JPH07308988A - Organic coating metal plate with adhesive properties - Google Patents

Organic coating metal plate with adhesive properties

Info

Publication number
JPH07308988A
JPH07308988A JP12805194A JP12805194A JPH07308988A JP H07308988 A JPH07308988 A JP H07308988A JP 12805194 A JP12805194 A JP 12805194A JP 12805194 A JP12805194 A JP 12805194A JP H07308988 A JPH07308988 A JP H07308988A
Authority
JP
Japan
Prior art keywords
resin
metal plate
adhesive
organic
heating
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Withdrawn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
JP12805194A
Other languages
Japanese (ja)
Inventor
Hiroyasu Furukawa
博康 古川
Ryoji Nishioka
良二 西岡
Hiroshi Kanai
洋 金井
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.)
Nippon Steel Corp
Original Assignee
Nippon Steel Corp
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 Nippon Steel Corp filed Critical Nippon Steel Corp
Priority to JP12805194A priority Critical patent/JPH07308988A/en
Publication of JPH07308988A publication Critical patent/JPH07308988A/en
Withdrawn legal-status Critical Current

Links

Abstract

PURPOSE:To provide an organic coating metal plate having adhesive function even without coating with adhesive and having excellent corrosion resistance and processing adhesive properties. CONSTITUTION:An organic coating metal plate has an organic film made of thermoplastic resin for developing adhesive strength by heating with a thickness of 0.5 to 100mum on both or one side surface of a metal plate. The softening temperature of the resin is preferably 200 to lower than 500 deg.C. Particularly, the resin preferably contains 10-85wt.% of ethylene tetrafluoride resin (PTFE) or/and ethylene tetrafluoride-propylene hexafluoride copolymer resin (FEP) to the entire resin and at least one or more types of the resin selected from a group consisting of polyether sulfone resin (PES), polyphenylene sulfide resin (PPS) and polyamideimide resin (PAI).

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は接着性を有する有機被覆
金属板に関し、詳しくは耐食性、加工密着性等のプレコ
ート金属板としての基本性能に加えて、皮膜を加熱する
ことによって接着性を発現する有機被覆金属板に関す
る。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an organic coated metal sheet having adhesiveness. More specifically, in addition to the basic performance of a precoated metal sheet such as corrosion resistance and work adhesion, the adhesiveness is exhibited by heating the film. The present invention relates to an organic coated metal plate.

【0002】[0002]

【従来の技術】建材、家電、雑貨、自動車などの分野に
おいては、金属板を成形加工後に組立・塗装するという
従来のポストコート方式に代わって、あらかじめ塗装さ
れた金属板(Pre−Coated Metal:PC
Mと略す)を成形加工し、接合して製品とするプレコー
ト方式が多く採用されるようになってきた。
2. Description of the Related Art In the fields of building materials, home appliances, sundries, automobiles, etc., a pre-coated metal sheet (Pre-Coated Metal) is used instead of the conventional post-coating method of assembling and painting the metal sheet after molding. PC
A precoat method in which a product is abbreviated as M) and joined to form a product has been widely adopted.

【0003】[0003]

【発明が解決しようとする課題】しかし、PCMは表面
に絶縁物の皮膜が存在するためスポット溶接ができず、
接合はカシメやリベット等の機械的接合に依存せざるを
得ず、コスト高となるデメリットがある。この解決策と
して、特開昭58−120674号公報には、接着接合
によりPCMどうしを接合するという考え方から、接着
剤により塗装面の接着が可能なPCMが示されている。
しかし、これでも接着時に接着剤を塗布することが必要
であり、手間がかかる。
However, since PCM has an insulating film on its surface, spot welding cannot be performed,
Joining has no choice but to rely on mechanical joining such as caulking and rivets, which has the disadvantage of high cost. As a solution to this problem, Japanese Unexamined Patent Publication (Kokai) No. 58-120674 discloses a PCM capable of adhering coated surfaces with an adhesive from the idea that the PCMs are joined together by adhesive joining.
However, even with this, it is necessary to apply the adhesive at the time of bonding, which is troublesome.

【0004】一方、接着剤をあらかじめ塗布した金属板
として、例えば、特開平3−147841号公報、特開
平4−27541号公報、特開平4−27542号公報
等には、数種のホットメルト接着剤フィルムをステンレ
スシートに積層したステンレス・樹脂積層体シートが開
示されている。しかし、これらは接着のみを目的とした
金属板であり、耐食性等の一般的な塗装としての機能を
満足するものではないので、一般的PCMとして使用で
きない。
On the other hand, as a metal plate to which an adhesive has been applied in advance, for example, there are several types of hot melt adhesives disclosed in Japanese Patent Laid-Open Nos. 3-147841 and 4-27541 and 4-27542. A stainless steel / resin laminate sheet in which an agent film is laminated on a stainless steel sheet is disclosed. However, these are metal plates only for adhesion and do not satisfy general coating functions such as corrosion resistance, and therefore cannot be used as a general PCM.

【0005】本発明は、接着剤を塗布しなくても接着機
能を有し、耐食性や加工密着性も優れた有機被覆金属板
の提供を目的とする。
It is an object of the present invention to provide an organic coated metal plate which has an adhesive function without applying an adhesive and has excellent corrosion resistance and work adhesion.

【0006】[0006]

【課題を解決するための手段】本発明は、金属板の両面
あるいは片面に、膜厚が0.5μm以上100μm以下
で、加熱によって接着力を発現する熱可塑性樹脂からな
る有機皮膜を有することを特徴とする接着性を有する有
機被覆金属板である。熱可塑性樹脂の軟化温度は200
℃以上500℃未満であることが好ましい。また、熱可
塑性樹脂は、四フッ化エチレン樹脂(PTFE)又は/
及び四フッ化エチレン・六フッ化プロピレン共重合樹脂
(FEP)を全樹脂に対して10〜85重量%含有し、
その他に、ポリエーテルサルホン樹脂(PES)、ポリ
フェニレンスルフィド樹脂(PPS)及びポリアミドイ
ミド樹脂(PAI)からなる群から選ばれた1種以上の
樹脂を含有することが好ましい。
Means for Solving the Problems The present invention provides that a metal plate has an organic film having a film thickness of 0.5 μm or more and 100 μm or less and made of a thermoplastic resin that exhibits adhesive force by heating, on both surfaces or one surface of the metal plate. It is an organic coated metal plate having characteristic adhesiveness. The softening temperature of the thermoplastic resin is 200
The temperature is preferably not lower than 500 ° C and lower than 500 ° C. The thermoplastic resin is tetrafluoroethylene resin (PTFE) or /
And 10 to 85% by weight of tetrafluoroethylene / hexafluoropropylene copolymer resin (FEP) based on the total resin,
In addition, it is preferable to contain one or more resins selected from the group consisting of polyether sulfone resin (PES), polyphenylene sulfide resin (PPS) and polyamide imide resin (PAI).

【0007】なお、ここで加熱とは、通常の加熱炉など
の発熱源を介した加熱の他に、エネルギー線などを照射
した加熱などをも総称したものをいう。また、接着性と
は、金属板どうしあるいは金属板と他の部材とが十分な
強度をもって接着する性質のことをいう。
The term "heating" is a generic term for heating through a heat source such as an ordinary heating furnace, as well as heating such as irradiation with energy rays. In addition, the adhesiveness refers to a property in which metal plates are bonded to each other or a metal plate and another member are bonded with sufficient strength.

【0008】[0008]

【作用】前述の課題を解決するためには、接着時には、
加熱することにより皮膜自体が接着剤の機能を果たし、
接着剤無しに製品組立が完了し、製品として使用される
時には、一般的な塗装として機能するPCMの皮膜を開
発する必要がある。そこで、この要求を満たす有機物の
種類、焼き付け温度等について種々検討を行い、その結
果をもとに本発明を完成させた。
In order to solve the above-mentioned problems, at the time of bonding,
By heating, the film itself functions as an adhesive,
It is necessary to develop a coating of PCM that functions as a general paint when the product is assembled without adhesive and used as a product. Therefore, various studies were conducted on the types of organic substances that meet this requirement, the baking temperature, etc., and the present invention was completed based on the results.

【0009】以下、本発明について詳細に説明する。The present invention will be described in detail below.

【0010】本発明において有機被覆を形成する樹脂
は、室温では接着力を有さず、加熱により接着性を発現
する熱可塑性樹脂である。例えば、ナイロン、ポリアク
リル、ポリエチレン、ポリプロピレン、ポリエステル、
ポリウレタン、エポキシ、ポリアミド、フェノール、ポ
リオレフィン等が適した樹脂として挙げられる。
The resin forming the organic coating in the present invention is a thermoplastic resin which does not have adhesive strength at room temperature and exhibits adhesiveness by heating. For example, nylon, polyacrylic, polyethylene, polypropylene, polyester,
Suitable resins include polyurethane, epoxy, polyamide, phenol, polyolefin and the like.

【0011】有機皮膜は室温では耐食性にすぐれた皮膜
として機能させる必要があるが、一般的に高耐食性を得
るためには皮膜樹脂の架橋密度を増加させる必要があ
る。しかし、架橋密度を増加させると樹脂の熱可塑性が
失われ、加熱による接着が不可能となる。そこで本発明
においては、使用する樹脂に架橋剤を添加しないか、あ
るいは架橋剤の量を制限して樹脂の架橋密度を低く押さ
え、接着性を確保する。そして、接着性と耐食性を両立
させるために、使用する樹脂はフッ素誘導体であること
が望ましい。樹脂にフッ素置換基を導入することにより
皮膜の表面張力が低下し、水をはじき、その他汚染物質
が付着しにくくなるため、耐食性が向上する。また、樹
脂は加工性に優れていることが望ましく、伸びの良好な
樹脂を選択するのがよい。
The organic coating needs to function as a coating having excellent corrosion resistance at room temperature, but generally it is necessary to increase the crosslink density of the coating resin in order to obtain high corrosion resistance. However, if the crosslink density is increased, the thermoplasticity of the resin is lost and the adhesion by heating becomes impossible. Therefore, in the present invention, a crosslinking agent is not added to the resin to be used, or the amount of the crosslinking agent is limited to suppress the crosslinking density of the resin to a low level to ensure adhesiveness. The resin used is preferably a fluorine derivative in order to achieve both adhesiveness and corrosion resistance. By introducing a fluorine substituent into the resin, the surface tension of the film is lowered, water is repelled, and other contaminants are less likely to adhere to the resin, so that the corrosion resistance is improved. Further, it is desirable that the resin has excellent processability, and it is preferable to select a resin having good elongation.

【0012】有機被覆の膜厚は、0.5μmより薄いと
耐食性、接着性が失われ、100μmより厚いと金属板
の成形加工時に有機物が剥離することがあるため、0.
5〜100μmとする。
If the thickness of the organic coating is less than 0.5 μm, the corrosion resistance and adhesiveness are lost, and if it is more than 100 μm, the organic substances may peel off during the metal plate forming process.
5 to 100 μm.

【0013】熱可塑性樹脂の軟化温度が200℃未満で
あると、樹脂の架橋密度を低くしてあるために粘りが生
じ、耐ブロッキング性が悪くなる。しかし500℃以上
であると、接着する際の加熱温度を500℃以上にしな
ければならず、コスト高となる。以上より、熱可塑性樹
脂の軟化温度は200℃以上500℃未満であることが
望ましい。ただし、軟化温度が200℃未満であって
も、ナイロン樹脂のような結晶性の高い樹脂を使用すれ
ば、耐ブロッキング性を確保することができる場合もあ
る。
When the softening temperature of the thermoplastic resin is less than 200 ° C., the resin has a low cross-linking density, so that it becomes sticky and the blocking resistance deteriorates. However, if the temperature is 500 ° C. or higher, the heating temperature for bonding must be 500 ° C. or higher, resulting in high cost. From the above, it is desirable that the softening temperature of the thermoplastic resin is 200 ° C. or higher and lower than 500 ° C. However, even if the softening temperature is less than 200 ° C., blocking resistance may be ensured by using a resin having high crystallinity such as nylon resin.

【0014】熱可塑性樹脂としては、フッ化オレフィン
系樹脂のうちPTFE又は/及びFEPと、PES、P
PS及びPAIからなる群から1種以上を含有させるの
が好適である。上記フッ化オレフィン系樹脂の含有割合
は、全樹脂に対して85重量%を越えると原板との皮膜
密着性が低下する。これは、フッ化オレフィン系樹脂と
原板との密着性を高めるためにバインダーとして機能す
るPES、PPS、PAIの量が少なすぎるためであ
る。また、上記フッ化オレフィン系樹脂の全樹脂に対す
る含有割合が10重量%未満であると、耐食性が若干劣
る。従って、全樹脂に対する上記フッ化オレフィン系樹
脂の含有割合は10〜85重量%であることが望まし
い。
As the thermoplastic resin, PTFE or / and FEP among fluorinated olefin resins, PES, P
It is preferable to contain at least one member selected from the group consisting of PS and PAI. If the content ratio of the above fluorinated olefin resin exceeds 85% by weight based on the total resin, the film adhesion to the original plate deteriorates. This is because the amounts of PES, PPS, and PAI that function as binders to increase the adhesion between the fluorinated olefin resin and the original plate are too small. If the content ratio of the fluorinated olefin-based resin to the total resin is less than 10% by weight, the corrosion resistance is slightly inferior. Therefore, the content ratio of the fluorinated olefin resin to the total resin is preferably 10 to 85% by weight.

【0015】熱可塑性樹脂には、必要によって硬化剤と
してエポキシ樹脂、メラミン樹脂、ポリイソシアネート
樹脂、フェノール樹脂等を使用することもできる。その
際は、接着力が失われない程度の硬化剤の量及び焼き付
け温度を選択すれば良い。熱可塑性樹脂は、溶剤型、溶
融型、水系、粉体等どの形態のものでも良い。さらに熱
可塑性樹脂には、顔料、染料、充填剤、各種添加剤を添
加することもできる。
For the thermoplastic resin, an epoxy resin, a melamine resin, a polyisocyanate resin, a phenol resin or the like can be used as a curing agent if necessary. In that case, the amount of the curing agent and the baking temperature at which the adhesive force is not lost may be selected. The thermoplastic resin may be of any type such as a solvent type, a melt type, an aqueous type and a powder type. Furthermore, pigments, dyes, fillers and various additives can be added to the thermoplastic resin.

【0016】本発明の有機被覆金属板は、通常のプレコ
ート金属板を製造するラインにおいて、通常のプレコー
ト金属板と同様の方法で製造することができる。
The organic coated metal sheet of the present invention can be produced by a method similar to that for ordinary precoated metal sheets in a line for producing ordinary precoated metal sheets.

【0017】金属板としては、冷延鋼板、熱延鋼板、例
えば亜鉛めっき、亜鉛合金めっき、錫めっき、鉛めっ
き、アルミニウムめっき、クロムめっき鋼板などの各種
めっき鋼板、ステンレス板、チタン板、アルミニウム板
などが使用でき、これらをそのままあるいは通常の化成
処理を施して使用すればよい。また、有機物と金属板と
の接着性を向上させるために、他の樹脂を施した金属板
を使用してもよい。例えば、ナイロン、ポリアクリル、
ポリエチレン、ポリプロピレン、ポリエステル、ポリウ
レタン、エポキシ、ポリアミド、フェノール、ポリオレ
フィン等が挙げられる。
Examples of the metal plate include cold-rolled steel plates, hot-rolled steel plates, various plated steel plates such as zinc plating, zinc alloy plating, tin plating, lead plating, aluminum plating, chrome plating steel plates, stainless steel plates, titanium plates, and aluminum plates. Etc. can be used, and these may be used as they are or after being subjected to usual chemical conversion treatment. Further, in order to improve the adhesiveness between the organic substance and the metal plate, a metal plate coated with another resin may be used. For example, nylon, polyacrylic,
Examples thereof include polyethylene, polypropylene, polyester, polyurethane, epoxy, polyamide, phenol and polyolefin.

【0018】有機被覆の金属板表面への形成方法として
は、浸漬法、カーテンフロー法、ロールコート法、バー
コート法、静電法、刷毛塗り法、T−ダイ法、ラミネー
ト法などが用いられる。
As a method for forming the organic coating on the surface of the metal plate, a dipping method, a curtain flow method, a roll coating method, a bar coating method, an electrostatic method, a brush coating method, a T-die method, a laminating method and the like are used. .

【0019】焼き付け方法としては、熱風、常温、近赤
外線、遠赤外線、誘導加熱等が挙げられる。焼き付け温
度は、使用樹脂の溶融温度以上で適宜選択されるが、概
ね60〜500℃程度である。
Examples of the baking method include hot air, room temperature, near infrared rays, far infrared rays, and induction heating. The baking temperature is appropriately selected to be higher than the melting temperature of the resin used, but is generally about 60 to 500 ° C.

【0020】以上のように構成した有機被覆金属板はP
CMとして建材、家電、雑貨、自動車などの分野で使用
でき、接合時には、接着剤を塗布することなしに、加熱
により金属板どうし、あるいは部材との接着ができる。
このため、従来必要であった接着剤塗布工程が省略で
き、接着剤の必要もないことから、金属板ユーザーにお
いてコストダウンができる。
The organic coated metal plate constructed as described above is P
It can be used as a CM in the fields of building materials, home appliances, sundries, automobiles, etc. At the time of joining, it can be adhered to metal plates or members by heating without applying an adhesive.
For this reason, the adhesive application process which has been conventionally required can be omitted, and since no adhesive is required, the cost of metal plate users can be reduced.

【0021】[0021]

【実施例】以下、実施例によって本発明を説明する。EXAMPLES The present invention will be described below with reference to examples.

【0022】表1及び表2に示すように、塗布型クロメ
ート処理を施した各原板にバーコーターあるいはロール
コーターにより各樹脂を塗布し、オーブンで焼き付けた
後速やかに水冷し、有機被覆金属板を得た。表1は本発
明例、表2は比較例を示す。なお、原板のSUS430
及び溶融亜鉛めっき鋼板は0.5mm厚のものを使用し
た。また、溶融亜鉛めっき鋼板の亜鉛付着量は、Z12
のものを使用した。
As shown in Tables 1 and 2, each resin is applied by a bar coater or a roll coater to each coating-treated chromate-treated original plate, baked in an oven, and immediately water-cooled to form an organic coated metal plate. Obtained. Table 1 shows examples of the present invention, and Table 2 shows comparative examples. The original plate SUS430
The hot-dip galvanized steel sheet used had a thickness of 0.5 mm. Further, the zinc adhesion amount of the hot dip galvanized steel sheet is Z12.
I used the one.

【0023】[0023]

【表1】 [Table 1]

【0024】[0024]

【表2】 [Table 2]

【0025】得られた有機被覆金属板について、以下の
評価試験を行った。
The following evaluation test was conducted on the obtained organic coated metal plate.

【0026】(1)接着性評価 25×100mmのテストピースの塗面どうしを25m
m×12.5mmの面積だけ重ね、ホットプレスで1分
間加熱圧着した。圧着荷重は1kg/cm2 、加熱温度
は、変性ナイロン系を160℃、高分子ポリエステル系
を200℃、その他を400℃とした。その後引張せん
断強度を測定し、100kg/cm2 以上を○、20〜
100kg/cm2 を△、20kg/cm2 以下を×と
判定した。
(1) Adhesiveness evaluation: 25 m between test surfaces of 25 × 100 mm test piece
An area of m × 12.5 mm was overlapped, and hot pressing was performed for 1 minute by hot pressing. The pressure bonding load was 1 kg / cm 2 , and the heating temperature was 160 ° C. for the modified nylon type, 200 ° C. for the high molecular polyester type, and 400 ° C. for the others. After that, the tensile shear strength is measured and 100 kg / cm 2 or more is marked with ○, 20 to 20.
100 kg / cm 2 was determined as Δ, and 20 kg / cm 2 or less was determined as x.

【0027】(2)耐食性評価 テストピースの塗面にカッターで原板まで到達する傷を
つけた後、JIS Z2731に準拠して塩水噴霧試験
を行い、250時間後に傷部で異常のないものを○、ブ
リスターは発生するが赤錆は発生しないものを△、赤錆
の発生するものを×と判定した。
(2) Corrosion resistance evaluation After a scratch reaching the original plate was made on the coated surface of the test piece with a cutter, a salt spray test was conducted in accordance with JIS Z2731, and after 250 hours, the one with no abnormality on the scratch was evaluated as ○. The blister was generated but the red rust was not generated, and the red rust was evaluated as x.

【0028】(3)加工密着性 接着面が外側になるように、プレス油を塗布せずに直径
50mm、絞り比2.0の円筒深絞りを行い、その後、
円筒側面の中央部にカッターで原板まで到達する傷をつ
け、その部分のテーピング試験を行った。剥離の全くな
いものを○、皮膜が剥離したものを×と評価した。
(3) Working Adhesiveness A cylindrical deep drawing having a diameter of 50 mm and a drawing ratio of 2.0 was performed without applying pressing oil so that the adhesive surface was on the outside, and then,
The center of the side surface of the cylinder was scratched by a cutter to reach the original plate, and a taping test was performed on that part. The sample with no peeling was rated as ◯, and the film with peeling was rated as x.

【0029】(4)硬度 鉛筆硬度法で、全く傷のつかない鉛筆の硬度で評価した
(JIS K5400)。
(4) Hardness Pencil hardness was evaluated by the pencil hardness method (JIS K5400).

【0030】上記各評価結果を表1及び表2に示す。本
発明の有機被覆金属板は、接着性、耐食性、加工密着
性、硬度ともに優れた性能を示した。
The evaluation results are shown in Tables 1 and 2. The organic coated metal sheet of the present invention showed excellent performance in terms of adhesiveness, corrosion resistance, work adhesion and hardness.

【0031】[0031]

【発明の効果】本発明の有機被覆金属板は、加熱により
皮膜自体が接着剤として機能し、接着剤無しに製品組立
が完了し、製品として使用される時には一般的な塗装と
して機能し、耐食性、加工密着性にも優れる。このた
め、金属板ユーザーにおいては、従来必要であった接着
剤塗布工程が省略でき、接着剤の必要もないことから、
コストダウンが図れる。
EFFECT OF THE INVENTION The organic coated metal sheet of the present invention has the coating itself functioning as an adhesive upon heating, product assembly is completed without the adhesive, and when used as a product, it functions as a general coating and has corrosion resistance. Excellent in processing adhesion. For this reason, a metal plate user can omit the adhesive application step which has been conventionally required and does not need an adhesive,
The cost can be reduced.

───────────────────────────────────────────────────── フロントページの続き (51)Int.Cl.6 識別記号 庁内整理番号 FI 技術表示箇所 B05D 7/24 302 L 7717−4D R 7717−4D X 7717−4D ─────────────────────────────────────────────────── ─── Continuation of the front page (51) Int.Cl. 6 Identification code Internal reference number FI Technical display location B05D 7/24 302 L 7717-4D R 7717-4D X 7717-4D

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 金属板の両面あるいは片面に、膜厚が
0.5μm以上100μm以下で、加熱によって接着力
を発現する熱可塑性樹脂からなる有機皮膜を有すること
を特徴とする接着性を有する有機被覆金属板。
1. An organic adhesive having an organic film made of a thermoplastic resin having a film thickness of 0.5 μm or more and 100 μm or less and exhibiting an adhesive force by heating on both surfaces or one surface of a metal plate. Coated metal plate.
【請求項2】 熱可塑性樹脂の軟化温度が200℃以上
500℃未満である請求項1記載の接着性を有する有機
被覆金属板。
2. The organic coated metal sheet having adhesiveness according to claim 1, wherein the softening temperature of the thermoplastic resin is 200 ° C. or higher and lower than 500 ° C.
【請求項3】 熱可塑性樹脂が、四フッ化エチレン樹脂
(PTFE)又は/及び四フッ化エチレン・六フッ化プ
ロピレン共重合樹脂(FEP)を全樹脂に対して10〜
85重量%含有し、その他に、ポリエーテルサルホン樹
脂(PES)、ポリフェニレンスルフィド樹脂(PP
S)及びポリアミドイミド樹脂(PAI)からなる群か
ら選ばれた1種以上の樹脂を含有することを特徴とする
請求項1記載の接着性を有する有機被覆金属板。
3. The thermoplastic resin is tetrafluoroethylene resin (PTFE) or / and tetrafluoroethylene / hexafluoropropylene copolymer resin (FEP) with respect to all resins.
85% by weight, in addition, polyether sulfone resin (PES), polyphenylene sulfide resin (PP
S) and one or more resins selected from the group consisting of polyamideimide resin (PAI), and the organic coated metal sheet having adhesiveness according to claim 1.
JP12805194A 1994-05-19 1994-05-19 Organic coating metal plate with adhesive properties Withdrawn JPH07308988A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP12805194A JPH07308988A (en) 1994-05-19 1994-05-19 Organic coating metal plate with adhesive properties

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP12805194A JPH07308988A (en) 1994-05-19 1994-05-19 Organic coating metal plate with adhesive properties

Publications (1)

Publication Number Publication Date
JPH07308988A true JPH07308988A (en) 1995-11-28

Family

ID=14975288

Family Applications (1)

Application Number Title Priority Date Filing Date
JP12805194A Withdrawn JPH07308988A (en) 1994-05-19 1994-05-19 Organic coating metal plate with adhesive properties

Country Status (1)

Country Link
JP (1) JPH07308988A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001225007A (en) * 2000-02-15 2001-08-21 Nisshin Steel Co Ltd Coated metal plate for laminated mold and method for producing laminated mold by using the plate
WO2006123840A1 (en) * 2005-05-20 2006-11-23 Toyota Jidosha Kabushiki Kaisha Parts with oil-repellent layers and process for production thereof
JP2007290294A (en) * 2006-04-26 2007-11-08 Nippon Steel Corp Coated base material and its manufacturing method
JP2008132442A (en) * 2006-11-29 2008-06-12 Toyobo Co Ltd Reverse osmosis membrane module equipped with nozzle covered with film
JP2009011888A (en) * 2007-07-02 2009-01-22 Toyobo Co Ltd Reverse osmosis membrane module having nozzle with film
JPWO2020149248A1 (en) * 2019-01-15 2021-04-30 昭和電工株式会社 Composite laminate, its manufacturing method, and metal resin joint

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001225007A (en) * 2000-02-15 2001-08-21 Nisshin Steel Co Ltd Coated metal plate for laminated mold and method for producing laminated mold by using the plate
JP4547062B2 (en) * 2000-02-15 2010-09-22 日新製鋼株式会社 Painted metal plate for laminated mold and method for producing laminated mold using the same
WO2006123840A1 (en) * 2005-05-20 2006-11-23 Toyota Jidosha Kabushiki Kaisha Parts with oil-repellent layers and process for production thereof
KR100902146B1 (en) * 2005-05-20 2009-06-10 도요타 지도샤(주) Parts with oil-repellent layers and process for production thereof
JP2007290294A (en) * 2006-04-26 2007-11-08 Nippon Steel Corp Coated base material and its manufacturing method
JP2008132442A (en) * 2006-11-29 2008-06-12 Toyobo Co Ltd Reverse osmosis membrane module equipped with nozzle covered with film
JP2009011888A (en) * 2007-07-02 2009-01-22 Toyobo Co Ltd Reverse osmosis membrane module having nozzle with film
JPWO2020149248A1 (en) * 2019-01-15 2021-04-30 昭和電工株式会社 Composite laminate, its manufacturing method, and metal resin joint

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