JPH0435772A - Method for coating panel - Google Patents

Method for coating panel

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Publication number
JPH0435772A
JPH0435772A JP14332590A JP14332590A JPH0435772A JP H0435772 A JPH0435772 A JP H0435772A JP 14332590 A JP14332590 A JP 14332590A JP 14332590 A JP14332590 A JP 14332590A JP H0435772 A JPH0435772 A JP H0435772A
Authority
JP
Japan
Prior art keywords
coating
gun
angle
panel
groove
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
Application number
JP14332590A
Other languages
Japanese (ja)
Other versions
JP2540226B2 (en
Inventor
Toyomitsu Nishi
西 豊充
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.)
Sekisui Chemical Co Ltd
Original Assignee
Sekisui Chemical Co 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 Sekisui Chemical Co Ltd filed Critical Sekisui Chemical Co Ltd
Priority to JP2143325A priority Critical patent/JP2540226B2/en
Publication of JPH0435772A publication Critical patent/JPH0435772A/en
Application granted granted Critical
Publication of JP2540226B2 publication Critical patent/JP2540226B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PURPOSE:To finely coat a panel with grooves by first coating the grooves with a coating gun kept at an angle within a prescribed range and then coating the entire surface of the panel with the gun kept at an angle within other prescribed range. CONSTITUTION:When a panel 1 with grooves 2 is coated with a coating gun 3, the entire grooves 2 are first coated with the gun 3 kept at an angle alpha to the surface of the panel 1 within the range of (theta-10) to theta deg. (theta deg. is the angle between the surface of the panel 1 and each inclined face 21 of the grooves 2) by mainly coating the opposite inclined faces 21 and the bottoms 22 of the grooves 2. The entire surface of the panel 1 is then coated with the gun 3 kept at an angle alpha within the range of theta deg. to (theta+10) deg.. Proper coating weight is obtd. at the grooves 2 and the flat part 11 and the panel 1 can finely be coated.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明はパネルの塗装方法に関する。[Detailed description of the invention] (Industrial application field) The present invention relates to a method for painting panels.

詳細には、溝が穿設されたパネルの塗装方法に関する。In particular, the present invention relates to a method of painting a panel with grooves.

(従来の技術) 従来、建築物の外壁等に使用されるパネルは平面状のパ
ネルが多かった。
(Prior Art) Conventionally, panels used for the exterior walls of buildings, etc., have often been flat panels.

しかし、建築物が高級化するに従ってパネルに溝を穿設
し、凹凸模様を施すようになった。
However, as buildings became more sophisticated, the panels began to have grooves and textured patterns.

このように、凹凸模様が施されたパネルを塗装する場合
には、従来、特開昭55−126585号公報に記載あ
るように、スプレー塗装ガンで、平面状のパネルを塗装
していたときと同しように、溝部と平面部とを同時に塗
装していた。
In this way, when painting a panel with an uneven pattern, as described in Japanese Patent Application Laid-open No. 126585/1985, a spray painting gun was used to paint a flat panel. Similarly, the grooves and flat surfaces were painted at the same time.

(発明が解決しようとする課題) しかし、溝部と平面部とを同時に塗装したのでは、溝の
傾斜部と底部との面積が平面部より大きいから、溝部の
塗着量が少なくなる。又、凹部の傾斜面が邪魔になり、
対向傾斜面に塗着量の少ない部分が生じることもある。
(Problems to be Solved by the Invention) However, if the groove and the flat surface are coated at the same time, the amount of coating on the groove will be reduced because the areas of the slope and bottom of the groove are larger than the flat surface. Also, the sloped surface of the recess becomes a hindrance,
There may be areas with a small amount of coating on the opposing inclined surface.

このように、溝部と平面部とを同じ条件で塗装すると、
美麗に塗装できないという問題がある。
In this way, if you paint the groove part and the flat part under the same conditions,
There is a problem that it cannot be painted beautifully.

特に、最近、外壁として多(使用されだしたALC板の
パネルでは、溝を穿設することにより、この溝の表面が
ポーラスになり、このポーラス面が塗料を吸収したり、
又、ポーラスな凹凸を隠すために、平面部より塗着量を
従来以上に多くして塗装する必要があり、従来の塗装方
法では美麗な塗装ができないという問題が発生した。
In particular, in the case of ALC panels, which have recently started to be used as exterior walls, by drilling grooves, the surface of these grooves becomes porous, and this porous surface absorbs paint.
In addition, in order to hide the porous irregularities, it is necessary to apply a larger amount of paint to the flat surface than in the past, resulting in the problem that beautiful painting cannot be achieved using conventional painting methods.

そこで、本発明は溝が穿設されたALCの如きパネルに
も美麗に塗装できる塗装方法を提供することを目的とす
る。
SUMMARY OF THE INVENTION Therefore, an object of the present invention is to provide a coating method that enables beautiful coating even on panels such as ALC having grooves.

(課題を解決するための手段) 本発明は上記問題を解決し、上記目的を達成するために
なしたもので、溝が穿設されたパネルを塗装ガンで塗装
する方法において、パネル面と溝の傾斜面とのなす角度
をθ゜とすると、塗装ガンとパネル面とのなす角度を(
θ−10)°以上、θ゜以下に塗装ガンを保持して主に
溝の対向傾斜面および底面を塗装するようにして、溝部
の全体を塗装し、その後、塗装ガンとパネル面とのなす
角度をθ゜以上、(θ+10)°以下に保持して、パネ
ル全面を塗装するのである。
(Means for Solving the Problems) The present invention has been made to solve the above problems and achieve the above objects, and provides a method for painting a panel with grooves with a paint gun. If the angle between the painting gun and the panel surface is θ°, then the angle between the painting gun and the panel surface is (
Paint the entire groove by holding the paint gun at an angle of θ-10)° or more and below θ°, mainly painting the facing slopes and the bottom of the groove, and then apply the coating between the paint gun and the panel surface. The entire surface of the panel is painted while keeping the angle between θ° and (θ+10)°.

本発明において、パネル面と溝の傾斜面とのなす角度と
は、溝の傾斜面を延長し、この延長面とパネル面とのな
す角度をいう。
In the present invention, the angle formed by the panel surface and the sloped surface of the groove refers to the angle formed by extending the sloped surface of the groove and the extended surface and the panel surface.

本発明においては、この角度をθ゜とすると、塗装ガン
とパネル面との角度を(θ−10)°以上、θ゜以下に
保って主に溝の対向傾斜面と底面とを塗装するようにし
て、溝部の全体を塗装して、溝部の塗着不足量を、先ず
塗装する。
In the present invention, if this angle is θ°, the angle between the painting gun and the panel surface is kept at (θ-10)° or more and θ° or less, and the coating is mainly applied to the opposite inclined surface and the bottom surface of the groove. Then, paint the entire groove, and first paint the remaining amount of paint in the groove.

溝部の傾斜面は2つあるから、1頭の塗装ガンで塗装す
る場合には、それぞれ別々に溝の対向傾斜面を塗装する
Since there are two inclined surfaces of the groove, when painting with one painting gun, the opposite inclined surfaces of the groove are painted separately.

又、2頭塗装ガンでは、対向傾斜面が、−度に塗装でき
る。
In addition, with a two-headed coating gun, opposing inclined surfaces can be coated in one turn.

塗装ガンとパネル面との角度を上記範囲に限定する理由
は、塗装ガンとパネル面との角度が(θ−10)°以下
では、溝の傾斜面の影響で、対向傾斜面と底面との境界
付近に塗装出来ない部分ができるからであり、又、θ゜
以上では溝の底部に多く塗着し、溝の傾斜部に少ししか
塗着されないからである。特に好適には、塗装ガンとパ
ネルとの角度が(θ−6)°以上、θ゜以下に保って、
塗装する。
The reason why the angle between the painting gun and the panel surface is limited to the above range is that when the angle between the painting gun and the panel surface is less than (θ-10)°, the slope between the opposing slope and the bottom surface becomes difficult due to the influence of the slope of the groove. This is because areas that cannot be coated are created near the boundaries, and when the angle is greater than θ°, much of the coating is applied to the bottom of the groove and only a small amount is applied to the sloped portion of the groove. Particularly preferably, the angle between the painting gun and the panel is kept at (θ-6)° or more and θ° or less,
Paint.

又、本発明では、その後に、パネル全面を塗装する。そ
のときの、塗装ガンとパネル面との角度はθ゜以上、(
θ+IO)°以下にして塗装する。
Further, in the present invention, the entire surface of the panel is then painted. At that time, the angle between the paint gun and the panel surface is θ° or more (
Paint at θ+IO)° or less.

特に好適には、60以上、(θ+5)″以下にして塗装
する。
Particularly preferably, the coating is performed at a value of 60 or more and (θ+5)″ or less.

このようにパネル全面を塗装するときに、塗装ガンとパ
ネル面との角度を上記範囲に限定する理由は、塗装ガン
をこの角度に保って塗装すると、溝部と平面部との塗着
量が適当になり、美麗に塗装できるからである。
The reason why the angle between the paint gun and the panel surface is limited to the above range when painting the entire surface of the panel is that if you keep the paint gun at this angle and paint, the amount of paint on the grooves and flat areas will be appropriate. This is because it can be painted beautifully.

(作 用) 本発明では、パネル面と溝の傾斜面とのなす角度をθ゜
とすると、パネル面と塗装ガンとのなす角度を(θ−1
0)°以上、θ゜以下に保った塗装ガンで、溝部の塗着
不足量を、予め、パネルの溝部に塗装した後、パネル面
と塗装ガンとのなす角度をθ゜以上、(θ+10)°以
下に保った塗装ガンで、全面を塗装するから、溝部と平
面部との塗着量が適量になり、美麗に塗装できる。
(Function) In the present invention, when the angle between the panel surface and the sloped surface of the groove is θ°, the angle between the panel surface and the coating gun is (θ−1
After coating the grooves of the panel in advance to compensate for the insufficient amount of paint in the grooves with a paint gun kept at 0)° or more and θ° or less, adjust the angle between the panel surface and the painting gun to θ° or more (θ+10). Since the entire surface is painted with a paint gun kept at a temperature below 100°C, the amount of paint applied to the grooves and flat areas is just the right amount, resulting in a beautiful coating.

(実施例) 次に、本発明の詳細な説明する。(Example) Next, the present invention will be explained in detail.

第1図は、溝を穿設したALC板に塗装ガンで塗布して
いる状態を示す断面図である。
FIG. 1 is a cross-sectional view showing a condition in which a coating gun is used to coat an ALC board with grooves formed therein.

第2図は、塗装ガンでパネル平面部の塗着量が0.9k
g/m”になるように、パネル全面を塗装したときに、
塗装ガンとALC板とのなす角度αと、溝部の塗着量G
との関係を示す図、第3図は溝部を塗装したときに、塗
装ガンとALC板とのなす角度αと、溝部の塗着量Gと
の関係を示す図である。
Figure 2 shows that the amount of paint applied on the flat surface of the panel using the paint gun is 0.9k.
g/m” when the entire panel is painted,
Angle α between the paint gun and the ALC board and coating amount G in the groove
FIG. 3 is a diagram showing the relationship between the angle α between the coating gun and the ALC board and the coating amount G in the groove when the groove is coated.

図に置いて、1はALC板である。2はこのALCII
に穿設された溝であり、傾斜部21と溝底部22とから
なる。そして、この傾斜部21とALC板1の表面の平
面部11との角度θは、56″である。
In the figure, 1 is an ALC board. 2 is this ALC II
It is a groove bored in the groove, and consists of an inclined part 21 and a groove bottom part 22. The angle θ between this inclined portion 21 and the flat portion 11 on the surface of the ALC board 1 is 56''.

3は塗装ガンであり、この塗装ガン3とALC板1の平
面部11とのなす角度はαである。
3 is a coating gun, and the angle between this coating gun 3 and the flat portion 11 of the ALC board 1 is α.

第2図に示される線4は、平面部11の塗着量が0.9
kg/m”になるようにALC板の全面を塗装したとき
に、塗装ガン3とALC板1とのなす角度αと、溝2の
傾斜部21の塗着量Gとの関係を示したものであり、線
5は、同じく、平面部11の塗着量が0.9kg/m2
になるように塗装したときに、塗装ガン3とALCLi
O2なす角度αと、溝2の溝底部22の塗着量Gとの関
係を示したものである。
The line 4 shown in FIG. 2 indicates that the amount of coating on the flat part 11 is 0.9
This shows the relationship between the angle α between the coating gun 3 and the ALC board 1 and the amount of coating G on the sloped part 21 of the groove 2 when the entire surface of the ALC board is coated so that Similarly, line 5 has a coating amount of 0.9 kg/m2 on the flat part 11.
When painting so that
This figure shows the relationship between the angle α formed by O2 and the coating amount G on the groove bottom 22 of the groove 2.

第3図上図に示される線6は主に溝2を塗装したときに
、塗装ガン3とALCLiO2なす角度αと溝底部22
の塗着量Gとの関係を示したものであり、第3図下図に
示される線7は、同じく、主に溝2を塗装したときに、
塗装ガン3とALCLiO2なす角度αと溝の対向斜面
21の塗着量Gとの関係を示したものである。
The line 6 shown in the upper part of FIG.
Similarly, the line 7 shown in the lower part of Figure 3 shows the relationship between the amount of coating G and
It shows the relationship between the angle α between the coating gun 3 and the ALCLiO2 and the coating amount G on the opposing slope 21 of the groove.

次に、このALCLiO2装方法について説明する。Next, this ALCLiO2 loading method will be explained.

(a)下限塗着量の把握 塗装ガンを用い、ALCLiO2面部11と、溝傾斜部
21と、溝底部22とをそれぞれ別々に塗装し、これら
が美麗に塗装される最低塗着量を試験した結果、次表の
如き結果が得られた。
(a) Determining the minimum coating amount Using a paint gun, the ALCLiO2 surface portion 11, the groove slope portion 21, and the groove bottom portion 22 were each painted separately, and the minimum coating amount that would allow these to be coated beautifully was tested. As a result, the results shown in the following table were obtained.

(単位:kg/ml このように、溝傾斜部21および溝底部22が平面部1
1より塗着量を多くする必要があるのは、ALCLiO
2設したときに、溝傾斜部21および溝底部22に多数
の孔が生じたために、塗装すると、この孔の中に塗料が
吸収されるものと、孔の凹凸をなくするために多く塗着
する必要があるものと推定される。
(Unit: kg/ml) In this way, the groove slope part 21 and the groove bottom part 22 are
ALCLiO requires a larger coating amount than 1.
When two holes were installed, a large number of holes were created in the groove slope part 21 and the groove bottom part 22, so when painting, the paint was absorbed into the holes, and a lot of paint was applied to eliminate the unevenness of the holes. It is presumed that it is necessary to do so.

(b)平面部11に下限塗着量0.9kg/m”をAL
CLiO2面に塗装した時に生じる溝の傾斜部21およ
び溝底部22の塗着不足量の把握次に平面部11の下限
塗着量0.9kg/m”になるように、塗装ガン3(2
頭エアレスステッチ)の吐出量を調節してALC板1板
面全面装した。
(b) AL the lower limit coating amount 0.9 kg/m” on the flat part 11
Ascertain the insufficient amount of coating on the sloped part 21 and bottom part 22 of the groove that occurs when painting the CLiO2 surface. Next, set the coating gun 3 (2
The discharge amount of the head airless stitch (head airless stitch) was adjusted to cover the entire surface of one ALC board.

そのときの塗装ガン3のALCLiO2なす角度αと塗
着量Gとの関係を測定した。
At that time, the relationship between the angle α formed by the ALCLiO2 of the coating gun 3 and the coating amount G was measured.

その結果を第2図に図示する。The results are illustrated in FIG.

第2図の線4は溝傾斜部21の塗着量Gと塗装ガン30
角度αとの関係を示すもので、塗装ガン3の角度αが大
きい程、塗着量が低下していることが判る。又、線5は
溝底部22の塗着量Gと塗装ガン3の角度αとの関係を
示すもので、塗装ガン3の角度αが大きい程、塗着量が
多くなっていることが判る。そして、塗装ガン3の角度
αが48°で両者が交叉している。
Line 4 in FIG.
This shows the relationship with the angle α, and it can be seen that the larger the angle α of the coating gun 3, the lower the coating amount. Further, line 5 shows the relationship between the coating amount G of the groove bottom 22 and the angle α of the coating gun 3, and it can be seen that the larger the angle α of the coating gun 3, the greater the coating amount. The angle α of the coating gun 3 is 48°, and the two intersect.

この結果から塗装ガン3の溝2に対する最適塗装角度を
判断するに、溝底部22と溝傾斜部21との塗着量の差
が小さい程、溝2を均一に塗装し易いから、塗装ガンの
角度αは、両者が交叉する48°に近い程よい。又、塗
装ガン3の角度αが56°以下では、溝底部22と対向
傾斜部21との境界に塗装されない部分が生じる。
Judging from this result the optimal coating angle of the coating gun 3 with respect to the groove 2, the smaller the difference in coating amount between the groove bottom 22 and the groove slope 21, the easier it is to uniformly coat the groove 2. The closer the angle α is to 48° where the two intersect, the better. Further, if the angle α of the coating gun 3 is less than 56°, there will be a portion not coated at the boundary between the groove bottom portion 22 and the opposing inclined portion 21.

かかる理由から、塗装ガン3の角度は56°〜60°の
範囲が最適であることが判る。
For this reason, it is found that the angle of the coating gun 3 is optimally in the range of 56° to 60°.

その塗装ガン3の角度αが56°〜60°のときの溝傾
斜部21と溝底部22の塗着量Gを表に示すと、次のよ
うになる。
The coating amount G of the groove slope portion 21 and the groove bottom portion 22 when the angle α of the coating gun 3 is 56° to 60° is shown in a table as follows.

(単位:kg/m2) 前に、(a)で試験して判明した溝部の最低塗着量であ
る1、8kg/m2から、塗着不足量を算出すると、そ
れぞれ溝傾斜部21が1.4kg/m2、溝底部22が
1,1kg/m”不足することになる。
(Unit: kg/m2) When the amount of insufficient coating is calculated from the minimum coating amount of 1 and 8 kg/m2 of the groove part found in the test in (a) above, it is found that the groove slope part 21 is 1.8 kg/m2, respectively. 4 kg/m2, and the groove bottom 22 is 1.1 kg/m" short.

(C)溝部の塗着不足量を補充する塗装方法の検討次に
、2頭ガンエアレスステッチを使用して、上記塗着不足
量を補う塗装方法を検討する。
(C) Consideration of a painting method to replenish the insufficient amount of coating in the grooves Next, a method of painting to compensate for the aforementioned insufficient amount of coating using two-gun airless stitching will be investigated.

そのため塗装ガン3の角度αを変えて主に溝2を塗装し
、塗装ガン3の角度αと溝底部22、溝傾斜部21の塗
着量Gを測定した。
Therefore, the angle α of the coating gun 3 was changed to mainly coat the groove 2, and the angle α of the coating gun 3, the coating amount G of the groove bottom 22, and the groove slope 21 were measured.

その結果を第3図に示す。The results are shown in FIG.

第3図上図の線6は、溝底部22の塗着量Gと塗装ガン
3の角度αとの関係を示したもので、この線6から、溝
底部22の塗着不足量である1゜1kg/cm”以上塗
着させるためには、塗装ガン1の角度αを50°以上に
する必要があることが判る。
Line 6 in the upper part of FIG. 3 shows the relationship between the coating amount G of the groove bottom 22 and the angle α of the coating gun 3. It can be seen that in order to apply a coating of 1 kg/cm or more, it is necessary to set the angle α of the coating gun 1 to 50° or more.

又第3図下図の線6は、塗装ガン3の角度αと溝1の対
向傾斜面21の塗着量Gとの関係を示したもので、この
線7から、傾斜面21の塗着不足量1.4kg/m”以
上塗着させるためには、塗装ガンの角度αを56″以下
にする必要があることが判る。
Line 6 in the lower diagram of FIG. 3 shows the relationship between the angle α of the coating gun 3 and the amount of coating G on the opposing inclined surface 21 of the groove 1. From this line 7, it can be seen that there is insufficient coating on the inclined surface 21. It can be seen that in order to coat at a rate of 1.4 kg/m" or more, the angle α of the coating gun needs to be 56" or less.

この結果から、塗装ガン3の角度は50°〜56@が最
適であることが判る。
From this result, it can be seen that the optimum angle for the coating gun 3 is 50° to 56°.

尚、このときの塗装時間は0.25秒であった。The coating time at this time was 0.25 seconds.

(山実際の塗装例 2頭ガンエアレスステッチを使用して、先ず、主に溝1
の部分を塗装ガン3の角度を50°にし、溝底部22の
塗着量が1.1kg/m”になるように、0.25秒間
塗装し、次に、ALCLiO2面を、塗装ガン30角度
を58°にし、平面部11の塗着量が0.9kg/m”
になるように、塗装した。
(Actual painting example using two gun airless stitches, first, mainly the groove 1
Set the angle of the coating gun 3 to 50 degrees and paint for 0.25 seconds so that the amount of coating on the groove bottom 22 is 1.1 kg/m''. is set to 58°, and the amount of coating on the flat part 11 is 0.9 kg/m"
I painted it to look like this.

塗装の結果は全面がほぼ均一に塗装され、極めて良好で
あった。
The results of the painting were extremely good, with the entire surface being coated almost uniformly.

(発明の効果) 以上の説明から判明するように、本発明は、溝の傾斜面
と平面とのなす角をθ゜とすると、塗装ガンの°角度を
、(θ−10)°以上、θ゜以下にして、溝部を塗装し
、その後、塗装ガンの角度をθ゜以上、(θ+10)°
以下にして、全面を塗装するから、溝部および平面部の
塗着量が過不足なく塗装され、極めて、良好に塗装され
る。
(Effects of the Invention) As can be seen from the above description, the present invention allows the angle of the coating gun to be set at (θ-10)° or more, where θ° is the angle between the sloped surface of the groove and the flat surface.゜ or less, paint the groove, and then adjust the angle of the painting gun to θ゜ or more (θ + 10)°.
Since the entire surface is coated in the following manner, the grooves and flat areas are coated in just the right amount, resulting in extremely good coating.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は溝を穿設したパネルに塗装ガンで塗装している
状態を示す断面図、第2図は塗装ガンで平面部の塗着量
が0.9kg/m”になるように、パネルの全面を塗装
したときの、塗装ガンの角度αと溝部の塗着量との関係
を示す図、第3図は溝部を塗装したときの、塗装ガンの
角度αと溝部の塗着量との関係を示す図である。 1・−−−一−−−−−−−−−−パネル(ALC板)
11−・−平面部 2−・−−−−−−−−一−−溝 21・=−・傾斜部 22−−−−−一溝底部
Figure 1 is a cross-sectional view showing a panel with grooves being painted with a paint gun, and Figure 2 is a cross-sectional view showing a panel with grooves being painted with a paint gun. Figure 3 shows the relationship between the angle α of the paint gun and the amount of coating in the groove when painting the entire surface of the groove. It is a diagram showing the relationship. 1.----1--------- Panel (ALC board)
11-.-Flat portion 2------- Groove 21--Slanted portion 22----- Groove bottom

Claims (1)

【特許請求の範囲】[Claims] (1)溝が穿設されたパネルを塗装ガンで塗装する方法
において、パネル面と溝の傾斜面とのなす角度をθ゜と
すると、塗装ガンとパネル面とのなす角度を(θ−10
)℃以上、θ゜以下に塗装ガンを保持して主に溝の対向
傾斜面および底面を塗装するようにして、溝部の全体を
塗装し、その後、塗装ガンとパネル面とのなす角度をθ
゜以上、(θ+10)゜以下に塗装ガンを保持して、パ
ネル全面を塗装することを特徴とするパネルの塗装方法
(1) In the method of painting a panel with grooves with a paint gun, if the angle between the panel surface and the sloped surface of the groove is θ°, then the angle between the paint gun and the panel surface is (θ-10
)℃ or higher and θ℃ or lower, and paint the entire groove by mainly painting the facing slopes and the bottom surface of the groove, then adjust the angle between the coating gun and the panel surface to θ℃.
A panel painting method characterized by holding a paint gun at a temperature of at least 100 degrees and at most (θ+10) degrees and painting the entire surface of the panel.
JP2143325A 1990-05-31 1990-05-31 How to paint the panel Expired - Fee Related JP2540226B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2143325A JP2540226B2 (en) 1990-05-31 1990-05-31 How to paint the panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2143325A JP2540226B2 (en) 1990-05-31 1990-05-31 How to paint the panel

Publications (2)

Publication Number Publication Date
JPH0435772A true JPH0435772A (en) 1992-02-06
JP2540226B2 JP2540226B2 (en) 1996-10-02

Family

ID=15336166

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2143325A Expired - Fee Related JP2540226B2 (en) 1990-05-31 1990-05-31 How to paint the panel

Country Status (1)

Country Link
JP (1) JP2540226B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6165562A (en) * 1997-06-30 2000-12-26 Nichiha Corporation Building board, and method and apparatus for coating building board

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6142357A (en) * 1984-07-31 1986-02-28 Kawasaki Heavy Ind Ltd Method and apparatus for automatically painting structure having corrugated surface
JPS6443366A (en) * 1987-08-06 1989-02-15 Shimizu Construction Co Ltd Spraying method and device for twin gun device

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6142357A (en) * 1984-07-31 1986-02-28 Kawasaki Heavy Ind Ltd Method and apparatus for automatically painting structure having corrugated surface
JPS6443366A (en) * 1987-08-06 1989-02-15 Shimizu Construction Co Ltd Spraying method and device for twin gun device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6165562A (en) * 1997-06-30 2000-12-26 Nichiha Corporation Building board, and method and apparatus for coating building board

Also Published As

Publication number Publication date
JP2540226B2 (en) 1996-10-02

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