 in the rightward one-way mode setting, 33h is a step portion between the concave portions 33e and 33f, and 33i.
Is a step portion between the concave portions 33f and 33g, 33j is an internal space, 42 is a shoulder cover provided with three display portions, 42a
Is a protrusion that fits into the notch 33a of the base 33, 42b is a display unit showing a left-direction 1-way mode, 42c is a display unit showing a 2-way discharge mode, and 42d is a display unit showing a right-direction 1-way mode. ing. Emission hole member 13,
The attachment mode of the push button 23, the base 33, and the shoulder cover 42 is the same as that of the content discharge mechanism A and the like.

【0046】押釦23の基部33などに対する回動操作
により、 ・左側流入口23aのみが動作する左方向1ウェイモー
ド、 ・左側流入口23aおよび右側流入口23bがともに動
作する2ウェイ放出モード、 ・右側流入口23bのみが動作する右方向1ウェイモー
ド、 を設定できる。
When the push button 23 is rotated with respect to the base portion 33 or the like, a left one-way mode in which only the left inlet 23a operates, a two-way discharge mode in which both the left inlet 23a and the right inlet 23b operate, It is possible to set a rightward one-way mode in which only the right inlet 23b operates.

【0047】押釦23は、その突状部(図示省略)が基
部33の「凹部33e−段部33h−凹部33f−段部
33i−凹部33g」を移動する範囲で、回動できる。
The push button 23 can be rotated within a range in which the projecting portion (not shown) moves in the "recess 33e-step 33h-recess 33f-step 33i-recess 33g" of the base 33.

【0048】内容物の通路は、 (1)図5の左方向1ウェイモードの場合 ・内部空間33j−スリット33c−左側流入口23a
−左側通路23d−左側放出孔13aの1経路であり、 (2)図6の2ウェイモードの場合 ・内部空間33j−スリット33c−左側流入口23a
−左側通路23d−左側放出孔13a ・内部空間33j−スリット33c−右側流入口23b
−右側通路23e−右側放出孔13b の2経路であり、 (3)図6の右方向1ウェイモードの場合 ・内部空間33j−スリット33c−右側流入口23b
−右側通路23e−右側放出孔13bの1経路となる。
The passage of the contents is as follows: (1) In the case of the left one-way mode in FIG. 5: Internal space 33j-slit 33c-left inlet 23a
-Left side passage 23d-One path of the left side discharge hole 13a, (2) In the case of the two-way mode of Fig. 6-Internal space 33j-Slit 33c-Left side inlet 23a
-Left side passage 23d-Left side discharge hole 13a-Internal space 33j-Slit 33c-Right side inlet 23b
-Right passage 23e-Right discharge hole 13b, and (3) In the case of the one-way mode in the right direction in Fig. 6-Internal space 33j-Slit 33c-Right inlet 23b.
-Right side passage 23e-Right side discharge hole 13b.

【0049】左方向1ウェイモードの設定状態、すなわ
ち押釦23の回動操作によりその目印23cを左方向1
ウェイモード表示部42bに合わせた状態では、 ・押釦23の凸状部(図示省略)は凹部33eに係止さ
れ、 ・押釦23の左側流入口23aは基部33の内部空間3
3jと連通し、 ・押釦23の右側流入口23bは基部33の筒状部33
bで閉塞されている。
When the leftward one-way mode is set, that is, when the push button 23 is rotated, the mark 23c is moved to the leftward one-way mode.
In a state where it is aligned with the way mode display portion 42b, the convex portion (not shown) of the push button 23 is locked in the concave portion 33e, and the left inlet 23a of the push button 23 is the internal space 3 of the base portion 33.
3j, the right inlet 23b of the push button 23 is the cylindrical portion 33 of the base 33.
It is blocked at b.

【0050】2ウェイモードの設定状態、すなわち押釦
23の回動操作によりその目印23cを2ウェイモード
表示部42cに合わせた状態では、 ・押釦23の凸状部(図示省略)は凹部33fに係止さ
れ、 ・押釦23の左側流入口23aは基部33の内部空間3
3jと連通し、 ・押釦23の右側流入口23bは基部33の内部空間3
3jと連通している。
In the setting state of the 2-way mode, that is, in the state where the mark 23c is aligned with the 2-way mode display portion 42c by the rotation operation of the push button 23, the convex portion (not shown) of the push button 23 is engaged with the concave portion 33f. The left inlet 23a of the push button 23 is the inner space 3 of the base 33.
3j, and the right inlet 23b of the push button 23 is the inner space 3 of the base 33.
It communicates with 3j.

【0051】右方向1ウェイモードの設定状態、すなわ
ち押釦23の回動操作によりその目印23cを右方向1
ウェイモード表示部42dに合わせた状態では、 ・押釦23の凸状部(図示省略)は凹部33gに係止さ
れ、 ・押釦23の左側流入口23aは基部33の筒状部33
bで閉塞され、 ・押釦23の右側流入口23bは基部33の内部空間3
3jと連通している。
When the right one-way mode is set, that is, when the push button 23 is rotated, the mark 23c is moved to the right one.
In a state where it is aligned with the way mode display portion 42d, the convex portion (not shown) of the push button 23 is locked in the concave portion 33g, and the left inlet port 23a of the push button 23 is the cylindrical portion 33 of the base portion 33.
b), the right inlet 23b of the push button 23 is the inner space 3 of the base 33
It communicates with 3j.

【0052】内容物放出機構Cの各放出孔への下流側通
路は個々に独立しているので、図5,図6のいずれのウ
ェイモードにおいても、各放出孔からは内容物が同様の
態様で外部空間に放出される。この様子は内容物放出機
構A〜Bと同じである。
Since the downstream passages to the respective discharge holes of the content discharge mechanism C are individually independent, the contents are the same from the respective discharge holes in any of the way modes shown in FIGS. Is released into the external space. This state is the same as the contents release mechanism AB.

【0053】したがって、2ウェイモードでの放出量は
1ウェイモードでのそれよりも多い。また、左側放出孔
13aは左方向、右側放出孔13bは右方向に向けて形
成されているので、左右方向に広い範囲に放出すること
ができ、内容物の放出範囲が重なることが少なく均等に
放出することができる。
Therefore, the emission amount in the 2-way mode is larger than that in the 1-way mode. Further, since the left-side discharge hole 13a is formed in the left direction and the right-side discharge hole 13b is formed in the right direction, it is possible to discharge in a wide range in the left-right direction, and the discharge ranges of the contents do not overlap and are even. Can be released.

【0054】図7および図8は3ウェイの内容物放出機
構Dを示す説明図である。図7は狭範囲2ウェイモー
ド、図8(a)は1ウェイモード、(b)は広範囲2ウ
ェイモードをそれぞれ示している。
FIG. 7 and FIG. 8 are explanatory views showing a 3-way content discharging mechanism D. FIG. 7 shows a narrow range 2-way mode, FIG. 8A shows a 1-way mode, and FIG. 8B shows a wide-range 2-way mode.

【0055】図7および図8において、Dは3ウェイの
内容物放出機構,14は下側放出孔部材,14aは下側
放出孔,14bは下側放出孔14aに対応する下側筒状
部,14cは押釦24と嵌合する突状部,15は上側放
出孔部材,15aは上側放出孔,15bは上側放出孔1
5aに対応する上側筒状部,15cは押釦24と嵌合す
る突状部,24は二つの放出孔に連通する三つの流入口
が形成された押釦,24aは下側流入口,24bは中央
流入口,24cは上側流入口,24dは後述の凹部34
kまたは34mまたは34nと係合して当該押釦の回動
操作位置を保持する凸状部,24eは各モード切替用目
印,24fは下側流入口24aと下側放出孔14aを連
通するストレート通路(ウェイ),24gは中央流入口
24bと下側放出孔14aを連通する下側円筒形通路
(ウェイ),24hは上側流入口24cと上側放出孔1
5aを連通する上側円筒形通路(ウェイ),34は回動
操作用の基部,34aは基部34を肩カバー(図示省
略)に固定的に取り付ける切欠,34bは筒状部,34
cは後述の内部空間34rに続く空間域,34dは筒状
部34bの外周面,34eは下側流入口24a,中央流
入口24b,上側流入口24cに対応するクランク状溝
部,34fはクランク状溝部の下側部分,34gはクラ
ンク状溝部の水平部分,34hはクランク状溝部の上側
部分,34iは押釦24の内周面に係合する環状突部,
34jは水平方向2ウェイモードの回動位置を保持する
ための凹部,34kは水平方向1ウェイモードの回動位
置を保持するための凹部,34mは広範囲2ウェイモー
ドの回動位置を保持するための凹部,34nは凹部34
jと34kとの間の段部,34pは凹部34kと34m
との間の段部,34rは上流入口側通路を形成する内部
空間、をそれぞれ示している。
7 and 8, D is a 3-way content discharging mechanism, 14 is a lower discharging hole member, 14a is a lower discharging hole, and 14b is a lower cylindrical portion corresponding to the lower discharging hole 14a. , 14c is a protrusion that fits into the push button 24, 15 is an upper discharge hole member, 15a is an upper discharge hole, and 15b is an upper discharge hole 1.
5a is an upper cylindrical portion, 15c is a protruding portion that fits with the push button 24, 24 is a push button having three inlets communicating with two discharge holes, 24a is a lower inlet, and 24b is a center. Inflow port, 24c is upper inflow port, 24d is a recess 34 described later.
A convex portion that engages with k, 34m, or 34n to hold the rotational operation position of the push button, 24e is a mode switching mark, and 24f is a straight passage that connects the lower inlet port 24a and the lower discharge hole 14a. (Way), 24g is a lower cylindrical passage (way) that communicates the central inlet 24b with the lower discharge hole 14a, and 24h is the upper inlet 24c and the upper discharge hole 1
Upper cylindrical passage (way) communicating with 5a, 34 is a base portion for rotating operation, 34a is a notch for fixing the base portion 34 to a shoulder cover (not shown), 34b is a tubular portion, 34
c is a space area continuing to an internal space 34r described later, 34d is an outer peripheral surface of the cylindrical portion 34b, 34e is a crank-shaped groove portion corresponding to the lower inlet 24a, the central inlet 24b, and the upper inlet 24c, and 34f is a crank-shaped groove. The lower portion of the groove portion, 34g is the horizontal portion of the crank-shaped groove portion, 34h is the upper portion of the crank-shaped groove portion, 34i is an annular protrusion that engages with the inner peripheral surface of the push button 24,
Reference numeral 34j denotes a concave portion for holding the turning position in the horizontal 2-way mode, 34k denotes a concave portion for holding the turning position in the horizontal 1-way mode, and 34m for holding the turning position in the wide range 2-way mode. , 34n is the recess 34
j is a step between 34 and 34k, and 34p is a recess between 34k and 34m.
Steps 34 and 34r between and indicate the internal space forming the upstream inlet passage.

【0056】押釦24の基部34などに対する回動操作
により、 ・下側流入口24aのみが動作する1ウェイモード、 ・下側流入口24aおよび中央流入口24bがともに動
作する狭範囲2ウェイモード、 ・中央流入口24bおよび上側流入口24cがともに動
作する広範囲2ウェイモード、 を設定できる。
By the rotating operation of the push button 24 with respect to the base portion 34, etc., 1-way mode in which only the lower inlet 24a operates, and narrow range 2-way mode in which both the lower inlet 24a and the central inlet 24b operate. A wide range 2-way mode in which both the central inlet 24b and the upper inlet 24c operate can be set.

【0057】押釦24は、その突状部24aが基部34
の「凹部34j−段部34n−凹部34k−段部34p
−凹部34m」を移動する範囲で、回動できる。
The push button 24 has a protruding portion 24a whose base portion 34
"Concave portion 34j-step portion 34n-recess portion 34k-step portion 34p"
-Moveable within the range of movement of the "concave portion 34m"

【0058】内容物の通路は、 (1)図7の狭範囲2ウェイモードの場合 ・内部空間34r−空間域34c−クランク状溝部34
e−下側流入口24a−ストレート通路24f−下側放
出孔14a ・内部空間34r−空間域34c−クランク状溝部34
e−中央流入口24b−下側円筒形通路24g−下側放
出孔14a の2経路であり、 (2)図8の1ウェイモードの場合 ・内部空間34r−空間域34c−クランク状溝部34
e−中央流入口24b−下側円筒形通路24g−下側放
出孔14aの1経路であり、 (3)図8の広範囲2ウェイモードの場合 ・内部空間34r−空間域34c−クランク状溝部34
e−中央流入口24b−下側円筒形通路24g−下側放
出孔14a ・内部空間34r−空間域34c−クランク状溝部34
e−上側流入口24c−上側円筒形通路24h−上側放
出孔15a の2経路となる。
The passage of the contents is as follows: (1) In case of narrow range 2-way mode in FIG. 7: internal space 34r-space region 34c-crank-shaped groove 34
e-Lower inlet 24a-Straight passage 24f-Lower discharge hole 14a-Internal space 34r-Space region 34c-Crank-shaped groove 34
e-center inlet 24b-lower cylindrical passage 24g-lower discharge hole 14a (2) In the case of 1-way mode in Fig. 8: internal space 34r-space region 34c-crank-shaped groove 34
e-center inlet 24b-lower cylindrical passage 24g-lower discharge hole 14a, which is one path, and (3) wide-range two-way mode in Fig. 8: internal space 34r-space region 34c-crank-shaped groove 34
e-Central inlet 24b-Lower cylindrical passage 24g-Lower discharge hole 14a-Internal space 34r-Space region 34c-Crank-shaped groove 34
e-upper inlet 24c-upper cylindrical passage 24h-upper discharge hole 15a.

【0059】図7の狭範囲2ウェイモードの設定状態で
は、 ・押釦24の凸状部24dは基部34の凹部34jに係
止され、 ・押釦24の下側流入口24aは基部34の筒状部34
bに続く空間域34cと連通し、 ・押釦24の中央流入口24bは基部34の筒状部34
bに続く空間域34cと連通し、 ・押釦24の上側流入口24cは基部34の外周面34
dで閉塞されている。
In the setting state of the narrow range two-way mode of FIG. 7, the convex portion 24d of the push button 24 is locked in the concave portion 34j of the base portion 34, and the lower inlet port 24a of the push button 24 is cylindrical in the base portion 34. Part 34
The central inlet port 24b of the push button 24 is the tubular portion 34 of the base 34.
The upper inlet 24c of the push button 24 is the outer peripheral surface 34 of the base 34.
It is blocked at d.

【0060】図8の1ウェイモードの設定状態では、 ・押釦24の凸状部24dは基部34の凹部34kに係
止され、 ・押釦24の下側流入口24aは基部34の外周面34
dで閉塞され、 ・押釦24の中央流入口24bは基部34の筒状部34
bに続く空間域34cと連通し、 ・押釦24の上側流入口24cは基部34の外周面34
dで閉塞されている。
In the setting state of the one-way mode in FIG. 8, the convex portion 24d of the push button 24 is locked in the concave portion 34k of the base portion 34, and the lower inlet port 24a of the push button 24 is the outer peripheral surface 34 of the base portion 34.
The central inlet port 24b of the push button 24 is the cylindrical portion 34 of the base portion 34.
The upper inlet 24c of the push button 24 is the outer peripheral surface 34 of the base 34.
It is blocked at d.

【0061】図8の広範囲2ウェイモードの設定状態で
は、 ・押釦24の凸状部24dは基部34の凹部34mに係
止され、 ・押釦24の下側流入口24aは基部34の外周面34
dで閉塞され、 ・押釦24の中央流入口24bは基部34の筒状部34
bに続く空間域34cと連通し、 ・押釦24の上側流入口24cは基部34の筒状部34
bに続く空間域34cと連通している。
In the setting state of the wide range 2-way mode of FIG. 8, the convex portion 24d of the push button 24 is locked in the concave portion 34m of the base portion 34, and the lower inlet port 24a of the push button 24 is the outer peripheral surface 34 of the base portion 34.
The central inlet port 24b of the push button 24 is the cylindrical portion 34 of the base portion 34.
It communicates with the space area 34c following b. The upper inlet 24c of the push button 24 is the tubular portion 34 of the base 34.
It communicates with the space area 34c following b.

【0062】内容物放出機構Dの各放出孔への下流側通
路は個々に独立しているので、図7,図8のいずれのウ
ェイモードにおいても、各放出孔からは内容物が同様の
態様で外部空間に放出される。この様子は内容物放出機
構A〜Cと同じである。
Since the downstream passages to the respective discharge holes of the contents discharge mechanism D are individually independent, the contents are the same from the respective discharge holes in any of the way modes shown in FIG. 7 and FIG. Is released into the external space. This state is the same as the contents release mechanisms A to C.

【0063】したがって、2ウェイモードで放出される
内容物の総量は1ウェイモードのそれよりも多い。ま
た、下側放出孔14aは略水平方向に向けて形成され、
上側放出孔15aは上方向に向けて形成されているの
で、広範囲2ウェイモードでは内容物を上下方向の広範
囲に放出することができ、放出範囲が重なることが少な
く均等に放出することができる。
Therefore, the total amount of contents released in the 2-way mode is higher than that in the 1-way mode. Further, the lower discharge hole 14a is formed in a substantially horizontal direction,
Since the upper discharge hole 15a is formed in the upward direction, the contents can be discharged in a wide range in the vertical direction in the wide range 2-way mode, and the discharge ranges do not overlap and can be discharged uniformly.

【0064】図9は1ウェイの内容物放出機構Eを示す
説明図である。(a)は水平放出モード、(b)は垂直
放出モードをそれぞれ示している。
FIG. 9 is an explanatory view showing a one-way content discharging mechanism E. (A) shows a horizontal discharge mode, and (b) shows a vertical discharge mode.

【0065】図9において、Eは1ウェイの内容物放出
機構,16は押釦,16aはステム51aと嵌合する開
口部,16bは共用通路,16cは共用通路16bから
斜め上方に向けて形成された流出側開口部,25はへの
字状回動部材,25aは基部,25bは押釦16の流出
側開口部16cに回動可能に嵌合する突状部,25cは
首部,25dは内容物の通路,35は放出孔部材,35
aは回動部材に固定的に嵌合する凸状部,35bは放出
孔,をそれぞれ示している。なお、容器51,ステム5
1a,マウンテンキャップ51b,容器本体51cは、
内容物放出機構Aと同様である。
In FIG. 9, E is a one-way content discharging mechanism, 16 is a push button, 16a is an opening for fitting with the stem 51a, 16b is a common passage, and 16c is formed diagonally upward from the common passage 16b. Outflow side opening, 25 is a V-shaped rotating member, 25a is a base, 25b is a protrusion that rotatably fits into the outflow opening 16c of the push button 16, 25c is a neck, and 25d is the contents. , 35 is a discharge hole member, 35
Reference numeral a denotes a convex portion fixedly fitted to the rotating member, and reference numeral 35b denotes a discharge hole. The container 51 and the stem 5
1a, mountain cap 51b, container body 51c,
It is the same as the content release mechanism A.

【0066】ここで、放出孔部材35および回動部材2
5の固定嵌合物は、押釦16およびステム51aの固定
嵌合物に対して回動可能である。
Here, the discharge hole member 35 and the rotating member 2
The fixed fitting 5 is rotatable with respect to the fixed fitting 16 of the push button 16 and the stem 51a.

【0067】内容物放出機構Eは、回動部材25の押釦
16に対する回動操作により、 ・放出孔35bが略水平方向を向く水平方向放出モード ・放出孔35bが略垂直方向を向く垂直方向放出モード を設定できる。各モードにおける内容物の通路空間は同
じである。
The contents discharging mechanism E is operated by the turning operation of the push member 16 of the turning member 25: horizontal discharging mode in which the discharging hole 35b faces the substantially horizontal direction; vertical discharging in which the discharging hole 35b faces the substantially vertical direction. You can set the mode. The passage space of the contents in each mode is the same.

【0068】図10および図11は3ウェイの内容物放
出機構Fを示す説明図である。図10(a)は3ウェイ
モード、図10(b)は押釦と回動部材の斜視図、図1
1は1ウェイモードをそれぞれ示している。
10 and 11 are explanatory views showing a 3-way content discharging mechanism F. As shown in FIG. FIG. 10A is a 3-way mode, FIG. 10B is a perspective view of the push button and the rotating member, and FIG.
1 indicates the 1-way mode, respectively.

【0069】図10および図11において、Fは3ウェ
イの内容物放出機構,17は押釦,17aはステム51
aと嵌合する開口部,17bは上流側通路を形成する内
部空間,17cは筒状部,17dは上流側通路を形成す
る内部空間,17eは外周面,17fは外周面17eに
形成された溝部,17gは開口部内周面,17hは後述
の回動部材26の突起26jまたは26kと係合する凹
部,26は三つの下流側通路を有する回動部材,26a
は外側筒状部,26bは押釦17に回動可能に嵌合する
突状部,26cは内側筒状部,26dは内側筒状部26
cの内周面に形成された溝部,26eは空間域,26f
は外側筒状部26aと内側筒状部26cとの間の空間
部,26gは中央放出通路,26hは上側放出通路,2
6iは下側放出通路,26jは3ウェイモード設定位置
を保持する突起,26kは1ウェイモード設定位置を保
持する突起,26mは首部,36は中央放出孔部材,3
6aは中央放出孔,36bは回動部材26に固定的に嵌
合する凸状部,37は上側放出孔部材,37aは上側放
出孔,37bは回動部材26に固定的に嵌合する凸状
部,38は下側放出孔部材,38aは下側放出孔,38
bは回動部材26に固定的に嵌合する凸状部,をそれぞ
れ示している。
In FIGS. 10 and 11, F is a 3-way content discharging mechanism, 17 is a push button, and 17a is a stem 51.
An opening portion that fits with a, 17b is an internal space forming an upstream passage, 17c is a cylindrical portion, 17d is an internal space forming an upstream passage, 17e is an outer peripheral surface, and 17f is an outer peripheral surface 17e. A groove portion, 17g is an inner peripheral surface of the opening portion, 17h is a concave portion that engages with a projection 26j or 26k of a rotating member 26 described later, 26 is a rotating member having three downstream passages, and 26a.
Is an outer tubular portion, 26b is a protruding portion rotatably fitted to the push button 17, 26c is an inner tubular portion, and 26d is an inner tubular portion 26.
groove portion formed on the inner peripheral surface of c, 26e is a space region, 26f
Is a space between the outer tubular portion 26a and the inner tubular portion 26c, 26g is the central discharge passage, 26h is the upper discharge passage, 2
6i is a lower discharge passage, 26j is a protrusion that holds a 3-way mode setting position, 26k is a protrusion that holds a 1-way mode setting position, 26m is a neck portion, 36 is a central discharge hole member, 3
6a is a central discharge hole, 36b is a convex portion fixedly fitted to the rotating member 26, 37 is an upper discharge hole member, 37a is an upper discharge hole, and 37b is a convex portion fixedly fitted to the rotating member 26. -Shaped portion, 38 is a lower discharge hole member, 38a is a lower discharge hole, 38
Reference characters b denote convex portions fixedly fitted to the rotating member 26.

【0070】内容物放出機構Fは、 ・三つの放出孔部材37,38,39および回動部材2
6が突状部36b,37b,38bの作用により嵌合し
て固定化した操作側部分 ・押釦17がステム51aに嵌合して固定化した容器側
部分 に大別され、回動部材26は押釦17に対して回動可能
である
The contents discharging mechanism F includes: three discharging hole members 37, 38, 39 and a rotating member 2
6 is roughly divided into the operation side portion and the push button 17 which are fitted and fixed by the action of the protrusions 36b, 37b and 38b, and the container side portion which is fitted and fixed to the stem 51a. Rotatable with respect to push button 17

【0071】回動部材26の押釦17に対する回動操作
により、・中央放出通路26g,上側放出通路26h,
下側放出通路26iの3つの通路が動作する3ウェイモ
ード・中央放出通路26gのみが動作する1ウェイモー
ドを設定できる。
By rotating the rotating member 26 with respect to the push button 17, the central discharge passage 26g, the upper discharge passage 26h,
It is possible to set a 3-way mode in which three passages of the lower discharge passage 26i operate and a 1-way mode in which only the central discharge passage 26g operates.

【0072】内容物の通路は、 (1)図10の3ウェイモードの場合 ・内部空間17b−横通路17d−空間域26e−押釦
の溝部17f−回動部材の溝部26d−空間部26f−
上側放出通路26h−上側放出孔37a ・内部空間17b−横通路17d−空間域26e−中央
放出通路26g−中央放出孔36a ・内部空間17b−横通路17d−空間域26e−押釦
の溝部17f−回動部材の溝部26d−空間部26f−
下側放出通路26i−下側放出孔38aの3経路であ
り、 (2)図11の1ウェイモードの場合 ・内部空間17b−横通路17d−空間域26e−中央
放出通路26g−中央放出孔36a の1経路となる。
The contents passage is as follows: (1) In the case of 3-way mode in FIG. 10: Internal space 17b-lateral passage 17d-space area 26e-push button groove 17f-rotating member groove 26d-space 26f-
Upper discharge passage 26h-Upper discharge hole 37a-Internal space 17b-Horizontal passage 17d-Space region 26e-Center discharge passage 26g-Central discharge hole 36a-Internal space 17b-Horizontal passage 17d-Space region 26e-Push button groove 17f-Time Groove portion 26d of moving member-Space portion 26f-
There are three paths of the lower side discharge passage 26i-the lower side discharge hole 38a. (2) In the case of the one-way mode of FIG. 11: Internal space 17b-lateral passage 17d-space area 26e-center discharge passage 26g-center discharge hole 36a. It will be one route.

【0073】3ウェイモードの設定状態、すなわち回動
部材26の回動操作によりその突起26jを凹部17h
に係合させた状態では、押釦17の溝部17fと回動部
材26の溝部26dとが重なって、空間域26eと空間
部26fとが連通する。
When the three-way mode is set, that is, when the rotating member 26 is rotated, the projection 26j is recessed into the recess 17h.
In the state of being engaged with, the groove portion 17f of the push button 17 and the groove portion 26d of the rotating member 26 overlap with each other, and the space area 26e and the space portion 26f communicate with each other.

【0074】1ウェイモードの設定状態、すなわち回動
部材の回動操作によりその突起26kを凹部17hに係
合させた状態では、押釦17の溝部17fと回動部材2
6の溝部26dとが重ならないので、空間域26eは空
間部26fと連通しない。
When the 1-way mode is set, that is, when the protrusion 26k is engaged with the recess 17h by the rotating operation of the rotating member, the groove portion 17f of the push button 17 and the rotating member 2 are operated.
Since the groove portion 26d of 6 does not overlap, the space region 26e does not communicate with the space portion 26f.

【0075】空間域26eから各放出孔への下流側通路
は個々に独立しているので、放出操作時間が同じであれ
ば、3ウェイモードの場合に一つの放出孔から放出され
る内容物の速さ,量,圧力などは1ウェイモードの場合
のそれと略同じである。この様子は内容物放出機構A〜
Dと同様である。
Since the downstream passages from the space area 26e to the respective discharge holes are individually independent, if the discharge operation time is the same, the contents discharged from one discharge hole in the 3-way mode are The speed, amount, pressure, etc. are almost the same as those in the one-way mode. This state is the contents release mechanism A ~
Similar to D.

【0076】3ウェイモードでは1ウェイモードに比べ
て放出総量および放出範囲が拡大している。
In the 3-way mode, the total emission amount and the emission range are expanded as compared with the 1-way mode.

【0077】また、上側放出孔37aは上方に向き、下
側放出孔38aは下方に向けて形成されているので、内
容物を上下方向に広い範囲に放出することができ、ま
た、内容物の放出範囲が重複することが少なく均等に放
出することができる。
Since the upper discharge hole 37a is directed upward and the lower discharge hole 38a is formed downward, the contents can be discharged in a wide range in the vertical direction, and the contents can be discharged. The emission ranges do not overlap, and the emission can be performed uniformly.

【0078】以上の内容物放出機構を用いたポンプ製品
およびエアゾール製品としては、洗浄剤,清掃剤,制汗
剤,忌避剤,医薬品,医薬部外品,化粧品,洗濯のりな
どがある。
Examples of pump products and aerosol products using the above-mentioned content release mechanism include cleaning agents, cleaning agents, antiperspirants, repellents, pharmaceuticals, quasi drugs, cosmetics, and laundry glue.

【0079】ポンプ製品またはエアゾール製品の内容物
は、金属塩類粉末,無機物粉末や樹脂粉末などを用い
る。例えばタルク,カオリン,アルミニウムヒドロキシ
クロライド(アルミ塩),硫酸バリウム,セルロース,
これらの混合物などである。また、紫外線吸収剤,油性
原料,界面活性剤,保湿剤,高分子化合物,酸化防止
剤,金属イオン封鎖剤なども用いる。
As the contents of the pump product or the aerosol product, metal salt powder, inorganic powder, resin powder or the like is used. For example, talc, kaolin, aluminum hydroxy chloride (aluminum salt), barium sulfate, cellulose,
And mixtures thereof. Further, ultraviolet absorbers, oily raw materials, surfactants, moisturizers, polymer compounds, antioxidants, sequestering agents, etc. are also used.

【0080】エアゾール製品の放出用ガスには、LP
G,ジメチルエーテル,フルオロカーボン,炭酸ガス,
窒素ガス,圧縮空気,酸素,希ガス,これらの混合ガス
などを用いる。
The release gas for aerosol products should be LP
G, dimethyl ether, fluorocarbon, carbon dioxide,
Nitrogen gas, compressed air, oxygen, rare gas, or a mixed gas of these is used.

【0081】[0081]

【発明の効果】本発明は、このように、ともに内容物の
放出範囲変更のための構成要素を新たに設けていない上
流側通路および下流側通路の相対的な回動操作で、内容
物放出範囲を(容器の)上下方向の面内の異なる方向、
例えば水平方向と垂直方向とに設定しているので、放出
内容物の状態変化の低減化を図るとともに、放出範囲変
更機能についての技術の豊富化を図ることができる。
As described above, according to the present invention, the contents are discharged by the relative rotation operation of the upstream passage and the downstream passage which are not newly provided with the components for changing the discharge range of the contents. Range in different directions in the vertical plane (of the container),
For example, since it is set in the horizontal direction and the vertical direction, it is possible to reduce the change in the state of the discharged contents and to enrich the technology of the discharge range changing function.

【0082】また、内容物放出用の下流側通路を複数形
成してこの中から回動操作で選択したものと、上流側通
路形成用の筒状部の周面に設けた貫通部,スリット状
部,溝状部とを連通させて内容物放出範囲の変更を行な
い、この連通部で内容物の流れ方向が変化するので、内
容物の新たな放出範囲変更手段の具体化や、下流側通路
へと流れる内容物の混合・均一化を図ることができる。
Further, a plurality of downstream passages for discharging the contents are formed and selected from among them by a turning operation, and a through portion and a slit shape provided on the peripheral surface of the tubular portion for forming the upstream passage. Section and groove section are communicated with each other to change the content discharge range, and the flow direction of the content changes at this communication section. Therefore, a new discharge range changing means for the content and a downstream passage It is possible to mix and homogenize the contents flowing to the inside.

【0083】また、特定の下流側通路を上流側通路に常
に連通させ、利用者が回動操作を特に意識しなくてもこ
の下流側通路からは内容物が放出されるように設定して
いるので、放出操作の負担の低減化を図ることができ
る。
Further, the specific downstream passage is always communicated with the upstream passage so that the contents are discharged from the downstream passage even if the user is not particularly aware of the turning operation. Therefore, the burden of the discharging operation can be reduced.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の、内容物放出機構A(2ウェイ)の1
ウェイモードをを示す説明図である。
FIG. 1 is one of the contents release mechanism A (2-way) of the present invention.
It is explanatory drawing which shows a way mode.

【図2】本発明の、内容物放出機構A(2ウェイ)の2
ウェイモードをを示す説明図である。
FIG. 2 is a view of the contents release mechanism A (2 ways) 2 of the present invention.
It is explanatory drawing which shows a way mode.

【図3】本発明の、内容物放出機構B(3ウェイ)の1
ウェイモードをを示す説明図である。
FIG. 3 is one of the content discharging mechanism B (3 ways) of the present invention.
It is explanatory drawing which shows a way mode.

【図4】本発明の、内容物放出機構B(3ウェイ)の3
ウェイモードをを示す説明図である。
FIG. 4 is a view of the content release mechanism B (3 way) of the present invention, 3
It is explanatory drawing which shows a way mode.

【図5】本発明の、内容物放出機構C(2ウェイ)の1
ウェイモード(その1)を示す説明図である。
FIG. 5: 1 of the content discharge mechanism C (2-way) of the present invention
It is explanatory drawing which shows the way mode (the 1).

【図6】本発明の、内容物放出機構C(2ウェイ)の2
ウェイモードおよび1ウェイモード(その2)を示す説
明図である。
FIG. 6 is a view of the content discharging mechanism C (2-way) 2 of the present invention.
It is explanatory drawing which shows the way mode and 1 way mode (the 2).

【図7】本発明の、内容物放出機構D(3ウェイ)の2
ウェイモード(その1)を示す説明図である。
FIG. 7: 2 of the content discharge mechanism D (3 way) of the present invention
It is explanatory drawing which shows the way mode (the 1).

【図8】本発明の、内容物放出機構D(3ウェイ)の1
ウェイモードおよび2ウェイモード(その2)を示す説
明図である。
FIG. 8: 1 of contents discharge mechanism D (3 ways) of the present invention
It is explanatory drawing which shows the way mode and 2 way mode (the 2).

【図9】本発明の、内容物放出機構E(1ウェイ)の第
1,第2の放出モードを示す説明図である
FIG. 9 is an explanatory view showing the first and second discharge modes of the content discharge mechanism E (1 way) of the present invention.

【図10】本発明の、内容物放出機構F(3ウェイ)の
3ウェイモードを示す説明図である。
FIG. 10 is an explanatory view showing the 3-way mode of the content discharging mechanism F (3-way) of the present invention.

【図11】本発明の、内容物放出機構F(3ウェイ)の
1ウェイモードを示す説明図である。
FIG. 11 is an explanatory diagram showing a one-way mode of the content discharging mechanism F (3 ways) according to the present invention.

【符号の説明】[Explanation of symbols]

A〜F:内容物放出機構 11〜13:放出孔部材 11a,12b:上側放出孔 11b,12c:下側放出孔 11c,12e:上側筒状部 11d,12f:下側筒状部 11e,12g,13e:突状部 12a:中央放出孔 12d:中央筒状部 13a:左側放出孔 13b:右側放出孔 13c:左側筒状部 13d:右側筒状部 14:下側放出孔部材 14a:下側放出孔 14b:下側筒状部 14c:突状部 15:上側放出孔部材 15a:上側放出孔 15b:上側筒状部 15c:突状部 16,17,21〜24:押釦 16a,17a:開口部 16b:上流側通路 16c:流出側開口部 17b,17d:内部空間 17c:筒状部 17e:筒状部外周面 17f:溝部 17g:開口部内周面 17h:凹部 21a,22b,24c:上側流入口 21b,22c,24a:下側流入口 21c:凸状部 21d,22e,23c,24e:切替用目印 21e,22g:上側通路 21f,22h:下側通路 22a,24b:中央流入口 22d,24d:凸状部 22f:中央通路 23a:左側流入口 23b:右側流入口 23d:左側通路 23e:右側通路 24f:ストレート通路 24g:下側円筒形通路 24h:上側円筒形通路 25,26:回動部材 25a:基部 25b,26b:突状部 25c,26m:首部 25d:下流側通路 26a:外側筒状部 26c:内側筒状部 26d:溝部 26e:空間域 26f:空間部 26g:中央放出通路 26h:上側放出通路 26i:下側放出通路 26j,26k:突起 31,32:回動操作用の基部 31a,32a:切欠 31b,32b:筒状部 31c:スリット 31d,32h:環状突部 31e,31f,32i,32j:凹部 31g,32k:段部 31h,32m:開口部 31i,32n:内部空間 31j:空間域 32d:外周面 32e:中央孔部 32f:上側孔部 32g:下側孔部 33,34:回動操作用の基部 33a,34a:切欠 33b,34b:筒状部 33c:幅広スリット 33d,34i:環状突部 33e,33f,33g,34j,34k,34m:凹
部 33h,33i,34n,34p:段部 33j,34r:内部空間 34c:空間域 34d:外周面 34e:クランク状溝部 34f:下側部分 34g:水平部分 34h:上側部分 35:放出孔部材 35a:凸状部 35b:放出孔 36:中央放出孔部材 36a:中央放出孔 36b:凸状部 37:上側放出孔部材 37a:上側放出孔 37b:凸状部 38:下側放出孔部材 38a:下側放出孔 38b:凸状部 41,42:肩カバー 41a,42a:突起 41b:1ウェイモード表示部 41c,42c:2ウェイ放出モード表示部 41d:環状突状部 42b:左方向1ウェイモード表示部 42d:右方向1ウェイモード表示部 51:容器 51a:ステム 51b:マウンテンキャップ 51c:容器本体
A to F: Content release mechanisms 11 to 13: Release hole members 11a and 12b: Upper release holes 11b and 12c: Lower release holes 11c and 12e: Upper tubular portions 11d and 12f: Lower tubular portions 11e and 12g , 13e: protrusion 12a: central emission hole 12d: central tubular portion 13a: left emission hole 13b: right emission hole 13c: left tubular portion 13d: right tubular portion 14: lower emission hole member 14a: lower side Discharge hole 14b: Lower cylindrical portion 14c: Projecting portion 15: Upper discharging hole member 15a: Upper discharging hole 15b: Upper tubular portion 15c: Projecting portions 16, 17, 21 to 24: Push buttons 16a, 17a: Opening Portion 16b: Upstream side passage 16c: Outflow side openings 17b, 17d: Internal space 17c: Cylindrical portion 17e: Cylindrical portion outer peripheral surface 17f: Groove portion 17g: Opening portion inner peripheral surface 17h: Recesses 21a, 22b, 24c: Upward flow Entrances 21b, 22c, 4a: Lower inlet 21c: Convex portions 21d, 22e, 23c, 24e: Switching marks 21e, 22g: Upper passage 21f, 22h: Lower passages 22a, 24b: Central inlet 22d, 24d: Convex portion 22f : Central passage 23a: Left inlet 23b: Right inlet 23d: Left passage 23e: Right passage 24f: Straight passage 24g: Lower cylindrical passage 24h: Upper cylindrical passage 25, 26: Rotating member 25a: Base 25b, 26b: protrusions 25c and 26m: neck 25d: downstream passage 26a: outer tubular portion 26c: inner tubular portion 26d: groove portion 26e: space region 26f: space portion 26g: central discharge passage 26h: upper discharge passage 26i: Lower discharge passages 26j, 26k: Protrusions 31, 32: Base portions 31a, 32a for rotating operation: Notches 31b, 32b: Cylindrical portion 31c: Slits 31d, 32 : Annular protrusions 31e, 31f, 32i, 32j: Recesses 31g, 32k: Steps 31h, 32m: Openings 31i, 32n: Inner space 31j: Space region 32d: Outer peripheral surface 32e: Central hole 32f: Upper hole 32g : Lower holes 33, 34: Bases 33a, 34a for rotating operation: Notches 33b, 34b: Cylindrical part 33c: Wide slits 33d, 34i: Annular protrusions 33e, 33f, 33g, 34j, 34k, 34m: Recesses 33h, 33i, 34n, 34p: Steps 33j, 34r: Internal space 34c: Space region 34d: Outer peripheral surface 34e: Crank-shaped groove 34f: Lower part 34g: Horizontal part 34h: Upper part 35: Emission hole member 35a: Convex portion 35b: emission hole 36: central emission hole member 36a: central emission hole 36b: convex portion 37: upper emission hole member 37a: upper emission hole 37b: convex portion 38: Lower emission hole member 38a: Lower emission hole 38b: Convex portions 41, 42: Shoulder covers 41a, 42a: Protrusion 41b: One way mode display portion 41c, 42c: Two way emission mode display portion 41d: Annular protrusion portion 42b: Leftward one-way mode display portion 42d: Rightward one-way mode display portion 51: Container 51a: Stem 51b: Mountain cap 51c: Container body

───────────────────────────────────────────────────── フロントページの続き Fターム(参考) 3E014 PA02 PD01 PD11 PE14 PE17 PE18 PE24 PE25 PE30 PF08 PF10 3E084 AA02 AA12 AB01 AB05 AB09 BA02 CA01 DA01 DB13 FA09 FC07 GA08 GB12 KB01 KB06 LA16 LB01 LB04 LB05 LD08 LD17 LD21 4F033 AA04 BA03 CA12 DA05 EA01 GA10 NA01    ─────────────────────────────────────────────────── ─── Continued front page    F term (reference) 3E014 PA02 PD01 PD11 PE14 PE17                       PE18 PE24 PE25 PE30 PF08                       PF10                 3E084 AA02 AA12 AB01 AB05 AB09                       BA02 CA01 DA01 DB13 FA09                       FC07 GA08 GB12 KB01 KB06                       LA16 LB01 LB04 LB05 LD08                       LD17 LD21                 4F033 AA04 BA03 CA12 DA05 EA01                       GA10 NA01

Claims (7)

【特許請求の範囲】[Claims] 【請求項1】 内容物放出用の上流側通路と、当該上流
側通路に続いて放出口までいたる下流側通路とを、内容
物の放出範囲を変更するための構成要素を持つことのな
い態様で形成し、 前記上流側通路の部分および前記下流側通路の部分を、
両者間で相対的に回動して、内容物の放出範囲が上下方
向の面内の異なる方向に選択的に設定される構造とし
た、ことを特徴とする内容物放出機構。
1. A mode in which an upstream passage for discharging a content and a downstream passage extending to the discharge passage following the upstream passage do not have constituent elements for changing the discharge range of the content. And a portion of the upstream passage and a portion of the downstream passage,
A contents discharging mechanism having a structure in which a relative rotation is made between the two so that a discharging range of the contents is selectively set in different directions in a vertical plane.
【請求項2】 内容物放出用の上流側通路と、当該上流
側通路に続いて放出口にいたる複数の下流側通路とを備
え、 前記上流側通路の部分および前記下流側通路の部分を両
者間で相対的に回動できる構造とし、 前記上流側通路として筒状部の内部空間を少なくとも用
い、当該筒状部の周面に、前記回動の操作に応じて前記
下流側通路を選択的に当該内部空間と連通させるための
貫通部またはスリット状部を、設けた、ことを特徴とす
る内容物放出機構。
2. An upstream passage for discharging a content, and a plurality of downstream passages leading to the upstream passage and reaching a discharge port, wherein both the upstream passage portion and the downstream passage portion are provided. And a structure in which the inner space of the tubular portion is used as the upstream passage, and the downstream passage is selectively provided on the circumferential surface of the tubular portion in response to the turning operation. A contents discharging mechanism, characterized in that a penetrating portion or a slit-shaped portion for communicating with the internal space is provided.
【請求項3】 前記筒状部の下流側に続く空間域と、特
定の前記下流側通路とを前記回動の操作にかかわらず常
に連通させた、ことを特徴とする請求項2記載の内容物
放出機構。
3. The content according to claim 2, wherein the space area continuing to the downstream side of the tubular portion and the specific downstream passage are always communicated with each other regardless of the turning operation. Object release mechanism.
【請求項4】 内容物放出用の上流側通路と、当該上流
側通路に続いて放出口にいたる複数の下流側通路とを備
え、 前記上流側通路の部分および前記下流側通路の部分を両
者間で相対的に回動できる構造とし、 前記上流側通路として筒状部の内部空間およびこれの下
流側に続く空間域を少なくとも用い、当該筒状部の外周
面に、前記回動の操作に応じて前記下流側通路を選択的
に当該空間域と連通させるための溝状部を、設けた、こ
とを特徴とする請求項1記載の内容物放出機構。
4. An upstream side passage for discharging contents, and a plurality of downstream side passages leading to the upstream side passage and reaching a discharge port, wherein both the upstream side passage portion and the downstream side passage portion are provided. Between the inner space of the tubular portion and a space area continuing to the downstream side of the tubular portion as the upstream passage, the outer peripheral surface of the tubular portion being used for the turning operation. The contents discharge mechanism according to claim 1, further comprising a groove-like portion for selectively communicating the downstream passage with the space region.
【請求項5】 前記溝状部の一部分または前記空間域
と、特定の前記下流側通路とを前記回動の操作にかかわ
らず常に連通させた、ことを特徴とする請求項4記載の
内容物放出機構。
5. The contents according to claim 4, wherein a part of the groove-shaped portion or the space area and the specific downstream passage are always communicated with each other regardless of the turning operation. Release mechanism.
【請求項6】 請求項1乃至5記載の内容物放出機構を
備え、かつ、放出用ガスおよび内容物を収容したエアゾ
ール式製品。
6. An aerosol type product provided with the content discharge mechanism according to claim 1 and containing a discharge gas and a content.
【請求項7】 請求項1乃至5記載の内容物放出機構を
備え、かつ、内容物を収容した蓄圧式製品。
7. A pressure-accumulation type product having the contents discharge mechanism according to claim 1 and containing the contents.
JP2002134848A 2002-05-10 2002-05-10 Content release mechanism and aerosol and pressure accumulation products using this mechanism Expired - Fee Related JP4234354B2 (en)

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