JPH0533295A - Non-slip coating composition - Google Patents

Non-slip coating composition

Info

Publication number
JPH0533295A
JPH0533295A JP20226291A JP20226291A JPH0533295A JP H0533295 A JPH0533295 A JP H0533295A JP 20226291 A JP20226291 A JP 20226291A JP 20226291 A JP20226291 A JP 20226291A JP H0533295 A JPH0533295 A JP H0533295A
Authority
JP
Japan
Prior art keywords
weight
coating composition
parts
silicone oil
polymer
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.)
Pending
Application number
JP20226291A
Other languages
Japanese (ja)
Inventor
Nobuo Wakabayashi
信男 若林
Hiroaki Mikamo
弘明 三鴨
Takuzo Uchiyama
卓三 内山
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.)
Honshu Paper Co Ltd
Nippon Kako Toryo Co Ltd
Original Assignee
Honshu Paper Co Ltd
Nippon Kako Toryo 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 Honshu Paper Co Ltd, Nippon Kako Toryo Co Ltd filed Critical Honshu Paper Co Ltd
Priority to JP20226291A priority Critical patent/JPH0533295A/en
Publication of JPH0533295A publication Critical patent/JPH0533295A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:To provide a non-slip coating composition excellent in blocking resistance with hardly any sticking of foulings to coated surfaces. CONSTITUTION:A non-slip coating composition is obtained by blending a mixture of a dispersion of a polymer having <=0 deg.C glass transition temperature with silica with a polyether-modified silicone oil in an amount of 0.12wt.% based on the polymer.

Description

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

【0001】[0001]

【産業上の利用分野】本発明は段ボ−ルシ−トまたは板
紙等の表面に塗工して用いられる防滑性塗料組成物に関
する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an anti-slip coating composition which is used by coating on the surface of corrugated sheet or paperboard.

【0002】[0002]

【従来の技術】パレット等に積まれた段ボ−ル箱の荷崩
れを防止する方法としては、紐やバンドで縛ったり、
シュリンクフイルムやストレッチフィルムで覆ったりす
る機械的方法、上下の箱をホットメルト接着剤で点接
着する方法、箱の表面に防滑剤を塗布する方法等が知
られている。しかし、の方法は荷造り・荷解きの作業
が煩雑であり、の方法は接着剤の跡が箱の表面に残
り、美観を著しく損う不都合がある。こうした事情か
ら、現在ではの方法が最も広く採用され、なかでも段
ボ−ルシ−トを形成する前の、例えばライナ−原紙の印
刷工程で、防滑剤を塗工する、いわゆるプレプリント方
式が注目されている。
2. Description of the Related Art As a method for preventing the collapse of cargo in a corrugated box packed on a pallet or the like, tie it with a string or band,
Known methods include a mechanical method of covering with a shrink film or a stretch film, a method of spot-bonding upper and lower boxes with a hot-melt adhesive, and a method of applying an anti-slip agent on the surface of the boxes. However, the method of (1) is complicated in packing and unpacking work, and the method of (1) has a disadvantage that a trace of the adhesive remains on the surface of the box and the appearance is significantly impaired. Under these circumstances, the present method is most widely adopted, and among them, the so-called pre-printing method in which the anti-slip agent is applied in the printing process of the liner base paper before forming the corrugated ball sheet, for example, has attracted attention. Has been done.

【0003】プレプリント方式に使用される従来の防滑
剤の一つに、重合体水分散液と無機粒子との混合物から
なる防滑性塗料組成物がある。しかし、この塗料組成物
は塗装に汚れが付着し易い欠点があり、特に冬場でも満
足な防滑性能が得られるように、ガラス転移温度が0℃
以下の重合体を使用した場合には、塗面の汚れが著し
い。
One of the conventional anti-slip agents used in the preprint system is an anti-slip coating composition comprising a mixture of a polymer aqueous dispersion and inorganic particles. However, this coating composition has a drawback that dirt is liable to adhere to the coating, and the glass transition temperature is 0 ° C. so that satisfactory anti-slip performance can be obtained especially in winter.
When the following polymers are used, stains on the coated surface are remarkable.

【0004】[0004]

【発明が解決しようとする課題】本発明はガラス転移温
度が0℃以下である重合体の水分散液と、無機粒子との
混合物からなる防滑剤塗料組成物に於いて、その塗面の
汚れ付着を防止することを目的とする。
DISCLOSURE OF THE INVENTION The present invention relates to an anti-slip agent coating composition comprising a mixture of an aqueous dispersion of a polymer having a glass transition temperature of 0 ° C. or lower and inorganic particles, which stains the coated surface. The purpose is to prevent adhesion.

【0005】[0005]

【課題を解決するための手段】本発明は上記の課題を解
決するための手段として、重合体の水分散液と無機粒子
との混合物からなる防滑性塗料組成物に於いて、前記重
合体としてガラス転移温度が0℃以下の重合体を使用
し、かつポリエ−テル変性シリコ−ンオイルを重合体の
0.1〜2重量%配合する。
Means for Solving the Problems As a means for solving the above problems, the present invention provides an anti-slip coating composition comprising a mixture of an aqueous dispersion of a polymer and inorganic particles. A polymer having a glass transition temperature of 0 ° C. or lower is used, and 0.1 to 2% by weight of the polymer is blended with a polyether-modified silicone oil.

【0006】本発明で使用する重合体、すなわち、ガラ
ス転移温度が0℃以下である重合体それ自体は、当業界
で公知であって、例えば、エチルアクリレ−ト、ブチル
アクリレ−ト、イソプロピルアクリレ−ト、2−エチル
ヘキシルアクリレ−ト、ヒドロキシエチルアクリレ−ト
等のアクリル酸エステルの単独重合体を使用することが
できる外、上記モノマ−と他のビニル系モノマ−との共
重合体が使用できる。また、スチレン・ブタジエン共重
合体、エチレン・酢酸ビニル共重合体も、本発明の重合
体として使用することができる。
The polymer used in the present invention, that is, the polymer having a glass transition temperature of 0 ° C. or lower is known in the art, and examples thereof include ethyl acrylate, butyl acrylate and isopropyl acrylate. It is possible to use homopolymers of acrylic acid esters such as vinyl ether, 2-ethylhexyl acrylate, hydroxyethyl acrylate, etc., as well as copolymers of the above-mentioned monomers and other vinyl-based monomers. it can. Further, a styrene / butadiene copolymer and an ethylene / vinyl acetate copolymer can also be used as the polymer of the present invention.

【0007】ガラス転移温度が0℃以下である重合体を
防滑剤成分に使用した場合には、耐ブロッキング性を向
上させる必要がある関係で、本発明ではシリカその他の
無機粒子を併用する。典型的にはシリカである無機粒子
の防滑性塗料組成物に対する配合量は、全固形分の20
〜60重量%の範囲とするのが通常である。
When a polymer having a glass transition temperature of 0 ° C. or lower is used as the anti-slip agent component, silica and other inorganic particles are used in combination in the present invention in order to improve the blocking resistance. The amount of the inorganic particles, which is typically silica, in the anti-slip coating composition is 20% of the total solid content.
It is usually in the range of 60 to 60% by weight.

【0008】塗装面の汚れ防止の目的で本発明の組成物
に混合するポリエ−テル変性シリコ−ンオイルは、次の
化1又は化2で示され、その配合量は重合体固形分の
0.1〜2重量%の範囲とするのが好ましい。
The polyether-modified silicone oil mixed with the composition of the present invention for the purpose of preventing stains on the coated surface is represented by the following chemical formula 1 or chemical formula 2, and the compounding amount thereof is 0. It is preferably in the range of 1 to 2% by weight.

【0009】[0009]

【化1】 [Chemical 1]

【0010】[0010]

【化2】 [Chemical 2]

【0011】式中、Rはアルキル基を、P1はポリエチ
レンオキシド基、ポリプロピレンオキシド基又はこれら
が混合したポリアルキレンオキシド基であり、ジメチル
シロキサンのメチル基の置換の度合は30〜80モル程
度である。P2はP1と同一であるか、もしくはエポキ
シ基、アミノ基、カルボキシル基及びヒドロキシル基か
ら選ばれる官能基である。変性の度合はy1=1〜1
0、y2=1〜10、y1+y2=2〜20である。
In the formula, R is an alkyl group, P1 is a polyethylene oxide group, a polypropylene oxide group or a polyalkylene oxide group in which these are mixed, and the substitution degree of the methyl group of dimethylsiloxane is about 30 to 80 mol. .. P2 is the same as P1 or is a functional group selected from an epoxy group, an amino group, a carboxyl group and a hydroxyl group. The degree of denaturation is y1 = 1 to 1
0, y2 = 1-10, y1 + y2 = 2-20.

【0012】上記ポリエ−テル変性シリコ−ンオイルの
分子量は、約1000〜30000程度であり、粘度は
50〜3000cps程度であれば良い。
The molecular weight of the above polyether modified silicone oil is about 1000 to 30,000, and the viscosity is about 50 to 3000 cps.

【0013】[0013]

【作用】無変性のシリコ−ンオイルは防滑塗装面の粘着
性を軽減する作用を有しているが、汚れを防止する能力
に乏しいばかりでなく、滑り角度を大幅に低下させる傾
向がある。これに対して、本発明の変性シリコ−ンオイ
ルは、滑り角度を低下させず、種類によっては滑り角度
を増大させるものもある。しかも、汚れ防止能力は無変
性のシリコ−ンオイルより高い。その理由は定かではな
いが、本発明の変性シリコ−ンオイルは親水基と疎水基
とのバランスにより、界面活性剤と同様な作用を発揮し
て帯電防止効果が汚れ防止に寄与しているものと推定さ
れる。また、無変性シリコ−ンオイルが液体状に浮出し
て表面を滑り易くするのに対し、変性シリコ−ンオイル
は防滑塗装面と紙との結合に寄与して表面で流動するこ
とがなく、そのために優れた防滑性が実現されるものと
考えられる。
The unmodified silicone oil has the effect of reducing the tackiness of the anti-slip coating surface, but it is not only poor in the ability to prevent stains, but also tends to significantly reduce the sliding angle. On the other hand, the modified silicone oil of the present invention does not decrease the sliding angle, but increases the sliding angle depending on the type. Moreover, the stain-proofing ability is higher than that of unmodified silicone oil. Although the reason is not clear, the modified silicone oil of the present invention exhibits the same action as a surfactant due to the balance between the hydrophilic group and the hydrophobic group, and the antistatic effect contributes to stain prevention. Presumed. Further, the unmodified silicone oil floats in a liquid state and makes the surface slippery, whereas the modified silicone oil does not flow on the surface by contributing to the binding between the anti-slip coating surface and the paper, and It is considered that excellent anti-slip properties are realized.

【0014】[0014]

【実施例】【Example】

実施例1 スチレン43重量%とアクリル酸2−エチルヘキシル5
7重量%とからなる共重合体エマルジョン(固形分50
%、Tg=−20℃)100重量部に、シリカ45重量
部と、水55重量部と、東レ・ダウコ−ニング・シリコ
−ン(株)社製のポリエ−テル変性シリコ−ンオイル
0.25重量部(樹脂固形分に対して 0.5重量%に相
当)を加えて充分に攪拌し、実施例1の塗料組成物を得
た。
Example 1 43% by weight of styrene and 2-ethylhexyl acrylate 5
Copolymer emulsion consisting of 7% by weight (solid content 50
%, Tg = −20 ° C.), 100 parts by weight of silica, 45 parts by weight of silica, 55 parts by weight of water, and 0.25% of polyether-modified silicone oil manufactured by Toray Dow Corning Silicone Co., Ltd. Parts by weight (corresponding to 0.5% by weight with respect to the resin solid content) were added and sufficiently stirred to obtain the coating composition of Example 1.

【0015】実施例2 スチレン14重量%、メタクリル酸メチル14重量%及
びアクリル酸2−エチルヘキシル72重量%からなる共
重合体エマルジョン(固形分50%、Tg=−40℃)
100重量部に、シリカ45重量部と、水55重量部
と、東レ・ダウコ−ニング・シリコ−ン(株)社製のポ
リエ−テル変性シリコ−ンオイル0.5重量部(樹脂固
形分に対して1.0重量%に相当)を加えて充分に攪拌
し、実施例2の塗料組成物を得た。
Example 2 Copolymer emulsion consisting of 14% by weight of styrene, 14% by weight of methyl methacrylate and 72% by weight of 2-ethylhexyl acrylate (solid content 50%, Tg = -40 ° C.)
To 100 parts by weight, 45 parts by weight of silica, 55 parts by weight of water, and 0.5 part by weight of polyether modified silicone oil manufactured by Toray Dow Corning Silicone Co., Ltd. (Corresponding to 1.0% by weight) and sufficiently stirred to obtain the coating composition of Example 2.

【0016】実施例3 スチレン56重量%とアクリル酸2−エチルヘキシル4
4重量%からなる共重合体エマルジョン(固形分50
%、Tg=0℃)100重量部に、シリカ45重量部
と、水55重量部と、東レ・ダウコ−ニング・シリコ−
ン(株)社製のポリエ−テル変性シリコ−ンオイル0.
1重量部(樹脂固形分に対して0.2重量%に相当)を
加えて充分に攪拌し、実施例3の塗料組成物を得た。
Example 3 56% by weight of styrene and 4-ethylhexyl acrylate 4
Copolymer emulsion consisting of 4% by weight (solid content 50
%, Tg = 0 ° C.) 100 parts by weight, silica 45 parts by weight, water 55 parts by weight, Toray Dow Corning Silicone
Polyether-modified silicone oil manufactured by Co., Ltd.
1 part by weight (corresponding to 0.2% by weight based on the resin solid content) was added and sufficiently stirred to obtain a coating composition of Example 3.

【0017】実施例4 スチレン43重量%とアクリル酸2−エチルヘキシル5
7重量%からなる共重合体エマルジョン(固形分50
%、Tg=−20℃)100重量部に対して、シリカ4
5重量部と、水55重量部と、東レ・ダウコ−ニング・
シリコ−ン(株)社製エポキシポリエ−テル変性シリコ
−ンオイル0.25重量部(樹脂固形分に対して0.5
重量%に相当)を加えて充分に攪拌し、実施例4の塗料
組成物を得た。
Example 4 43% by weight of styrene and 5-ethylhexyl acrylate 5
Copolymer emulsion consisting of 7% by weight (solid content 50
%, Tg = −20 ° C.) 100 parts by weight of silica 4
5 parts by weight, 55 parts by weight of water, Toray Dow Corning
0.25 part by weight of epoxy polyester-modified silicone oil manufactured by Silicone Co., Ltd. (0.5 based on resin solid content)
(Corresponding to wt%) was added and sufficiently stirred to obtain the coating composition of Example 4.

【0018】比較例2 スチレン43重量%とアクリル酸2−エチルヘキシル5
7重量%からなる共重合体エマルジョン(固形分50
%、Tg=−20℃)100重量部に対して、シリカ4
5重量部と、水55重量部と、信越シリコ−ン(株)社
製ジメチルシリコ−ンオイルのエマルジョン(固形分3
0%)0.83重量部(樹脂固形分に対して0.5重量
%に相当)を加えて充分に攪拌し、比較例2の塗料組成
物を得た。
Comparative Example 2 43% by weight of styrene and 5-ethylhexyl acrylate 5
Copolymer emulsion consisting of 7% by weight (solid content 50
%, Tg = −20 ° C.) 100 parts by weight of silica 4
5 parts by weight, 55 parts by weight of water, and an emulsion of dimethyl silicone oil manufactured by Shin-Etsu Silicone Co., Ltd. (solid content 3
0%) 0.83 parts by weight (corresponding to 0.5% by weight based on the resin solid content) was added and sufficiently stirred to obtain a coating composition of Comparative Example 2.

【0019】比較例1 スチレン43重量%とアクリル酸2−エチルヘキシル5
7重量%からなる共重合体エマルジョン(固形分50
%、Tg=−20℃)100重量部に対して、シリカ4
5重量部と水55重量部を加えて充分に攪拌し、比較例
1の塗料組成物を得た。
Comparative Example 1 43% by weight of styrene and 5-ethylhexyl acrylate 5
Copolymer emulsion consisting of 7% by weight (solid content 50
%, Tg = −20 ° C.) 100 parts by weight of silica 4
5 parts by weight and 55 parts by weight of water were added and sufficiently stirred to obtain a coating composition of Comparative Example 1.

【0020】上記の実施例及び比較例で得た各塗料組成
物を、それぞれ段ボ−ル用ラインシ−ト(本州製紙
(株)社製RK280)に、固形分塗布量が2g/m2
になるように塗布して乾燥し、テストシ−トを得た。こ
のテストシ−トを用いて次の方法により、防滑性、耐ブ
ロッキング性及び耐汚れ適性を評価した。結果を表1に
示す。
Each coating composition obtained in the above Examples and Comparative Examples was applied to a line sheet for corrugated ball (RK280, manufactured by Honshu Paper Co., Ltd.) at a solid coating amount of 2 g / m 2.
To obtain a test sheet. Using this test sheet, the slip resistance, blocking resistance and stain resistance were evaluated by the following methods. The results are shown in Table 1.

【0021】防滑性 温度及び湿度が設定条件(20℃で60%、0℃で6
0%)になるように設定された恒温恒湿室内で、JIS
P8147の方法により滑り角度を測定した。 耐ブロッキング性 シ−トを5cm角に切り、その2枚を塗布面同志が対
向するように重ね合わせ、これを2kg/cm2 の圧力
で24時間圧縮後、2枚のシ−トを手で剥がしてブロッ
キング状態を判定した。優を◎印で、良を○印で示す。耐汚れ適性 25℃、65RHの条件に設定された室内で、テスト
シ−トの塗布面をゼロックス用トナ−で充分にまぶして
から余分なトナ−を叩き落してトナ−の付着状態を判定
した。判定は直読測色色差計でトナ−付着前後の色度を
測定して行い、色差ΔEが40以上の場合を×、30〜
39の場合を△、30未満の場合を○とした。×は商品
として適さない程度の汚れ易さである。
[0021]Anti-slip property  Temperature and humidity are set conditions (60% at 20 ° C, 6% at 0 ° C)
0%) in a constant temperature and humidity room set to JIS
 The sliding angle was measured by the method of P8147. Blocking resistance  Cut the sheet into 5 cm squares, and put two of them on the coated surface.
Stack so that they face each other, and add this to 2kg / cm2Pressure of
After compressing for 24 hours, peel off the two sheets by hand and block.
The king state was judged. Excellent is indicated by ◎, and good is indicated by ○.Suitable for stain resistance  Tested in a room set to 25 ℃ and 65RH
Spread the coated surface of the sheet thoroughly with a Xerox toner.
The excess toner is knocked off from and the adhesion state of the toner is determined.
did. Judgment is made with a direct reading colorimetric color difference meter,
When the color difference ΔE is 40 or more, the measurement is performed as ×, 30 to
The case of 39 was evaluated as Δ, and the case of less than 30 was evaluated as ◯. × is a product
It's easy to get dirty.

【0022】[0022]

【表1】試 料 共重合体 シリカ 変性シリコ−ン 滑り角度 ブロッ 耐汚れ Tg 重量% 種類 オイル量 20℃ 0℃ キング 適性 実施例1 −20℃ 45 PE 0.5wt% 58 54 ◎ 〇 実施例2 −40℃ 45 PE 1.0wt% 58 56 〇 〇 実施例3 0℃ 45 PE 0.2wt% 54 45 ◎ 〇 実施例4 −20℃ 45 EP/PE 0.5wt% 57 53 ◎ △ 比較例1 −20℃ 45 −− 0wt% 57 52 〇 × 比較例2 −20℃ 45 DM 0.5wt% 52 46 〇 × 注)PE=ポリエ−テル変性シリコ−ンオイル DM=ジメチルシリコ−ンオイル EP/PE =エポキシポリエ−テル変性シリコ−ンオイル[Table 1]Sample Copolymer Silica Modified silicone Sliding angle Block Antifouling  Tg weight% Type Oil amount 20 ℃ 0 ℃ King Aptitude  Example 1-20 ° C 45 PE 0.5wt% 58 54 ◎ 〇 Example 2 -40 ° C 45 PE 1.0wt% 58 56 〇 〇 Example 3 0 ° C 45 PE 0.2wt% 54 45 ◎ 〇 Example 4-20 ° C 45 EP / PE 0.5 wt% 57 53 ◎ △ Comparative Example 1 -20 ° C 45 --0 wt% 57 52 〇 × Comparative Example 2 -20 ° C. 45 DM 0.5 wt% 52 46 〇 × Note) PE = polyether modified silicone -Oil oil DM = Dimethyl silicone oil EP / PE = Epoxy polyether modified silicone oil

Claims (1)

【特許請求の範囲】 【請求項1】 重合体水分散液と無機粒子との混合物か
らなる防滑性塗料組成物に於いて、重合体のガラス転移
温度が0℃以下であり、かつ、ポリエ−テル変性シリコ
−ンオイルを重合体の0.1〜2重量%含有することを
特徴とする防滑性塗料組成物。
Claims: 1. An anti-slip coating composition comprising a mixture of an aqueous polymer dispersion and inorganic particles, wherein the glass transition temperature of the polymer is 0 ° C or lower, and An anti-slip coating composition comprising 0.1 to 2% by weight of a polymer of tellurium modified silicone oil.
JP20226291A 1991-07-18 1991-07-18 Non-slip coating composition Pending JPH0533295A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20226291A JPH0533295A (en) 1991-07-18 1991-07-18 Non-slip coating composition

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20226291A JPH0533295A (en) 1991-07-18 1991-07-18 Non-slip coating composition

Publications (1)

Publication Number Publication Date
JPH0533295A true JPH0533295A (en) 1993-02-09

Family

ID=16454631

Family Applications (1)

Application Number Title Priority Date Filing Date
JP20226291A Pending JPH0533295A (en) 1991-07-18 1991-07-18 Non-slip coating composition

Country Status (1)

Country Link
JP (1) JPH0533295A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1178152A1 (en) * 2000-08-03 2002-02-06 National Starch and Chemical Investment Holding Corporation Process for providing an anti-slip treatment
US6383656B1 (en) 1999-06-11 2002-05-07 Nichias Corporation Perform for metal matrix composite material and cylinder block made of the same

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55107597A (en) * 1979-02-13 1980-08-18 Tokai Pulp Kk Antiislip paper
JPS5976996A (en) * 1982-10-22 1984-05-02 デイツク・ハ−キユレス株式会社 Slip preventing agent of paper and paperboard
JPS61123635A (en) * 1984-11-09 1986-06-11 ダウ・コーニング・リミテツド Organosiloxane-oxyalkylene copolymer
JPS61127733A (en) * 1984-11-27 1986-06-16 Toray Silicone Co Ltd Novel organopolysiloxane compound

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55107597A (en) * 1979-02-13 1980-08-18 Tokai Pulp Kk Antiislip paper
JPS5976996A (en) * 1982-10-22 1984-05-02 デイツク・ハ−キユレス株式会社 Slip preventing agent of paper and paperboard
JPS61123635A (en) * 1984-11-09 1986-06-11 ダウ・コーニング・リミテツド Organosiloxane-oxyalkylene copolymer
JPS61127733A (en) * 1984-11-27 1986-06-16 Toray Silicone Co Ltd Novel organopolysiloxane compound

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6383656B1 (en) 1999-06-11 2002-05-07 Nichias Corporation Perform for metal matrix composite material and cylinder block made of the same
EP1178152A1 (en) * 2000-08-03 2002-02-06 National Starch and Chemical Investment Holding Corporation Process for providing an anti-slip treatment

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