JP3193575U - Automatic drug feeder - Google Patents

Automatic drug feeder Download PDF

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JP3193575U
JP3193575U JP2014004038U JP2014004038U JP3193575U JP 3193575 U JP3193575 U JP 3193575U JP 2014004038 U JP2014004038 U JP 2014004038U JP 2014004038 U JP2014004038 U JP 2014004038U JP 3193575 U JP3193575 U JP 3193575U
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reaction vessel
drug
reaction zone
automatic
container
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純厚 李
純厚 李
亮 掲
亮 掲
家松 張
家松 張
宏標 董
宏標 董
志軍 劉
志軍 劉
建彬 肖
建彬 肖
亞飛 段
亞飛 段
曉勇 頡
曉勇 頡
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太陽高新技術(深▲せん▼)有限公司
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish

Abstract

【課題】薬剤を自動に供給し、薬剤の反応期間を制御でき、しかも低い電力消費かまたは電力を消費しない自動薬剤供給装置を提供すること。【解決手段】自動薬剤供給装置は、反応容器1と、反応容器1の上方に取り付けられた2つまたは2つ以上の薬剤供給容器2と、反応容器1の内部に延設された薬剤供給容器2の薬剤投入端と、反応容器1の側壁に設けられた入水口3と、反応容器1の底部に取り付けられ、液体を反応容器1外部に排出させるサイフォン式液体吸排装置と、を備える。【選択図】図1PROBLEM TO BE SOLVED: To provide an automatic drug supply device capable of automatically supplying a drug, controlling a reaction period of the drug, and consuming low power or not consuming power. An automatic drug supply device includes a reaction vessel 1, two or more drug supply containers 2 mounted above the reaction vessel 1, and a drug supply container extending inside the reaction vessel 1. It is provided with a drug charging end of No. 2, a water inlet 3 provided on the side wall of the reaction vessel 1, and a siphon-type liquid suction / discharge device attached to the bottom of the reaction vessel 1 to discharge the liquid to the outside of the reaction vessel 1. [Selection diagram] Fig. 1

Description

本考案は生物の養殖や、観賞用生物及びペットの飼育分野において、薬剤を供給する自動薬剤供給装置であって、薬剤の反応時間を制御可能、かつ低エネルギー消費または動力消費が不要な自動薬剤供給装置に関する。   The present invention is an automatic medicine supply device for supplying medicines in the field of aquaculture, ornamental creatures and pet breeding, which can control the reaction time of the medicine and does not require low energy consumption or power consumption It relates to a supply device.

生物養殖、例えば水産物の養殖や、観賞用生物及びペットの飼育分野において、生物製剤及び薬剤(液体と粉体を含む)の供給は欠かせないプロセスの一つである。生物製剤及び薬剤の供給装置は、生物の養殖や、観賞用生物及びペットの飼育に使用されており、特に生物製剤が使用される前には一定量の炭素源を添加して所定の反応期間を経過しなければ最適な活性及び効果が得られないため、欠かせない装置である。   In the field of biological aquaculture, such as aquaculture, or ornamental and pet breeding, the supply of biologics and drugs (including liquids and powders) is one of the indispensable processes. Biopharmaceutical and drug supply devices are used for aquaculture, ornamental organisms, and pet breeding. In particular, before a biologic is used, a certain amount of carbon source is added and a predetermined reaction period is added. This is an indispensable device because optimal activity and effect cannot be obtained without passing through.

現在市場に出ている様々な薬剤供給装置は2種に分類することができる。そのうち一種は純粋な手動装置であり、もう一種は電気制御式の自動薬剤供給装置である。前者は薬剤の添加プロセスがすべて人の手に頼ることから、労働力と待機時間などが掛かり、後者は自動で計量及び添加を行える効果を有するものの、主に複雑な電子回路によって制御されているため、湿気など環境の影響を受けるほか、故障しやすいうえに電力を消費する。さらに、市販の薬剤供給装置は、手動であっても機械式による自動供給であっても、供給される薬剤を充分に溶解、反応、混合できないため、高濃度の薬剤と生物が直接に接触してしまい、好ましくない反応を引き起こす課題が残されている。そのため、薬剤を自動に供給することができ、かつ異なる薬剤を充分に溶解、反応、混合でき、非常に少ない電気消費または電気を消費しない斬新な設計が、製品技術レベルアップにとって極めて重要な一要素となっている。   Various drug supply devices currently on the market can be classified into two types. One of them is a pure manual device, and the other is an electrically controlled automatic drug supply device. The former is dependent on human hands for the drug addition process, which requires labor and waiting time. The latter has the effect of automatic metering and addition, but is controlled mainly by complex electronic circuits. Therefore, it is not only affected by the environment such as humidity, but also easily breaks down and consumes power. In addition, commercially available drug supply devices, whether manually or mechanically supplied automatically, cannot sufficiently dissolve, react, and mix the supplied drug, so that a high concentration of drug and organisms are in direct contact with each other. Thus, there remains a problem that causes an undesirable reaction. Therefore, a novel design that can automatically supply drugs and can sufficiently dissolve, react, and mix different drugs, and consume very little electricity or consumes electricity is one of the most important factors for improving product technology. It has become.

本考案の目的は、薬剤を自動に供給し、薬剤の反応期間を制御でき、しかも低い電力消費かまたは電力を消費しない自動薬剤供給装置を提供することにある。   An object of the present invention is to provide an automatic drug supply device that can automatically supply a drug, control a reaction period of the drug, and does not consume low power or power.

本考案の技術課題を解決しようとする手段は、反応容器と、反応容器の上方に取り付ける2つまたは2つ以上の薬剤供給容器と、反応容器の内部に延設された薬剤供給容器の薬剤投入端と、反応容器の側壁に設けられた入水口と、反応容器の底部に取り付けられ、反応容器内の液体を反応容器外部に排出させるサイフォン式液体吸排装置とを備える、自動薬剤供給装置を提供する。   Means for solving the technical problems of the present invention include a reaction container, two or more drug supply containers mounted above the reaction container, and a drug supply in a drug supply container extending inside the reaction container. Provided is an automatic drug supply device comprising an end, a water inlet provided on the side wall of the reaction vessel, and a siphon type liquid suction / discharge device attached to the bottom of the reaction vessel and discharging the liquid in the reaction vessel to the outside of the reaction vessel To do.

前述技術のさらなる改善手段として、例えば反応容器を上層反応区域と下層反応区域とに仕切る混合装置を設け、上層反応区域と下層反応区域を直接または間接に連絡し、2つまたは2つ以上の薬剤供給容器の薬剤投入端を混合装置に延設してもよい。   As a further improvement means of the above-described technique, for example, a mixing device that partitions the reaction vessel into an upper reaction zone and a lower reaction zone is provided, and the upper reaction zone and the lower reaction zone are directly or indirectly connected to each other, and two or more drugs are provided. The drug input end of the supply container may be extended to the mixing device.

前述技術のさらなる改善手段として、薬剤投入端が混合装置に延設された薬剤供給容器のうち、少なくとも一つに液体薬剤が入れられていてもよい。   As a further improvement means of the above-described technique, a liquid medicine may be placed in at least one of the medicine supply containers whose medicine input ends are extended to the mixing device.

前述技術のさらなる改善手段として、混合装置はテーパー状のじょうごを形成し、テーパー状のじょうご中間部の薬剤供給口に、らせん状の液体混合区域を形成するらせん装置を設けてもよい。   As a further improvement of the above technique, the mixing device may form a tapered funnel, and a spiral device that forms a spiral liquid mixing zone may be provided at the drug supply port in the middle portion of the tapered funnel.

前述技術のさらなる改善手段として、混合装置はテーパー状のじょうごを形成し、混合装置の底部に少なくとも一つの混合液サイフォンチューブを設け、上層反応区域と下層反応区域とが混合液サイフォンチューブによって連絡されていてもよい。   As a further improvement of the above technique, the mixing device forms a tapered funnel and is provided with at least one liquid siphon tube at the bottom of the mixing device, where the upper reaction zone and the lower reaction zone are connected by the liquid siphon tube. It may be.

前述技術のさらなる改善手段として、前述サイフォン式液体吸排装置は少なくとも一つのサイフォンチューブを有し、サイフォンチューブの一端を下層反応区域の底部に当て、サイフォンチューブの他端を下層反応区域の中間から少し高い位置に延ばした後少なくとも一回の折り返しを形成してから反応容器の底壁を貫いて反応容器外部に延出させてもよい。   As a further improvement of the above technique, the siphon type liquid suction / discharge device has at least one siphon tube, with one end of the siphon tube placed on the bottom of the lower reaction zone and the other end of the siphon tube slightly from the middle of the lower reaction zone. After extending to a high position, at least one turn may be formed, and then it may extend through the bottom wall of the reaction vessel to the outside of the reaction vessel.

前述技術のさらなる改善手段として、サイフォンチューブが反応容器の底部を貫く一端が底壁と垂直になるように形成してもよい。   As a further improvement means of the above-mentioned technique, the siphon tube may be formed so that one end passing through the bottom of the reaction vessel is perpendicular to the bottom wall.

前述技術のさらなる改善手段として、薬剤投入容器すべての液体出力端に流量調節弁が取り付けられていてもよい。   As a further improvement means of the above-described technique, a flow rate control valve may be attached to the liquid output end of all of the medicine charging containers.

前述技術のさらなる改善手段として、入水口が下層反応区域側壁の中間から少し上の位置に設けられ、入水口の位置はサイフォンチューブのもっとも高い折り返し点より高く、入水口に水供給チューブと、水供給調節弁とが取り付けられていてもよい。   As a further improvement of the above technique, a water inlet is provided at a position slightly above the middle of the side wall of the lower reaction zone, and the position of the water inlet is higher than the highest turning point of the siphon tube. A supply control valve may be attached.

本考案の効果は、薬剤供給容器の薬剤投入端を反応容器内部に直接延ばすことによって、薬液を反応容器の内部にて充分な溶解、反応、混合してからサイフォン式液体吸排装置を介して排出できると共に、反応容器を上層反応区域と下層反応区域とに仕切る混合装置を取り付け、薬剤投入容器内部の液体及び/または粉末が重力により混合装置に流され、混合後は下層反応区域に流れてから、混合液に水を入水口から汲み入れて希釈し、下層反応区域の水位がサイフォン式液体吸排装置のサイフォンチューブ吸水位置を超えるときに、下層反応区域の混合液がサイフォン効果によって、反応容器の外部に排出される。本考案によれば、生物の養殖等における薬剤供給プロセスにおいて、供給される薬剤量の制御を実現できると共に、一種または複数種の組成を持つ薬剤の供給プロセスを通じて、充分な溶解、混合、反応希釈を実現し、動力によるエネルギー消費はなく、液圧を動力として、薬剤供給の自動化を実現できる。   The effect of the present invention is that the drug supply end of the drug supply container is directly extended into the reaction container, so that the chemical solution is sufficiently dissolved, reacted, and mixed in the reaction container and then discharged through the siphon type liquid suction / discharge device. At the same time, a mixing device that divides the reaction vessel into an upper reaction zone and a lower reaction zone is attached, and the liquid and / or powder inside the drug charging vessel is caused to flow into the mixing device by gravity and then flows to the lower reaction zone after mixing. When the water level in the lower reaction zone exceeds the siphon tube water absorption position of the siphon-type liquid suction / discharge device, the mixture in the lower reaction zone is mixed with the siphon effect by the siphon effect. It is discharged outside. According to the present invention, it is possible to control the amount of a drug to be supplied in a drug supply process in aquaculture, etc., and to sufficiently dissolve, mix, and react through the process of supplying a drug having one or more kinds of compositions. Therefore, there is no energy consumption due to power, and it is possible to automate the drug supply by using hydraulic pressure as power.

本考案の第1実施例の構造を示す図である。It is a figure which shows the structure of 1st Example of this invention. 本考案の第2実施例の構造を示す図である。It is a figure which shows the structure of 2nd Example of this invention. 本考案の第3実施例の構造を示す図である。It is a figure which shows the structure of 3rd Example of this invention. 本考案の第4実施例の構造を示す図である。It is a figure which shows the structure of 4th Example of this invention.

以下において、図式と実施例と合わせて本考案の実施例を詳しく説明する。   In the following, embodiments of the present invention will be described in detail with reference to the drawings and embodiments.

図1に示すように、本考案の第1実施例の自動薬剤供給装置は、反応容器1と、反応容器1の上方に取り付ける2つまたは2つ以上の薬剤供給容器2とを備え、薬剤供給容器2の薬剤投入端は反応容器1の内部に延設されている。、反応容器1の側壁には入水口3が設けられ、反応容器1の底部に反応容器1内部の液体を反応容器1の外部に排出させるサイフォン式液体吸排装置が設けられている。薬剤供給容器2の薬剤投入端を直接に反応容器1に延設し、液体薬剤を反応容器1内部で充分混合した後にサイフォン式液体吸排装置を介して排出させる。   As shown in FIG. 1, the automatic drug supply device according to the first embodiment of the present invention includes a reaction container 1 and two or more drug supply containers 2 attached above the reaction container 1, and supplies the drug. The drug input end of the container 2 is extended inside the reaction container 1. A water inlet 3 is provided on the side wall of the reaction vessel 1, and a siphon-type liquid intake / exhaust device for discharging the liquid inside the reaction vessel 1 to the outside of the reaction vessel 1 is provided at the bottom of the reaction vessel 1. The drug input end of the drug supply container 2 is directly extended to the reaction container 1, and after the liquid drug is sufficiently mixed inside the reaction container 1, the drug supply container 2 is discharged through a siphon type liquid suction / discharge device.

図2に示すように、本考案の第2実施例では、反応容器1は例えば、反応容器1を上層反応区域と下層反応区域とに仕切る混合装置8を備えており、上層反応区域と下層反応区域とは直接または間接に連絡され、2つの薬剤供給容器2の薬剤投入端を混合装置8へと延設することもできる。薬剤投入端が混合装置8の内部へと延設された薬剤供給容器2は、そのうち少なくとも一つの薬剤供給容器2の内部に液体薬剤が収容されている。他の薬剤供給容器2には、例えば粉末薬剤を収容し、その粉末薬剤を液体薬剤に添加して溶解させることができる。混合装置8はテーパー状のじょうごを形成し、テーパー状のじょうご中間部分の薬剤供給口にらせん装置を設け、らせん装置によってらせん状の混合区域を形成し、2種または2種以上の液体薬剤及び/または粉末薬剤をらせん状の混合区域を通過させることによって、充分な溶解、反応、混合効果が得られる。   As shown in FIG. 2, in the second embodiment of the present invention, the reaction vessel 1 includes, for example, a mixing device 8 that partitions the reaction vessel 1 into an upper reaction zone and a lower reaction zone. It is also possible to communicate directly or indirectly with the area and to extend the drug input ends of the two drug supply containers 2 to the mixing device 8. In the medicine supply container 2 in which the medicine input end extends into the mixing device 8, the liquid medicine is accommodated in at least one of the medicine supply containers 2. The other medicine supply container 2 can contain, for example, a powder medicine, and the powder medicine can be added to and dissolved in the liquid medicine. The mixing device 8 forms a tapered funnel, a spiral device is provided at the drug supply port at the middle portion of the tapered funnel, a spiral mixing area is formed by the spiral device, and two or more liquid drugs and Sufficient dissolution, reaction and mixing effects can be obtained by passing the powdered drug through a spiral mixing zone.

反応容器1は混合装置8によって、上層反応区域と下層反応区域に仕切られ、薬剤供給容器2内部の液体及び/または粉末が重力によって混合装置8に流され、混合した後は下層反応区域に流され、入水口から汲み入れる水によって混合液が希釈される。続いて、下層反応区域の水位がサイフォン式液体吸排装置のサイフォンチューブ位置を超えるとき、下層反応区域の混合液がサイフォンチューブ作用によって反応容器の外部に排出される。本考案を生物養殖の薬剤供給プロセスに適用すれば、薬剤の量を制御できると共に、持続供給時間も制御できるため、一種または複数種の成分を持つ薬剤を供給するプロセスにおいて、充分な溶解、混合、反応、希釈を実現することができ、液圧を動力に利用できることから、動力消費は不要であり、完全な自動薬剤供給を実現できる。   The reaction vessel 1 is divided into an upper layer reaction zone and a lower layer reaction zone by a mixing device 8, and the liquid and / or powder inside the drug supply vessel 2 is flowed to the mixing device 8 by gravity, and after mixing, flows to the lower reaction zone. The mixture is diluted with water drawn from the water inlet. Subsequently, when the water level in the lower reaction zone exceeds the siphon tube position of the siphon type liquid suction / discharge device, the mixed solution in the lower reaction zone is discharged to the outside of the reaction vessel by the siphon tube action. If the present invention is applied to a bioculture drug supply process, the amount of the drug can be controlled and the sustained supply time can also be controlled. Therefore, sufficient dissolution and mixing can be achieved in the process of supplying a drug having one or more components. Since the reaction and dilution can be realized, and the hydraulic pressure can be used as power, no power consumption is required, and complete automatic drug supply can be realized.

引き続き、図3に示す第3実施例を参照する。2つの薬剤供給容器2の薬剤投入端が混合装置8内へと延設され、そのうち一つの薬剤供給容器2の薬剤投入端が直接に反応容器1の内部へと延設されている。   Continuing to refer to the third embodiment shown in FIG. The drug input ends of the two drug supply containers 2 are extended into the mixing device 8, and the drug input ends of one drug supply container 2 are directly extended into the reaction container 1.

引き続き、図4に示す第4実施例を参照する。混合装置8はテーパー状のじょうごを形成し、混合装置8の底部には少なくとも一つの混合液サイフォンチューブ9が取り付けられ、上層反応区域と下層反応区域とは混合液サイフォンチューブ9によって連絡され、混合装置8内部の液体薬剤が混合液サイフォンチューブ9のサイフォンチューブ位置を超えるとき、液体薬剤が混合液サイフォンチューブ9を通過して下層反応区域へと流れこむ。   Continuing to refer to the fourth embodiment shown in FIG. The mixing device 8 forms a tapered funnel, and at least one mixed liquid siphon tube 9 is attached to the bottom of the mixing device 8, and the upper reaction zone and the lower reaction zone are communicated by the mixed liquid siphon tube 9 and mixed. When the liquid medicine inside the apparatus 8 exceeds the siphon tube position of the mixed liquid siphon tube 9, the liquid chemical flows through the mixed liquid siphon tube 9 and flows into the lower reaction zone.

前述技術のさらなる改善手段として、前述サイフォン式液体吸排装置が少なくとも一つのサイフォンチューブを有し、サイフォンチューブの一端を下層反応区域の底部に当て、サイフォンチューブの他端を下層反応区域の中間から少し高い位置に延ばした後に、少なくとも一回の折り返しを形成してから反応容器の底壁を貫いて反応容器外部に延出させている。   As a further improvement of the above technique, the siphon type liquid suction / discharge device has at least one siphon tube, one end of the siphon tube is placed on the bottom of the lower reaction zone, and the other end of the siphon tube is slightly inserted from the middle of the lower reaction zone. After extending to a high position, at least one turn is formed, and then it extends through the bottom wall of the reaction vessel to the outside of the reaction vessel.

前述技術のさらなる改善手段として、サイフォンチューブ6の一端が反応容器1の底壁を貫いており、当該一端は底壁と垂直になっており、サイフォンチューブ6を通じて液体薬剤を垂直方向から液体供給位置に滴下することができるようになっている。   As a further improvement means of the above-described technique, one end of the siphon tube 6 passes through the bottom wall of the reaction vessel 1, and the one end is perpendicular to the bottom wall. It can be dripped in.

前述技術のさらなる改善手段として、薬剤供給容器2すべての液体出力端に流量調節弁7を取り付けており、薬剤供給容器2に取り付けた流量調節弁7を調節することによって、液体薬剤を所定の比例に混合することができるようになっている。   As a further improvement means of the above-described technique, the flow rate control valve 7 is attached to all liquid output ends of the drug supply container 2, and the liquid drug is supplied in a predetermined proportion by adjusting the flow rate control valve 7 attached to the drug supply container 2. Can be mixed in.

前述技術のさらなる改善手段として、入水口3を下層反応区域の側壁の中間からやや上の位置に取り付け、入水口3の位置がサイフォンチューブの一番高い折返点より高い位置に設け、入水口3に水供給チューブ5と水供給調節弁4を取付けており、水供給調節弁4によって、水供給量と水供給速度とを調節することができるようになっている。   As a further improvement means of the above-described technique, the inlet 3 is attached to a position slightly above the middle of the side wall of the lower reaction zone, the inlet 3 is provided at a position higher than the highest turning point of the siphon tube, and the inlet 3 The water supply tube 5 and the water supply control valve 4 are attached to the water supply control valve 4 so that the water supply amount and the water supply speed can be adjusted.

1 反応容器
2 薬剤供給容器
3 入水口
4 調節弁
5 水供給チューブ
6 サイフォンチューブ
7 流量調節弁
8 混合装置
9 混合液サイフォンチューブ
DESCRIPTION OF SYMBOLS 1 Reaction container 2 Drug supply container 3 Water inlet 4 Control valve 5 Water supply tube 6 Siphon tube 7 Flow control valve 8 Mixing device 9 Mixture siphon tube

Claims (9)

自動薬剤供給装置であって、
反応容器と、
前記反応容器の上方に取り付けられた2つまたは2つ以上の薬剤供給容器と、
前記反応容器の内部に延設された前記薬剤供給容器の薬剤投入端と、
前記反応容器の側壁に設けられた入水口と、
前記反応容器の底部に取り付けられ、液体を前記反応容器外部に排出させるサイフォン式液体吸排装置と、を備えることを特徴とする、自動薬剤供給装置。
An automatic drug supply device,
A reaction vessel;
Two or more drug supply containers mounted above the reaction container;
A drug input end of the drug supply container extending inside the reaction container;
A water inlet provided on the side wall of the reaction vessel;
An automatic drug supply device, comprising: a siphon-type liquid suction / discharge device attached to the bottom of the reaction vessel and for discharging a liquid to the outside of the reaction vessel.
前記反応容器は、前記反応容器を上層反応区域と下層反応区域とに仕切る混合装置を備え、前記上層反応区域と前記下層反応区域とは直接または間接に連結しており、2つまたは2つ以上の前記薬剤供給容器の薬剤投入端が前記混合装置に延設されていることを特徴とする、請求項1記載の自動薬剤供給装置。   The reaction vessel includes a mixing device that divides the reaction vessel into an upper reaction zone and a lower reaction zone, and the upper reaction zone and the lower reaction zone are connected directly or indirectly, and two or more The automatic medicine supply device according to claim 1, wherein a medicine input end of the medicine supply container is extended to the mixing device. 前記薬剤投入端が前記混合装置に延設されている前記薬剤供給容器のうち、少なくとも一つの前記薬剤供給容器に液体薬剤が収容されていることを特徴とする、請求項2記載の自動薬剤供給装置。   The automatic medicine supply according to claim 2, wherein a liquid medicine is accommodated in at least one medicine supply container among the medicine supply containers in which the medicine input end is extended to the mixing device. apparatus. 前記混合装置はテーパー状のじょうごを形成し、前記テーパー形のじょうごの中間部分に設けられた薬剤供給口がらせん構造を有しており、もってらせん状の液体混合区域が形成されていることを特徴とする、請求項3記載の自動薬剤供給装置。   The mixing device forms a tapered funnel, and the medicine supply port provided in the middle portion of the tapered funnel has a spiral structure, and thus a spiral liquid mixing area is formed. The automatic drug supply device according to claim 3, wherein 前記混合装置はテーパー状のじょうごを形成し、前記混合装置の底部に少なくとも一つの混合液サイフォンチューブが設けられおり、前記上層反応区域と前記下層反応区域とは前記混合液サイフォンチューブによって連結していることを特徴とする、請求項3記載の自動薬剤供給装置。   The mixing device forms a tapered funnel, and at least one mixed liquid siphon tube is provided at the bottom of the mixing device, and the upper reaction zone and the lower reaction zone are connected by the mixed liquid siphon tube. The automatic medicine supply device according to claim 3, wherein 前記サイフォン式液体吸排装置は、少なくとも一つのサイフォンチューブを有し、前記サイフォンチューブの一端を前記下層反応区域の底部に当て、前記サイフォンチューブの他端を前記下層反応区域の中間から少し高い位置に延ばした後、少なくとも一回の折り返しを形成してから前記反応容器の底壁を貫いて前記反応容器外部に延出させることを特徴とする、請求項4または5記載の自動薬剤供給装置。   The siphon-type liquid suction / discharge device has at least one siphon tube, one end of the siphon tube is applied to the bottom of the lower reaction zone, and the other end of the siphon tube is positioned slightly higher from the middle of the lower reaction zone. 6. The automatic drug supply device according to claim 4 or 5, wherein after the extension, at least one turn is formed, and then it extends through the bottom wall of the reaction vessel to the outside of the reaction vessel. 前記サイフォンチューブが前記反応容器を貫く一端は、前記反応容器の底壁に対して垂直を形成することを特徴とする、請求項6記載の自動薬剤供給装置。   The automatic medicine supply apparatus according to claim 6, wherein one end of the siphon tube penetrating the reaction container forms a perpendicular to the bottom wall of the reaction container. 前記薬剤供給容器のすべての液体出力端に、流量調節弁が取り付けられていることを特徴とする、請求項6記載の自動薬剤供給装置。   The automatic medicine supply device according to claim 6, wherein a flow rate adjusting valve is attached to all liquid output ends of the medicine supply container. 前記入水口は前記下層反応区域の側壁の中間から少し上の位置に設けられ、前記入水口の位置はサイフォンチューブのもっとも高い折り返し点より高く、前記入水口に水供給チューブと、水供給調節弁とが取り付けられていることを特徴とする、請求項6記載の自動薬剤供給装置。   The water inlet is provided at a position slightly above the middle of the side wall of the lower reaction zone, and the position of the water inlet is higher than the highest turning point of the siphon tube. A water supply tube and a water supply control valve are provided at the water inlet. And an automatic medicine supply device according to claim 6.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108094262A (en) * 2018-01-26 2018-06-01 安徽鲜森绿色食品有限公司 A kind of transport cage suitable for express delivery individual poultry

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Publication number Priority date Publication date Assignee Title
CN103535295B (en) * 2013-07-29 2015-06-17 太阳高新技术(深圳)有限公司 Automatic feeding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108094262A (en) * 2018-01-26 2018-06-01 安徽鲜森绿色食品有限公司 A kind of transport cage suitable for express delivery individual poultry

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