JP2011152992A - Powder and grain quantitative discharging apparatus - Google Patents

Powder and grain quantitative discharging apparatus Download PDF

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JP2011152992A
JP2011152992A JP2010015704A JP2010015704A JP2011152992A JP 2011152992 A JP2011152992 A JP 2011152992A JP 2010015704 A JP2010015704 A JP 2010015704A JP 2010015704 A JP2010015704 A JP 2010015704A JP 2011152992 A JP2011152992 A JP 2011152992A
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granular material
powder
opening
closing member
discharger
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Akihito Nomura
明史 野村
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ENUTEKKU KK
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ENUTEKKU KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a powder and grain quantitative discharging apparatus easily and reliably discharging a desired amount of powder and grains stored in a powder and grain container such as a powder milk can. <P>SOLUTION: A powder and grain guiding member 27 including: a guide plate 271 sliding powder and grains discharged from the powder and grain container obliquely downward and guiding the powder and grains to the vicinity of a powder and grain receiving port formed on the bottom plate of a powder and grain receiving member 22; and a guide plate supporting portion supporting the guide plate 271 obliquely while the guide plate 271 is floated from the upper surface of a powder and grain receiving port opening and closing member 24, is provided inside the powder and grain receiving member 22 having a bottomed cylindrical shape stored in a quantitative discharging apparatus body 21 having a cylindrical portion outwardly fitted to an opening-side end of the powder and grain container. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を哺乳瓶などの別容器に供給するときに用いられる粉粒体定量排出器に関する。   TECHNICAL FIELD The present invention relates to a powder quantitative discharger used when supplying powder contained in a powder container such as a powdered milk can to another container such as a baby bottle.

粉ミルク缶に収容された粉ミルクは、通常、粉ミルク缶に付属する計量スプーンにより粉ミルク缶から取り出されて哺乳瓶などの別容器に供給される。この場合、哺乳瓶などの別容器に供給される粉ミルクの供給量が多くなると、計量スプーンによる粉ミルクの取出し回数が十数回にも及ぶことがあるため、粉ミルクの取出し回数を誤ってしまうなどの難点がある。   The powdered milk accommodated in the powdered milk can is usually taken out from the powdered milk can by a measuring spoon attached to the powdered milk can and supplied to another container such as a baby bottle. In this case, if the amount of powdered milk supplied to a separate container such as a baby bottle increases, the number of powdered milks taken out by the measuring spoon may reach dozens of times. There are difficulties.

そこで、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を所望の量だけ定量排出する粉粒体定量排出器として、粉粒体収容容器の開口部に固定される肉厚の円板からなる固定キャップと、該固定キャップの粉粒体収容容器側の面上に摺動回転可能に配設される回転円板と、粉粒体収容容器と逆側の固定キャップの面上に摺動回転可能に配設される回転キャップと、回転円板及び回転キャップを回転方向に一体とする回転力伝達手段と、固定キャップの周縁部を上下に貫通する粉粒体貯留孔と、回転円板に粉粒体貯留孔と重なり合うように開設される粉粒体取出孔と、回転キャップに粉粒体貯留孔に重なり合い且つ粉粒体取出孔から周方向に少なくとも粉粒体貯留孔の幅以上に離隔した位置に開設される粉粒体排出孔と、固定キャップに対する回転円板及び回転キャップの回転範囲を少なくとも粉粒体貯留孔と粉粒体取出孔とが重なり合う粉粒体取出位置及び粉粒体排出孔と粉粒体貯留孔とが重なり合う粉粒体排出位置を含む範囲内に制限する回転範囲規制手段とを備えたものが提案されている(例えば、特許文献1参照)。   Therefore, a thick circle fixed to the opening of the powder container as a powder quantitative discharger that quantitatively discharges the powder contained in a powder container such as a powdered milk can. A fixed cap made of a plate, a rotating disk disposed on the surface of the fixed cap on the particle storage container side so as to be slidable and rotatable, and on the surface of the fixed cap on the opposite side of the powder storage container A rotating cap that is arranged to be slidably rotatable, a rotational force transmitting means that integrates the rotating disk and the rotating cap in the rotation direction, a granular material storage hole that vertically penetrates the peripheral edge of the fixed cap, and a rotation The particle take-out hole established so as to overlap the particle storage hole in the disc, and the width of at least the particle storage hole in the circumferential direction from the particle take-out hole and overlapping the powder storage hole in the rotating cap In the granular material discharge hole opened in the position far apart as described above and the fixed cap The rotating range of the rotating disc and the rotating cap is at least the granular material extraction position where the granular material storage hole and the granular material extraction hole overlap, and the granular material discharge where the granular material discharge hole and the granular material storage hole overlap. There has been proposed one provided with a rotation range restricting means for limiting within a range including the position (see, for example, Patent Document 1).

特許第3487647号公報Japanese Patent No. 3487647

このような粉粒体定量排出器によると、粉粒体収容容器に収容された粉ミルクなどの粉粒体を哺乳瓶などの別容器に所望の量だけ供給することができるが、次のような問題点を有していた。すなわち、上述した粉粒体定量排出器では、粉粒体収容容器から排出された粉粒体が粉粒体収容容器に収容された粉粒体の重みにより回転円板の上面に押し付けられることによって回転円板の上面で円柱状に固形化することがある。このため、粉粒体収容容器から排出された粉粒体を回転円板に開設された粉粒体取出孔から固定キャップに開設された粉粒体貯留孔に所定の量だけ落し込むことが困難となり、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を所望の量だけ定量排出することができなくなる場合があった。
本発明は、上述した問題点に鑑みてなされたもので、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を所望の量だけ簡単かつ確実に定量排出することのできる粉粒体定量排出器を提供することを目的とするものである。
According to such a powder quantitative discharger, it is possible to supply a desired amount of powder such as milk powder contained in the powder container to a separate container such as a baby bottle. Had problems. In other words, in the above-mentioned granular material quantitative discharger, the granular material discharged from the granular material storage container is pressed against the upper surface of the rotating disk by the weight of the granular material stored in the granular material storage container. The upper surface of the rotating disk may solidify in a cylindrical shape. For this reason, it is difficult to drop the granular material discharged from the granular material container from the granular material outlet hole provided in the rotating disk by a predetermined amount into the granular material storage hole provided in the fixed cap. Thus, there may be a case where it is impossible to quantitatively discharge a desired amount of the powder contained in a powder container such as a powdered milk can.
The present invention has been made in view of the above-described problems, and can be easily and surely discharged quantitatively by a desired amount of powder contained in a powder container such as a powdered milk can. The object is to provide a metering discharger.

上記課題を解決するために、本発明の請求項1に係る発明は、粉粒体取出し用の開口部を一端に有する粉粒体収容容器の開口側端部に外嵌する円筒部を有する定量排出器本体と、該定量排出器本体の前記円筒部の内側に収納された有底円筒状の粉粒体受け部材と、該粉粒体受け部材の底板部に形成された粉粒体受入口から粉粒体を受け入れて所定の量だけ貯蔵する粉粒体貯蔵室を前記粉粒体受け部材の下面側に形成する粉粒体貯蔵室形成部材と、前記粉粒体受入口を前記粉粒体受け部材の底面側で開閉する円板状の粉粒体受入口開閉部材と、前記粉粒体貯蔵室の下端に形成された粉粒体排出口を開閉する粉粒体排出口開閉部材と、前記粉粒体受入口開閉部材と前記粉粒体排出口開閉部材とを前記粉粒体受け部材の中心軸回りに回動操作して前記定量排出器本体の下端部に形成された粉粒体排出シュートから粉粒体を定量排出する回動操作子と、を備えてなる粉粒体定量排出器であって、前記粉粒体収容容器から排出された粉粒体を斜め下方に滑らせて前記粉粒体受入口の近傍に案内する案内板部と、該案内板部を前記粉粒体受入口開閉部材の上面から浮かせた状態で斜めに支持する案内板支持部とを有する粉粒体案内部材が、前記粉粒体受け部材の内側に設けられていることを特徴とする。   In order to solve the above-mentioned problem, the invention according to claim 1 of the present invention is a fixed quantity having a cylindrical portion that fits externally at the opening side end portion of a granular material container having an opening portion for taking out the granular material at one end. A discharger body, a bottomed cylindrical powder body receiving member housed inside the cylindrical part of the fixed volume discharger body, and a powder body inlet formed in a bottom plate portion of the powder body receiving member A granular material storage chamber forming member that forms a granular material storage chamber for receiving and storing a predetermined amount of granular material from the lower surface side of the granular material receiving member, and the granular material receiving port is the granular material A disc-shaped granular material inlet opening and closing member that opens and closes on the bottom side of the body receiving member, and a granular material outlet opening and closing member that opens and closes the granular material outlet formed at the lower end of the granular material storage chamber The granular material inlet opening / closing member and the granular material outlet opening / closing member are rotated around the central axis of the granular material receiving member before A powder particle quantitative discharger comprising: a rotary operation element for quantitatively discharging powder particles from a powder particle discharge chute formed at a lower end portion of a fixed amount discharger body, wherein the powder particle container A guide plate portion that slides the granular material discharged from the slanting downward and guides it to the vicinity of the granular material receiving port, and the guide plate portion is floated from the upper surface of the granular material receiving port opening / closing member A granular material guide member having a guide plate support portion that supports diagonally is provided inside the granular material receiving member.

本発明の請求項2に係る発明は、請求項1に記載の粉粒体定量排出器において、前記案内板部が、前記粉粒体受入口開閉部材と同じ直径で半円形状に形成されていることを特徴とする。
本発明の請求項3に係る発明は、請求項2に記載の粉粒体定量排出器において、前記粉粒体受け部材が、前記案内板部の周縁部に形成された突起片と係合して前記粉粒体案内部材の回動を規制する回り止め凹部を有することを特徴とする。
The invention according to claim 2 of the present invention is the powder fixed amount ejector according to claim 1, wherein the guide plate portion is formed in a semicircular shape with the same diameter as the powder particle inlet opening / closing member. It is characterized by being.
According to a third aspect of the present invention, in the granular material quantitative discharger according to the second aspect, the granular material receiving member is engaged with a protruding piece formed on a peripheral portion of the guide plate portion. And having a non-rotating recess for restricting the rotation of the granular material guide member.

本発明の請求項4に係る発明は、請求項1〜3のいずれか一項に記載の粉粒体定量排出器において、前記案内板支持部が、前記粉粒体受入口開閉部材の中心部から上方に突出する軸部と摺動自在に嵌合する内径で半円筒状に形成されていることを特徴とする。
本発明の請求項5に係る発明は、請求項4に記載の粉粒体定量排出器において、前記粉粒体受入口開閉部材が、前記軸部から前記粉粒体受け部材の外径方向に突出する粉粒体攪拌羽根を有することを特徴とする。
The invention according to claim 4 of the present invention is the powder fixed amount ejector according to any one of claims 1 to 3, wherein the guide plate support portion is a central portion of the powder particle inlet opening / closing member. It is characterized by being formed in a semi-cylindrical shape with an inner diameter that is slidably fitted to a shaft portion that protrudes upward from the shaft.
According to a fifth aspect of the present invention, in the particulate matter quantitative discharger according to the fourth aspect, the particulate matter inlet opening / closing member extends from the shaft portion to the outer diameter direction of the particulate matter receiving member. It has the protruding powder-particle stirring blade.

本発明に係る粉粒体定量排出器によれば、粉粒体収容容器から粉粒体受け部材の内側に排出された粉粒体の大部分が粉粒体案内部材の案内板部を滑り落ちて粉粒体受入口の近傍に案内されることになり、これにより、粉粒体収容容器から排出された粉粒体が粉粒体収容容器に収容された粉粒体の重みにより粉粒体受入口開閉部材の上面に押し付けられて円柱状に固形化し難くなるので、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を哺乳瓶などの別容器に所望の量だけ確実に定量排出することができる。   According to the granular material quantitative discharger according to the present invention, most of the granular material discharged from the granular material container to the inside of the granular material receiving member slides down the guide plate portion of the granular material guide member. Thus, the granular material discharged from the granular material container is guided by the weight of the granular material accommodated in the granular material container. Since it is difficult to solidify into a cylindrical shape by being pressed onto the upper surface of the receiving opening / closing member, the desired amount of powder contained in a powder container such as a milk powder can can be reliably quantified in a separate container such as a baby bottle Can be discharged.

また、粉粒体案内部材の案内板部が案内板支持部によって粉粒体受入口開閉部材の上面から浮いた状態で斜めに支持されることになり、これにより、粉粒体収容容器に収容された粉粒体の重みが粉粒体受入口開閉部材の上面全体に加わることがなく、回動操作子を回動操作して粉粒体を定量排出する際に大きな力を要することなく回動操作子を回動操作することができるので、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を哺乳瓶などの別容器に所望の量だけ簡単に定量排出することができる。   In addition, the guide plate portion of the granular material guide member is supported obliquely by the guide plate support portion in a state where it floats from the upper surface of the granular material receiving opening / closing member, and thereby accommodated in the granular material storage container. The weight of the granular material thus applied is not applied to the entire upper surface of the granular material inlet opening / closing member, and it is possible to rotate the rotational operation element without requiring a large force when rotating the rotary operation element to quantitatively discharge the granular material. Since the moving operation element can be rotated, it is possible to easily and quantitatively discharge a desired amount of the powder contained in a powder container such as a milk powder can into another container such as a baby bottle.

本発明の一実施形態に係る粉粒体定量排出器と粉粒体定量排出器を介して粉粒体収容容器を鉛直に支持する支持架台の正面を示す図である。It is a figure which shows the front of the support stand which supports a granular material storage container vertically via the granular material fixed discharger and granular material fixed discharger which concern on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器と粉粒体定量排出器を介して粉粒体収容容器を鉛直に支持する支持架台の背面を示す図である。It is a figure which shows the back surface of the support stand which supports a granular material storage container vertically via the granular material fixed discharger and granular material fixed discharger which concern on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器と粉粒体定量排出器を介して粉粒体収容容器を鉛直に支持する支持架台の右側面を示す図である。It is a figure which shows the right side surface of the support stand which supports a granular material storage container vertically via the granular material fixed discharger and granular material fixed discharger which concern on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器と粉粒体定量排出器を介して粉粒体収容容器を鉛直に支持する支持架台の左側面を示す図である。It is a figure which shows the left side surface of the support stand which supports a granular material storage container vertically via the granular material fixed discharger and granular material fixed discharger which concern on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器と粉粒体定量排出器を介して粉粒体収容容器を鉛直に支持する支持架台の平面を示す図である。It is a figure which shows the plane of the support stand which supports a granular material storage container vertically via the granular material fixed discharger which concerns on one Embodiment of this invention, and a granular material fixed discharger. 粉粒体収容容器の一例を示す斜視図である。It is a perspective view which shows an example of a granular material storage container. 本発明の一実施形態に係る粉粒体定量排出器の左側面を示す図である。It is a figure which shows the left side surface of the granular material fixed amount discharger which concerns on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器の平面図である。It is a top view of the granular material fixed amount discharger which concerns on one Embodiment of this invention. 図8のA−A断面を示す図である。It is a figure which shows the AA cross section of FIG. 本発明の一実施形態に係る粉粒体定量排出器の定量排出器本体の平面図である。It is a top view of the fixed quantity discharger main part of the granular material fixed quantity discharger concerning one embodiment of the present invention. 本発明の一実施形態に係る粉粒体定量排出器の定量排出器本体の縦断面面図である。It is a longitudinal cross-sectional view of the fixed quantity discharger main body of the granular material fixed quantity discharger which concerns on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体受け部材の平面図である。It is a top view of the granular material receiving member of the granular material fixed amount ejector which concerns on one Embodiment of this invention. 図12のB−B断面を示す図である。It is a figure which shows the BB cross section of FIG. 図12のC−C断面を示す図である。It is a figure which shows CC cross section of FIG. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体受入口開閉部材の平面図である。It is a top view of the granular material entrance opening-closing member of the granular material fixed amount discharger which concerns on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体受入口開閉部材の縦断面図である。It is a longitudinal cross-sectional view of the granular material inlet / outlet opening / closing member of the granular material fixed amount discharger which concerns on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体排出口開閉部材の平面図である。It is a top view of the granular material discharge port opening / closing member of the granular material fixed amount discharger which concerns on one Embodiment of this invention. 図17のD−D断面を示す図である。It is a figure which shows the DD cross section of FIG. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体案内部材の平面図である。It is a top view of the granular material guide member of the granular material fixed amount ejector which concerns on one Embodiment of this invention. 本発明の一実施形態に係る粉粒体定量排出器の粉粒体案内部材の側面図である。It is a side view of the granular material guide member of the granular material fixed amount ejector which concerns on one Embodiment of this invention.

以下、図1〜図20を参照して本発明の一実施形態について説明する。図中符号10は粉ミルク缶などの粉粒体収容容器であって、この粉粒体収容容器10は、図6に示すように、円筒状に形成されているとともに、粉粒体取出し用の開口部11を一端に有している。
また、図中符号20は本発明の一実施形態に係る粉粒体定量排出器、30は粉粒体定量排出器20を介して粉粒体収容容器10を鉛直に支持する支持架台であって、粉粒体定量排出器20は、図7乃至図9に示すように、定量排出器本体21、粉粒体受け部材22、粉粒体貯蔵室形成部材23、粉粒体受入口開閉部材24、粉粒体排出口開閉部材25、回動操作子26および粉粒体案内部材27を備えて構成されている。
Hereinafter, an embodiment of the present invention will be described with reference to FIGS. In the figure, reference numeral 10 denotes a powder container such as a powdered milk can. The powder container 10 is formed in a cylindrical shape as shown in FIG. 6 and has an opening for taking out the powder. It has a part 11 at one end.
Further, in the figure, reference numeral 20 denotes a granular material quantitative discharger according to an embodiment of the present invention, and 30 denotes a support frame that vertically supports the granular material container 10 via the granular material quantitative discharger 20. As shown in FIGS. 7 to 9, the granular material quantitative discharger 20 includes a quantitative discharger main body 21, a granular material receiving member 22, a granular material storage chamber forming member 23, and a granular material inlet opening / closing member 24. The granular material outlet opening / closing member 25, the rotary operation element 26, and the granular material guide member 27 are provided.

なお、図1〜図4に示すように、支持架台30はベースプレート301と、このベースプレート301の上面に立設された支持板302と、この支持板302の上端部にベースプレート301と平行に設けられた上部プレート303とを有してなり、上部プレート303には、粉粒体定量排出器20を支持する支持孔が設けられている。
定量排出器本体21は粉粒体収容容器10の開口側端部に外嵌する合成樹脂製の円筒部211(図11参照)を有し、この円筒部211の内側に粉粒体受け部材22が収納されている。また、定量排出器本体21は円筒部211に外嵌した粉粒体収容容器10の開口側端部を定量排出器本体21に固定する複数本(例えば二本)の固定用螺子212(図10参照)を有し、これらの固定用螺子212と螺合する複数個のナット213(図11参照)が円筒部211の円周方向に等間隔で円筒部211の上部に埋め込まれている。
As shown in FIGS. 1 to 4, the support frame 30 is provided with a base plate 301, a support plate 302 erected on the upper surface of the base plate 301, and an upper end portion of the support plate 302 in parallel with the base plate 301. The upper plate 303 is provided with a support hole for supporting the powder and granular fixed amount discharger 20.
The fixed amount ejector main body 21 has a synthetic resin cylindrical portion 211 (see FIG. 11) that fits outside the opening side end of the granular material storage container 10, and the granular material receiving member 22 is located inside the cylindrical portion 211. Is stored. Further, the quantitative discharger body 21 has a plurality of (for example, two) fixing screws 212 (see FIG. 10) for fixing the opening side end of the granular material container 10 fitted on the cylindrical part 211 to the quantitative discharger body 21. And a plurality of nuts 213 (see FIG. 11) that are screwed with the fixing screws 212 are embedded in the upper part of the cylindrical portion 211 at equal intervals in the circumferential direction of the cylindrical portion 211.

さらに、定量排出器本体21は円筒部211の下端に円形状の底板部214(図11参照)を有し、この底板部214は合成樹脂から形成されている。また、定量排出器本体21は貫通孔215(図10参照)を有し、この貫通孔215は底板部214の中心部に形成されている。
定量排出器本体21は、また、漏斗状の粉粒体排出シュート216(図11参照)を下端部に有している。この粉粒体排出シュート216は哺乳瓶などの別容器に粉粒体を投入するためのものであって、底板部214と一体に形成されている。また、定量排出器本体21は円筒部211の下部に、開口部217(図11参照)を有している。この開口部217は回動操作子26の回動操作範囲を規制するためのものであって、円筒部211の周方向に例えば155°の角度で形成されている。
Furthermore, the fixed amount discharger main body 21 has a circular bottom plate portion 214 (see FIG. 11) at the lower end of the cylindrical portion 211, and the bottom plate portion 214 is made of synthetic resin. Further, the fixed amount ejector main body 21 has a through hole 215 (see FIG. 10), and the through hole 215 is formed at the center of the bottom plate part 214.
The fixed amount discharger main body 21 also has a funnel-shaped granular material discharge chute 216 (see FIG. 11) at its lower end. The granular material discharge chute 216 is used to put the granular material into another container such as a baby bottle, and is formed integrally with the bottom plate portion 214. Moreover, the fixed amount discharger main body 21 has an opening 217 (see FIG. 11) below the cylindrical portion 211. The opening 217 is for restricting the rotation operation range of the rotation operator 26 and is formed at an angle of, for example, 155 ° in the circumferential direction of the cylindrical portion 211.

粉粒体受け部材22は粉粒体収容容器10から排出される粉粒体を受けるものであって、有底円筒状に形成されている。また、粉粒体受け部材22は合成樹脂から形成され、円形状の底板部221(図13参照)を有している。
粉粒体受け部材22の底板部221には、図12に示すように、扇状の粉粒体受入口222,223,224が形成されている。これらの粉粒体受入口222,223,224は底板部221の周方向に所定の間隔で形成され、粉粒体受入口223はその開口面積が粉粒体受入口222の例えば2.5倍となるように底板部221に形成されている。また、粉粒体受入口224はその開口面積が粉粒体受入口222の例えば2倍となるように底板部221に形成されている。
The granular material receiving member 22 receives the granular material discharged from the granular material storage container 10, and is formed in a bottomed cylindrical shape. The granular material receiving member 22 is made of synthetic resin and has a circular bottom plate portion 221 (see FIG. 13).
As shown in FIG. 12, fan-shaped powder particle receiving ports 222, 223, and 224 are formed on the bottom plate portion 221 of the powder particle receiving member 22. These granular material inlets 222, 223, and 224 are formed at a predetermined interval in the circumferential direction of the bottom plate portion 221. The granular material inlet 223 has an opening area that is, for example, 2.5 times that of the granular material inlet 222. It is formed in the bottom plate part 221 so that. The granular material inlet 224 is formed in the bottom plate portion 221 so that the opening area thereof is, for example, twice that of the granular material inlet 222.

粉粒体受け部材22は、また、貫通孔225(図12参照)を有し、この貫通孔225は底板部221の中心部に形成されている。さらに、粉粒体受け部材22は底板部221から下方に突出する円筒部226(図13参照)を有し、この円筒部226は貫通孔225の直径と同じ内径で底板部221の中心部に形成されている。
粉粒体受け部材22は、定量排出器本体21の円筒部211に向けて突出する複数の突起片228(図12参照)を有している。これらの突起片228は粉粒体受け部材22を定量排出器本体21の内側に回動不能に固定するためのものであって、粉粒体受け部材22が収納される定量排出器本体21には、突起片227と嵌合する複数の切欠き部218(図11参照))が形成されている。
The granular material receiving member 22 also has a through hole 225 (see FIG. 12). The through hole 225 is formed at the center of the bottom plate portion 221. Furthermore, the granular material receiving member 22 has a cylindrical portion 226 (see FIG. 13) that protrudes downward from the bottom plate portion 221, and this cylindrical portion 226 has the same inner diameter as the diameter of the through hole 225 at the center of the bottom plate portion 221. Is formed.
The granular material receiving member 22 has a plurality of protruding pieces 228 (see FIG. 12) that protrude toward the cylindrical portion 211 of the quantitative discharger main body 21. These protruding pieces 228 are for fixing the granular material receiving member 22 to the inside of the quantitative discharger main body 21 so as not to rotate, and are attached to the quantitative discharger main body 21 in which the granular material receiving member 22 is accommodated. Are formed with a plurality of notches 218 (see FIG. 11) that fit into the protruding pieces 227.

粉粒体貯蔵室形成部材23は粉粒体受け部材22の底板部221に形成された粉粒体受入口222,223,224から粉粒体を受け入れて所定の量だけ貯蔵する粉粒体貯蔵室231,232,233(図13参照)を粉粒体受け部材22の下面側に形成するものであって、粉粒体受け部材22と一体に合成樹脂にて形成されている。
粉粒体受入口開閉部材24は粉粒体受入口222,223,224を粉粒体受け部材22の底面側で開閉するものであって、合成樹脂から形成されているとともに、粉粒体受け部材22の内径より若干小さい直径で円板状に形成されている。また、粉粒体受入口開閉部材24は粉粒体受入口222,223,224から粉粒体貯蔵室231,232,233に粉粒体を導入する粉粒体導入孔241(図15参照)を有し、この粉粒体導入孔241は粉粒体受入口222とほぼ同じ大きさで粉粒体受入口開閉部材24に形成されている。
The granular material storage chamber forming member 23 receives the granular material from the granular material receiving ports 222, 223, and 224 formed in the bottom plate portion 221 of the granular material receiving member 22, and stores a predetermined amount thereof. The chambers 231, 232, and 233 (see FIG. 13) are formed on the lower surface side of the granular material receiving member 22, and are formed of synthetic resin integrally with the granular material receiving member 22.
The granular material inlet opening / closing member 24 opens and closes the granular material inlets 222, 223, and 224 on the bottom surface side of the granular material receiving member 22, and is formed of a synthetic resin and has a granular material receiver. The member 22 is formed in a disk shape with a diameter slightly smaller than the inner diameter of the member 22. Moreover, the granular material inlet opening / closing member 24 introduces a granular material into the granular material storage chambers 231, 232, 233 from the granular material inlets 222, 223, 224 (see FIG. 15). The granular material inlet hole 241 is formed in the granular material inlet opening / closing member 24 with substantially the same size as the granular material inlet 222.

粉粒体受入口開閉部材24は、また、粉粒体受け部材22の貫通孔225および円筒部226と摺動自在に嵌合する軸部242(図16参照)を有し、この軸部242は粉粒体受入口開閉部材24の中心部に形成されている。また、粉粒体受入口開閉部材24は粉粒体排出口開閉部材25の貫通孔255に上方から挿入される板状弾性片243,244(図16参照)を有している。これらの板状弾性片243,244は軸部242の下端から下方に突出しており、これら板状弾性片243,244の先端部に、粉粒体排出口開閉部材25の下面と係合する楔状の爪部245,246(図16参照)が形成されている。   The granular material receiving opening / closing member 24 also has a shaft portion 242 (see FIG. 16) that is slidably fitted to the through hole 225 and the cylindrical portion 226 of the granular material receiving member 22, and this shaft portion 242. Is formed at the center of the granular material inlet opening / closing member 24. The granular material receiving opening / closing member 24 has plate-like elastic pieces 243 and 244 (see FIG. 16) inserted into the through holes 255 of the granular material discharge opening / closing member 25 from above. These plate-like elastic pieces 243 and 244 protrude downward from the lower end of the shaft portion 242, and the wedge-like shape that engages with the lower surface of the granular material discharge port opening / closing member 25 at the tips of these plate-like elastic pieces 243 and 244. Claw portions 245 and 246 (see FIG. 16) are formed.

粉粒体受入口開閉部材24は、また、粉粒体を撹拌する粉粒体撹拌羽根247を有し、この粉粒体撹拌羽根247は粉粒体受入口開閉部材24の中心部から上方に突出する軸部248から粉粒体受入口開閉部材24の外径方向に突出している。
粉粒体排出口開閉部材25は粉粒体貯蔵室231,232,233の下端に形成された粉粒体排出口を開閉するものであって、合成樹脂から形成されているとともに、定量排出器本体21の円筒部211に摺動自在に内嵌する円筒部251(図17及び図18参照)を有している。
The granular material inlet opening / closing member 24 also has a granular material stirring blade 247 that stirs the granular material, and the granular material stirring blade 247 extends upward from the center of the granular material inlet opening / closing member 24. It protrudes from the protruding shaft portion 248 in the outer diameter direction of the granular material receiving opening / closing member 24.
The granular material discharge port opening / closing member 25 opens and closes the granular material discharge port formed at the lower ends of the granular material storage chambers 231, 232, 233, and is formed of a synthetic resin and has a quantitative discharger. A cylindrical portion 251 (see FIGS. 17 and 18) is slidably fitted into the cylindrical portion 211 of the main body 21.

粉粒体排出口開閉部材25は、また、定量排出器本体21の底板部214により支持される円形状の底板部252(図18参照)を円筒部251の下端に有し、この底板部252には、粉粒体貯蔵室231,232,233に貯蔵された粉粒体を定量排出器本体21の粉粒体排出シュート216に排出する開口部253(図17参照)が開設されている。さらに、粉粒体排出口開閉部材25は粉粒体受け部材22の円筒部226と摺動自在に嵌合する軸部254(図18参照)を有し、この軸部254は底板部252の中心部に形成されている。   The granular material discharge port opening / closing member 25 also has a circular bottom plate portion 252 (see FIG. 18) supported by the bottom plate portion 214 of the quantitative discharger body 21 at the lower end of the cylindrical portion 251, and this bottom plate portion 252. Is provided with an opening 253 (see FIG. 17) for discharging the powder stored in the powder storage chambers 231, 232 and 233 to the powder discharge chute 216 of the quantitative discharger body 21. Furthermore, the granular material discharge port opening / closing member 25 has a shaft portion 254 (see FIG. 18) that is slidably fitted to the cylindrical portion 226 of the granular material receiving member 22, and this shaft portion 254 is formed of the bottom plate portion 252. It is formed at the center.

また、粉粒体排出口開閉部材25は底板部252および軸部254の中心部を上下方向に貫通する貫通孔255(図17参照)を有し、この貫通孔255は断面形状が方形状に形成されている。さらに、粉粒体排出口開閉部材25は円筒部251の外周面に回動操作子差込穴256(図18参照)を有し、この回動操作子差込穴256は円筒部251の軸方向に沿って長方形状に形成されている。
回動操作子26は粉粒体受入口開閉部材24と粉粒体排出口開閉部材25とを粉粒体受け部材22の中心軸回りに回動操作して定量排出器本体21の粉粒体排出シュート216から粉粒体を定量排出するものであって、粉粒体排出口開閉部材25の回動操作子差込穴256に嵌入されている。
The granular material outlet opening / closing member 25 has a through hole 255 (see FIG. 17) penetrating the center of the bottom plate portion 252 and the shaft portion 254 in the vertical direction, and the through hole 255 has a rectangular cross-sectional shape. Is formed. Further, the granular material discharge port opening / closing member 25 has a rotation operation member insertion hole 256 (see FIG. 18) on the outer peripheral surface of the cylindrical portion 251, and the rotation operation member insertion hole 256 is an axis of the cylindrical portion 251. It is formed in a rectangular shape along the direction.
The rotary operation element 26 rotates the granular material inlet opening / closing member 24 and the granular material outlet opening / closing member 25 about the central axis of the granular material receiving member 22 to rotate the granular material of the quantitative discharger main body 21. The powder particles are discharged from the discharge chute 216 in a fixed amount, and are inserted into the rotation operation element insertion holes 256 of the powder particle discharge port opening / closing member 25.

また、回動操作子26は定量排出器本体21の円筒部211から外径方向に突出する摘み部261(図9参照)を有し、この摘み部262を手で摘んで回動操作子26を図8に示す位置から図中時計方向に例えば29°だけ回動操作すると、粉粒体受入口開閉部材24の粉粒体導入孔241が粉粒体受け部材22の底板部221に形成された粉粒体受入口222と重なり合い、これにより、粉粒体収容容器10から粉粒体受け部材22の内側に排出された粉粒体が粉粒体貯蔵室231に貯蔵されるようになっている。   Further, the rotary operator 26 has a knob 261 (see FIG. 9) that protrudes in the outer diameter direction from the cylindrical portion 211 of the fixed amount discharger main body 21, and the rotary operator 26 is picked by hand. Is rotated from the position shown in FIG. 8 clockwise by, for example, 29 ° in the figure, the granular material introduction hole 241 of the granular material receiving opening / closing member 24 is formed in the bottom plate portion 221 of the granular material receiving member 22. Thus, the granular material discharged from the granular material storage container 10 to the inside of the granular material receiving member 22 is stored in the granular material storage chamber 231. Yes.

また、回動操作子26を図8に示す位置から図中時計方向に例えば60°だけ回動操作すると、粉粒体受入口開閉部材24の粉粒体導入孔241が粉粒体受け部材22の底板部221に形成された粉粒体受入口223と重なり合い、これにより、粉粒体収容容器10から粉粒体受け部材22の内側に排出された粉粒体が粉粒体貯蔵室232に貯蔵されるようになっている。さらに、回動操作子26を図8に示す位置から図中時計方向に例えば83°だけ回動操作すると、粉粒体受入口開閉部材24の粉粒体導入孔241が粉粒体受け部材22の底板部221に形成された粉粒体受入口224と重なり合い、これにより、粉粒体収容容器10から粉粒体受け部材22の内側に排出された粉粒体が粉粒体貯蔵室233に貯蔵されるようになっている。   Further, when the rotation operation element 26 is rotated by, for example, 60 ° clockwise from the position shown in FIG. 8, the powder particle inlet hole 241 of the powder particle inlet / outlet opening / closing member 24 becomes the powder particle receiving member 22. And the granular material receiving port 223 formed in the bottom plate portion 221 of the pulverized material, and thereby the granular material discharged from the granular material container 10 to the inside of the granular material receiving member 22 enters the granular material storage chamber 232. It is to be stored. Further, when the rotary operation element 26 is rotated by, for example, 83 ° clockwise from the position shown in FIG. 8, the granular material introduction hole 241 of the granular material receiving opening / closing member 24 is moved to the granular material receiving member 22. And the granular material receiving port 224 formed in the bottom plate portion 221 of the pulverized material, and thereby the granular material discharged from the granular material container 10 to the inside of the granular material receiving member 22 enters the granular material storage chamber 233. It is to be stored.

また、回動操作子26を図8に示す位置から図中時計方向に例えば99°だけ回動操作すると、粉粒体排出口開閉部材25の底板部252に形成された開口部253が粉粒体貯蔵室231の下端に形成された粉粒体排出口と重なり合い、これにより、粉粒体貯蔵室231に貯蔵された粉粒体が定量排出器本体21の粉粒体排出シュート216から定量排出されるようになっている。さらに、回動操作子26を図8に示す位置から図中時計方向に例えば125°だけ回動操作すると、粉粒体排出口開閉部材25の底板部252に形成された開口部253が粉粒体貯蔵室232の下端に形成された粉粒体排出口と重なり合い、これにより、粉粒体貯蔵室232に貯蔵された粉粒体が定量排出器本体21の粉粒体排出シュート216から定量排出されるようになっている。また、回動操作子26を図8に示す位置から図中時計方向に例えば155°だけ回動操作すると、粉粒体排出口開閉部材25の底板部252に形成された開口部253が粉粒体貯蔵室233の下端に形成された粉粒体排出口と重なり合い、これにより、粉粒体貯蔵室233に貯蔵された粉粒体が定量排出器本体21の粉粒体排出シュート216から定量排出されるようになっている。   Further, when the rotary operation element 26 is rotated from the position shown in FIG. 8 clockwise by, for example, 99 ° in the drawing, the opening 253 formed in the bottom plate portion 252 of the granular material discharge port opening / closing member 25 is granular. It overlaps with the granular material discharge port formed at the lower end of the body storage chamber 231, whereby the granular material stored in the granular material storage chamber 231 is quantitatively discharged from the granular material discharge chute 216 of the quantitative discharger body 21. It has come to be. Further, when the rotation operation element 26 is rotated by, for example, 125 ° clockwise from the position shown in FIG. 8, the opening 253 formed in the bottom plate portion 252 of the powder body discharge port opening / closing member 25 is powdered. It overlaps with the granular material discharge port formed at the lower end of the body storage chamber 232, whereby the granular material stored in the granular material storage chamber 232 is quantitatively discharged from the granular material discharge chute 216 of the quantitative discharger body 21. It has come to be. Further, when the rotary operation element 26 is rotated from the position shown in FIG. 8 in the clockwise direction in the drawing by, for example, 155 °, the opening 253 formed in the bottom plate portion 252 of the powder outlet opening / closing member 25 is powdered. It overlaps with the granular material discharge port formed at the lower end of the body storage chamber 233, whereby the granular material stored in the granular material storage chamber 233 is quantitatively discharged from the granular material discharge chute 216 of the quantitative discharger body 21. It has come to be.

粉粒体案内部材27は、粉粒体受け部材22の内側に設けられている。また、粉粒体案内部材27は合成樹脂から形成されているとともに、案内板部271、案内板支持部272および回り止め突起片273(図19及び図20参照)を有している。
案内板部271は粉粒体収容容器10から排出された粉粒体を斜め下方に滑らせて粉粒体受入口222,223,224の近傍に案内するものであって、粉粒体受入口開閉部材24と同じ直径で半円形状に形成されている。
The granular material guide member 27 is provided inside the granular material receiving member 22. The granular material guide member 27 is made of a synthetic resin, and has a guide plate portion 271, a guide plate support portion 272, and an anti-rotation projection piece 273 (see FIGS. 19 and 20).
The guide plate part 271 guides the powder discharged from the powder container 10 to the vicinity of the powder inlets 222, 223, and 224 by sliding obliquely downward. The opening / closing member 24 has the same diameter and is formed in a semicircular shape.

案内板支持部272は案内板部271を粉粒体受入口開閉部材24の上面から浮かせた状態で斜めに支持するものであって、粉粒体受入口開閉部材24の中心部から上方に突出する軸部248(図16参照)と摺動自在に嵌合する内径で半円筒状に形成されている。
回り止め突起片273は粉粒体受け部材22の上端部に形成された切欠き部227(図13及び図14参照)に嵌合して案内板部271の回動を規制するものであって、案内板部271の周縁部に形成されている。
The guide plate support portion 272 supports the guide plate portion 271 obliquely in a state where it is floated from the upper surface of the granular material inlet opening / closing member 24, and protrudes upward from the center of the granular material inlet opening / closing member 24. It is formed in a semi-cylindrical shape with an inner diameter that fits slidably with a shaft portion 248 (see FIG. 16).
The anti-rotation protrusion 273 is fitted into a notch 227 (see FIGS. 13 and 14) formed at the upper end of the granular material receiving member 22 to restrict the rotation of the guide plate 271. The guide plate portion 271 is formed on the peripheral edge portion.

このように構成される粉粒体定量排出器20によると、粉粒体収容容器10から粉粒体受入口開閉部材24の上面側に排出された粉粒体の大部分が粉粒体案内部材27の案内板部271を滑り落ちて粉粒体受入口222,223,224の近傍に案内されることになり、これにより、粉粒体収容容器10から粉粒体受入口開閉部材24の上面側に排出された粉粒体が粉粒体収容容器10に収容された粉粒体の重みにより粉粒体受入口開閉部材24の上面に押し付けられて粉粒体受入口開閉部材24の上面で円柱状に固形化し難くなるので、粉ミルク缶などの粉粒体収容容器10に収容された粉粒体を哺乳瓶などの別容器に所望の量だけ確実に定量排出することができる。   According to the powder quantitative discharger 20 configured as described above, most of the powder discharged from the powder container 10 to the upper surface side of the powder inlet / outlet opening / closing member 24 is the powder guide member. 27 is slid down the guide plate portion 271 and guided to the vicinity of the granular material inlets 222, 223, and 224, whereby the upper surface of the granular material inlet opening / closing member 24 from the granular material container 10. The granular material discharged to the side is pressed against the upper surface of the granular material entrance opening / closing member 24 by the weight of the granular material accommodated in the granular material storage container 10, and on the upper surface of the granular material reception opening / closing member 24. Since it becomes difficult to solidify in a columnar shape, the powder particles contained in the powder particle container 10 such as a powdered milk can can be reliably discharged in a desired amount into another container such as a baby bottle.

また、粉粒体案内部材27の案内板部271が案内板支持部272によって粉粒体受入口開閉部材24の上面から浮いた状態で斜めに支持されることになり、これにより、粉粒体収容容器10に収容された粉粒体の重みが粉粒体受入口開閉部材24の上面全体に加わることがなく、回動操作子26を回動操作して粉粒体を定量排出する際に大きな力を要することなく回動操作子26を回動操作することができるので、粉ミルク缶などの粉粒体収容容器に収容された粉粒体を哺乳瓶などの別容器に所望の量だけ簡単に定量排出することができる。   In addition, the guide plate portion 271 of the granular material guide member 27 is supported diagonally by the guide plate support portion 272 in a state where it floats from the upper surface of the granular material entrance opening / closing member 24, thereby the granular material When the weight of the granular material stored in the storage container 10 is not applied to the entire upper surface of the granular material receiving opening / closing member 24, the rotational operation element 26 is rotated to discharge the granular material quantitatively. Since the rotary operation element 26 can be rotated without requiring a large force, a desired amount of the powder contained in a powder container such as a powdered milk can can be easily stored in another container such as a baby bottle. Can be discharged quantitatively.

また、回動操作子26を回動操作すると、粉粒体受入口開閉部材24の軸部242が粉粒体受け部材22の中心軸回りに回動し、これにより、粉粒体収容容器10から粉粒体受入口開閉部材24の上面側に排出された粉粒体が粉粒体受入口開閉部材24の粉粒体攪拌羽根247によって攪拌されるため、粉粒体収容容器10から粉粒体受入口開閉部材24の上面側に排出された粉粒体が粉粒体収容容器10に収容された粉粒体の重みにより粉粒体受入口開閉部材24の上面に押し付けられて固形化することを抑制することができる。
上述した本発明の一実施形態では、粉粒体受け部材22の底板部221に形成される粉粒体受入口の数が3個のものを例示したが、粉粒体受入口の数は1個でもよいし4個以上であってもよい。
Further, when the rotary operation element 26 is rotated, the shaft portion 242 of the granular material receiving opening / closing member 24 is rotated around the central axis of the granular material receiving member 22, thereby the granular material container 10. Since the granular material discharged to the upper surface side of the granular material inlet opening / closing member 24 is stirred by the granular material stirring blade 247 of the granular material reception opening / closing member 24, the granular material is removed from the granular material container 10. The granular material discharged to the upper surface side of the body receiving opening / closing member 24 is pressed against the upper surface of the granular material receiving opening / closing member 24 by the weight of the granular material stored in the granular material storage container 10 to be solidified. This can be suppressed.
In the above-described embodiment of the present invention, the number of the granular material receiving ports formed on the bottom plate portion 221 of the granular material receiving member 22 is three, but the number of the granular material receiving ports is one. The number may be four or more.

また、粉粒体貯蔵室形成部材23により形成される粉粒体貯蔵室の数が3個のものを例示したが、粉粒体貯蔵室の数は1個でもよいし4個以上であってもよい。
また、粉粒体貯蔵室形成部材23が粉粒体受け部材22と一体に形成されているものを例示したが、粉粒体貯蔵室形成部材23が粉粒体受け部材22と別体に形成されていてもよい。
Moreover, although the number of the granular material storage chambers formed by the granular material storage chamber forming member 23 is three, the number of the granular material storage chambers may be one or four or more. Also good.
Moreover, although the granular material storage chamber formation member 23 illustrated what was integrally formed with the granular material receiving member 22, the granular material storage chamber formation member 23 is formed in a different body from the granular material receiving member 22. May be.

10…粉粒体収容容器
11…粉粒体取出し用の開口部
20…粉粒体定量排出器
21…定量排出器本体
211…円筒部
212…固定用螺子
213…ナット
214…底板部
215…貫通孔
216…粉粒体排出シュート
217…開口部
22…粉粒体受け部材
221…底板部
222,223,224…粉粒体受入口
225…貫通孔
226…円筒部
227…切欠き部
23…粉粒体貯蔵室形成部材
231,232,233…粉粒体貯蔵室
24…粉粒体受入口開閉部材
241…粉粒体導入孔
242…軸部
243,244…板状弾性片
245,246…爪部
247…粉粒体撹拌羽根
248…軸部
25…粉粒体排出口開閉部材
251…円筒部
252…底板部
253…開口部
254…軸部
255…貫通孔
256…回動操作子差込穴
26…回動操作子
27…粉粒体案内部材
271…案内板部
272…案内板支持部
273…回り止め突起片
DESCRIPTION OF SYMBOLS 10 ... Granule body container 11 ... Opening part for taking out granular material 20 ... Granule body fixed amount discharger 21 ... Fixed amount discharger main body 211 ... Cylindrical part 212 ... Fixing screw 213 ... Nut 214 ... Bottom plate part 215 ... Through Hole 216 ... Granule discharge chute 217 ... Opening 22 ... Granule receiving member 221 ... Bottom plate 222, 223, 224 ... Granule receiving port 225 ... Through hole 226 ... Cylindrical portion 227 ... Notch 23 ... Powder Granule storage chamber forming member 231, 232, 233... Granule storage chamber 24... Granule receiving port opening / closing member 241... Granule introduction hole 242 ... Shaft 243, 244 ... Plate-like elastic piece 245, 246. Part 247 ... Granule stirring blade 248 ... Shaft part 25 ... Powder body discharge port opening / closing member 251 ... Cylindrical part 252 ... Bottom plate part 253 ... Opening part 254 ... Shaft part 255 ... Through hole 256 ... Rotating operation element insertion hole 26 times Operator 27 ... granular material guide member 271 ... guide plate 272 ... guide plate support portion 273 ... rotation preventing projection piece

Claims (5)

粉粒体取出し用の開口部を一端に有する粉粒体収容容器の開口側端部に外嵌する円筒部を有する定量排出器本体と、
該定量排出器本体の前記円筒部の内側に収納された有底円筒状の粉粒体受け部材と、
該粉粒体受け部材の底板部に形成された粉粒体受入口から粉粒体を受け入れて所定の量だけ貯蔵する粉粒体貯蔵室を前記粉粒体受け部材の下面側に形成する粉粒体貯蔵室形成部材と、
前記粉粒体受入口を前記粉粒体受け部材の底面側で開閉する円板状の粉粒体受入口開閉部材と、
前記粉粒体貯蔵室の下端に形成された粉粒体排出口を開閉する粉粒体排出口開閉部材と、
前記粉粒体受入口開閉部材と前記粉粒体排出口開閉部材とを前記粉粒体受け部材の中心軸回りに回動操作して前記定量排出器本体の下端部に形成された粉粒体排出シュートから粉粒体を定量排出する回動操作子と、を備えてなる粉粒体定量排出器であって、
前記粉粒体収容容器から排出された粉粒体を斜め下方に滑らせて前記粉粒体受入口の近傍に案内する案内板部と、該案内板部を前記粉粒体受入口開閉部材の上面から浮かせた状態で斜めに支持する案内板支持部とを有する粉粒体案内部材が、前記粉粒体受け部材の内側に設けられていることを特徴とする粉粒体定量排出器。
A quantitative discharger main body having a cylindrical portion that is externally fitted to the opening side end of the granular material storage container having an opening for removing the granular material at one end;
A bottomed cylindrical granular material receiving member housed inside the cylindrical portion of the quantitative discharger body;
Powder that forms a powder storage chamber on the lower surface side of the granular material receiving member for receiving the granular material from the granular material receiving port formed in the bottom plate portion of the granular material receiving member and storing a predetermined amount thereof A granule storage chamber forming member;
A disk-shaped granular material inlet opening and closing member that opens and closes the granular material inlet on the bottom surface side of the granular material receiving member;
A granular material outlet opening and closing member for opening and closing a granular material outlet formed at the lower end of the granular material storage chamber;
The granular material formed at the lower end of the quantitative discharger body by rotating the granular material inlet opening / closing member and the granular material outlet opening / closing member around the central axis of the granular material receiving member A rotary operation element for quantitatively discharging the powder particles from the discharge chute, and a powder particle quantitative discharger comprising:
A guide plate portion that slides the powder particles discharged from the particle storage container obliquely downward and guides them to the vicinity of the powder particle inlet, and the guide plate portion of the powder particle inlet opening / closing member A granular material quantitative discharger characterized in that a granular material guide member having a guide plate support portion that is supported obliquely in a state of being floated from the upper surface is provided inside the granular material receiving member.
請求項1に記載の粉粒体定量排出器において、前記案内板部が、前記粉粒体受入口開閉部材と同じ直径で半円形状に形成されていることを特徴とする粉粒体定量排出器。   2. The powder quantitative discharge device according to claim 1, wherein the guide plate portion is formed in a semicircular shape with the same diameter as the powder particle inlet / outlet opening / closing member. vessel. 請求項2に記載の粉粒体定量排出器において、前記粉粒体受け部材の上端部に形成された切欠き部に嵌合して前記案内板部の回動を規制する回り止め突起片を、前記粉粒体案内部材が有することを特徴とする粉粒体定量排出器。   In the granular material fixed amount discharger according to claim 2, a non-rotating projection piece that fits into a notch portion formed at an upper end portion of the granular material receiving member and restricts rotation of the guide plate portion. The granular material quantitative discharger characterized in that the granular material guide member has. 請求項1〜3のいずれか一項に記載の粉粒体定量排出器において、前記案内板支持部が、前記粉粒体受入口開閉部材の中心部から上方に突出する軸部と摺動自在に嵌合する内径で半円筒状に形成されていることを特徴とする粉粒体定量排出器。   The granular material fixed quantity ejector as described in any one of Claims 1-3 WHEREIN: The said guide plate support part is slidable with the axial part which protrudes upwards from the center part of the said granular material entrance opening / closing member. It is formed in a semi-cylindrical shape with an inner diameter that fits into the powder, and a fixed amount discharger for particulate matter. 請求項4に記載の粉粒体定量排出器において、前記粉粒体受入口開閉部材が、前記軸部から前記粉粒体受け部材の外径方向に突出する粉粒体攪拌羽根を有することを特徴とする粉粒体定量排出器。   The granular material fixed amount discharger according to claim 4, wherein the granular material inlet opening / closing member has a granular material stirring blade protruding from the shaft portion in an outer diameter direction of the granular material receiving member. Characteristic quantitative powder ejector.
JP2010015704A 2010-01-27 2010-01-27 Powder and grain quantitative discharging apparatus Pending JP2011152992A (en)

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