JP2012148244A - Mixing and discharging device - Google Patents

Mixing and discharging device Download PDF

Info

Publication number
JP2012148244A
JP2012148244A JP2011009237A JP2011009237A JP2012148244A JP 2012148244 A JP2012148244 A JP 2012148244A JP 2011009237 A JP2011009237 A JP 2011009237A JP 2011009237 A JP2011009237 A JP 2011009237A JP 2012148244 A JP2012148244 A JP 2012148244A
Authority
JP
Japan
Prior art keywords
fluid
pressure
path
mixing
main agent
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
JP2011009237A
Other languages
Japanese (ja)
Inventor
Tomohiro Nihei
智宏 二瓶
Takahiro Inagaki
隆大 稲垣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Heavy Industries Ltd
Original Assignee
Mitsubishi Heavy Industries Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Heavy Industries Ltd filed Critical Mitsubishi Heavy Industries Ltd
Priority to JP2011009237A priority Critical patent/JP2012148244A/en
Publication of JP2012148244A publication Critical patent/JP2012148244A/en
Withdrawn legal-status Critical Current

Links

Images

Abstract

PROBLEM TO BE SOLVED: To provide a mixing and discharging device capable of mixing two kinds of liquids at a predetermined ratio precisely.SOLUTION: The mixing and discharging device 100 includes tanks 1, 2 to store a first fluid and a second fluid respectively, pumps 3, 4 to feed each fluid under pressure, a merging part 5 into which each fluid is merged, a non-driven type mixer 6 to mix each fluid, a mixing ratio determining part 7 to determine a mixing ratio of each fluid upstream of the merging part 5, and also has a check valve 12 in the merging part 5. The mixing ratio determining part 7 includes a first pathway 17 through which a first fluid passes, a second pathway 18 through which a second fluid passes, and a pressure adjusting unit 19 including a pressure detecting part to detect the pressure of each fluid passing through the first pathway 17 and the second pathway 18, and a pressure adjusting part to adjust the flow rate of the first fluid and the second fluid by changing the pathway area of the first pathway 17 and the second pathway 18 according to the difference between each pressure detected by the pressure detecting part on the downstream side of the pressure detecting part.

Description

本発明は、2種類の液体を計量、混合、及び吐出する混合吐出装置に関するものである。   The present invention relates to a mixing / discharging device that measures, mixes, and discharges two types of liquids.

塗料や接着剤には、2種類の液体を混合することで硬化させて使用するものがある。このような塗料や接着剤を混合する装置として、特許文献1に開示されているような混合吐出システムがある。
特許文献1に記載の混合吐出システムは、別々のタンクに収納された2種類の液体を、ポンプを用いて各タンクから所定量の液体を吐出させて圧送し、無駆動型の混合装置で混合するものである。
Some paints and adhesives are used by being cured by mixing two kinds of liquids. As an apparatus for mixing such paints and adhesives, there is a mixed discharge system as disclosed in Patent Document 1.
The mixing and discharging system described in Patent Document 1 pumps two types of liquid stored in separate tanks by discharging a predetermined amount of liquid from each tank using a pump, and mixes them with a non-drive type mixing device. To do.

2種類の液体を混合する際、使用される液体の組み合わせによって、固有の混合比がある。そのため、2種類の液体は、所定の比率で混合される必要があり、混合吐出装置には混合比を確認する手段が設けられることが好ましい。図5に、混合比を確認する手段を備えた混合吐出装置200を例示する。   When mixing two types of liquids, there is an inherent mixing ratio depending on the combination of liquids used. Therefore, the two types of liquids need to be mixed at a predetermined ratio, and it is preferable that the mixing and discharging apparatus is provided with means for confirming the mixing ratio. FIG. 5 illustrates a mixing / discharging device 200 including means for confirming the mixing ratio.

混合吐出装置200は、2種類の液体を各々収納するタンク1,2と、該タンク1,2から各液体をそれぞれ圧送するポンプ3,4と、2種類の液体を混合する混合装置6と、2種類の液体の混合比を確認する混合比確認部57a,57bとを備えている。   The mixing and discharging device 200 includes tanks 1 and 2 that respectively store two types of liquids, pumps 3 and 4 that pump the liquids from the tanks 1 and 2, and a mixing device 6 that mixes two types of liquids Mixing ratio confirmation sections 57a and 57b for confirming the mixing ratio of the two kinds of liquids are provided.

各タンク1,2に収容された2種類の液体は、別々の経路8,9を介して圧送され、混合装置6の上流側の合流部5で合流する。2種類の液体は混合されると硬化反応が開始されるため、合流部5には、逆流防止用の逆止弁12が設けられている。   The two types of liquids stored in the tanks 1 and 2 are pumped through separate paths 8 and 9 and merge at the junction 5 on the upstream side of the mixing device 6. Since the curing reaction starts when the two types of liquids are mixed, the junction 5 is provided with a check valve 12 for preventing backflow.

混合比確認部57a,57bは、タンク1,2から合流部5へ向けて各液体が通る経路の途中に接続されている。接続部分には、上記経路8,9から各液体の流れを混合比確認部57a,57bへと切り替え可能にバルブ15a,15b,16a,16bが設けられている。混合比を確認する際には、バルブ16a,16bを閉め、混合比確認部側のバルブ15a,15bを開放して各液体を混合比確認部57a,57bの確認経路17,18へと導く。確認経路17,18の一端は大気開放されており、導かれた各液体はここから吐出され、吐出された各液体の重量を計測することで、混合比が確認される。   The mixing ratio confirmation parts 57 a and 57 b are connected in the middle of the path through which each liquid passes from the tanks 1 and 2 toward the joining part 5. Valves 15a, 15b, 16a, and 16b are provided at the connection portion so that the flow of each liquid from the paths 8 and 9 can be switched to the mixing ratio confirmation portions 57a and 57b. When confirming the mixing ratio, the valves 16a and 16b are closed, and the valves 15a and 15b on the mixing ratio confirmation part side are opened to guide the respective liquids to the confirmation paths 17 and 18 of the mixing ratio confirmation parts 57a and 57b. One ends of the confirmation paths 17 and 18 are open to the atmosphere, and each guided liquid is ejected from here, and the mixing ratio is confirmed by measuring the weight of each ejected liquid.

特開昭58−150462号公報(特許請求の範囲)JP 58-150462 A (Claims)

図5に示す構成の混合吐出装置200では、確認経路に導かれた各液体に付加される圧力と、合流部を通過する際の各液体に付加される圧力とが異なる場合がある。例えば、混合装置200において、15a,15bを閉じて、16a,16bを開放し、エアモータ10の供給圧力(圧力計27)を0.4MPaとして、各タンクから主剤及び硬化剤を圧送させた場合、圧力計26aは2.2MPa〜3.9MPa、圧力計26bは1.8MPa〜3.8MPaを示すが、合流部5付近での両経路の圧力は略等しくなる。また、混合装置200において、16a,16bを閉じて、15a,15bを開放し、エアモータ10の供給圧力(圧力計27)を0.3MPaとして、各タンクから主剤及び硬化剤を圧送させた場合、圧力計26aは4MPa〜6.5MPa、圧力計26bは0.8MPa〜1.6MPaを示す。圧力差は吐出量の差を生むため、上記のような場合、実際に混合装置に圧送される各液体の混合比を、混合比確認経路で確認された混合比通りに、正確に計測できないという問題が生じる。   In the mixing and discharging apparatus 200 having the configuration shown in FIG. 5, the pressure applied to each liquid guided to the confirmation path may be different from the pressure applied to each liquid when passing through the junction. For example, in the mixing apparatus 200, when 15a and 15b are closed, 16a and 16b are opened, the supply pressure of the air motor 10 (pressure gauge 27) is 0.4 MPa, and the main agent and the curing agent are pumped from each tank, Although the pressure gauge 26a shows 2.2MPa-3.9MPa and the pressure gauge 26b shows 1.8MPa-3.8MPa, the pressure of both paths in the confluence | merging part 5 vicinity becomes substantially equal. Further, in the mixing apparatus 200, when 16a and 16b are closed, 15a and 15b are opened, the supply pressure of the air motor 10 (pressure gauge 27) is 0.3 MPa, and the main agent and the curing agent are pumped from each tank, The pressure gauge 26a indicates 4 MPa to 6.5 MPa, and the pressure gauge 26b indicates 0.8 MPa to 1.6 MPa. Since the pressure difference causes a difference in the discharge amount, in the above case, the mixing ratio of each liquid actually pumped to the mixing device cannot be accurately measured according to the mixing ratio confirmed in the mixing ratio confirmation path. Problems arise.

2種類の混合を手作業で行えば、所望の比率で混合せることができる。しかしながら、その場合、品質が安定しない、人件費がかかる、製造時間が長くなるなどの問題が生じる。   If the two types of mixing are performed manually, they can be mixed at a desired ratio. However, in such a case, problems such as unstable quality, labor cost, and long manufacturing time occur.

本発明は、このような事情に鑑みてなされたものであって、2種類の液体を所定の比率で精度良く混合することのできる混合吐出装置を提供することを目的とする。   The present invention has been made in view of such circumstances, and an object of the present invention is to provide a mixing and discharging apparatus capable of accurately mixing two kinds of liquids at a predetermined ratio.

本発明者らは、合流部と確認経路とで圧力差が生じる原因として、合流部に設けられた逆止弁に注目した。逆止弁は、圧力の高い方から低い方への流れを規制し、且つ、逆方向の流れを許容する構造となっている。一般に、混合させて使用する2種類の液体は、粘度や吐出させる量が異なるため、圧送される際、各液体に付加される圧力に差が生じる。そのように圧力差がある場合、合流部では、高圧側の液体が流れている間、低圧側の別の液体はせき止められた状態となり、その間低圧側の圧力が上昇する。該圧力が高圧側の圧力よりも高くなると、低圧側だった別の液体が流れ出す。これによって、低圧側の圧力が低下し、再び別の液体はせき止められた状態となる。すなわち、逆止弁が設けられた合流部では、高圧側の圧力に影響を受けて、低圧側の圧力も変化する相互関係がある。
上記のような合流部での物理現象は、圧力損失を加える機器などで意図的に圧力を加えても、再現することは難しい。
The present inventors have paid attention to a check valve provided in the merging portion as a cause of the pressure difference between the merging portion and the confirmation path. The check valve has a structure that restricts a flow from a higher pressure to a lower pressure and allows a reverse flow. In general, two types of liquids that are mixed and used have different viscosities and discharge amounts. Therefore, when pumped, there is a difference in pressure applied to each liquid. When there is such a pressure difference, another liquid on the low pressure side is blocked while the high pressure side liquid flows in the junction, and the pressure on the low pressure side increases during that time. When the pressure becomes higher than the pressure on the high pressure side, another liquid that was on the low pressure side flows out. As a result, the pressure on the low pressure side decreases, and another liquid is blocked again. That is, in the junction where the check valve is provided, there is a mutual relationship in which the pressure on the low pressure side also changes due to the influence of the pressure on the high pressure side.
It is difficult to reproduce the physical phenomenon at the junction as described above even if pressure is intentionally applied by a device that applies pressure loss.

上記課題を解決するために、本発明は、第1の流体及び第2の流体をそれぞれ収容するタンクと、前記第1の流体及び前記第2の流体を圧送するポンプと、前記第1の流体と前記第2の流体とが合流する合流部と、前記第1の流体及び前記第2の流体を混合する無駆動型の混合装置と、前記合流部よりも上流側で、前記第1の流体と前記第2の流体との混合比を確認する混合比確認部とを備え、前記合流部に、圧力の高い方から低い方への流れを規制し、且つ、逆方向の流れを許容するバルブが設けられた混合吐出装置であって、前記混合比確認部が、前記第1の流体が通る第1経路と、前記第2の流体が通る第2経路と、前記第1経路及び前記第2経路の上流側で、各流体の圧力をそれぞれ検知する圧力検知部と、前記第1経路及び前記第2経路の前記圧力検知部よりも下流側で、前記圧力検知部で検知された各流体の圧力差に応じて、前記第1経路及び前記第2経路の開口面積を変化させて第1の流体及び前記第2の流体の流量を調整する流量調整部とを備える混合吐出装置を提供する。   In order to solve the above-described problems, the present invention provides a tank that contains a first fluid and a second fluid, a pump that pumps the first fluid and the second fluid, and the first fluid. And the second fluid, a non-drive type mixing device that mixes the first fluid and the second fluid, and the first fluid upstream of the junction. And a mixing ratio confirmation section for confirming a mixing ratio between the second fluid and the second fluid, and a valve that restricts a flow from a higher pressure to a lower pressure and allows a reverse flow in the merging section. The mixing ratio confirmation unit includes a first path through which the first fluid passes, a second path through which the second fluid passes, the first path, and the second path. A pressure detector for detecting the pressure of each fluid upstream of the path; and the first path and the first path The opening area of the first path and the second path is changed according to the pressure difference between the fluids detected by the pressure detection unit on the downstream side of the pressure detection unit of the path, and the first fluid and Provided is a mixing and discharging apparatus including a flow rate adjusting unit that adjusts the flow rate of the second fluid.

上記発明において、流量調整部は、各流体の圧力差に応じて各経路の経路面積を変化させる。すなわち、第1の流体の圧力と第2の流体の圧力とに差が生じた場合、各流体が互いに他方の流体の圧力を基準として、各流体の圧力が該基準に近づくよう経路面積を変化させる。それによって、流量調整部よりも下流側では、第1の流体の圧力と第2の流体の圧力とを実質的に同等とすることができる。   In the above invention, the flow rate adjusting unit changes the path area of each path according to the pressure difference between the fluids. That is, when there is a difference between the pressure of the first fluid and the pressure of the second fluid, the path area is changed so that each fluid approaches the reference with respect to the pressure of the other fluid. Let Thereby, the pressure of the first fluid and the pressure of the second fluid can be made substantially equal on the downstream side of the flow rate adjusting unit.

例えば、第1の流体の圧力が第2の流体の圧力よりも高い場合、第1経路の経路面積を広くし、かつ第2経路の経路面積を狭くするように流量調整部が作動する。それによって、第1経路では第1の流体の流量が増加するため圧力が低下し、第2経路では第2の流体の流量が減少するため圧力が上昇する。経路面積は各流体の圧力差に応じて変化するため、経路調整部を通過した各流体の圧力は略等しくなる。   For example, when the pressure of the first fluid is higher than the pressure of the second fluid, the flow rate adjusting unit operates so as to widen the path area of the first path and narrow the path area of the second path. As a result, in the first path, the flow rate of the first fluid increases and thus the pressure decreases, and in the second path, the flow rate of the second fluid decreases and the pressure increases. Since the path area changes according to the pressure difference between the fluids, the pressures of the fluids that have passed through the path adjusting unit are substantially equal.

上記で説明した物理現象は、合流部における圧力の高い方から低い方への流れを規制し、且つ、逆方向の流れを許容するバルブで生じる物理現象を再現したものである。従って、混合比確認部を上記構成とすることで、混合比確認部で確認された混合比が、混合部に圧送される第1の流体及び第2の流体の混合比と略等しくなる。   The physical phenomenon described above is a reproduction of a physical phenomenon that occurs in a valve that restricts a flow from a higher pressure to a lower pressure in the junction and allows a reverse flow. Therefore, when the mixing ratio confirmation unit has the above-described configuration, the mixing ratio confirmed by the mixing ratio confirmation unit becomes substantially equal to the mixing ratio of the first fluid and the second fluid that are pumped to the mixing unit.

本発明によれば、混合比確認部が上記構成の圧力調整ユニットを備えることで、二つの流体を所定の混合比で精度良く混合することのできる混合吐出装置となる。   According to the present invention, since the mixing ratio confirmation unit includes the pressure adjustment unit having the above-described configuration, the mixing / discharging apparatus can accurately mix two fluids at a predetermined mixing ratio.

第1実施形態に係る混合吐出装置のフロー図である。It is a flowchart of the mixed discharge apparatus which concerns on 1st Embodiment. 合流部における逆止弁の配置の一例を示す図である。It is a figure which shows an example of arrangement | positioning of the non-return valve in a junction part. 第1実施形態における圧力調整ユニットの断面図である。It is sectional drawing of the pressure adjustment unit in 1st Embodiment. 第2実施形態における圧力調整ユニットの断面図である。It is sectional drawing of the pressure adjustment unit in 2nd Embodiment. 従来の混合吐出装置のフロー図である。It is a flowchart of the conventional mixing and discharging apparatus.

〔第1実施形態〕
以下、本発明の第1実施形態に係る混合吐出装置について、図1を用いて説明する。
図1は、第1実施形態に係る混合吐出装置100のフロー図である。
混合吐出装置100は、2液性の材料(主剤と硬化剤と)を所定の混合比で混合させて、吐出する装置である。混合吐出装置100から吐出された混合材料は、カートリッジに充填される。該カートリッジは、ガンに付けられて航空機の燃料タンクの目張りなどに適用される。
[First Embodiment]
Hereinafter, a mixing and discharging apparatus according to a first embodiment of the present invention will be described with reference to FIG.
FIG. 1 is a flowchart of the mixed discharge device 100 according to the first embodiment.
The mixing / discharging device 100 is a device that mixes and discharges two-component materials (main agent and curing agent) at a predetermined mixing ratio. The mixed material discharged from the mixed discharge device 100 is filled in the cartridge. The cartridge is attached to a gun and applied to the fuel tank tank of an aircraft.

混合吐出装置100は、主剤タンク1、硬化剤タンク2、主剤定量吐出ポンプ3、硬化剤定量吐出ポンプ4、合流部5、無駆動型の混合装置6、及び混合比確認部7を備えている。   The mixing and discharging apparatus 100 includes a main agent tank 1, a hardener tank 2, a main agent fixed amount discharge pump 3, a hardener fixed amount discharge pump 4, a merging unit 5, a non-drive type mixing device 6, and a mixing ratio confirmation unit 7. .

主剤タンク1には、主剤(第1の流体)が収容されている。主剤としては、例えば、ウレタン系、シリコン系などの溶液が用いられる。主剤は、マイクロバブルを含む圧縮性の流体であっても良い。主剤としてPPG社製のPR−1776M B−2を用いた場合、その粘度は11000cps程度となる。   The main agent tank 1 contains a main agent (first fluid). As the main agent, for example, a urethane-based or silicon-based solution is used. The main agent may be a compressible fluid containing microbubbles. When PR-1776MB-2 manufactured by PPG is used as the main agent, the viscosity is about 11000 cps.

硬化剤タンク2には、硬化剤(第2の流体)が収容されている。硬化剤は、混合することで主剤を硬化させる作用を有する溶液が用いられる。   The curing agent tank 2 stores a curing agent (second fluid). As the curing agent, a solution having an action of curing the main agent by mixing is used.

主剤タンク1には、主剤定量吐出ポンプ3が接続されている。主剤定量吐出ポンプ3には、主剤を吐出する吐出口が備えられ、吐出口には主剤を圧送するための主剤圧送経路8が接続されている。
硬化剤タンク2には、硬化剤定量吐出ポンプ4が接続されている。硬化剤定量吐出ポンプ4には、硬化剤を吐出する吐出口が備えられ、吐出口には硬化剤を圧送するための硬化剤圧送経路9が接続されている。
主剤定量吐出ポンプ3及び硬化剤定量吐出ポンプ4は、容積計量型のポンプであり、使用される主剤及び硬化剤の組み合わせによって、容量が決定される。
A main agent fixed amount discharge pump 3 is connected to the main agent tank 1. The main agent fixed amount discharge pump 3 is provided with a discharge port for discharging the main agent, and a main agent pumping path 8 for pumping the main agent is connected to the discharge port.
A curing agent metering discharge pump 4 is connected to the curing agent tank 2. The curing agent metering discharge pump 4 is provided with a discharge port for discharging the curing agent, and a curing agent pumping path 9 for pumping the curing agent is connected to the discharge port.
The main agent fixed amount discharge pump 3 and the hardener fixed amount discharge pump 4 are volumetric pumps, and the capacity is determined by the combination of the main agent and the hardener used.

主剤圧送経路8及び硬化剤圧送経路9は管状とされる。管の径は、使用する主剤及び硬化剤の種類、組み合わせなどに応じて適宜設定される。通常、粘度の高い方の圧損を定め、それに合わせて粘度の低い方の径を定める。主剤圧送経路8及び硬化剤圧送経路9は、異なる径であって良い。   The main agent pumping path 8 and the curing agent pumping path 9 are tubular. The diameter of the tube is appropriately set according to the type and combination of the main agent and the curing agent to be used. Usually, the pressure loss of the higher viscosity is determined, and the diameter of the lower viscosity is determined accordingly. The main agent pumping path 8 and the curing agent pumping path 9 may have different diameters.

主剤定量吐出ポンプ3及び硬化剤定量吐出ポンプ4は、一端が軸支され、他端が動力であるエアモータ10で駆動される連結リンク11に連結されており、連結リンク11の他端を駆動させることで、主剤タンク1及び硬化剤タンク2からそれぞれ主剤及び硬化剤を定量吐出させる。   The main agent fixed amount discharge pump 3 and the hardener fixed amount discharge pump 4 are pivotally supported at one end and connected to a connecting link 11 driven by an air motor 10 that is power, and the other end of the connecting link 11 is driven. Thus, the main agent and the curing agent are quantitatively discharged from the main agent tank 1 and the curing agent tank 2, respectively.

主剤圧送経路8及び硬化剤圧送経路9は、合流部5で合流される。合流部5には、逆止弁12が設けられている。図1では、逆止弁12が合流点Aの硬化剤圧送経路9側に設けられているが、逆止弁12を設ける位置はこれに限定されず、合流点Aの主剤圧送経路8側、または合流点Aの両経路8,9側に設けられていても良い。   The main agent pumping path 8 and the curing agent pumping path 9 are merged at the merging portion 5. The junction 5 is provided with a check valve 12. In FIG. 1, the check valve 12 is provided on the side of the hardener pressurization path 9 at the junction A, but the position where the check valve 12 is provided is not limited to this, and the main agent pressurization path 8 side of the junction A is Alternatively, it may be provided on both paths 8 and 9 side of the junction point A.

図2に、合流部5における逆止弁12の配置の一例を示す。合流部5の上流側には、主剤圧送経路8が挿入され、主剤圧送経路8の端部には第1逆止弁12aが設けられている。合流部5において第1逆止弁12aよりも主剤流れ方向下流側には、硬化剤圧送経路9の端部が挿入されている。主剤の流れ方向に沿って下流側に向けて配置された硬化剤圧送経路9の端部には、第2逆止弁12bが設けられている。   In FIG. 2, an example of arrangement | positioning of the non-return valve 12 in the junction part 5 is shown. The main agent pressure feed path 8 is inserted on the upstream side of the merging portion 5, and a first check valve 12 a is provided at the end of the main agent pressure feed path 8. In the merging portion 5, an end portion of the curing agent pumping path 9 is inserted downstream of the first check valve 12 a in the main agent flow direction. A second check valve 12b is provided at an end of the curing agent pumping path 9 arranged toward the downstream side along the flow direction of the main agent.

図1において、合流部5の下流側には、無駆動型の混合装置6が接続されている。無駆動型の混合装置6としては、スタティックミキサーが挙げられる。スタティックミキサーは、駆動部のない静止型混合器(ラインミキサー)であり、ミキサー内にエレメントを備えている。ミキサー内に入った流体は、エレメントにより順次撹拌混合される。   In FIG. 1, a non-drive type mixing device 6 is connected to the downstream side of the merging portion 5. An example of the non-driving type mixing device 6 is a static mixer. The static mixer is a static mixer (line mixer) without a drive unit, and includes an element in the mixer. The fluid entering the mixer is stirred and mixed sequentially by the element.

混合装置6よりも下流側には、吐出口13が設けられ、大気開放されている。混合装置6と吐出口13との間には、流量調整弁14が設けられている。   A discharge port 13 is provided on the downstream side of the mixing device 6 and is open to the atmosphere. A flow rate adjusting valve 14 is provided between the mixing device 6 and the discharge port 13.

混合比確認部7は、合流部5よりも上流側で主剤圧送経路8及び硬化剤圧送経路9にそれぞれ接続されている。接続部分には、主剤及び硬化剤の流れを主剤圧送経路及び硬化剤圧送経路から混合比確認部へと切り替え可能にバルブ15a,15b,16a,16bが設けられている。   The mixing ratio confirmation unit 7 is connected to the main agent pumping path 8 and the curing agent pumping path 9 on the upstream side of the merging unit 5. Valves 15a, 15b, 16a, and 16b are provided at the connection portion so that the flow of the main agent and the curing agent can be switched from the main agent pressure feeding path and the curing agent pressure feeding path to the mixing ratio confirmation unit.

混合比確認部7は、主剤確認経路(第1経路)17、硬化剤確認経路(第2経路)18、圧力調整ユニット19、及び重量計20を備えている。
主剤確認経路17及び硬化剤確認経路18の一端は、それぞれ主剤圧送経路8及び硬化剤圧送経路9に流体が移動可能に接続されている。主剤確認経路17及び硬化剤確認経路18の他端は、吐出口21a,21bを有し、それぞれ大気開放されている。主剤確認経路17及び硬化剤確認経路18の吐出口21a,21bよりも上流側には、それぞれ流量調整弁22a,22bが設けられている。重量計20は、吐出口21a,21bから吐出された主剤及び硬化剤をそれぞれ計量可能に配置されている。
主剤確認経路17及び硬化剤確認経路18の径は、使用される主剤及び硬化剤に応じて適宜設定される。両経路17,18の径は異なっていても良い。
The mixing ratio confirmation unit 7 includes a main agent confirmation path (first path) 17, a curing agent confirmation path (second path) 18, a pressure adjustment unit 19, and a weigh scale 20.
One end of the main agent confirmation path 17 and the curing agent confirmation path 18 is connected to the main agent pressure feeding path 8 and the curing agent pressure feeding path 9 so that the fluid can move. The other ends of the main agent confirmation path 17 and the curing agent confirmation path 18 have discharge ports 21a and 21b, which are open to the atmosphere. On the upstream side of the discharge ports 21a and 21b of the main agent confirmation path 17 and the curing agent confirmation path 18, flow rate adjusting valves 22a and 22b are provided, respectively. The weigh scale 20 is arranged so that the main agent and the curing agent discharged from the discharge ports 21a and 21b can be respectively measured.
The diameters of the main agent confirmation path 17 and the curing agent confirmation path 18 are appropriately set according to the main agent and the curing agent used. The diameters of both paths 17 and 18 may be different.

図3に、圧力調整ユニットの断面図を示す。圧力調整ユニット19は、圧力検知部31と、流量調整部32とを備える。主剤確認経路17と硬化剤確認経路18との間には上流側と下流側に貫通孔が設けられている。   FIG. 3 shows a cross-sectional view of the pressure adjustment unit. The pressure adjustment unit 19 includes a pressure detection unit 31 and a flow rate adjustment unit 32. Between the main agent confirmation path 17 and the curing agent confirmation path 18, through holes are provided on the upstream side and the downstream side.

圧力検知部31は、上流側の貫通孔内にスライド可能に配置されている。圧力検知部31の一端面33aは主剤に、他端面33bは硬化剤に接触する。一端面33a及び他端面33bの面積は適宜設定され、一方の端面の面積が、他方の端面の面積と異なっていても良い。   The pressure detector 31 is slidably disposed in the through hole on the upstream side. One end surface 33a of the pressure detector 31 is in contact with the main agent, and the other end surface 33b is in contact with the curing agent. The areas of the one end face 33a and the other end face 33b are set as appropriate, and the area of one end face may be different from the area of the other end face.

圧力検知部31は、主剤に付加された圧力と硬化剤に付加された圧力との差に応じて、主剤確認経路17と硬化剤確認経路18との間を移動することができる。例えば、主剤確認経路17の圧力が硬化剤確認経路18の圧力よりも高い場合、主剤が圧力検知部31の主剤確認経路17側端面を押圧して、圧力検知部31を硬化剤確認経路18側へと移動させる。貫通孔の壁面には、圧力検知部31と貫通孔との隙間から主剤及び硬化剤が侵入しないようブッシュ34及びシール部材35が配置されている。   The pressure detector 31 can move between the main agent confirmation path 17 and the curing agent confirmation path 18 according to the difference between the pressure applied to the main agent and the pressure applied to the curing agent. For example, when the pressure of the main agent confirmation path 17 is higher than the pressure of the curing agent confirmation path 18, the main agent presses the end surface of the pressure detection unit 31 on the side of the main agent confirmation path 17, and the pressure detection unit 31 is moved to the curing agent confirmation path 18 side. Move to. A bush 34 and a seal member 35 are arranged on the wall surface of the through hole so that the main agent and the curing agent do not enter from the gap between the pressure detection unit 31 and the through hole.

流量調整部32は、流量調整ニードル36と、ニードル受入部37とから構成されている。
流量調整ニードル36は、下流側の貫通孔内にスライド可能に配置されている。流量調整ニードル36の一端部38aは主剤確認経路17内に、他端部38bは硬化剤確認経路18内に向いている。流量調整ニードル36は、その中央部で圧力検知部31の中央部と連結されており、圧力検知部31と連動して主剤確認経路17と硬化剤確認経路18との間を移動する。
The flow rate adjusting unit 32 includes a flow rate adjusting needle 36 and a needle receiving unit 37.
The flow rate adjusting needle 36 is slidably disposed in the through hole on the downstream side. One end 38 a of the flow rate adjusting needle 36 faces the main agent confirmation path 17, and the other end 38 b faces the curing agent confirmation path 18. The flow rate adjustment needle 36 is connected to the central portion of the pressure detection unit 31 at the central portion thereof, and moves between the main agent confirmation path 17 and the curing agent confirmation path 18 in conjunction with the pressure detection unit 31.

ニードル受入部37は、流量調整ニードル36の各端部38a,38bを受け入れ可能に主剤確認経路17及び硬化剤確認経路18の壁面にそれぞれ設けられている。流量調整ニードル36とニードル受入部37との間の空間面積は、流量調整ニードル36の移動によって変動する。ニードル受入部37の形状および大きさは任意とされ、使用される主剤または硬化剤の時定数、ゲインなどによって適宜設計される。本実施形態では、ニードル受入部37は、流量調整ニードル36の先端を受け入れ可能な半球状の凹部を備えた形状とされている。なお、ニードル受入部は省略されても良い。   The needle receiving portion 37 is provided on the wall surface of the main agent confirmation path 17 and the hardener confirmation path 18 so as to be able to receive the end portions 38a and 38b of the flow rate adjustment needle 36, respectively. The space area between the flow rate adjusting needle 36 and the needle receiving portion 37 varies depending on the movement of the flow rate adjusting needle 36. The shape and size of the needle receiving portion 37 are arbitrary, and are appropriately designed according to the time constant, gain, etc. of the main agent or curing agent used. In the present embodiment, the needle receiving portion 37 has a shape including a hemispherical recess that can receive the tip of the flow rate adjusting needle 36. Note that the needle receiving portion may be omitted.

次に、本実施形態に係る混合吐出装置100の作用を説明する。
主剤定量吐出ポンプ3及び硬化剤定量吐出ポンプ4は、エアモータ10で空気を供給し、連結リンク11を動作させることで、各タンク1,2からそれぞれ主剤及び硬化剤を定量吐出する。吐出された主剤及び硬化剤は、それぞれ主剤圧送経路8及び硬化剤圧送経路9を介して圧送され、合流部5で合流し、混合装置6で混合されて流量調整弁14を経由して吐出される。
Next, the operation of the mixed discharge device 100 according to the present embodiment will be described.
The main agent fixed amount discharge pump 3 and the hardener fixed amount discharge pump 4 supply air with the air motor 10 and operate the connecting link 11 to discharge the main agent and the hardener from the respective tanks 1 and 2. The discharged main agent and the curing agent are respectively pumped through the main agent pumping path 8 and the curing agent pumping path 9, merged at the junction 5, mixed by the mixing device 6, and discharged via the flow rate adjustment valve 14. The

主剤定量吐出ポンプ3及び硬化剤定量吐出ポンプ4によって吐出される主剤及び硬化剤の量は、主剤定量吐出ポンプ3及び硬化剤定量吐出ポンプ4を連結リンク11に連結させる際に、連結リンク11の軸支点25からの距離を調整してストロークを変化させることによって制御する。例えば、軸支点25からの距離を短くすれば、吐出量は減少する。   The amounts of the main agent and the hardener discharged by the main agent fixed amount discharge pump 3 and the hardener fixed amount discharge pump 4 are the same as those of the connecting link 11 when the main agent fixed amount discharge pump 3 and the hardener fixed amount discharge pump 4 are connected to the connecting link 11. Control is performed by changing the stroke by adjusting the distance from the shaft fulcrum 25. For example, if the distance from the pivot point 25 is shortened, the discharge amount decreases.

主剤及び硬化剤は、その組み合わせによって固有の混合比が存在する。従って、軸支点25からの距離は、所定の比率で主剤及び硬化剤が主剤圧送経路8及び硬化剤圧送経路9へ圧送されるよう設定する。   The main agent and the curing agent have a specific mixing ratio depending on the combination. Accordingly, the distance from the pivot point 25 is set so that the main agent and the curing agent are pumped to the main agent pumping path 8 and the curing agent pumping path 9 at a predetermined ratio.

主剤圧送経路8及び硬化剤圧送経路9で主剤及び硬化剤に付加されている圧力を圧力計26a,26bで計測するとともに、圧力計26a,26bの下流側で主剤及び硬化剤を混合比確認部7へと導き、重量を計測することで実際に圧送されている主剤及び硬化剤の量を確認する。確認した主剤及び硬化剤の量が所定の比率でない場合、主剤及び硬化剤が所定の比率で吐出されるよう各定量吐出ポンプ3,4の接続位置を移動させて、軸支点からの距離を調整する。   The pressure applied to the main agent and the curing agent in the main agent pumping path 8 and the curing agent pumping path 9 is measured by the pressure gauges 26a and 26b, and the main agent and the curing agent are mixed at the downstream side of the pressure gauges 26a and 26b. 7 and confirm the amount of the main agent and the curing agent actually pumped by measuring the weight. If the amount of the main agent and curing agent confirmed is not a predetermined ratio, the distance from the pivot point is adjusted by moving the connection positions of the metering discharge pumps 3 and 4 so that the main agent and the curing agent are discharged at a predetermined ratio. To do.

混合比を確認する際は、バルブ16a,16bを閉じ、バルブ15a,15bを開放して、主剤及び硬化剤をそれぞれ混合比確認部7の主剤確認経路17及び硬化剤確認経路18に導く。主剤確認経路17及び硬化剤確認経路18の上流側で、圧力検知部31によって主剤及び硬化剤に付加されている圧力が検知される。圧力検知部31は、圧力の低い方の確認経路側へスライドされ、両端面33a,33bで検知される圧力が均衡するよう動作する。その際、主剤確認経路17及び硬化剤確認経路18の下流側では、流量調整ニードル36が圧力検知部31の動作と連動して、圧力の低い方の確認経路側へスライドされる。流量調整ニードル36がスライドすることで、流量調整ニードル36とニードル受入部37との間の空間面積が変化し、主剤確認経路17及び硬化剤確認経路18を流れる主剤及び硬化剤の流量が調整される。このような圧力調整ユニット7を経由した主剤及び硬化剤は、圧力が略等しくなり、流量調整弁22a,22bを介して吐出される。   When confirming the mixing ratio, the valves 16a and 16b are closed and the valves 15a and 15b are opened to guide the main agent and the curing agent to the main agent confirmation path 17 and the curing agent confirmation path 18 of the mixing ratio confirmation unit 7, respectively. The pressure applied to the main agent and the curing agent is detected by the pressure detection unit 31 on the upstream side of the main agent confirmation path 17 and the curing agent confirmation path 18. The pressure detection unit 31 is slid to the confirmation path side having the lower pressure, and operates so that the pressures detected by the both end faces 33a and 33b are balanced. At that time, on the downstream side of the main agent confirmation path 17 and the curing agent confirmation path 18, the flow rate adjustment needle 36 is slid to the confirmation path side of the lower pressure in conjunction with the operation of the pressure detection unit 31. As the flow rate adjusting needle 36 slides, the space area between the flow rate adjusting needle 36 and the needle receiving portion 37 changes, and the flow rates of the main agent and the curing agent flowing through the main agent confirmation path 17 and the curing agent confirmation path 18 are adjusted. The The main agent and the curing agent that have passed through the pressure adjusting unit 7 have substantially the same pressure, and are discharged through the flow rate adjusting valves 22a and 22b.

本実施形態に係る混合吐出装置によれば、混合比確認部7において、合流部5で生じる物理現象、すなわち、逆止弁12があることによって生じるチャタリングを再現することができる。それによって、混合比確認部で確認した通りの混合比で主剤及び硬化剤が混合されるよう運転することが可能となる。   According to the mixing and discharging apparatus according to this embodiment, the mixing ratio confirmation unit 7 can reproduce the physical phenomenon that occurs in the merging unit 5, that is, chattering that occurs due to the presence of the check valve 12. Accordingly, it is possible to operate so that the main agent and the curing agent are mixed at the mixing ratio as confirmed by the mixing ratio confirmation unit.

〔第2実施形態〕
本実施形態に係る混合吐出装置は、圧力調整ユニットが異なる以外は、第1実施形態と同様の構成とされる。
図4に、本実施形態に係る圧力調整ユニットの断面図を示す。
圧力調整ユニット40は、圧力検知部41a,41bと、流量調整部42a,42bと、を備える。本実施形態において圧力調整ユニット40は、主剤確認経路17及び硬化剤確認経路18にそれぞれ設けられている。
[Second Embodiment]
The mixing and discharging apparatus according to the present embodiment has the same configuration as that of the first embodiment except that the pressure adjustment unit is different.
FIG. 4 shows a cross-sectional view of the pressure adjustment unit according to the present embodiment.
The pressure adjustment unit 40 includes pressure detection units 41a and 41b and flow rate adjustment units 42a and 42b. In the present embodiment, the pressure adjustment unit 40 is provided in each of the main agent confirmation path 17 and the curing agent confirmation path 18.

圧力検知部41a,41bは、各確認経路17,18内を流れる主剤及び硬化剤にそれぞれ接する圧力検知面を備えた圧力計とされる。該圧力計は、シーケンサ46に電気的に接続されている。   The pressure detectors 41a and 41b are pressure gauges provided with pressure detection surfaces that are in contact with the main agent and the curing agent flowing in the confirmation paths 17 and 18, respectively. The pressure gauge is electrically connected to the sequencer 46.

流量調整部42a,42bは、流量調整ニードル43a,43bと、ニードル受入部44a,44bとから構成されている。流量調整部42a,42bは、圧力検知部41a,41bよりも下流側に配置されている。
流量調整ニードル43a,43bは、各確認経路17,18の壁面に設けられた貫通孔に、貫通孔内をスライド可能に挿入されている。貫通孔の壁面には流量調整ニードル43a,43bと貫通孔との隙間から主剤及び硬化剤が侵入しないようブッシュ34及びシール部材35が配置されている。圧力検知部41a,41bの一端部45a及び一端部45bは、それぞれ各確認経路17,18内に向いている。
The flow rate adjusting parts 42a and 42b are composed of flow rate adjusting needles 43a and 43b and needle receiving parts 44a and 44b. The flow rate adjustment units 42a and 42b are disposed on the downstream side of the pressure detection units 41a and 41b.
The flow rate adjusting needles 43a and 43b are inserted into the through holes provided in the wall surfaces of the confirmation paths 17 and 18 so as to be slidable in the through holes. A bush 34 and a seal member 35 are arranged on the wall surface of the through hole so that the main agent and the curing agent do not enter from the gap between the flow rate adjusting needles 43a and 43b and the through hole. One end 45a and one end 45b of the pressure detectors 41a and 41b face the confirmation paths 17 and 18, respectively.

流量調整ニードル43a,43bの他端部には、スプライン47、ローターリーねじ48、サーボモータ49が順に接続されている。サーボモータ49は、シーケンサ46に接続されたコントローラに接続されている。   A spline 47, a rotary screw 48, and a servo motor 49 are sequentially connected to the other ends of the flow rate adjusting needles 43a and 43b. The servo motor 49 is connected to a controller connected to the sequencer 46.

ニードル受入部44a,44bは、流量調整ニードル43a,43bの一端部45a,45bを受け入れ可能に主剤確認経路17及び硬化剤確認経路18の内壁面にそれぞれ設けられている。流量調整ニードル43a,43bとニードル受入部44a,44bとの間の空間面積は、流量調整ニードル43a,43bの移動によって変動する。ニードル受入部44a,44bの形状および大きさは任意とされ、使用される主剤または硬化剤の時定数、ゲインなどによって適宜設計される。なお、ニードル受入部44a,44bは省略されても良い。   The needle receiving portions 44a and 44b are respectively provided on the inner wall surfaces of the main agent confirmation path 17 and the curing agent confirmation path 18 so as to receive the one end portions 45a and 45b of the flow rate adjusting needles 43a and 43b. The space area between the flow rate adjusting needles 43a and 43b and the needle receiving portions 44a and 44b varies depending on the movement of the flow rate adjusting needles 43a and 43b. The shape and size of the needle receiving portions 44a and 44b are arbitrary, and are appropriately designed according to the time constant, gain, etc. of the main agent or curing agent used. The needle receiving portions 44a and 44b may be omitted.

次に、圧力調整ユニット40の作用を説明する。
主剤確認経路17及び硬化剤確認経路18にそれぞれ主剤及び硬化剤が圧送されると、圧力検知部41a,41bによって主剤及び硬化剤に付加されている圧力が検知される。検知された各確認経路17,18内の圧力の情報は、シーケンサ46に伝達される。シーケンサ46は、伝達された各確認経路17,18内の圧力に基づき、各確認経路17,18内の圧力が均衡するよう流量調整ニードル43a,43bとニードル受入部44a,44bとの間の距離を定める。上記で定めた距離の情報はコントローラ50に伝達される。コントローラ50は、伝達された距離の情報に基づき、サーボモータ49を駆動させ、流量調整ニードル43a,43bをスライドさせることで、流量調整ニードル43a,43bとニードル受入部44a,44bとの間の距離を制御する。これによって、各確認経路17,18内を流れる主剤及び硬化剤の量が調整される。
Next, the operation of the pressure adjustment unit 40 will be described.
When the main agent and the curing agent are pumped to the main agent confirmation path 17 and the curing agent confirmation path 18, respectively, the pressure applied to the main agent and the curing agent is detected by the pressure detection units 41a and 41b. Information on the detected pressure in the confirmation paths 17 and 18 is transmitted to the sequencer 46. The sequencer 46 determines the distance between the flow rate adjusting needles 43a and 43b and the needle receiving portions 44a and 44b so that the pressures in the confirmation paths 17 and 18 are balanced based on the transmitted pressures in the confirmation paths 17 and 18. Determine. Information on the distance determined above is transmitted to the controller 50. Based on the transmitted distance information, the controller 50 drives the servo motor 49 and slides the flow rate adjusting needles 43a and 43b, whereby the distance between the flow rate adjusting needles 43a and 43b and the needle receiving portions 44a and 44b. To control. As a result, the amounts of the main agent and the curing agent flowing through the confirmation paths 17 and 18 are adjusted.

上記構成の圧力調整ユニット40を備えた混合比確認部7では、合流部5で生じる物理現象、すなわち、逆止弁12があることによって生じるチャタリングを再現することができる。それによって、混合比確認部で確認した通りの混合比で主剤及び硬化剤が混合されるよう運転することが可能となる。   The mixing ratio confirmation unit 7 including the pressure adjustment unit 40 having the above configuration can reproduce the physical phenomenon that occurs in the merging unit 5, that is, chattering that occurs due to the presence of the check valve 12. Accordingly, it is possible to operate so that the main agent and the curing agent are mixed at the mixing ratio as confirmed by the mixing ratio confirmation unit.

1 主剤タンク
2 硬化剤タンク
3 主剤定量吐出ポンプ
4 硬化剤定量吐出ポンプ
5 合流部
6 混合装置
7,57a,57b 混合比確認部
8 主剤圧送経路
9 硬化剤圧送経路
10 エアモータ
11 連結リンク
12,12a,12b 逆止弁
13,21a,22b 吐出口
14,22a,22b 流量調整弁
15a,15b,16a,16b,24 バルブ
17 主剤確認経路
18 硬化剤確認経路
19 圧力調整ユニット
20 重量計
23 レギュレータ
25 軸支点
26a,26b,27 圧力計
31,41a,41b 圧力検知部
32,42a,42b 流量調整部
33a,33b 端面(圧力検知部)
34 ブッシュ
35 シール部材
36,43a,43b 流量調整ニードル
37,44a,44b ニードル受入部
38a,38b,45a,45b 端部(流量調整ニードル)
46 シーケンサ
47 スプライン
48 ロータリーボールねじ
49 サーボモータ
50 コントローラ
100 混合吐出装置
DESCRIPTION OF SYMBOLS 1 Main agent tank 2 Hardener tank 3 Main agent fixed amount discharge pump 4 Hardener fixed amount discharge pump 5 Junction part 6 Mixing device 7, 57a, 57b Mixing ratio confirmation part 8 Main agent pressure feed path 9 Hardener pressure feed path 10 Air motor 11 Connection link 12, 12a , 12b Check valve 13, 21a, 22b Discharge port 14, 22a, 22b Flow rate adjusting valve 15a, 15b, 16a, 16b, 24 Valve 17 Main agent confirmation path 18 Hardener confirmation path 19 Pressure adjustment unit 20 Weigh scale 23 Regulator 25 Shaft Support points 26a, 26b, 27 Pressure gauges 31, 41a, 41b Pressure detectors 32, 42a, 42b Flow rate adjusters 33a, 33b End faces (pressure detectors)
34 Bush 35 Seal member 36, 43a, 43b Flow rate adjusting needle 37, 44a, 44b Needle receiving portion 38a, 38b, 45a, 45b End (flow rate adjusting needle)
46 Sequencer 47 Spline 48 Rotary ball screw 49 Servo motor 50 Controller 100 Mixing and discharging device

Claims (1)

第1の流体及び第2の流体をそれぞれ収容するタンクと、
前記第1の流体及び前記第2の流体を圧送するポンプと、
前記第1の流体と前記第2の流体とが合流する合流部と、
前記第1の流体及び前記第2の流体を混合する無駆動型の混合装置と、
前記合流部よりも上流側で、前記第1の流体と前記第2の流体との混合比を確認する混合比確認部と、
を備え、
前記合流部に、圧力の高い方から低い方への流れを規制し、且つ、逆方向の流れを許容するバルブが設けられた混合吐出装置であって、
前記混合比確認部が、
前記第1の流体が通る第1経路と、
前記第2の流体が通る第2経路と、
前記第1経路及び前記第2経路を通る各流体の圧力をそれぞれ検知する圧力検知部と、該圧力検知部よりも下流側で、前記圧力検知部で検知された各流体の圧力差に応じて、前記第1経路及び前記第2経路の経路面積を変化させて第1の流体及び前記第2の流体の流量を調整する流量調整部と、を含む圧力調整ユニットと、
を備える混合吐出装置。
Tanks respectively containing a first fluid and a second fluid;
A pump for pumping the first fluid and the second fluid;
A merge portion where the first fluid and the second fluid merge;
A non-drive type mixing device for mixing the first fluid and the second fluid;
A mixing ratio confirmation unit for confirming a mixing ratio of the first fluid and the second fluid on the upstream side of the merging unit;
With
A mixing and discharging device provided with a valve that restricts the flow from the higher pressure side to the lower side and allows the flow in the reverse direction at the merging portion,
The mixing ratio confirmation unit is
A first path through which the first fluid passes;
A second path through which the second fluid passes;
A pressure detection unit that detects the pressure of each fluid passing through the first path and the second path, and a pressure difference between the fluids detected by the pressure detection unit on the downstream side of the pressure detection unit. A pressure adjusting unit including: a flow rate adjusting unit that adjusts flow rates of the first fluid and the second fluid by changing path areas of the first route and the second route;
A mixing and discharging apparatus.
JP2011009237A 2011-01-19 2011-01-19 Mixing and discharging device Withdrawn JP2012148244A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011009237A JP2012148244A (en) 2011-01-19 2011-01-19 Mixing and discharging device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011009237A JP2012148244A (en) 2011-01-19 2011-01-19 Mixing and discharging device

Publications (1)

Publication Number Publication Date
JP2012148244A true JP2012148244A (en) 2012-08-09

Family

ID=46791065

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011009237A Withdrawn JP2012148244A (en) 2011-01-19 2011-01-19 Mixing and discharging device

Country Status (1)

Country Link
JP (1) JP2012148244A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101535289B1 (en) * 2014-11-28 2015-07-08 (주)신진테크 Feeder for two component type paint and painting device for traffic lane having that
CN105537059A (en) * 2016-01-21 2016-05-04 广州金升阳科技有限公司 Glue-pouring machine
WO2016085288A1 (en) * 2014-11-28 2016-06-02 (주)신진테크 Road line painting device for two-component paint
CN113692321A (en) * 2019-04-08 2021-11-23 杜尔系统股份公司 Application device and corresponding application method

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101535289B1 (en) * 2014-11-28 2015-07-08 (주)신진테크 Feeder for two component type paint and painting device for traffic lane having that
WO2016085288A1 (en) * 2014-11-28 2016-06-02 (주)신진테크 Road line painting device for two-component paint
CN105537059A (en) * 2016-01-21 2016-05-04 广州金升阳科技有限公司 Glue-pouring machine
CN113692321A (en) * 2019-04-08 2021-11-23 杜尔系统股份公司 Application device and corresponding application method
CN113692321B (en) * 2019-04-08 2023-06-13 杜尔系统股份公司 Application device and corresponding application method
US11779952B2 (en) 2019-04-08 2023-10-10 Dürr Systems Ag Application device and corresponding application method

Similar Documents

Publication Publication Date Title
US9393504B2 (en) Closed loop flow control of a HPLC constant flow pump to enable low-flow operation
US7992429B2 (en) Chromatography system with fluid intake management
US20150177743A1 (en) Gradient solution sending apparatus
US6220747B1 (en) Proportional pump system for viscous fluids
US11154829B2 (en) Method and metering device for metering a liquid or pasty product in a pressure-regulated manner
JP5610733B2 (en) Liquid material dispensing equipment
JP2012148244A (en) Mixing and discharging device
MX2014002540A (en) Fluid mixing and delivery system.
US20180355861A1 (en) Dosing pump system
CN102288264B (en) Electric drive piston liquid micro flow measurement standard device
US20140318224A1 (en) High-pressure constant flow rate pump and high-pressure constant flow rate liquid transfer method
CN202177433U (en) Electric drive piston type standard metering device for micro-flow
JP6689295B2 (en) Device with intermittently prepared liquid plastic component
US20090068034A1 (en) Pumping system with precise ratio output
GB2377425A (en) Metering device having shuttle and spool valve
CN112439654A (en) Device and method for supplying a liquid medium
US20160001243A1 (en) Mixing system for viscous media
US7017469B2 (en) Metering device
JP4885597B2 (en) Mixing equipment
GB2454783A (en) HPLC constant flow pump to enable low-flow operation, wherein thermal-based sensors are contained within an isothermal block
JP2012166177A (en) Metering and mixing apparatus and metering and mixing method for gas-liquid mixed fluid
JP4974768B2 (en) Flowmeter
JP2001082343A (en) Tube pump and water quality analyzer
JP2010131563A (en) Apparatus for supplying mixed coating material
WO2010094542A2 (en) Flow control

Legal Events

Date Code Title Description
A300 Withdrawal of application because of no request for examination

Free format text: JAPANESE INTERMEDIATE CODE: A300

Effective date: 20140401