JP2016078911A - Dripping nozzle - Google Patents

Dripping nozzle Download PDF

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JP2016078911A
JP2016078911A JP2014213945A JP2014213945A JP2016078911A JP 2016078911 A JP2016078911 A JP 2016078911A JP 2014213945 A JP2014213945 A JP 2014213945A JP 2014213945 A JP2014213945 A JP 2014213945A JP 2016078911 A JP2016078911 A JP 2016078911A
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dripping
liquid
nozzle
dropping
chemical solution
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JP6460379B2 (en
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高志 藤本
Takashi Fujimoto
高志 藤本
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Hanshin Kasei Kogyo Co Ltd
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Hanshin Kasei Kogyo Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a dripping nozzle, incorporated into a container body sealed with an eye drop medicine, excellent in liquid cut property in dripping time, and properly usable even when turned just besides, by reducing a variation in a dripping quantity by a posture, besides being capable of restraining the residue of a liquid medicine.SOLUTION: A dripping nozzle 11 is formed with a drop creating part 21 protruding in a mountain shape around a tail end discharge port 20 of a flow passage 22 of a liquid medicine and a root part 23 extending in a rod shape by enclosing the flow passage 22, and a liquid cut part 25 being a wedge shape in a longitudinal section and projecting in the outer peripheral direction, is provided in a boundary between the drop creating part 21 and the root part 23. An outflow of the liquid medicine to the root part 23 can be prevented by the liquid cut part 25, and the liquid medicine can be rightly dripped in an eyeball. Moreover, since the liquid cut part 25 is formed in a wedge shape, a wetting phenomenon of the liquid medicine can be checked, and growth of a droplet is promoted by restraining reverse leakage. Even when turning a container body 31 sideways, the droplet falls at a stretch without excessively growing, and the residue of the liquid medicine and a variation in a dripping quantity are restrained.SELECTED DRAWING: Figure 1

Description

本発明は、点眼薬などが封入された容器本体の上部に組み込まれ、薬液の滴下を担う滴下ノズルに関する。   The present invention relates to a dropping nozzle that is incorporated in an upper part of a container body in which an eye drop or the like is enclosed, and is responsible for dropping a chemical solution.

一般的な点眼容器は、薬液を蓄える容器本体と、薬液の出口となる滴下ノズルと、滴下ノズルを保護するキャップなどで構成され、容器本体の上部に筒状の頸部を形成し、そこに滴下ノズルを組み込む。滴下ノズルの内部には、内外を貫くごく狭い流路を形成してあり、流路の終端である吐出口には、一定量の液滴を形成するため、半球状やドーム状の先端部を設けてある。使用時、吐出口からあふれ出た薬液は、表面張力によって先端部に蓄積されるが、液滴の成長で重量が表面張力に打ち勝った際、液滴全体が一気に落下する。   A general eye drop container is composed of a container body that stores a chemical solution, a dripping nozzle that serves as an outlet for the chemical solution, a cap that protects the dripping nozzle, and the like, and a cylindrical neck is formed on the top of the container body. Incorporate a dripping nozzle. A very narrow flow path is formed inside and outside the dripping nozzle, and a semi-spherical or dome-shaped tip is formed at the discharge port at the end of the flow path to form a certain amount of liquid droplets. It is provided. At the time of use, the chemical liquid overflowing from the discharge port is accumulated at the tip due to the surface tension, but when the weight overcomes the surface tension due to the growth of the liquid droplet, the entire liquid droplet falls at once.

本願発明と関連のある技術の例として、後記特許文献が挙げられる。特許文献1では、目薬等の薬液が充填された容器において、薬液の滴下後、負圧による異物の吸い込みを防止できる中栓が開示されている。この中栓は、薬液を滴下するノズル部分の側周面にフランジ部分を設けたことを特徴としており、薬液の滴下時、フランジ部分を目尻などに接触させることで、ノズル部分と身体を引き離すことができる。そのため点眼時、容器の押圧を緩めると空気だけを吸い込み、目ヤニなどの異物を吸い込むことがない。   As an example of the technology related to the present invention, the following patent document can be cited. Patent Document 1 discloses an inner plug that can prevent inhalation of foreign matters due to negative pressure after a chemical solution is dropped in a container filled with a chemical solution such as eye drops. This inner plug is characterized in that a flange portion is provided on the side peripheral surface of the nozzle portion where the chemical solution is dripped, and when the chemical solution is dripped, the flange portion is brought into contact with the corners of the eyes to separate the nozzle portion from the body. Can do. Therefore, at the time of instillation, if the pressure of the container is loosened, only air is sucked and foreign matter such as eyes are not sucked.

特許文献2では、液漏れと液垂れを防止できるほか、あらゆる滴下角度で円滑に液滴を形成できるノズル構造が開示されている。このノズル構造は、容器本体に嵌め込まれるノズルにリング状突起部を形成したことを特徴としており、リング状突起部により、液滴をせき止め、液垂れを防止する。またリング状突起部は、内容液が液滴になる際の核として機能するため、液切れが良好になるほか、滴下角度によらず液滴が形成されやすく、リング状突起部を基点として円滑に内容液を滴下することができる。   Patent Document 2 discloses a nozzle structure that can prevent liquid leakage and dripping, and can smoothly form liquid droplets at any dropping angle. This nozzle structure is characterized in that a ring-shaped protrusion is formed on a nozzle fitted in the container body, and the ring-shaped protrusion prevents clogging and prevents dripping. In addition, the ring-shaped protrusion functions as a nucleus when the content liquid becomes a droplet, so that the liquid breakage is good, and droplets are easily formed regardless of the dropping angle, and the ring-shaped protrusion is the smooth starting point. The content liquid can be dripped in.

特許文献3では、薬液を滴下した後、先端部に残留する液滴を抑制することのできる薬液容器用ノズルが開示されている。このノズルは、先端面を平面状に形成し、且つノズル先端部の外縁に環状の突条を形成してあり、突条の直下には、縮径によるクビレを設けてある。突条により、薬液の移動範囲が先端面に限定され、滴下後の残留を抑制できるほか、ノズルの製造時、割り構造の金型を使用する必要がなく、バリが発生しないため、薬液の流動を妨げることもない。   Patent Document 3 discloses a nozzle for a chemical liquid container that can suppress a liquid droplet remaining at the tip after dropping the chemical liquid. In this nozzle, the tip surface is formed in a flat shape, and an annular ridge is formed on the outer edge of the nozzle tip, and a constriction due to a reduced diameter is provided immediately below the ridge. Due to the protrusions, the movement range of the chemical solution is limited to the tip surface, it is possible to suppress the residue after dripping, and it is not necessary to use a split mold when manufacturing the nozzle, and no burrs are generated. There is no hindrance.

特開2002−321758号公報JP 2002-321758 A 特開2004−196417号公報JP 2004-196417 A WO2011/037174号公報WO2011 / 037174

点眼容器を横向きにした場合、表面張力によって薬液が滴下ノズルの側周面に薄く広がり、吐出口から離れた位置で滴下が始まり、薬液を眼内に供給できない恐れがある。また使用後、滴下ノズルに薬液が残留していると、これが空気中の浮遊物を吸着し、付近を汚染する恐れがあるほか、時間の経過によって水分が蒸発し、成分が表面に沈着するなど、衛生面で問題がある。そのため滴下ノズルは、液切れ性を向上させて、表面張力の影響を最小限に留め、全量を一気に滴下できることが好ましい。   When the eye drop container is turned sideways, the chemical solution spreads thinly on the side peripheral surface of the dropping nozzle due to surface tension, and dripping starts at a position away from the discharge port, and there is a possibility that the chemical solution cannot be supplied into the eye. In addition, if chemicals remain in the dripping nozzle after use, this may adsorb suspended matter in the air and contaminate the vicinity, and moisture will evaporate over time, causing components to deposit on the surface, etc. There is a problem with hygiene. Therefore, it is preferable that the dripping nozzle can improve dripping property, minimize the influence of surface tension, and dripping the entire amount at once.

点眼薬は、その効力を正しく発揮できるよう、滴下量が定められている。しかし点眼を自身で行う場合、不自然な姿勢を強いられるほか、点眼容器の位置や傾きを把握することも難しく、滴下量が変動しやすい。特に、点眼容器をほぼ横向きにした場合と、上下反転させた場合では、滴下量に大きな差があることが判明している。したがって滴下量の変動を防ぐには、使用者に対する注意喚起のほか、使用時の姿勢による影響を排除できる対策が必要である。   The amount of the eye drop is determined so that the effect can be exhibited correctly. However, when performing instillation by oneself, in addition to being forced into an unnatural posture, it is difficult to grasp the position and inclination of the eye drop container, and the amount of dripping tends to fluctuate. In particular, it has been found that there is a large difference in the amount of dripping between the case where the eye drop container is turned sideways and the case where it is turned upside down. Therefore, in order to prevent fluctuations in the dripping amount, in addition to alerting the user, it is necessary to take measures to eliminate the influence of the posture during use.

本発明はこうした実情を基に開発されたもので、滴下時の液切れ性に優れ、薬液の残留を抑制できるほか、姿勢による滴下量の変動が少なく、真横に向けた場合でも適切に使用可能な滴下ノズルの提供を目的としている。   The present invention was developed on the basis of such circumstances, and has excellent liquidity during dripping, can suppress the remaining of chemicals, has little fluctuation in dripping amount due to posture, and can be used properly even when facing sideways The purpose is to provide a simple dripping nozzle.

前記の課題を解決するための請求項1記載の発明は、薬液を収容する容器本体の頸部に組み込む滴下ノズルであって、薬液の流路終端の吐出口を中心として山状に隆起した滴造部と、該流路を囲み棒状に伸びる根元部と、を形成し、前記滴造部と前記根元部との境界には、縦断面がクサビ形状で且つ外周方向に突出する液切部を設けてあることを特徴とする滴下ノズルである。   The invention according to claim 1 for solving the above-mentioned problem is a dropping nozzle incorporated in a neck portion of a container main body for storing a chemical solution, the droplet rising in a mountain shape around the discharge port at the end of the flow path of the chemical solution And a root portion that surrounds the flow path and extends in the shape of a rod, and at the boundary between the dripping portion and the root portion, a liquid cut portion that is wedge-shaped and protrudes in the outer peripheral direction. A drip nozzle characterized by being provided.

滴下ノズルは、薬液が封入された容器本体の先端に組み込まれ、薬液を外部に滴下する役割を担い、その中心には、薬液が通過するごく狭い流路を形成し、この流路の終端が吐出口となる。また容器本体の形状や大きさは自在だが、その上部には円筒状に突出する頸部を設け、そこに滴下ノズルを組み込む。なお容器本体と滴下ノズルは、圧入や接着などで密閉性を確保する。   The dripping nozzle is incorporated at the tip of the container main body in which the chemical solution is sealed, and plays a role of dripping the chemical solution to the outside. At the center of the dropping nozzle, a very narrow flow channel is formed. Discharge port. The container body can be of any shape and size, but a neck protruding in a cylindrical shape is provided at the top, and a dripping nozzle is incorporated there. The container body and the dripping nozzle ensure hermeticity by press-fitting or bonding.

滴造部は、吐出口とその周辺領域に位置し、流路に沿った縦断面から見て、吐出口が最も盛り上がり、そこから離れるに連れて徐々に下降する山状の部位で、具体例として台形断面や半球断面が挙げられる。台形断面の場合、吐出口の外縁には、わずかではあるが水平部分があり、その先で斜め下方に傾斜し、ふもとに向かう。滴造部を山状に隆起させることで、その表面積が増大し、液滴が成長しやすくなる。なお、台形断面と半球断面の滴造部を比較すると、台形断面の方が表面積が大きくなる。   The drop forming part is located in the discharge port and its peripheral region, and is a mountain-shaped part where the discharge port rises most when viewed from a vertical cross section along the flow path and gradually descends as it is separated from it. As trapezoidal sections and hemispherical sections. In the case of a trapezoidal cross section, there is a slight horizontal portion at the outer edge of the discharge port, and the tip is inclined obliquely downward and toward the base. By raising the droplet forming portion in a mountain shape, the surface area is increased and the droplets are easily grown. In addition, when the dripping part of a trapezoidal section and a hemispherical section is compared, the trapezoidal section has a larger surface area.

根元部は、容器本体の先端部から吐出口までの距離を確保し、薬液が容器本体などに付着することを防ぐための部位で、単純に流路に沿って伸びていればよく、滴下作業時の操作性などを考慮し、具体的な形状や延長を決定する。そのため根元部は、円柱状となることもあれば、テーパー状となることもある。なお根元部の側周面には、吐出口からの薬液が到達しないことを前提とする。   The root part is a part that secures the distance from the tip of the container body to the discharge port and prevents the chemical solution from adhering to the container body, etc. In consideration of time operability, etc., determine the specific shape and extension. Therefore, the root portion may be cylindrical or tapered. It is assumed that the chemical solution from the discharge port does not reach the side peripheral surface of the root portion.

液切部は、薬液の移動を規制する役割を担い、滴造部と根元部の境界に位置する円盤状の部位である。したがって液切部に隣接する滴造部と根元部のいずれも、液切部よりも縦断面が細くなっている。さらに液切部の縦断面は、中心(流路のある位置)から先端(外周側)に向かうに連れて先細りとなるクサビ形状で、その先端はできるだけ鋭角に仕上げる。併せて、液切部の上面は、水平面または先端に向けてせり上がるように仕上げる。   The liquid cutting part plays a role of regulating the movement of the chemical solution, and is a disk-shaped part located at the boundary between the dripping part and the root part. Therefore, both the drop forming part and the root part adjacent to the liquid cutting part have a narrower vertical cross section than the liquid cutting part. Further, the longitudinal section of the liquid drainage portion has a wedge shape that tapers from the center (position where the flow path is located) toward the tip (outer peripheral side), and the tip is finished as sharp as possible. At the same time, the upper surface of the liquid drainage part is finished so as to rise toward the horizontal surface or the tip.

液切部により、吐出口からあふれた薬液がせき止められ、その上の滴造部に液滴を形成する。さらに、液切部の先端をクサビ形状に仕上げることで、薬液の濡れ現象がこの位置で断ち切られ、裏側(根元部の方)に薬液が回り込むことを防ぎ、良好な液切れを得られる。そのほか、液切部の上面を水平面または「せり上がり」に仕上げることで、表面張力で薬液が保持され、液切部の外縁から薬液が落下することを防ぐ。   The liquid cutting part stops the chemical overflowing from the discharge port, and forms droplets on the drop forming part. Furthermore, by finishing the tip of the liquid cutting part into a wedge shape, the wetting phenomenon of the chemical liquid is cut off at this position, and the chemical liquid is prevented from flowing around to the back side (the base part), and a good liquid drainage can be obtained. In addition, by finishing the upper surface of the liquid drainage part in a horizontal plane or “raising”, the chemical liquid is held by the surface tension, and the chemical liquid is prevented from dropping from the outer edge of the liquid drainage part.

請求項2記載の発明は、薬液の過剰な滴下を防止するためのもので、流路には、局地的に断面を狭めた絞りを設けてあることを特徴とする。滴造部や液切部は、適量の薬液が供給された場合に本来の機能を発揮でき、仮に多量の薬液が吐出口から一気にあふれ出たならば、薬液は液切部を突破して根元部に流れ込み、本来の機能を発揮できない。そのため本発明のように、流路に絞りを設けて流動抵抗を増大させ、容器本体を強めに押圧した際も薬液の流量を抑え込み、様々な状況で液切部の機能を発揮させることが好ましい。   The invention described in claim 2 is for preventing excessive dripping of the chemical solution, and is characterized in that a restriction with a locally narrowed cross section is provided in the flow path. The dripping section and liquid cutting section can perform their original functions when an appropriate amount of chemical liquid is supplied, and if a large amount of chemical liquid overflows from the discharge port at once, the chemical liquid breaks through the liquid cutting section. It flows into the part and cannot perform its original function. Therefore, as in the present invention, it is preferable to increase the flow resistance by providing a restriction in the flow path, to suppress the flow rate of the chemical solution even when the container body is pressed strongly, and to exhibit the function of the liquid drainage part in various situations. .

請求項1記載の発明のように、滴下ノズルの先端部に山状の滴造部を形成し、その下部外縁にツバ状の液切部を形成することで、薬液が根元部に流出することを防止でき、薬液が正しく眼球に滴下される。さらに液切部をクサビ形状とすることで、薬液の濡れ現象をその先端で確実に食い止めることができ、裏漏りを効果的に抑制し、液滴の成長を促進させる。   As in the first aspect of the present invention, the chemical solution flows out to the root portion by forming a mountain-shaped drop forming portion at the tip of the dropping nozzle and forming a brim-like liquid drainage portion at the lower outer edge thereof. Can be prevented, and the drug solution is properly dropped on the eyeball. Further, by forming the liquid drainage portion into a wedge shape, the wetting phenomenon of the chemical liquid can be surely stopped at its tip, effectively preventing back leakage and promoting the growth of droplets.

さらに容器本体を横に向けた場合、突出する液切部の先端付近に薬液が集まって玉状に成長し、これが自重で一気に落下するため、液滴が過度に成長することがないほか、ノズル先端の薬液の残留が抑制される。その結果、浮遊物の吸着や、乾燥による成分の沈着など、衛生面での課題が解消できるほか、滴下量の変動も抑制され、薬液の効力が正しく発揮される。   Furthermore, when the container body is turned sideways, the chemical solution gathers near the tip of the protruding liquid drainage part and grows into a ball shape, which drops at once due to its own weight, so that the droplets do not grow excessively and the nozzle Residue of the chemical at the tip is suppressed. As a result, hygiene issues such as adsorption of suspended solids and deposition of components due to drying can be solved, and fluctuations in the amount of dripping are also suppressed, so that the effectiveness of the chemical solution is correctly demonstrated.

請求項2記載の発明のように、容器本体から吐出口をつなぐ流路に絞りを設けることで、薬液の過剰な供給が抑制される。そのため滴下時、容器本体を強めに押圧した場合でも、吐出口からあふれ出る薬液の量が制限され、滴造部や液切部が本来の機能を発揮し、正常な滴下作業を妨げることがない。また不用意に容器本体を横倒しにした場合でも、薬液が自然に漏れ出すことを防止できる。   As in the second aspect of the invention, excessive supply of the chemical solution is suppressed by providing a restriction in the flow path connecting the discharge port to the container body. For this reason, even when the container body is pressed strongly during dripping, the amount of the chemical that overflows from the discharge port is limited, and the dripping section and the liquid draining section perform their original functions and do not interfere with normal dripping operations. . Further, even when the container body is laid down carelessly, the chemical liquid can be prevented from leaking naturally.

本発明による滴下ノズルの構成を示す縦断面図と、先端部の詳細を示す斜視図である。It is the longitudinal cross-sectional view which shows the structure of the dripping nozzle by this invention, and the perspective view which shows the detail of a front-end | tip part. 滴下ノズルで液滴が形成される過程を示す側面図である。It is a side view which shows the process in which a droplet is formed with a dripping nozzle. 滴下ノズルの角度と、滴下ノズルに残留する薬液の量との関係について、測定結果を示すグラフである。なおグラフの横軸は、滴下ノズルの姿勢を示す滴下角度で、縦軸は、滴下ノズルに付着した薬液の残留量で、グラフ中には、四種類の滴下ノズルの測定結果を描いてある。It is a graph which shows a measurement result about the relationship between the angle of a dripping nozzle, and the quantity of the chemical | medical solution which remains in a dripping nozzle. The horizontal axis of the graph is the dropping angle indicating the posture of the dropping nozzle, the vertical axis is the residual amount of the chemical solution attached to the dropping nozzle, and the graph shows the measurement results of four types of dropping nozzles. 液切部の突出長さと、滴下ノズルに残留する薬液の量との関係について、測定結果を示すグラフである。なおグラフの横軸は、滴下ノズルの姿勢を示す滴下角度で、縦軸は、滴下ノズルに付着した薬液の残留量で、グラフ中には、四種類の滴下ノズルの測定結果を描いてある。It is a graph which shows a measurement result about the relationship between the protrusion length of a liquid cutting part, and the quantity of the chemical | medical solution which remains in a dripping nozzle. The horizontal axis of the graph is the dropping angle indicating the posture of the dropping nozzle, the vertical axis is the residual amount of the chemical solution attached to the dropping nozzle, and the graph shows the measurement results of four types of dropping nozzles. 本発明による滴下ノズルの形状例を示す縦断面図と、先端部の詳細を示す斜視図である。It is the longitudinal cross-sectional view which shows the example of a shape of the dripping nozzle by this invention, and the perspective view which shows the detail of a front-end | tip part.

図1は、本発明による滴下ノズル11の構成を示しており、薬液を蓄える容器本体31の上部には、円筒状の頸部32が形成され、そこに滴下ノズル11が嵌め込まれ、密閉性が確保されている。なお容器本体31と滴下ノズル11のいずれも、合成樹脂を成形したもので、頸部32の側周面には、キャップ(図示は省略)を取り付けるためのオネジ33を形成してある。   FIG. 1 shows a configuration of a dripping nozzle 11 according to the present invention. A cylindrical neck portion 32 is formed on an upper portion of a container main body 31 for storing a chemical solution, and the dripping nozzle 11 is fitted therein to provide a sealing property. It is secured. Both the container main body 31 and the dropping nozzle 11 are made of synthetic resin, and a male thread 33 for attaching a cap (not shown) is formed on the side peripheral surface of the neck portion 32.

滴下ノズル11は円柱状で、ほぼ中央に位置するフランジ24を境として、それよりも下は頸部32に圧入され、それよりも上は外部に突出する。この外部に突出する部分のうち、薬液との接触を想定した範囲が滴造部21で、その直下で薬液と接触しない範囲が根元部23で、さらに滴造部21と根元部23の境界に液切部25を設ける。また滴下ノズル11の中心には、薬液を外部に滴下するため、両端を貫通するごく狭い流路22を形成してあり、その終端が吐出口20となる。吐出口20は、滴造部21の中心に位置し、表面張力で薬液を付着させ、所定の液滴を形成する。   The dripping nozzle 11 has a columnar shape, with the flange 24 positioned substantially in the center as a boundary, the lower part is press-fitted into the neck 32, and the upper part protrudes to the outside. Of the portion protruding to the outside, the range assuming contact with the chemical solution is the dropping unit 21, the range not in contact with the chemical solution immediately below is the root portion 23, and further on the boundary between the dropping unit 21 and the root portion 23. A liquid draining portion 25 is provided. In addition, a very narrow flow path 22 that penetrates both ends is formed in the center of the dropping nozzle 11 to drop the chemical solution to the outside. The discharge port 20 is located at the center of the droplet forming unit 21 and attaches a chemical solution with surface tension to form a predetermined droplet.

滴造部21は、縦断面から見て、吐出口20を中心とした台形状で、吐出口20の外縁近傍に限り水平に仕上げてあるが、その先で下向きに傾斜して液切部25に到達している。滴造部21を台形状とすることで、単純な平面や半球面と比べて表面積が増大し、表面張力で付着する薬液の量も多くなる。そのほか、滴下ノズル11を貫通する流路22の入り口(最下部)には、薬液の流量を抑制するため、断面を局地的に狭めた絞り26を形成してある。   The drop forming unit 21 has a trapezoidal shape centered on the discharge port 20 as viewed from the vertical cross section, and is finished horizontally only in the vicinity of the outer edge of the discharge port 20. Has reached. By making the dripping part 21 into a trapezoidal shape, the surface area is increased as compared with a simple flat surface or a hemispherical surface, and the amount of the chemical solution attached by the surface tension is increased. In addition, at the entrance (lowermost part) of the flow path 22 that penetrates the dropping nozzle 11, a throttle 26 having a locally narrowed cross section is formed in order to suppress the flow rate of the chemical solution.

液切部25は、薬液の流動範囲を規制し、吐出口20から離れた位置での滴下を防止するほか、薬液を集めて液滴を成長させ、落下を促進させる機能を有する。ただし液切部25は、単純なツバ状ではなく「A部拡大図」のように、上部を水平面27としたクサビ形状としてある。そのため、薬液が液切部25の先端を回り込む裏漏り現象を防ぎ、より正常に滴下が進行する。なお水平面27は、何らの凹凸もないため、薬液を溜め込むことができず、滴下後の残留も抑制される。   The liquid draining part 25 regulates the flow range of the chemical liquid and prevents dropping at a position away from the discharge port 20, and also has a function of collecting the chemical liquid to grow the liquid droplet and promoting the dropping. However, the liquid drainage portion 25 is not a simple brim shape, but has a wedge shape with an upper portion as a horizontal surface 27 as shown in “A portion enlarged view”. Therefore, the back leakage phenomenon in which the chemical solution goes around the tip of the liquid cutting part 25 is prevented, and dripping proceeds more normally. In addition, since the horizontal surface 27 does not have any unevenness, the chemical solution cannot be stored, and the residual after dropping is also suppressed.

根元部23は、頸部32から吐出口20までの距離を確保するための部位で、滴造部21が小径であることに対応し、先細りのテーパー状となっている。また根元部23の上端は、液切部25の外縁よりも小径で、この箇所には必然的にクビレが形成される。なお根元部23は、薬液の滴下には関与しないため、その延長や形状などは、滴下作業時の操作性などに基づき、自由に決めることができる。   The root portion 23 is a portion for securing a distance from the neck portion 32 to the discharge port 20, and corresponds to the small diameter of the dripping portion 21 and has a tapered shape. Further, the upper end of the root portion 23 has a smaller diameter than the outer edge of the liquid cutting portion 25, and a constriction is inevitably formed at this location. In addition, since the root part 23 does not participate in dripping of a chemical | medical solution, the extension, a shape, etc. can be decided freely based on the operativity at the time of dripping work, etc.

図2は、滴下ノズル11で液滴が形成される過程を示している。容器本体31を真横に向け、その側面を指などで押圧すると、やがて滴下ノズル11の先端に液滴が形成され、これが十分に成長すると、重力が表面張力に打ち勝ち、全体が落下していく。図の上方に示す「本発明による滴下ノズル」では、滴造部21の下半分に薬液が付着し、これが液切部25でせき止められ、球状の液滴が真下に向けて成長していく。   FIG. 2 shows a process in which droplets are formed by the dropping nozzle 11. When the container main body 31 is turned to the side and the side surface is pressed with a finger or the like, a droplet is formed at the tip of the dropping nozzle 11 and when it grows sufficiently, gravity overcomes the surface tension and the whole falls. In the “dropping nozzle according to the present invention” shown in the upper part of the figure, the chemical solution adheres to the lower half of the dropping unit 21, which is dammed by the liquid draining unit 25, and spherical droplets grow up directly below.

そして、液滴の成長途中で容器本体31の押圧をやめると、吐出口20からの供給もなくなり、液滴全体が下に移動して、液切部25の先端から涙状に垂れ下がり、やがて一気に落下する。なお薬液が液切部25の先端に集積する際、周辺に付着した薬液を引き込むため、残留分が少なくなる。また液切部25を先鋭のクサビ形状とすることで、液滴との接触も狭い領域に限定され、液滴が過度に成長することもない。   When the pressure on the container body 31 is stopped during the growth of the liquid droplet, the supply from the discharge port 20 is also stopped, the entire liquid droplet moves downward, hangs down like a tear from the tip of the liquid drainage portion 25, and at a stroke. Fall. It should be noted that when the chemical solution is accumulated at the tip of the liquid cutting part 25, the chemical solution adhering to the periphery is drawn in, so that the remaining amount is reduced. Further, by making the liquid drainage portion 25 have a sharp wedge shape, the contact with the droplet is limited to a narrow region, and the droplet does not grow excessively.

対して、図の下方に示す「一般的な滴下ノズル」では、薬液が滴下ノズルの下部全体に拡散し、液滴が大きく成長するほか、滴下ノズルの表面付近の薬液は、落下することなく付着し続け、残留分も多くなる。さらに液滴が落下する位置についても、吐出口から大きく離れてしまい、薬液を眼内に供給できない恐れがある。なお「本発明による滴下ノズル」と「一般的な滴下ノズル」のいずれについても、吐出口を真下に向けた場合、薬液の滴下量に明確な差は生じない。そのため本発明では、容器本体31の姿勢による滴下量の変化が少なくなるよう、滴造部21や液切部25の形状を決める。   On the other hand, in the “general dripping nozzle” shown in the lower part of the figure, the chemical solution diffuses throughout the lower part of the dripping nozzle and the droplet grows large, and the chemical solution near the surface of the dripping nozzle adheres without dropping. Continue to increase the residue. Further, the position where the liquid droplet falls may be far away from the discharge port, and there is a possibility that the chemical cannot be supplied into the eye. It should be noted that there is no clear difference in the amount of dropped chemical solution when the discharge port is directed directly below for both the “dropping nozzle according to the present invention” and the “general dropping nozzle”. Therefore, in this invention, the shape of the dripping part 21 or the liquid cutting part 25 is determined so that the change of the dripping amount by the attitude | position of the container main body 31 may become small.

図3は、滴下ノズルの角度と、滴下ノズルに残留する薬液の量との関係について、測定結果を示すグラフである。なおグラフ横軸の「滴下角度」は、滴下ノズルの姿勢を示し、滴下ノズルの吐出口が真下を向く場合、滴下角度は90度となり、また吐出口が真横を向く場合、滴下角度は0度となる。次にグラフ縦軸の「滴下後の残留量」は、容器本体をゆっくり押圧して、10滴を滴下した後、滴下ノズルを吸水紙で拭き取り、その重量の増加分を読み取ったもので、滴下ノズルに付着した薬液の量を示している。   FIG. 3 is a graph showing measurement results regarding the relationship between the angle of the dropping nozzle and the amount of the chemical remaining in the dropping nozzle. The “drop angle” on the horizontal axis of the graph indicates the position of the drop nozzle. When the discharge port of the drop nozzle faces directly below, the drop angle is 90 degrees, and when the discharge port faces sideways, the drop angle is 0 degrees. It becomes. Next, the “residual amount after dropping” on the vertical axis of the graph is a result of slowly pressing the container body and dropping 10 drops, then wiping the dropping nozzle with absorbent paper and reading the increase in weight. The amount of the chemical solution attached to the nozzle is shown.

この実験では、本発明による滴下ノズルのほか、図3に示す一般的な滴下ノズルと、実際に市販されている二製品を用いて測定を行った。また薬液は、いずれも0.1パーセントポリソルベート水溶液を用い、個々の滴下角度に対し五回の測定を行い、その平均値に基づいてグラフを作成している。その他、室温などの諸条件も、できるだけ差がないよう配慮している。   In this experiment, in addition to the dropping nozzle according to the present invention, the measurement was performed using the general dropping nozzle shown in FIG. 3 and two products that are actually commercially available. In addition, as the chemical solution, 0.1% polysorbate aqueous solution is used, and measurement is performed five times for each dropping angle, and a graph is created based on the average value. In addition, consideration is also given to various conditions such as room temperature as much as possible.

図3のグラフのように、滴下角度が90度および45度の場合、いずれの滴下ノズルも、残留を測定できなかった。しかし滴下ノズルを水平に近づけ、滴下角度が15度になると、本発明による滴下ノズル以外は、1mgから3mgの残留が生じている。さらに滴下ノズルを真横に向け、滴下角度を0度とした場合、一般的な滴下ノズルでは、20mgを超える残留が生じ、残る市販品の二製品についても、5mg程度の残留が生じている。対して本発明による滴下ノズルは、1mgに達することもなく、残留がほとんど生じない優れた特性が確認された。   As shown in the graph of FIG. 3, when the dropping angles were 90 degrees and 45 degrees, none of the dropping nozzles could measure the residue. However, when the dropping nozzle is brought close to the horizontal and the dropping angle becomes 15 degrees, 1 mg to 3 mg of residue other than the dropping nozzle according to the present invention is generated. Further, when the dropping nozzle is directed to the side and the dropping angle is set to 0 degree, a general dropping nozzle has a residue exceeding 20 mg, and the remaining two commercial products have a residue of about 5 mg. On the other hand, the dripping nozzle according to the present invention did not reach 1 mg and was confirmed to have excellent characteristics with almost no residue.

図4は、液切部25の突出長さと、滴下ノズルに残留する薬液の量との関係について、測定結果を示すグラフである。この測定では、液切部25の突出長さが異なる計四種類の滴下ノズル(突出長さ:0.1mm・0.3mm・0.5mm・1.0mm)を製造し、それぞれについて、規定の角度で薬液を滴下させた。なおいずれの滴下ノズルとも、液切部25の突出長さ以外の形状は揃えてある。またグラフ横軸の「滴下角度」、グラフ縦軸の「滴下後の残留量」、薬液の種類など、測定に関する諸条件は、先の図3と同じである。   FIG. 4 is a graph showing the measurement results of the relationship between the protruding length of the liquid cutting part 25 and the amount of the chemical remaining in the dropping nozzle. In this measurement, a total of four types of dripping nozzles (projection lengths: 0.1 mm, 0.3 mm, 0.5 mm, and 1.0 mm) with different projecting lengths of the liquid drainage portions 25 were manufactured, The chemical solution was dripped at an angle. In any of the dripping nozzles, shapes other than the protruding length of the liquid cutting part 25 are aligned. Further, various conditions relating to the measurement, such as “drop angle” on the horizontal axis of the graph, “residual amount after dropping” on the vertical axis of the graph, and the type of chemical solution, are the same as those in FIG.

図4のグラフのように、滴下角度が90度から45度の範囲では、いずれも残留を測定できなかったが、滴下角度が水平に近づけるに連れ、残留を生じるようになる。さらに、液切部25の突出長さが増大するに連れ、残留量も増大する傾向が明確に把握できる。ただし突出長さが1.0mmの場合でも、最大の残留量は約5mgで、先の図3の市販品(1)や市販品(2)と同等である。   As shown in the graph of FIG. 4, no residue could be measured when the drop angle was in the range of 90 to 45 degrees. However, as the drop angle approaches horizontal, the residue appears. Further, it is possible to clearly grasp the tendency that the residual amount increases as the protruding length of the liquid drainage portion 25 increases. However, even when the protrusion length is 1.0 mm, the maximum residual amount is about 5 mg, which is equivalent to the commercial product (1) and the commercial product (2) in FIG.

液切部25の突出長さと残留量との関係は、水平面27の広さに基づくと推定される。水平面27が広くなるに連れ、表面張力で水平面27に付着する薬液の量も増大するが、その薬液は、滴下角度が0度になった場合でも落下することなく付着し続け、図4のグラフのような結果となる。そのため残留量を減らすには、液切部25の突出長さを必要最低限に抑制することが好ましい。   It is presumed that the relationship between the protruding length of the liquid cutting part 25 and the residual amount is based on the width of the horizontal plane 27. As the horizontal surface 27 becomes wider, the amount of the chemical liquid adhering to the horizontal surface 27 due to surface tension increases. However, even when the dropping angle becomes 0 degree, the chemical liquid continues to adhere without dropping, and the graph of FIG. The result is as follows. Therefore, in order to reduce the residual amount, it is preferable to suppress the protruding length of the liquid drainage portion 25 to the minimum necessary.

図5は、本発明による滴下ノズル12の形状例を示している。本発明では、滴下ノズルに液切部25を設けることを必須要件としているが、他の部分はある程度自由に決めることができ、この図のように、滴造部21を半球状とすることもできる。また根元部23についても、この図のように直径が一定の円柱形とすることもできる。ただし根元部23の裾は、フランジ24との接続のため、末広がりにしてある。そのほか液切部25は、図1に描くものよりも一段と鋭い。このように液切部25についても、滴造部21や根元部23からの突出量や、先端の角度は、目的に応じて自在に決めて構わない。   FIG. 5 shows an example of the shape of the dropping nozzle 12 according to the present invention. In the present invention, it is an essential requirement to provide the liquid cutting part 25 in the dropping nozzle, but other parts can be freely determined to some extent, and the dripping part 21 may be hemispherical as shown in this figure. it can. Further, the root portion 23 can also be formed in a cylindrical shape having a constant diameter as shown in this figure. However, the skirt of the root portion 23 is widened for connection with the flange 24. In addition, the liquid draining portion 25 is sharper than that depicted in FIG. As described above, the amount of protrusion from the dropping unit 21 and the root part 23 and the angle of the tip of the liquid draining part 25 may be freely determined according to the purpose.

11 滴下ノズル(根元部がテーパー状)
12 滴下ノズル(根元部が円柱状)
20 吐出口
21 滴造部
22 流路
23 根元部
24 フランジ
25 液切部
26 絞り
27 水平面
31 容器本体
32 頸部
33 オネジ
11 Dripping nozzle (base is tapered)
12 Dripping nozzle (the base is cylindrical)
20 Discharge port 21 Drop forming part 22 Flow path 23 Root part 24 Flange 25 Liquid draining part 26 Restriction 27 Horizontal surface 31 Container body 32 Neck part 33 Male thread

Claims (2)

薬液を収容する容器本体(31)の頸部(32)に組み込む滴下ノズル(11又は12)であって、
薬液の流路(22)終端の吐出口(20)を中心として山状に隆起した滴造部(21)と、該流路(22)を囲み棒状に伸びる根元部(23)と、を形成し、
前記滴造部(21)と前記根元部(23)との境界には、縦断面がクサビ形状で且つ外周方向に突出する液切部(25)を設けてあることを特徴とする滴下ノズル。
A dripping nozzle (11 or 12) incorporated in the neck (32) of the container body (31) for storing the chemical solution,
Forming a drop forming part (21) protruding in a mountain shape around the discharge port (20) at the end of the chemical liquid flow path (22) and a root part (23) extending around the flow path (22) in a rod shape And
A dripping nozzle characterized in that a liquid drainage portion (25) having a wedge-shaped longitudinal section and projecting in an outer peripheral direction is provided at a boundary between the dripping portion (21) and the root portion (23).
前記流路(22)には、局地的に断面を狭めた絞り(26)を設けてあることを特徴とする請求項1記載の滴下ノズル。   The dripping nozzle according to claim 1, wherein the flow path (22) is provided with a throttle (26) having a locally narrowed cross section.
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JP7273184B2 (en) 2019-06-10 2023-05-12 ニコベンチャーズ トレーディング リミテッド Aerosol delivery device

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