CS239174B1 - A method of treating surfaces of coated materials with a high content of hydroxyl groups in a corona discharge - Google Patents
A method of treating surfaces of coated materials with a high content of hydroxyl groups in a corona discharge Download PDFInfo
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- CS239174B1 CS239174B1 CS839703A CS970383A CS239174B1 CS 239174 B1 CS239174 B1 CS 239174B1 CS 839703 A CS839703 A CS 839703A CS 970383 A CS970383 A CS 970383A CS 239174 B1 CS239174 B1 CS 239174B1
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- corona discharge
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Abstract
Vynález rieši glejacie zmesi pre povrchové glejenie papiera, kartónu a lepeniek. Jeho podstata spočívá v tom, že sa na povrch posobí v zápornom koronovom výboji ionizačným žiarením pri intenzitě elektrického prúdu 0,5 až 20 mA, napátí 10 kV, po dobu 20 až 60 sekund za přítomnosti pár anhydridu kyseliny octovej. Predmet vynálezu sa dá využívat v obalovej technike, a to pri glejení papiera, kartónu a lepeniekThe invention provides sizing mixtures for surface sizing of paper, cardboard and cardboard. Its essence lies in the fact that it is applied to the surface in a negative corona discharge by ionizing radiation at an electric current intensity of 0.5 to 20 mA, a voltage of 10 kV, for a period of 20 to 60 seconds in the presence of acetic anhydride vapor. The subject of the invention can be used in packaging technology, namely in the sizing of paper, cardboard and cardboard
Description
Predmet vynálezu sa dá využívat v obalovej technike, a to pri glejení papiera, kartónu a lepeniek. 239174 239174The subject matter of the invention can be used in packaging technology, in the sizing of paper, cardboard and cardboard. 239174 239174
Vynález sa týká sposobu úpravy povrchov natieraných materiále v s vy sokým Obsahem hydroxylových skupin v korónovom výboji. V podmienkach niektorých tlačových technik (hlavně ofset) sa vyžaduje určitý stupeň ich odolnosti voči vodě (hydrofóbnosť), s ktorou dochádza potláčaný materiál pri tlačovom postupe do styku.The invention relates to a process for treating surfaces coated with a high hydroxyl group content in a corona discharge. In some printing techniques (mainly offset), some degree of water resistance (hydrophobicity) with which the printed material comes into contact with the printing process is required.
Povrch takýchto materiálov, ak je zuštachtený činidlami obsahujúcimi vo svojej molekule hydroxylové skupiny (napr. polyvinylalkohol) túto schopnost nemá, je hydrofilný a je ho potřebné upravit tak, aby túto schopnost odpudzovať vodu, získal. Toto sa v- súčasnosti prevádza tak, že do náterovej farby sa pridávajú činidlá schopné sa viazať polykomdenzačnou reakciou na hydroxylové skupiny (napr. živice), pri presnej hodnotě alkality reagujúceho prostredia a príslušnej teplote, pri ktorej táto reakcia prebieha.The surface of such materials, when admixed with agents containing in its hydroxyl group molecule (e.g., polyvinyl alcohol), does not possess this ability, is hydrophilic, and needs to be adapted to obtain this water-repellent ability. This is now done by adding agents capable of binding by polycondensation reaction to hydroxyl groups (e.g., resins) at the exact alkali value of the reacting medium and the appropriate temperature at which the reaction takes place.
Perspektivnějším a ovel'a účinnějším je sposob úpravy podta vynálezu, kde sa působí na povrch materiálu ionizačným žiarením v zápornom korónovom výboji v parách anhydridu kyseliny octovej o intenzitě elektrického prúdu 0,5 až 20 mA, napatí 10 kV a pri době 20 až 60 s. Příklad 1More promising and much more effective is the method of the invention, where the surface of the material is treated with ionizing radiation in a negative corona discharge in acetic anhydride vapors with an electrical current intensity of 0.5 to 20 mA, a voltage of 10 kV and at a time of 20 to 60 s Example 1
Na zuštachtený povrch materiálu s vysokým obsahom OH skupin sa pósobí korónovým výbojom v inonizačnom zariadení pri intenzitě el. prúdu 10 mA a napatí 10 ,kV v parách anhydridu karboxylovej kyseliny počas 20 s.The hardened surface of the high OH group material is subjected to corona discharge at the inonation device at an el. a current of 10 mA and a voltage of 10 kV in carboxylic anhydride vapors for 20 s.
Vzorka sa volné uloží na povrch anody ionizačného zariadenia, kým katoda je tvořená wolframovým drótom o poloměre 0,1 milimetrov pri medzielektródovej vzdialenosti 1 cm.The sample is placed loosely on the anode surface of the ionization device while the cathode is formed by a tungsten wire having a radius of 0.1 millimeters at an inter-electrode distance of 1 cm.
Atmosféra nasýtených pár anhydridu karboxylovej kyseliny sa připraví po predbežnom evakuovaní aparatúry na cca 1 Pa. Příklad 2The atmosphere of saturated carboxylic acid anhydride pairs is prepared after pre-evacuating the apparatus to about 1 Pa. Example 2
Povrch zuštachteného materiálu s vysokým obsahom hydroxylových skupin je vystavený posobeniu koronového výboja v ionizačnom zariadení pri intenzitě el. prúdu 15 ml a napatí 10 kV, pri době opracovania v korónovom výboji v parách anhydridu karboxylovej kyseliny počas 40 s.The surface of the high hydroxyl-rich material is subjected to corona discharge in the ionization apparatus at an el. a current of 15 ml and a strain of 10 kV at the time of corona discharge treatment in carboxylic anhydride vapors for 40 s.
Dalej sa postupuje ako v příklade 1. Příklad 3Next, proceed as in Example 1. Example 3
Na zuštachtený povrch materiálu s vysokým obsahom hydroxylových skupin sa působí koránovým nábojom v ionizačnom zariadení pri intenzitě el. prúdu 20 mA a napatí 10 kV v parách anhydridu karboxylovej kyseliny počas 60 s. Ďalej sa postupuje ako v přiklade 1 a 2. Pósobením koronového výboja dochádza ku vzniku aktívnych častíc na povrchu zuštachteného materiálu (jednoduché záporné ióny, volné elektrony, vibračně a elektrónovo vzbudené molekuly, radikály), interakciou ktorých s molekulami anhydridu karboxylovej kyseliny sa dosahuje nový a vyšší účinok vo formě zvýšenej odolnosti voči pósobeniu vody.The hardened surface of the high hydroxyl group material is treated with a coranic charge in the ionization apparatus at an el. a current of 20 mA and a voltage of 10 kV in carboxylic acid anhydride vapors for 60 s. The procedure is as in Examples 1 and 2. The action of corona discharge produces active particles on the surface of the hardened material (simple negative ions, free electrons, vibration and electron excitation). molecules, radicals) interacting with the carboxylic acid anhydride molecules to achieve a new and higher effect in the form of increased water resistance.
Claims (1)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CS839703A CS239174B1 (en) | 1983-12-21 | 1983-12-21 | A method of treating surfaces of coated materials with a high content of hydroxyl groups in a corona discharge |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CS839703A CS239174B1 (en) | 1983-12-21 | 1983-12-21 | A method of treating surfaces of coated materials with a high content of hydroxyl groups in a corona discharge |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CS970383A1 CS970383A1 (en) | 1985-05-15 |
| CS239174B1 true CS239174B1 (en) | 1985-12-16 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CS839703A CS239174B1 (en) | 1983-12-21 | 1983-12-21 | A method of treating surfaces of coated materials with a high content of hydroxyl groups in a corona discharge |
Country Status (1)
| Country | Link |
|---|---|
| CS (1) | CS239174B1 (en) |
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1983
- 1983-12-21 CS CS839703A patent/CS239174B1/en unknown
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| Publication number | Publication date |
|---|---|
| CS970383A1 (en) | 1985-05-15 |
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