JP4301364B2 - Feeding container - Google Patents

Feeding container Download PDF

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Publication number
JP4301364B2
JP4301364B2 JP2003301758A JP2003301758A JP4301364B2 JP 4301364 B2 JP4301364 B2 JP 4301364B2 JP 2003301758 A JP2003301758 A JP 2003301758A JP 2003301758 A JP2003301758 A JP 2003301758A JP 4301364 B2 JP4301364 B2 JP 4301364B2
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cylinder
cosmetic
saucer
piece
feeding container
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JP2005066113A (en
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高稔 齋藤
好延 木村
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Yoshino Kogyosho Co Ltd
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Yoshino Kogyosho Co Ltd
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Description

本発明は、口紅等の棒状化粧料を、繰り出し、繰り入れ可能に収納する繰り出し容器に関するものである。   The present invention relates to a feeding container for storing a stick-shaped cosmetic material such as a lipstick so that it can be fed out and fed in.

口紅やスティックファンデーション等の棒状化粧料を収納する繰り出し容器の一つとして、繰り出し容器の構成部分である内筒体および受皿体を、棒状化粧料の成形型枠として、加熱溶融化粧料を、内筒体の下端開口部から注入充填する方式(底充填方式)か、内筒体の上端開口部から注入充填する方式(上充填方式)により成形することにより、棒状化粧料の冷却固化成形と同時に、繰り出し容器への組付けを達成するものがある。   As one of the feeding containers for storing stick-shaped cosmetics such as lipsticks and stick foundations, the inner cylindrical body and the saucer body, which are constituent parts of the feeding containers, are used as the mold form for stick-shaped cosmetics, Simultaneously with cooling solidification molding of bar-shaped cosmetics by molding by filling and filling from the bottom end opening of the cylinder (bottom filling method) or by filling and filling from the top opening of the inner cylinder (top filling method) There are some that achieve assembly to the feeding container.

このものは、棒状化粧料の成形と、繰り出し容器への組付けを同時に達成できるので、きわめて良好な生産性を得ることができるのであるが、棒状化粧料が、直接内筒体内に位置する部分と、受皿体を介して内筒体内に位置する部分とに分かれることになるので、両部分に対する外部からの冷却力の作用程度に差が発生し、この差により成形された棒状化粧料の機械的強度が低下する、と云う不満があった。   This product can achieve the formation of the bar-shaped cosmetic and the assembly into the feeding container at the same time, so that it can obtain extremely good productivity. However, the bar-shaped cosmetic is a part located directly in the inner cylinder. And the portion located in the inner cylinder through the saucer body, a difference occurs in the degree of action of the cooling power from the outside to both portions, and the bar-shaped cosmetic machine formed by this difference There was dissatisfaction that the mechanical strength decreased.

この不満を解消する繰り出し容器の従来技術として、化粧料が接合する受皿体箇所に、この受皿体の壁を貫通する貫通孔を形成し、この貫通孔を通して受皿体内の化粧料に外部からの冷却力を有効に作用させ、また貫通孔に棒状化粧料の一部を位置させることにより、棒状化粧料が受皿体から抜けたり、折れたりするのを防止するものがある。
特開2002−000349号公報
As a conventional technique of a feeding container that eliminates this dissatisfaction, a through hole that penetrates the wall of the saucer body is formed at the location of the saucer body where cosmetics are joined, and the cosmetic in the saucer body is externally cooled through the through hole. There is one that prevents the rod-shaped cosmetic material from being pulled out or broken from the saucer body by effectively applying force and positioning a part of the rod-shaped cosmetic material in the through hole.
JP 2002-000349 A

しかしながら、受皿体の貫通孔は、受皿体の内と外の化粧料に対する冷却効率の差を緩和するのには有効に作用するのであるが、受皿体の内と外の化粧料間に発生する、冷却による収縮変形動作の時間差に起因する折れ対策は不充分である、と云う不満があった。   However, although the through-hole of the saucer body works effectively to alleviate the difference in cooling efficiency between the inside and outside of the saucer body, it occurs between the inside and outside of the saucer body. However, there was a complaint that the countermeasure against the bending due to the time difference of the contraction deformation operation due to cooling was insufficient.

すなわち、受皿体の内と外の化粧料に対する冷却固化は、受皿体に貫通孔を設けることにより、受皿体内の化粧料に対する冷却効率が高められることは確かであるものの、受皿体外の化粧料に対する冷却効率程度に達することはなく、受皿体内の化粧料の冷却固化が、受皿体外の化粧料の冷却固化よりも遅れるのはそのままであった。   In other words, the cooling and solidification of the cosmetics inside and outside the saucer body is certain to improve the cooling efficiency of the cosmetics inside the saucer body by providing a through-hole in the saucer body, but the cosmetics outside the saucer body The cooling efficiency was not reached, and it was as it was that the cooling and solidification of the cosmetic inside the saucer was delayed from the cooling and solidification of the cosmetic outside the saucer.

このように、受皿体内の化粧料が、受皿体外の化粧料に遅れて冷却固化すると、冷却固化の際に発生する収縮変形に伴う歪が、受皿体内外の化粧料の境界部分に集中して、この境界部分の化粧料の機械的強度を低下させるので、化粧料がこの境界部分で折れ易くなるのである。   In this way, when the cosmetic in the saucer cools and solidifies behind the cosmetic outside the saucer, the distortion accompanying shrinkage deformation that occurs during the cooling and solidification concentrates on the boundary portion of the cosmetic inside and outside the saucer. Since the mechanical strength of the cosmetic material at the boundary portion is lowered, the cosmetic material is easily broken at the boundary portion.

そこで、本発明は、上記した従来技術における問題点を解消すべく創案されたもので、内筒体と受皿体とを成形型面の一部として、棒状化粧料を成形と同時に収納保持するようにした繰り出し容器において、受皿体の内と外の化粧料の冷却固化に伴う収縮変形発生に時間差が生じても、この時間差により、受皿体の内と外の化粧料の境界部分の機械的強度の劣化発生を防止することを技術的課題とし、もって受皿体の内と外との化粧料の境界部分の折れ易さの発生を防止することを目的とする。   Therefore, the present invention was devised to solve the problems in the prior art described above, and the rod-shaped cosmetic is stored and held at the same time as molding, with the inner cylinder body and the tray body being part of the molding surface. Even if there is a time difference in the shrinkage deformation caused by the cooling and solidification of the cosmetics inside and outside the saucer, the mechanical strength of the boundary between the inside and outside of the saucer is caused by this time difference. It is a technical problem to prevent the occurrence of deterioration of the cosmetics, and thus it is intended to prevent the occurrence of easy breakage of the boundary portion between the inside and outside of the saucer body.

上記技術的課題を解決する本発明の内、請求項1記載の発明の手段は、
棒状化粧料を保持する受皿体を昇降変位可能に内装した内筒体に外筒体を外装し、この外筒体と内筒体との相対回動により、受皿体を昇降変位させて、化粧料を内筒体から出し入れし、化粧料を、内筒体の上半である収納筒部と、受皿体の上部部分である受筒部とを成形型の一部として冷却固化成形すると同時に、収納保持する繰り出し容器に関するものであること、
受筒部を、上部の先端筒片部と、下部の基端筒片部と、この基端筒片部と先端筒片部とを、上下に弾性変形自在な細長片で連結するばね部とから構成すること、
にある。
Among the present invention for solving the above technical problems, the means of the invention according to claim 1 is:
An outer cylinder is externally mounted on an inner cylinder body in which a saucer body holding a bar-shaped cosmetic is mounted so as to be movable up and down, and the saucer body is displaced up and down by relative rotation between the outer cylinder body and the inner cylinder body. At the same time that the material is cooled and solidified as a part of the mold, the storage cylinder part that is the upper half of the inner cylinder and the receiving cylinder part that is the upper part of the tray body, Related to a feeding container to be stored and held;
A receiving cylinder portion, an upper distal cylindrical piece portion, a lower proximal cylindrical piece portion, and a spring portion that connects the proximal cylindrical piece portion and the distal cylindrical piece portion with an elongated piece that is elastically deformable up and down; Consisting of,
It is in.

この請求項1記載の発明にあっては、受皿体の、化粧料保持部分である受筒部が、先端筒片部と、細長片で構成されたばね部と、そして基端筒片部とから構成されており、ばね部に位置した化粧料は、細長片位置する部分を除いて、受筒部内から露出することになり、その分、冷却作用を効率良く受け、受筒部内の化粧料の冷却固化を促進させることになる。   In the first aspect of the present invention, the receiving tube portion, which is the cosmetic-holding portion of the tray body, includes the tip tube piece portion, the spring portion formed of an elongated piece, and the proximal tube piece portion. The cosmetic material that is configured and is located in the spring portion is exposed from the inside of the receiving tube portion except for the portion where the elongated piece is located, and accordingly, the cooling effect is efficiently received, and the cosmetic material in the receiving tube portion is It will promote cooling and solidification.

また、ばね部に位置した化粧料は、冷却固化して、縦方向の収縮変形が発生しても、それ自体が、細長片を弾性変形させながら収縮変形するだけ、収縮変形に伴う歪をそれ自体の内部で消滅させてしまうので、この収縮変形により、上の先端筒片部内の化粧料および下の基端筒片部内の化粧料との境界部分に、機械的強度を劣化させる歪を生じさせることがない。   In addition, even if the cosmetic placed in the spring portion is cooled and solidified and contracted in the longitudinal direction, the cosmetic itself is contracted and deformed while elastically deforming the elongated strip. This shrinkage deformation causes distortion that degrades the mechanical strength at the boundary between the cosmetic material in the upper tip piece and the cosmetic material in the lower base piece. I will not let you.

さらに、ばね部の存在により、先端筒片部内および基端筒片部内に位置する化粧料の高さ幅を充分に小さくすることができるので、先端筒片部内および基端筒片部内に位置する化粧料に発生する冷却固化に伴う縦方向の収縮変形量は、きわめて小さなものとなり、これにより先端筒片部の先端縁に対向する化粧料部分に集中する、冷却固化に伴う歪を、きわめて小さいものに抑制することになる。   Further, the presence of the spring portion can sufficiently reduce the height width of the cosmetic located in the distal end tube piece portion and the proximal end tube piece portion, so that it is located in the distal end tube piece portion and the proximal end tube piece portion. The amount of shrinkage in the vertical direction accompanying the cooling and solidification generated in the cosmetics is extremely small, thereby minimizing the distortion caused by the cooling and solidification concentrated on the cosmetic part facing the tip edge of the tip tube piece. Will be suppressed to things.

請求項2記載の発明は、請求項1記載の発明の構成に、受皿体の基端筒片部に、複数の開放孔を開設した、ことを加えたものである。   Invention of Claim 2 adds the thing which opened the some open hole in the structure of the invention of Claim 1 in the base end cylinder piece part of a saucer body.

この請求項2記載の発明にあっては、化粧料の冷却固化成形に際して、基端筒片部内の化粧料に対して、開放孔を通して冷却力が効率良く作用するので、基端筒片部内の化粧料の冷却固化を、速やかにかつ確実に達成する。   In the invention according to claim 2, when the cosmetic is cooled and solidified, the cooling force acts efficiently through the opening hole on the cosmetic in the base end cylinder piece, so that the inside of the base end cylinder piece is Achieve rapid and reliable cooling and solidification of cosmetics.

請求項3記載の発明は、請求項1または2記載の発明の構成に、受皿体の先端筒片部の上端縁から下部にかけて、この先端筒片部の筒壁を切除した構成で、複数の切込み部を形成した、ことを加えたものである。   The invention described in claim 3 is the configuration of the invention described in claim 1 or 2, in which the tube wall of the tip tube piece portion is cut out from the upper edge of the tip tube piece portion of the tray body to the lower portion, This is in addition to the fact that a cut portion is formed.

この請求項3記載の発明にあっては、先端筒片部の上端縁が、複数の切込み部により、上下に大きく変化する波形状となるので、先端筒片部外に突き出た化粧料の主体部分と、先端筒片部内の化粧料部分との境界が、横一本線の直線状ではなく、波形状となるので、先端筒片部の外と内の化粧料部分の間に、冷却固化の時間差による歪が発生したとしても、この歪は、波形状に沿って分散されて、直線状に集中することがないので、先端筒片部の外と内の化粧料部分の境界の機械的強度の低下を防止することになる。   In the invention according to claim 3, the upper end edge of the tip tube piece portion has a wave shape that varies greatly in the vertical direction due to the plurality of cut portions, so that the main body of the cosmetic projecting out of the tip tube piece portion Since the boundary between the part and the cosmetic part in the tip tube piece is not a straight line of a horizontal line, but a wave shape, the cooling solidification is made between the outer part of the tip tube piece and the cosmetic part inside. Even if distortion due to time difference occurs, this distortion is distributed along the wave shape and does not concentrate in a straight line, so the mechanical strength of the boundary between the outer part and the inner part of the cosmetic part is not It will prevent the decrease of the.

請求項4記載の発明は、請求項2または3記載の発明の構成に、内周面に螺溝を刻設し、内筒体の下半であるガイド筒部に回動可能に外装して、内筒体と組合さって受皿体を昇降変位させる機能部分を構成する螺筒体の、下降限に位置した受皿体の開放孔に対向する上端部に複数の窓孔を開設した、ことを加えたものである。   According to a fourth aspect of the present invention, in the configuration of the second or third aspect of the present invention, a screw groove is formed on the inner peripheral surface, and the guide cylindrical portion, which is the lower half of the inner cylindrical body, is rotatably mounted. A plurality of window holes are opened in the upper end portion of the screw cylinder body, which constitutes a functional part that moves up and down the tray body in combination with the inner cylinder body, facing the opening hole of the tray body located at the lower limit. It is added.

この請求項4記載の発明にあっては、内筒体と受皿体と螺筒体との組合せ物を用いて化粧料の冷却固化成形を行うに際して、冷気の通過が自在な螺筒体の窓孔が、下降限に位置した、すなわち化粧料の冷却固化成形位置に位置した受皿体の開放孔に対向して位置するので、螺筒体が化粧料の冷却固化成形に不都合な断熱作用を与えることがなく、内筒体と受皿体と螺筒体との組合せ物である内装体に対して、化粧料を直接収納成形することが、不都合なく可能となる。   In this invention of Claim 4, when performing cooling solidification shaping | molding of cosmetics using the combination of an inner cylinder body, a saucer body, and a screw cylinder body, the window of the screw cylinder body through which cool air can pass freely Since the hole is located opposite to the open hole of the saucer body located at the lower limit, that is, at the cooling and solidification molding position of the cosmetic, the screw cylinder gives an unfavorable heat insulating action to the cooling and solidification molding of the cosmetic. Therefore, the cosmetic material can be directly housed and molded with respect to the interior body which is a combination of the inner cylinder body, the tray body, and the screw cylinder body.

請求項5記載の発明は、請求項4記載の発明の構成に、窓孔を、螺溝の底壁部分に、この螺溝に沿って開設した、ことを加えたものである。   The invention according to claim 5 is obtained by adding a window hole to the bottom wall portion of the screw groove along the screw groove in the configuration of the invention according to claim 4.

この請求項5記載の発明にあっては、窓孔を、螺溝の螺旋構造を損なうことなく、また螺筒体の機械的強度の不都合な低下を生じることなく形成することができ、また窓孔の開口面積を大きなものとすることが容易となる。   In the invention according to claim 5, the window hole can be formed without impairing the helical structure of the thread groove and without causing an undesired decrease in the mechanical strength of the screw body. It becomes easy to increase the opening area of the hole.

請求項6記載の発明は、請求項4記載の発明の構成に、受皿体が下降限に位置した際に、この受皿体の螺合ピンが乗り越え係止する止め片を、螺筒体の螺溝部分に設けた、ことを加えたものである。   According to a sixth aspect of the present invention, in the configuration of the fourth aspect of the invention, when the tray body is located at the lower limit, the stopper piece that the threaded pin of the tray body gets over and locks is secured to the screw of the cylindrical body. This is in addition to that provided in the groove portion.

この請求項6記載の発明にあっては、受皿体の螺合ピンに対する、螺筒体の止め片の係止作用により、螺筒体と内筒体との組合せ物に対して、受皿体を安定して下降限位置に位置させ、かつ化粧料の注入成形処理前の取扱い時においても、この状態を安定して保持することになる。   In this invention of Claim 6, a saucer body is attached with respect to the combination of a screw cylinder body and an inner cylinder body by the latching action of the stop piece of a screw cylinder body with respect to the screwing pin of a saucer body. This state is stably maintained even when the cosmetic is placed at the lower limit position and is handled before the injection molding process of the cosmetic.

本発明は、上記した構成となっているので、以下に示す効果を奏する。
請求項1記載の発明にあっては、化粧料を挿入保持する受皿体の受筒部に、挿入位置させた化粧料の大部分を、受筒部内から露出させるばね部を設けたので、受筒部内の化粧料に冷却力を効果的に作用させることができ、これにより受皿体内の化粧料の冷却固化を促進させ、受皿体外の化粧料との冷却固化速度の差を小さくして、両者間に発生する歪を充分に小さくすることができ、これにより成形される化粧料の機械的強度を高めることができる。
Since the present invention has the above-described configuration, the following effects can be obtained.
In the first aspect of the present invention, since the receiving tube portion of the receiving body for inserting and holding the cosmetic is provided with a spring portion that exposes most of the inserted cosmetic material from the receiving tube portion, Cooling power can be effectively applied to the cosmetics in the tube part, thereby promoting the cooling and solidification of the cosmetics in the saucer body, reducing the difference in the cooling and solidification rate with the cosmetics outside the saucer body, The distortion generated between them can be sufficiently reduced, and thereby the mechanical strength of the cosmetic to be molded can be increased.

また、ばね部に位置した化粧料は、冷却固化に伴う縦方向の収縮変形に伴う歪を、それ自体の変形により略消滅させてしまうので、機械的強度の安定した化粧料を成形することができる。   In addition, the cosmetics located in the spring portion substantially eliminate the distortions accompanying the vertical shrinkage deformation due to cooling and solidification by the deformation of itself, so that a cosmetic with stable mechanical strength can be formed. it can.

さらに、ばね部における化粧料の縦方向の収縮変形の自由度を高め、また、受筒部における、縦方向の収縮変形が規制される部分の高さ幅、すなわち先端筒片部および基端筒片部の高さ幅が充分に小さくなり、これにより冷却速度の差に伴う歪の発生を、充分に抑制することができ、化粧料に安定した強度を付与することができる。   Furthermore, the degree of freedom of the vertical shrinkage deformation of the cosmetic material in the spring portion is increased, and the height width of the portion of the receiving tube portion in which the vertical shrinkage deformation is restricted, that is, the distal tube piece and the proximal tube. The height width of the one part becomes sufficiently small, whereby the occurrence of distortion due to the difference in cooling rate can be sufficiently suppressed, and a stable strength can be imparted to the cosmetic.

請求項2記載の発明にあっては、基端筒片部内の化粧料に対して、開放孔を通して冷却力を効率良く作用させて、基端筒片部内の化粧料の冷却固化を、速やかにかつ確実に達成することができるので、ばね部内の化粧料との冷却速度の差を充分に小さくすることができ、これにより歪の発生を効果的に抑制することができる。   In the invention of claim 2, the cooling power is efficiently applied to the cosmetic in the base end cylinder piece through the open hole, so that the cosmetic in the base end cylinder piece is quickly cooled and solidified. And since it can achieve reliably, the difference of the cooling rate with the cosmetics in a spring part can be made small enough, and, thereby, generation | occurrence | production of distortion can be suppressed effectively.

請求項3記載の発明にあっては、先端筒片部の上端縁が、横一本線の直線状ではなく、波形状となるので、先端筒片部の外と内の化粧料部分の間に、冷却固化の時間差による歪が発生したとしても、この歪は、先端筒片部の外と内の化粧料部分の波形状となった境界に沿って分散されて、直線状に集中することがないので、歪による化粧料の機械的強度の低下を確実に防止し、化粧料に必要とする強度を付与することができる。   In the invention according to claim 3, since the upper end edge of the tip tube piece portion is not a straight line of a horizontal single line but a wave shape, it is between the outer portion and the inside cosmetic portion of the tip tube piece portion. Even if distortion due to the time difference of cooling and solidification occurs, this distortion may be distributed along the wave-shaped boundary of the cosmetic part inside and outside the tip tube piece and concentrated in a straight line. Therefore, it is possible to reliably prevent the mechanical strength of the cosmetic material from being lowered due to distortion and to impart the necessary strength to the cosmetic material.

請求項4記載の発明にあっては、螺筒体が、化粧料の冷却固化成形に不都合な断熱作用を与えることがないようにすることができるので、内筒体と受皿体と螺筒体との組合せ物である内装体に、化粧料を直接収納成形することが、何ら不都合なく、行うことができ、これにより成形された化粧料の取扱いがきわめて簡単で良好なものとすることができる。   In the invention according to claim 4, since the screw cylinder body can be prevented from giving an unfavorable heat insulating action to the cooling and solidification molding of the cosmetic, the inner cylinder body, the tray body and the screw cylinder body. It is possible to store and mold cosmetics directly on the interior body, which is a combination with the above, without any inconvenience, and the molded cosmetics can be handled very easily and satisfactorily. .

請求項5記載の発明にあっては、窓孔を、安全にかつ充分に効果を発揮できる状態で設けることができる。   In the invention of claim 5, the window hole can be provided in a state where the effect can be exhibited safely and sufficiently.

請求項6記載の発明にあっては、螺筒体と内筒体との組合せ物に対して、受皿体を安定して下降限位置に位置させ、かつ化粧料の注入成形処理前の取扱い時においても、この状態を安定して保持するので、化粧料の注入成形処理前の取扱い時において、内装体を安定して適正な状態に維持することができ、これにより化粧料の安定して良好な成形を得ることができる。   In the invention of claim 6, the tray body is stably positioned at the lower limit position with respect to the combination of the screw cylinder body and the inner cylinder body, and is handled before the injection molding process of the cosmetic. However, since this state is stably maintained, the interior body can be stably maintained in an appropriate state during handling before the injection molding process of the cosmetic, and thereby the cosmetic is stably stable. Can be obtained.

以下、本発明の一実施形態を、図面を参照しながら説明する。
本発明による繰り出し容器は、外筒体2とシール筒体12とから成る外装体1と、螺筒体17と内筒体30と受皿体36とから成る内装体16と、そしてキャップ45とから構成されている。
Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
The feeding container according to the present invention includes an exterior body 1 composed of an outer tubular body 2 and a seal tubular body 12, an interior body 16 composed of a screw tubular body 17, an inner tubular body 30 and a tray body 36, and a cap 45. It is configured.

外筒体2(以下、図2ないし図4参照)は、直線円筒形状をした本体筒3の上端に、段部9を介して縮径した短筒状の着脱筒片10を起立設して構成され、本体筒3の内周面上端部には、シール筒体12を組付けるための、複数の縦条状の係止条8と組付け周溝7とが設けられており、また内周面中央部には、多数の係止縦条4がローレット状に設けられており、そして内周面下端部には、係止周溝5と係止周条6とから成る第1係止機能部aが形成されている。   The outer cylindrical body 2 (refer to FIG. 2 to FIG. 4 below) has a short cylindrical detachable cylindrical piece 10 that is reduced in diameter via a step portion 9 erected at the upper end of a body cylinder 3 having a linear cylindrical shape. The upper end of the inner circumferential surface of the main body cylinder 3 is provided with a plurality of vertical strip-like locking strips 8 and assembly circumferential grooves 7 for assembling the seal cylinder 12. A number of locking vertical strips 4 are provided in a knurled shape at the center of the peripheral surface, and a first locking comprising a locking peripheral groove 5 and a locking peripheral strip 6 at the lower end of the inner peripheral surface. A functional part a is formed.

キャップ45の着脱部分を提供する着脱筒片10は、その外周面が正多角形状(特に、図3参照)をしており、この外周面に適当数(図示実施例の場合、3個)の押圧突片11を設けることにより、キャップ45が、回動変位不能に、外嵌組付きするようにしている。   The outer peripheral surface of the detachable cylinder piece 10 that provides the detachable portion of the cap 45 has a regular polygonal shape (in particular, see FIG. 3), and an appropriate number (three in the illustrated embodiment) is provided on the outer peripheral surface. By providing the pressing protrusion 11, the cap 45 is attached to the outer fitting so that it cannot be displaced.

シール筒体12(図5参照)は、軟質弾性材製の短円筒状体で、外周面に、外筒体2の係止条8と係止する多数のローレット状の縦条14を設け、外周面下端に、外筒体2の組付け周溝7に係合する組付き周条13を設け、そして内周面上端にシール周条15を設けて構成され、係止条8に縦条14を係止させると共に、組付け周溝7に組付き周条13を係合させて、外筒体2内に不動に組付く。   The seal cylinder 12 (see FIG. 5) is a short cylindrical body made of a soft elastic material, and is provided with a large number of knurled vertical stripes 14 to be engaged with the engagement stripes 8 of the outer cylinder 2 on the outer peripheral surface. An assembled peripheral strip 13 is provided at the lower end of the outer peripheral surface to be engaged with the assembled peripheral groove 7 of the outer cylindrical body 2, and a seal peripheral strip 15 is provided at the upper end of the inner peripheral surface. 14 is latched, and the assembled circumferential groove 13 is engaged with the assembled circumferential groove 7 so as to be immovably assembled in the outer cylindrical body 2.

内装体16を構成する螺筒体17(以下、図6ないし図8参照)は、直線円筒状の本体部18の内周面に、下端部の溝底面(図6参照)または溝壁面(図7参照)に突出高さの低い止め片20を突設した二条の螺溝19を刻設し、また本体部18の外周面に、外筒体2の係止縦条4に係止する複数の縦突条21を設け、本体部18の下端部を組付き部23として構成されている。   A screw cylinder 17 (refer to FIGS. 6 to 8) constituting the inner body 16 is formed on the inner peripheral surface of the linear cylindrical main body 18 on the groove bottom surface (see FIG. 6) or groove wall surface (see FIG. 6). 7), a plurality of threaded grooves 19 provided with a stopper 20 having a low projecting height are engraved, and a plurality of pieces are engaged on the outer peripheral surface of the main body 18 with the engaging vertical stripes 4 of the outer cylindrical body 2. The vertical protrusion 21 is provided, and the lower end portion of the main body portion 18 is configured as an assembly portion 23.

本体部18の上端部には、螺溝19の底壁に、螺溝19に沿って、螺溝19よりもわずかに幅の小さい複数の窓孔22が開設されているが、この窓孔22が螺溝19の底壁に、螺溝19に沿って成形されていることにより、窓孔22を開設することによる、螺筒体17の機械的強度の低下を充分に小さくし、窓孔22が螺溝19よりも小さい幅となっていることにより、螺溝19の螺旋機能に支障を与えないようにしている。   A plurality of window holes 22 having a slightly smaller width than the screw groove 19 are formed along the screw groove 19 on the bottom wall of the screw groove 19 at the upper end of the main body 18. Is formed in the bottom wall of the screw groove 19 along the screw groove 19 to sufficiently reduce the decrease in the mechanical strength of the screw body 17 due to the opening of the window hole 22. Is smaller than the screw groove 19 so that the helix function of the screw groove 19 is not hindered.

組付き部23は、その外周面、すなわち本体部18の外周面下端部に、第1係止機能部aと係止する、係止突片24と係止凹溝25とから成る第2係止機能部bを形成すると共に、内鍔状の底鍔片26を介して短円筒状の内筒片27を垂下連設し、底鍔片26および内筒片27を含めた全体に、複数(図示実施例の場合、2個)の割り溝29を設けて構成されている。   The assembled portion 23 has a second engagement made of a locking protrusion 24 and a locking groove 25 that locks with the first locking function portion a at the outer peripheral surface thereof, that is, the lower end portion of the outer peripheral surface of the main body portion 18. In addition to forming the stop function portion b, a short cylindrical inner cylinder piece 27 is provided in a suspended manner via the inner flange-shaped bottom rod piece 26, and a plurality of parts are provided on the entire surface including the bottom flange piece 26 and the inner cylinder piece 27. (In the case of the illustrated embodiment, two split grooves 29 are provided).

この組付き部23を構成する内筒片27は、その外周面を、上方に拡径したテーパ面状の斜面28としており、この斜面28は、その下端の径寸法と上端の径寸法との差が、両係止機能部a、bの係止高さ寸法の2倍以上となるように、高さおよび傾斜角度が設定されている。   The outer peripheral surface of the inner cylinder piece 27 constituting the assembled portion 23 is a tapered surface-shaped inclined surface 28 whose diameter is increased upward, and the inclined surface 28 has a lower end diameter dimension and an upper end diameter dimension. The height and the inclination angle are set so that the difference is at least twice the locking height dimension of both the locking function portions a and b.

内装体16の構成部材である内筒体30(図9参照)は、その全体が金属により成形されて(合成樹脂で成形されても良い)おり、化粧料Kの成形型面を提供すると共に、この化粧料Kを収納する直線円筒状の収納筒部31の下端に、外方に突出する係止突部35を介して、その略全高さ範囲に亘ってガイド孔33を形成したガイド筒部32を垂下連設して構成されている。   The inner cylinder 30 (see FIG. 9), which is a constituent member of the interior body 16, is entirely molded of metal (may be molded of synthetic resin), and provides a mold surface for the cosmetic K. A guide cylinder in which a guide hole 33 is formed at a lower end of a linear cylindrical storage cylinder 31 for storing the cosmetic material K through a locking projection 35 protruding outwards over substantially the entire height range. The part 32 is configured to be continuously arranged in a suspended manner.

この内筒体30のガイド孔33は、ガイド筒部32の下端縁に達する割り溝状となっており、これにより受皿体36の挿入組付けを可能としているが、この受皿体36の妄りな抜け出しを防止すべく、ガイド孔33の下端部には、ガイド孔33の幅を狭めて、受皿体36の螺合ピン38の抜け出しを阻止する抜け止め突片34が突設されている。   The guide hole 33 of the inner cylindrical body 30 has a split groove shape that reaches the lower end edge of the guide cylindrical portion 32, thereby enabling insertion and assembly of the tray body 36. In order to prevent the guide hole 33 from slipping out, a stopper protrusion 34 is provided at the lower end portion of the guide hole 33 to narrow the width of the guide hole 33 and prevent the screw pin 38 of the tray body 36 from slipping out.

また、収納筒部31の外周面には、シール筒体12のシール周条15が密に摺接しているので、内筒体30の螺筒体17に対する回動動作に、適当な抵抗を与えることになり、これにより化粧料Kの繰り出し動作に、好ましい使用感を与えることができる。   In addition, since the seal periphery 15 of the seal cylinder 12 is in close sliding contact with the outer peripheral surface of the storage cylinder 31, an appropriate resistance is given to the rotation operation of the inner cylinder 30 with respect to the screw cylinder 17. As a result, a favorable feeling of use can be given to the feeding operation of the cosmetic K.

内装体16の構成部材である受皿体36(以下、図10ないし図13参照)は、内筒体30内に摺動昇降変位可能に挿入する直線円筒状体の外周面下端部に、内筒体30のガイド孔33を貫いて螺筒体17の螺溝19に螺合する一対の螺合ピン38を突設して構成されており、この螺合ピン38は、受皿体36が内装体16の下降限に位置した際に、螺筒体17の止め片20に乗り越え係止する。   A tray body 36 (hereinafter, see FIG. 10 to FIG. 13), which is a constituent member of the interior body 16, is provided at the lower end of the outer peripheral surface of the linear cylindrical body that is slidably moved up and down into the inner cylinder body 30. A pair of screwing pins 38 that project through the guide hole 33 of the body 30 and screw into the screw groove 19 of the screw cylinder body 17 are provided so as to protrude from the receiving body 36. When it is positioned at the lower limit of 16, it climbs over and engages with the stop piece 20 of the screw body 17.

この受皿体36は、下降限に位置した状態で、その上端部分を螺筒体17内から上方に突出させる程度の高さを有しており、螺筒体17の窓孔22に対向する箇所を下位に含んだ上部を、化粧料Kを挿入保持する受筒部39とし、残部を、内筒体30内における受皿体36の姿勢を、一定に安定して維持する組付き筒部37としている。   The tray body 36 has a height that allows the upper end portion to protrude upward from the inside of the screw cylinder body 17 in a state where the tray body 36 is located at the lower limit, and is a portion facing the window hole 22 of the screw cylinder body 17. The upper part including the lower part is a receiving cylinder part 39 for inserting and holding the cosmetic K, and the remaining part is an assembled cylinder part 37 for maintaining the posture of the receiving body 36 in the inner cylinder 30 stably and stably. Yes.

受筒部39は、上から順に、先端筒片部40とばね部42と基端筒片部43とに区画されており、ばね部42は、上下方向に弾性変形自在な数本(図示実施例の場合、2本)の螺旋状に曲がった細長片で構成されているので、先端筒片部40と基端筒片部43とは、この数本の細長片で連結されていることになる。   The receiving tube portion 39 is divided into a top tube piece 40, a spring portion 42, and a proximal tube piece portion 43 in order from the top, and several spring portions 42 are elastically deformable in the vertical direction (shown in the illustrated embodiment). In the case of the example, since it is composed of two elongated strips bent in a spiral shape, the distal end tubular piece 40 and the proximal end tubular piece 43 are connected by these several elongated pieces. Become.

このように、ばね部42は数本の細長片だけで構成されているので、このばね部42に位置した化粧料は、細長片に対向する部分を除く全ての部分で、受皿体36から露出することになる。   Thus, since the spring part 42 is comprised only by several strips, the cosmetics located in this spring part 42 are exposed from the saucer body 36 in all parts except the part which opposes a strip. Will do.

なお、ばね部42を構成する細長片は、その形状が螺旋状に曲がった細長片に限定されることはなく、くの字状に折れ曲がったまたは円弧状に曲がった細長片であっても良く、要は、先端筒片部40と基端筒片部43とを、安定に連結しながら、上下方向に弾性変形できるものであれば良い。   The elongated piece constituting the spring portion 42 is not limited to the elongated piece bent in a spiral shape, and may be an elongated piece bent in a dogleg shape or bent in an arc shape. In short, what is necessary is that it can be elastically deformed in the vertical direction while stably connecting the distal end tubular piece 40 and the proximal end tubular piece 43.

先端筒片部40は、その上端縁から下部にかけて、複数のV字状をした切込み部41を、周方向に沿って連続形成しており、これにより先端筒片部40の上端縁、すなわち受皿体36の上端縁を、横一直線状ではなく、三角波形状に成形している。   The tip tube piece 40 has a plurality of V-shaped cut portions 41 continuously formed along the circumferential direction from the upper end edge to the lower portion thereof, whereby the upper end edge of the tip tube piece portion 40, that is, a saucer. The upper edge of the body 36 is shaped into a triangular wave shape, not a horizontal straight line.

基端筒片部43には、受皿体36が下降限に位置した状態で、螺筒体17に形成された窓孔22に対向する位置に複数の開放孔44が開設されており、この基端筒片部43内の化粧料Kに対して、窓孔22を通過してきた冷気の冷却力が、開放孔44を通して有効に作用するようにしている。   A plurality of open holes 44 are formed in the base end cylinder piece 43 at positions facing the window holes 22 formed in the screw cylinder body 17 with the tray body 36 positioned at the lower limit. The cooling power of the cold air that has passed through the window hole 22 acts effectively on the cosmetic K in the end tube piece 43 through the opening hole 44.

有頂円筒形状をしたキャップ45(図1参照)は、下端開口部の内周面を、外筒体2の着脱筒片10の外周面と同じ正多角形状としており、これにより外筒体2に対して回動不能に嵌装することになり、また内筒体29の収納筒部30に密に外嵌する、有頂円筒形状をしたシール筒片46を内装固定している。   The cap 45 (see FIG. 1) having a top cylindrical shape has an inner peripheral surface of the lower end opening that is the same polygonal shape as the outer peripheral surface of the removable cylindrical piece 10 of the outer cylindrical body 2. A seal cylinder piece 46 having a top cylindrical shape that is tightly fitted to the storage cylinder portion 30 of the inner cylinder 29 is fixed internally.

このように、シール筒片46が内筒体30に密に外嵌するので、キャップ45が外筒体2に対して空転可能に組付くものであると、キャップ45が組付いた状態で、外筒体2と内筒体30との間に相対回動が発生し、これにより収納されている化粧料Kが不正に繰り出されて、その先端をキャップ45に突き当てる“天突き”事故が発生することになるが、キャップ45は外筒体2に空転不能に組付くので、このような事故の発生する恐れはない。   Thus, since the seal cylinder piece 46 is tightly fitted to the inner cylinder 30, the cap 45 is assembled to the outer cylinder 2 so as to be able to idle. A relative rotation occurs between the outer cylindrical body 2 and the inner cylindrical body 30, so that the cosmetic K stored therein is illegally fed out and an “accumulation” accident occurs in which the tip of the cosmetic K strikes the cap 45. However, since the cap 45 is assembled to the outer cylinder 2 so as not to idle, there is no possibility of such an accident occurring.

図14は、内装体16を利用した、化粧料Kの底充填方式による冷却固化成形を説明するためのもので、受皿体36を下降限に位置させ、内筒体30の収納筒部31の上端を、型蓋47を外嵌組付けして密に閉鎖した内装体16を逆立姿勢に保持し、螺筒体17の内筒片27で開放された下端から、加熱溶融化粧料Kを内装体16内に、この加熱溶融化粧料Kの液面が、開放孔44を開設した受皿体36の基端筒片部43の下端(図14においては、上端)に達するまで定量注入する。   FIG. 14 is a diagram for explaining the cooling and solidification molding by the bottom filling method of the cosmetic material K using the interior body 16. The tray body 36 is positioned at the lower limit, and the storage cylinder portion 31 of the inner cylinder body 30 is arranged. The interior body 16 tightly closed by externally assembling the mold lid 47 is held in an inverted posture, and the heated and melted cosmetic K is applied from the lower end opened by the inner cylinder piece 27 of the screw cylinder body 17. A fixed amount is poured into the interior body 16 until the liquid level of the heat-melting cosmetic material K reaches the lower end (upper end in FIG. 14) of the base end cylinder piece 43 of the tray body 36 in which the opening hole 44 is opened.

内装体16内への加熱溶融化粧料Kの定量注入が完了したならば、この内装体16全体を冷却して化粧料Kを固化させるが、この際、図14から明らかなように、螺筒体17に対向して位置する受皿体36の基端筒片部43に開設された開放孔44は、螺筒体17の窓孔22に対向して位置するので、螺筒体17に邪魔されることなく、窓孔22を通して加熱溶融化粧料Kに冷却力を伝えることになる。   When the fixed injection of the heat-melted cosmetic material K into the interior body 16 is completed, the entire interior body 16 is cooled to solidify the cosmetic material K. At this time, as apparent from FIG. The opening hole 44 formed in the base end cylinder piece 43 of the saucer body 36 located opposite to the body 17 is located opposite to the window hole 22 of the screw body 17, so that it is obstructed by the screw body 17. Without passing through, the cooling power is transmitted to the heated and melted cosmetic K through the window hole 22.

化粧料Kの成形および収納が完了したならば、図15に示すように、型蓋47を外した内装体16を外装体1に下方から挿入し、第1係止機能部aと第2係止機能部bとを係止させて、繰り出し容器の組立てを達成する。   When the molding and storage of the cosmetic K are completed, as shown in FIG. 15, the interior body 16 with the mold lid 47 removed is inserted into the exterior body 1 from below, and the first locking function part a and the second engagement part are inserted. The stop function part b is locked to achieve assembly of the feeding container.

なお、図16は、外装体1と内装体16との分別を説明するためのもので、内筒片27の斜面28下端の径寸法と等しい内径寸法を有する円筒形状をした組外し治具Mを押し上げて、内筒片27に強引に外嵌させると、割り溝29の形成されている組付き部23は、縮径方向に撓み弾性変形(図16中、二点鎖線図示)するので、第1係止機能部aと第2係止機能部bの係止が解除される。   FIG. 16 is for explaining the separation between the exterior body 1 and the interior body 16, and the cylindrical assembly / disassembly jig M having an inner diameter dimension equal to the diameter dimension of the lower end of the inclined surface 28 of the inner cylinder piece 27. Is pushed and externally forcibly fitted to the inner cylinder piece 27, the assembled portion 23 in which the split groove 29 is formed is bent and elastically deformed (illustrated by a two-dot chain line in FIG. 16). The locking of the first locking function part a and the second locking function part b is released.

この状態のまま、外装体1に対して内装体16を引き下げれば、内装体16は外装体1内から抜け出され、外装体1と内装体16との分離が達成される。   If the interior body 16 is pulled down with respect to the exterior body 1 in this state, the interior body 16 is pulled out from the interior of the exterior body 1, and separation of the exterior body 1 and the interior body 16 is achieved.

なお、上記した実施例は、底充填方式による化粧料Kの成形収納に関して説明したが、受皿体36の上端部の下端に隔壁を設ける等の手段により、受皿体36の上端部の下端に、注入充填される加熱溶融化粧料を収納する空間部分の底機能部を設けることにより、上充填方式による化粧料Kの成形収納の実施が、可能であることは云うまでもない。   In addition, although the above-mentioned Example demonstrated the shaping | molding accommodation of the cosmetics K by a bottom filling system, by means, such as providing a partition in the lower end of the upper end part of the saucer body 36, the lower end of the upper end part of the saucer body 36, Needless to say, it is possible to carry out the molding and storing of the cosmetic K by the top filling method by providing the bottom function part of the space for storing the hot-melt cosmetic to be poured and filled.

本発明の一実施例を示す縦断面図で、右半分は非繰り出し状態図、左半分は繰り出し状態図である。In the longitudinal cross-sectional view which shows one Example of this invention, the right half is a non-feeding-out state figure, and the left half is a drawing-out state figure. 図1に示した実施例の、外筒体を示す半縦断拡大正面図である。FIG. 2 is an enlarged front view of a half longitudinal section showing an outer cylindrical body of the embodiment shown in FIG. 1. 図2に示した外筒体の、平面図である。It is a top view of the outer cylinder shown in FIG. 図2に示した外筒体の、底面図である。It is a bottom view of the outer cylinder shown in FIG. 図1に示した実施例の、シール筒体を示す半縦断拡大正面図である。FIG. 2 is an enlarged front view of a half longitudinal section showing a seal cylinder of the embodiment shown in FIG. 1. 図1に示した実施例の、螺筒体を示す不規則半縦断した拡大正面図である。FIG. 2 is an enlarged front view of the embodiment shown in FIG. 螺筒体の他の実施例を示す、不規則半縦断した拡大正面図である。It is the enlarged front view which carried out the irregular half vertical cross-section which shows the other Example of a screw cylinder. 図6に示した螺筒体の、平面図である。It is a top view of the screw cylinder shown in FIG. 図6に示した螺筒体の、底面図である。It is a bottom view of the screw cylinder shown in FIG. 図1に示した実施例の、内筒体を示す縦断正面図である。It is a vertical front view which shows the inner cylinder of the Example shown in FIG. 図1に示した実施例の、受皿体の拡大正面図である。It is an enlarged front view of the saucer body of the Example shown in FIG. 図10に示した受皿体の、拡大側面図である。It is an enlarged side view of the saucer body shown in FIG. 図10に示した受皿体の、縦断拡大側面図である。It is a vertical expanded side view of the saucer shown in FIG. 図10に示した受皿体の、図11中A−A線に沿って切断矢視した平断面図である。It is the plane sectional view which looked at the saucer shown in FIG. 10 along the AA line in FIG. 化粧料の冷却成形処理の一例を示す、拡大縦断面図である。It is an expanded longitudinal cross-sectional view which shows an example of the cooling molding process of cosmetics. 外装体と内装体との組付け状態を示す、説明図である。It is explanatory drawing which shows the assembly | attachment state of an exterior body and an interior body. 外装体と内装体との分離処理の一例を示す、要部拡大説明図である。It is principal part expansion explanatory drawing which shows an example of the separation process of an exterior body and an interior body.

符号の説明Explanation of symbols

1 ; 外装体
2 ; 外筒体
3 ; 本体筒
4 ; 係止縦条
a ; 第1係止機能部
5 ; 係止周溝
6 ; 係止周条
7 ; 組付け周溝
8 ; 係止条
9 ; 段部
10 ; 着脱筒片
11 ; 押圧突片
12 ; シール筒体
13 ; 組付き周条
14 ; 縦条
15 ; シール周条
16 ; 内装体
17 ; 螺筒体
18 ; 本体部
19 ; 螺溝
20; 止め片
21 ; 縦突条
22 ; 窓孔
23 ; 組付き部
b ; 第2係止機能部
24 ; 係止突片
25 ; 係止凹溝
26 ; 底鍔片
27 ; 内筒片
28 ; 斜面
29 ; 割り溝
30 ; 内筒体
31 ; 収納筒部
32 ; ガイド筒部
33 ; ガイド孔
34 ; 抜け止め突片
35 ; 係止突部
36 ; 受皿体
37 ;組付き筒部
38 ; 螺合ピン
39 ; 受筒部
40 ; 先端筒片部
41 ; 切込み部
42 ; ばね部
43 ; 基端筒片部
44 ; 開放孔
45 ; キャップ
46 ; シール筒片
47 ; 型蓋
K ; 化粧料
M ; 組外し治具
DESCRIPTION OF SYMBOLS 1; Exterior body 2; Outer cylindrical body 3; Main body cylinder 4; Locking vertical line a; First locking function part 5; Locking circumferential groove 6; Locking circumferential groove 7; Assembly circumferential groove 8; 9; Step 10; Detachable cylinder piece 11; Pressing protrusion 12; Seal cylinder 13; Assembly circumference 14; Longitudinal stripe 15; Seal circumference 16; Interior body 17; Screw cylinder 18; Main body 19; Groove 20; Stop piece 21; Vertical protrusion 22; Window hole 23; Assembly portion b; Second locking function portion 24; Locking protrusion 25; Locking groove 26; Bottom flange piece 27; Inner tube piece 28 Slope 29; Split groove 30; Inner cylinder 31; Storage cylinder part 32; Guide cylinder part 33; Guide hole 34; Retaining protrusion 35; Locking protrusion 36; Sauce body 37; Assembly cylinder part 38; Joint pin 39; Receiving tube portion 40; Tip tube piece portion 41; Cut portion 42; Spring portion 43; End tube piece 44; open hole 45; cap 46; tubular sealing strip 47; -type lid K; cosmetic M; Kumihazushi jig

Claims (6)

棒状化粧料(K)を保持する受皿体(36)を昇降変位可能に内装した内筒体(30)に外筒体(2)を外装し、該外筒体(2)と内筒体(30)との相対回動により、前記受皿体(36)を昇降変位させて、前記化粧料(K)を内筒体(30)から出し入れし、前記化粧料(K)を、前記内筒体(30)の上半である収納筒部(31)と、前記受皿体(36)の上部部分である受筒部(39)とを成形型の一部として冷却固化成形すると同時に、収納保持する繰り出し容器において、前記受筒部(39)を、上部の先端筒片部(40)と、下部の基端筒片部(43)と、該基端筒片部(43)と先端筒片部(40)とを、上下に弾性変形自在な細長片で連結するばね部(42)とから構成した繰り出し容器。   The outer cylindrical body (2) is externally mounted on the inner cylindrical body (30) in which the saucer body (36) holding the bar-shaped cosmetic (K) is mounted so as to be movable up and down, and the outer cylindrical body (2) and the inner cylindrical body ( 30), the tray (36) is displaced up and down by relative rotation with the inner cylinder (30), and the cosmetic (K) is inserted into and removed from the inner cylinder (30). (30) The storage cylinder part (31) which is the upper half of the container and the receiving cylinder part (39) which is the upper part of the saucer body (36) are cooled and solidified as a part of the molding die and simultaneously stored and held. In the feeding container, the receiving tube portion (39) includes an upper distal tube piece portion (40), a lower proximal tube piece portion (43), and the proximal tube piece portion (43) and the distal tube piece portion. (40) and a spring portion (42) that is connected to the upper and lower portions by an elongated elastically deformable strip. 受皿体(36)の基端筒片部(43)に、複数の開放孔(44)を開設した請求項1記載の繰り出し容器。   The feeding container according to claim 1, wherein a plurality of open holes (44) are formed in the base end cylinder piece (43) of the tray (36). 受皿体(36)の先端筒片部(40)の上端縁から下部にかけて、該先端筒片部(40)の筒壁を切除した構成で、複数の切込み部(41)を形成した請求項1または2記載の繰り出し容器。   A plurality of cut portions (41) are formed in a configuration in which a cylindrical wall of the tip tube piece portion (40) is cut from the upper end edge to the lower portion of the tip tube piece portion (40) of the saucer body (36). Or the feeding container of 2. 内周面に螺溝(19)を刻設し、内筒体(30)の下半であるガイド筒部(32)に回動可能に外装して、前記内筒体(30)と組合さって受皿体(36)を昇降変位させる機能部分を構成する螺筒体(17)の、下降限に位置した前記受皿体(36)の開放孔(44)に対向する上端部に複数の窓孔(22)を開設した請求項2または3記載の繰り出し容器。   A thread groove (19) is formed on the inner peripheral surface, and is rotatably mounted on the guide cylinder portion (32), which is the lower half of the inner cylinder (30), and combined with the inner cylinder (30). A plurality of window holes in the upper end portion of the screw body (17), which constitutes a functional part for moving the tray body (36) up and down, facing the opening hole (44) of the tray body (36) located at the lower limit. The feeding container according to claim 2 or 3, wherein (22) is established. 窓孔(22)を、螺溝(19)の底壁部分に、該螺溝(19)に沿って開設した請求項4記載の繰り出し容器。   The feeding container according to claim 4, wherein the window hole (22) is formed in the bottom wall portion of the screw groove (19) along the screw groove (19). 受皿体(36)が下降限に位置した際に、該受皿体(36)の螺合ピン(38)が乗り越え係止する止め片(20)を、螺筒体(17)の螺溝(19)部分に設けた請求項4記載の繰り出し容器。   When the saucer body (36) is positioned at the lower limit, the stopper piece (20) that the screwing pin (38) of the saucer body (36) gets over and locks the screw groove (19 The feeding container according to claim 4 provided in the portion.
JP2003301758A 2003-08-26 2003-08-26 Feeding container Expired - Fee Related JP4301364B2 (en)

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JP4301364B2 true JP4301364B2 (en) 2009-07-22

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