JPH03127655A - Device for controlling discharge of coating from coating gun - Google Patents
Device for controlling discharge of coating from coating gunInfo
- Publication number
- JPH03127655A JPH03127655A JP26771189A JP26771189A JPH03127655A JP H03127655 A JPH03127655 A JP H03127655A JP 26771189 A JP26771189 A JP 26771189A JP 26771189 A JP26771189 A JP 26771189A JP H03127655 A JPH03127655 A JP H03127655A
- Authority
- JP
- Japan
- Prior art keywords
- gun
- pressure
- paint
- coating
- supply
- 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.)
- Granted
Links
- 239000011248 coating agent Substances 0.000 title claims abstract description 18
- 238000000576 coating method Methods 0.000 title claims abstract description 18
- 239000003795 chemical substances by application Substances 0.000 claims abstract description 45
- 239000003973 paint Substances 0.000 claims description 41
- 238000010422 painting Methods 0.000 claims description 16
- 238000001514 detection method Methods 0.000 claims description 5
- 239000004848 polyfunctional curative Substances 0.000 claims 1
- 239000000203 mixture Substances 0.000 abstract 1
- 238000010586 diagram Methods 0.000 description 3
- 238000006073 displacement reaction Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 238000011144 upstream manufacturing Methods 0.000 description 3
- 239000011347 resin Substances 0.000 description 2
- 229920005989 resin Polymers 0.000 description 2
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 238000007599 discharging Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 239000007921 spray Substances 0.000 description 1
Landscapes
- Nozzles (AREA)
Abstract
Description
【発明の詳細な説明】
産業上の利用分野
本発明は、主剤と硬化剤とを混合させた上で塗装するい
わゆる2液温合タイプの塗料を吐出対象とする手動式の
塗装ガンの塗料吐出量制御装置に関する。DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application The present invention relates to paint discharging from a manual paint gun that discharges so-called two-component heating type paint, which is applied after mixing a base agent and a curing agent. It relates to a quantity control device.
従来の技術
例えば2液(主剤と硬化剤)混合タイプのウレタン系塗
料を吐出対象とする塗装ガンにおいては、第3図および
第4図に示すような吐出量制御方式%式%
第3図は自動塗装機あるいはロボットにより自動塗装す
る場合の例を示しており、カラーチェンジバルブ31.
32と容積型のギヤポンプ33゜34とを備えた主剤供
給経路35および硬化剤供給経路36から各別に定量供
給された主剤と硬化剤とをミキシングバルブ37にて所
定の割合で完全に混合した上で塗装ガン38によりスプ
レー塗装するもので、予め設定された塗装パターンの塗
装条件に応じてギヤポンプ33.34の回転数を制御す
ることにより塗装ガン38からの吐出量がコントロール
される。39.40は主剤および硬化剤の供給源、41
.42は出力端子付きの圧力計である。Conventional technology For example, in a painting gun that discharges a two-component (main agent and curing agent) mixed type urethane paint, the discharge rate control method % type % as shown in Figures 3 and 4 is used. An example of automatic painting using an automatic painting machine or robot is shown, and the color change valve 31.
32 and a positive displacement gear pump 33, 34, the main agent and curing agent are supplied in fixed quantities from a main agent supply path 35 and a curing agent supply path 36, respectively, and are completely mixed at a predetermined ratio at a mixing valve 37. The amount of discharge from the paint gun 38 is controlled by controlling the rotational speed of the gear pumps 33 and 34 according to the coating conditions of a preset painting pattern. 39.40 is the source of the main agent and curing agent, 41
.. 42 is a pressure gauge with an output terminal.
また、第4図に示すものは手作業による塗装を前提とし
たもので、カラーチェンジバルブ31゜32とギヤポン
プ33.34とを備えた主剤供給経路35および硬化剤
供給経路36から各別に定量供給された主剤と硬化剤と
を、手動式の塗装ガン43に付帯した塗料容器44に注
入して塗装するものである。Furthermore, the one shown in Fig. 4 is intended for manual painting, and a fixed amount is supplied separately from the main agent supply route 35 and hardening agent supply route 36, which are equipped with color change valves 31 and 32 and gear pumps 33 and 34. The main agent and curing agent thus prepared are injected into a paint container 44 attached to a manual paint gun 43 for painting.
発明が解決しようとする課題
しかしながら、第3図に示した前者の方式では、専ら自
動塗装のみを目的としているために、手作業による塗装
のように塗装タイミングおよび吐出量等の塗装条件を予
め予測できない場合には使用することができない。Problems to be Solved by the Invention However, since the former method shown in Fig. 3 is aimed exclusively at automatic painting, it is necessary to predict painting conditions such as painting timing and discharge amount in advance, unlike manual painting. If it is not possible, it cannot be used.
また第4図に示した後者の方式では、塗装ガン43のト
リガー45を最大限位置まで引いた時の最大吐出量は一
義的に定まるものの、中間の位置でトリガー45の操作
量に応じて吐出量を調整するには全て作業者の感覚に頼
らざるを得ず、微細な吐出量の調整が難しい。そのため
、吐出量を調整しようとすると吐出量が急変して塗膜厚
がばらつくばかりでなく、個人差による塗膜厚のばらつ
きも発生しやすく塗装品質の向上に限界がある。In addition, in the latter method shown in FIG. 4, although the maximum discharge amount when the trigger 45 of the painting gun 43 is pulled to the maximum position is uniquely determined, the discharge amount depends on the amount of operation of the trigger 45 at an intermediate position. To adjust the amount, the operator must rely entirely on his or her senses, making it difficult to finely adjust the amount of discharge. Therefore, when trying to adjust the discharge amount, not only the discharge amount changes suddenly and the coating film thickness varies, but also variations in coating film thickness due to individual differences are likely to occur, which limits the improvement of coating quality.
本発明は以上のような問題点に鑑みてなされたもので、
その目的とするところ、は、手動式の塗装ガンでありな
がら作業者の意志により吐出量を連続的且つなめらかに
可変制御できるようにした塗料吐出量制御装置を提供す
ることにある。The present invention was made in view of the above problems.
The object of the present invention is to provide a paint discharge amount control device which is a manually operated paint gun but can continuously and smoothly control the discharge amount according to the operator's will.
課題を解決するための手段
本発明は、定量供給装置を備えた主剤供給経路および硬
化剤供給経路からそれぞれに供給された主剤と硬化剤と
をミキシングバルブにより所定の割合で混合した上でそ
の塗料を手動式の塗装ガンに供給し、塗装ガンのトリガ
ーの操作により塗装ガンに内蔵されたバルブを開閉して
塗料の吐出量を制御するようにした装置において、ミキ
シングバルブと塗装ガンとの間の塗料供給経路の圧力を
検出する圧力検出手段と、検出圧力に基づいて前記定量
供給装置からの主剤および硬化剤の供給量を可変制御す
る制御手段とを備えたことを特徴としている。定量供給
装置としては例えば容積型のギヤポンプを用いる。Means for Solving the Problems The present invention involves mixing a base agent and a curing agent in a predetermined ratio using a mixing valve, which are supplied from a base agent supply path and a hardening agent supply path each equipped with a metered supply device, and then mixes the paint. In a device that supplies paint to a manual paint gun, and operates a trigger on the paint gun to open and close a valve built into the paint gun to control the amount of paint discharged, the The present invention is characterized by comprising a pressure detection means for detecting the pressure in the paint supply path, and a control means for variably controlling the supply amount of the base resin and curing agent from the quantitative supply device based on the detected pressure. As the quantitative supply device, for example, a positive displacement gear pump is used.
作用
本発明によると、塗装ガンのトリガー操作によりその吐
出量が変化すると、その吐出量変化に応じて塗料供給経
路の圧力が変化する。そして、この圧力変化を圧力検出
手段が検知すると、その圧力に対して最適な吐出量とな
るように制御手段が定量供給装置であるところの例えば
ギヤポンプの回転数を変化させる。According to the present invention, when the discharge rate of the paint gun changes due to trigger operation of the paint gun, the pressure in the paint supply path changes in accordance with the change in the discharge rate. When the pressure detection means detects this pressure change, the control means changes the rotational speed of, for example, a gear pump, which is a quantitative supply device, so that the discharge amount is optimal for that pressure.
その結果、作業者の意志による塗装ガンのトリが−の操
作量変化に応じて吐出量が連続的且つなめらかに追従す
ることになる。As a result, the discharge amount continuously and smoothly follows changes in the operating amount of the coating gun according to the operator's will.
実施例
第1図は本発明の一実施例を示す構成説明図で、1.2
は主剤および硬化剤の供給源、3は主剤供給経路、4は
硬化剤供給経路である。主剤供給経路3および硬化剤供
給経路4にはその上流側から順に出力端子付きの圧力計
5,6、カラーチェンジバルブ7.8および定量供給装
置としての容積型のギヤポンプ9.10が介装されてい
る。そして、各供給経路3,4により供給された主剤お
よび硬化剤はミキシングバルブ11で所定の割合のちと
に混合された上、塗料供給経路12を通って塗装ガン1
3に供給される。Embodiment FIG. 1 is a configuration explanatory diagram showing an embodiment of the present invention, and 1.2
is a supply source of the main agent and curing agent, 3 is a main agent supply route, and 4 is a curing agent supply route. A pressure gauge 5, 6 with an output terminal, a color change valve 7.8, and a positive displacement gear pump 9.10 as a quantitative supply device are installed in the main agent supply path 3 and the curing agent supply path 4 in order from the upstream side. ing. The main agent and curing agent supplied through each supply route 3 and 4 are mixed at a predetermined ratio by a mixing valve 11, and then passed through a paint supply route 12 to a paint gun 1.
3.
塗装ガン13はニードルバルブ・を内蔵した公知のエア
スプレータイプのもので、トリが−14の操作に連動し
て上記のニードルバルブが変位してそのノズル開度が調
整される。The coating gun 13 is of a known air spray type having a built-in needle valve, and in conjunction with the operation of the bird -14, the needle valve is displaced and its nozzle opening degree is adjusted.
塗料供給経路12には圧力検出手段である圧力センサL
5が設けられており、この圧力センサ15は塗料供給経
路12内の圧力を検出して、その検出圧力Pをギヤポン
プ9,10の回転制御を司る制御手段としてのコントロ
ーラ16に化カスるようになっている。The paint supply path 12 includes a pressure sensor L as pressure detection means.
5 is provided, and this pressure sensor 15 detects the pressure in the paint supply path 12 and transmits the detected pressure P to a controller 16 as a control means for controlling the rotation of the gear pumps 9 and 10. It has become.
コントローラ16は例4ばマイクロコンピュータ等を中
心として構成されており、このコントローラ16には、
トリが−14の操作によりニードルバルブを全開させた
時に必要な各ギヤポンプ9゜lOからの供給量が各ギヤ
ポンプ9.10の回転数として予め設定されているほか
、ギヤポンプ9゜10からの塗料供給量と塗料供給経路
12の圧力Pとの間に相関があることから、検出圧力P
に応じ予め設定された補正条件に基づいて上記のギヤポ
ンプ9.10の設定回転数を増減させて補正する機能を
備えている。For example, the controller 16 is mainly configured with a microcomputer, etc., and this controller 16 includes:
The supply amount from each gear pump 9゜lO required when the needle valve is fully opened by the -14 operation is preset as the rotation speed of each gear pump 9.10, and the paint supply from gear pump 9゜10 is also set in advance. Since there is a correlation between the amount and the pressure P of the paint supply path 12, the detected pressure P
The gear pump 9 has a function of increasing or decreasing the set rotation speed of the gear pump 9 or 10 based on correction conditions set in advance.
このように構成された塗料吐出量制御装置においては、
塗装に際して塗装がン13のトリが−14を最大ストロ
ーク限位置まで引いてニードルバルブを全開させると、
図示しない霧化空気供給通路のエアフロースイッチがO
Nとなり、これを条件として各ギヤポンプ9,10が上
記の設定回転数で回転駆動される。その結果、ギヤポン
プ9゜10により送り出された主剤と硬化剤とがミキシ
ングバルブ11で所定の割合で混合された上で塗装ガン
13から吐出される。In the paint discharge amount control device configured in this way,
When painting, when the paint gun 13 pulls -14 to the maximum stroke limit position and fully opens the needle valve,
The air flow switch of the atomizing air supply passage (not shown) is turned to
N, and under this condition, each gear pump 9, 10 is driven to rotate at the above-mentioned set rotation speed. As a result, the main agent and curing agent sent out by the gear pump 9-10 are mixed at a predetermined ratio by the mixing valve 11 and then discharged from the coating gun 13.
一方、塗装中に吐出量を減らしたい場合には、作業者の
意志によりトリガー14を例えば総ストロークの半分程
度まで戻す。その結果、塗装ガン13から吐出される塗
料吐出量が全開時の半分程度まで制限されることから、
それに応じて塗料供給経路12内の圧力Pが上昇する。On the other hand, if the operator wishes to reduce the discharge amount during painting, the operator returns the trigger 14 to, for example, about half of the total stroke. As a result, the amount of paint discharged from the paint gun 13 is limited to about half that of when it is fully opened.
Correspondingly, the pressure P within the paint supply path 12 increases.
そして、この時の圧力Pを圧力センサ15が検出しその
検出圧力Pがコントローラ16に入力される。The pressure P at this time is detected by the pressure sensor 15, and the detected pressure P is input to the controller 16.
コントローラ16では上記の検出圧力Pをもとに所定の
演算を行い、予め設定された補正条件に基づいてギヤポ
ンプ9.10からの供給量が設定供給量よりも少なくな
るように各ギヤポンプ9゜IOの回転数を補正制御する
。The controller 16 performs a predetermined calculation based on the detected pressure P, and adjusts each gear pump 9° IO so that the supply amount from the gear pump 9.10 is less than the set supply amount based on preset correction conditions. Correctly control the rotation speed.
逆に各ギヤポンプ9.10からの供給量に対して検出圧
力Pが低くなった場合には、先の設定回転数を最大限度
としてギヤポンプ9,10からの供給量が増大するよう
に各ギヤポンプ9.lOの回転数を補正制御する。Conversely, when the detected pressure P becomes lower than the supply amount from each gear pump 9, 10, each gear pump 9 is adjusted so that the supply amount from the gear pumps 9, 10 increases with the previously set rotation speed as the maximum limit. .. Correctly control the rotation speed of lO.
また、塗装を終了する際には、トリガー14の操作をや
めることによって上記のエアフロースイッチがOFFと
なることから、それを条件にギヤポンプ9,10の駆動
が停止する。Further, when finishing the painting, the above-mentioned air flow switch is turned OFF by ceasing to operate the trigger 14, and therefore, the drive of the gear pumps 9 and 10 is stopped on condition of this.
このように本実施例によれば、作業者の意志によるトリ
ガー14のストローク変化すなわちニードルバルブの開
度変化に対して定量供給装置たるギヤポンプ9,10の
回転数が連続的且つなめらかに追従し、主剤と硬化剤と
の混合精度を維持しつつ微細な吐出量コントールができ
るようになる。In this way, according to this embodiment, the rotational speed of the gear pumps 9 and 10, which are quantitative supply devices, continuously and smoothly follows the stroke change of the trigger 14, that is, the change in the opening degree of the needle valve, caused by the operator's will. It becomes possible to finely control the discharge amount while maintaining the mixing precision of the base resin and curing agent.
ここで、第2図に示すようにギヤポンプ9. 10の上
流側の圧力計5.6とは別にギヤポンプ9゜lOの下流
側に圧力センサ17,18を設け、各ギヤポンプ9,1
0の入口側圧力P l+ P IIと出口側圧力P
I F 11との差ΔPと、ポンプ吐出量誤差(実吐
出量−理論吐出量)ΔQとの相関に基づき、上記の差圧
ΔPに応じて各ギヤポンプ9゜10の回転数を補正する
ようにするとギヤポンプ9.10からの供給精度を一段
と高めることができる。Here, as shown in FIG. 2, the gear pump 9. In addition to the pressure gauge 5.6 on the upstream side of gear pump 9, pressure sensors 17 and 18 are provided on the downstream side of gear pump 9.
0 inlet side pressure P l + P II and outlet side pressure P
Based on the correlation between the difference ΔP with IF 11 and the pump discharge amount error (actual discharge amount - theoretical discharge amount) ΔQ, the rotation speed of each gear pump 9° and 10 is corrected according to the above differential pressure ΔP. This makes it possible to further improve the accuracy of supply from the gear pumps 9 and 10.
発明の効果
以上のように本発明によれば、塗装ガンの前段の塗料供
給経路の圧力を検出して、この検出圧力に基づいて定量
供給装置からの主剤および硬化剤の供給量を可変制御す
るようにしたことにより、手動式の塗装ガンでありなが
ら、作業者の意志により微細な吐出量調整はもちろんの
こと連続的かつなめらかな吐出量制御が行える。その結
果、吐出量の急変や個人差による吐出量のばらつきを解
消して塗膜厚の均一化ひいては塗装品質の向上に大きく
寄与できる。Effects of the Invention As described above, according to the present invention, the pressure in the paint supply path upstream of the coating gun is detected, and the amount of the main agent and curing agent supplied from the quantitative supply device is variably controlled based on the detected pressure. By doing this, even though it is a manual painting gun, it is possible to not only finely adjust the discharge amount according to the will of the operator but also to perform continuous and smooth control of the discharge amount. As a result, it is possible to eliminate sudden changes in the discharge amount and variations in the discharge amount due to individual differences, making it possible to make a uniform coating film thickness and greatly contribute to improving the coating quality.
第1図は本発明の一実施例を示す構成説明図、第2図は
本発明の他の実施例を示す構成説明図、第3図および第
4図は従来の塗料吐出量制御装置の一例を示す構成説明
図である。
l・・・主剤供給源、2・・・硬化剤供給源、3・・・
主剤供給経路、4・・・硬化剤供給経路、9,10・・
・定量供給装置としてのギヤポンプ、11・・・ミキシ
ングバルブ、12・・・塗料供給経路、13・・・塗装
ガン、14・・・トリガー 15・・・圧力検出手段と
しての圧力センサ、16・・・制御手段としてのコント
ローラ。FIG. 1 is an explanatory diagram of a configuration showing one embodiment of the present invention, FIG. 2 is an explanatory diagram of a configuration of another embodiment of the invention, and FIGS. 3 and 4 are examples of a conventional paint discharge amount control device. FIG. l...Main agent supply source, 2...Curing agent supply source, 3...
Main agent supply route, 4... Curing agent supply route, 9, 10...
・Gear pump as quantitative supply device, 11... Mixing valve, 12... Paint supply route, 13... Paint gun, 14... Trigger 15... Pressure sensor as pressure detection means, 16...・Controller as a control means.
Claims (1)
供給経路からそれぞれに供給された主剤と硬化剤とをミ
キシングバルブにより所定の割合で混合した上でその塗
料を手動式の塗装ガンに供給し、塗装ガンのトリガーの
操作により塗装ガンに内蔵されたバルブを開閉して塗料
吐出量を制御するようにした装置において、 ミキシングバルブと塗装ガンとの間の塗料供給経路の圧
力を検出する圧力検出手段と、 検出圧力に基づいて前記定量供給装置からの主剤および
硬化剤の供給量を可変制御する制御手段、とを備えたこ
とを特徴とする塗装ガンの塗料吐出量制御装置。(1) The base agent and curing agent supplied from the base agent supply route and the hardener supply route each equipped with a quantitative supply device are mixed at a predetermined ratio using a mixing valve, and then the paint is supplied to a manual painting gun. In a device that controls the amount of paint discharged by opening and closing a valve built into the paint gun by operating the trigger of the paint gun, the pressure is used to detect the pressure in the paint supply path between the mixing valve and the paint gun. 1. A paint discharge amount control device for a coating gun, comprising: a detection means; and a control means for variably controlling the supply amount of the base agent and curing agent from the quantitative supply device based on the detected pressure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP26771189A JP2809751B2 (en) | 1989-10-13 | 1989-10-13 | Paint gun discharge control system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP26771189A JP2809751B2 (en) | 1989-10-13 | 1989-10-13 | Paint gun discharge control system |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH03127655A true JPH03127655A (en) | 1991-05-30 |
JP2809751B2 JP2809751B2 (en) | 1998-10-15 |
Family
ID=17448490
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP26771189A Expired - Fee Related JP2809751B2 (en) | 1989-10-13 | 1989-10-13 | Paint gun discharge control system |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP2809751B2 (en) |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0788403A (en) * | 1993-09-20 | 1995-04-04 | Jietetsuku:Kk | Fluid jet head and support device thereof |
WO1998041316A1 (en) * | 1997-03-19 | 1998-09-24 | Akzo Nobel N.V. | Apparatus for applying multi-component coating compositions |
JP2004154641A (en) * | 2002-11-05 | 2004-06-03 | Asahi Sunac Corp | Multi-liquid mixing apparatus |
JP2004303030A (en) * | 2003-03-31 | 2004-10-28 | Sanyo Electric Co Ltd | Controller and discharge controller |
JP2011072968A (en) * | 2009-10-01 | 2011-04-14 | Asahi Sunac Corp | Coating controller, coating system, and coating control method |
CN105944865A (en) * | 2016-07-15 | 2016-09-21 | 上海发那科机器人有限公司 | Closed-loop control device for flow of resin |
KR20170003942A (en) * | 2014-05-01 | 2017-01-10 | 그라코 미네소타 인크. | Method for flow control calibration of high-transient systems |
US10550552B2 (en) | 2014-05-01 | 2020-02-04 | Graco Minnesota Inc. | Method for fluid pressure control in a closed system |
-
1989
- 1989-10-13 JP JP26771189A patent/JP2809751B2/en not_active Expired - Fee Related
Cited By (12)
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JPH0788403A (en) * | 1993-09-20 | 1995-04-04 | Jietetsuku:Kk | Fluid jet head and support device thereof |
WO1998041316A1 (en) * | 1997-03-19 | 1998-09-24 | Akzo Nobel N.V. | Apparatus for applying multi-component coating compositions |
US6383572B1 (en) | 1997-03-19 | 2002-05-07 | Akzo Nobel N.V. | Apparatus for applying multi-component coating compositions |
JP2004154641A (en) * | 2002-11-05 | 2004-06-03 | Asahi Sunac Corp | Multi-liquid mixing apparatus |
JP2004303030A (en) * | 2003-03-31 | 2004-10-28 | Sanyo Electric Co Ltd | Controller and discharge controller |
JP4497829B2 (en) * | 2003-03-31 | 2010-07-07 | 三洋電機株式会社 | Transmission control device |
JP2011072968A (en) * | 2009-10-01 | 2011-04-14 | Asahi Sunac Corp | Coating controller, coating system, and coating control method |
KR20170003942A (en) * | 2014-05-01 | 2017-01-10 | 그라코 미네소타 인크. | Method for flow control calibration of high-transient systems |
JP2017516203A (en) * | 2014-05-01 | 2017-06-15 | グラコ ミネソタ インコーポレーテッド | Correction method of flow control in transient system |
US10550552B2 (en) | 2014-05-01 | 2020-02-04 | Graco Minnesota Inc. | Method for fluid pressure control in a closed system |
US11492786B2 (en) | 2014-05-01 | 2022-11-08 | Graco Minnesota Inc. | Method for fluid pressure control in a closed system |
CN105944865A (en) * | 2016-07-15 | 2016-09-21 | 上海发那科机器人有限公司 | Closed-loop control device for flow of resin |
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