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PL124583B2 - Method of manufacture of electric sensor for measurement of humidity - Google Patents

Method of manufacture of electric sensor for measurement of humidity

Info

Publication number
PL124583B2
PL124583B2 PL1980225231A PL22523180A PL124583B2 PL 124583 B2 PL124583 B2 PL 124583B2 PL 1980225231 A PL1980225231 A PL 1980225231A PL 22523180 A PL22523180 A PL 22523180A PL 124583 B2 PL124583 B2 PL 124583B2
Authority
PL
Poland
Prior art keywords
sensor
humidity
porous
alumina
passivation
Prior art date
Application number
PL1980225231A
Other languages
English (en)
Other versions
PL225231A2 (pl
Original Assignee
Univ Karlovy Matemat Fyz Fakul
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 Univ Karlovy Matemat Fyz Fakul filed Critical Univ Karlovy Matemat Fyz Fakul
Publication of PL225231A2 publication Critical patent/PL225231A2/xx
Publication of PL124583B2 publication Critical patent/PL124583B2/pl

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N27/00Investigating or analysing materials by the use of electric, electrochemical, or magnetic means
    • G01N27/02Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance
    • G01N27/04Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance
    • G01N27/12Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance of a solid body in dependence upon absorption of a fluid; of a solid body in dependence upon reaction with a fluid, for detecting components in the fluid
    • G01N27/121Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance of a solid body in dependence upon absorption of a fluid; of a solid body in dependence upon reaction with a fluid, for detecting components in the fluid for determining moisture content, e.g. humidity, of the fluid

Landscapes

  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Investigating Or Analyzing Materials By The Use Of Fluid Adsorption Or Reactions (AREA)

Description

Przedmiotem wynalazku jest sposób wytwarzania elektrycznego czujnika do pomiaru wilgotnosci.Jednym ze sposobów pomiaru wilgotnosci osrodka jest zastosowanie czujników, za pomoca których informacja o wilgotnosci zamieniana jest na sygnal elektryczny. Przede wszystkim stoso¬ wane sa czujniki z chlorku litu (LiCl), które za pomoca odpowiedniego srodka wiazacego nano¬ szone sa na podloze, ponadto czujniki, w których sproszkowany wegiel pierwiastkowy za pomoca odpowiedniego srodka wiazacego nanoszony jest na podloze oraz czujniki wytwarzane w oparciu o tlenek glinu (AI2O3).Czujniki z chlorkiem litu i sproszkowanym weglem reaguja na wilgotnosc zmiana objetosci warstwy. Wadami ich sa dlugie czasy odpowiedzi na zmiany wilgotnosci, niestabilnosc ich krzy¬ wych kalibracji i duza zaleznosc od temperatury.Korzystniejsze wlasnosci posiada czujnik na bazie porowatego tlenku glinu (AI2O3), w którym zachodzi zmiana parametrów elektrycznych spowodowane adsorbcja wody w powierzchni porów.W tym przypadku zachodza zjawiska powierzchniowe, a nie objetosciowe i czas odpowiedzi czujnika takiego jest znacznie krótszy. Dlugookresowo osiagalna stabilnosc kalibracji i zmieniana rezystancja tych czujników jest jednak zalezna od technologii wytwarzania warstwy porowatej z tlenku glinu (AI2O3) i jej sztucznego starzenia. Najlepsze wyniki osiagnieto obecnie z czujnikami, otrzymanymi metoda Stover'a, w których warstwa tlenku glinu (AI2O3) wytwarzana jest na czystym, polerowanym aluminium za pomoca utleniania anodowego pradem zmiennym ogestosci okolo 12 mA/cm3 w elektrolicie zawierajacym 50% kwasu siarkowego (H2SO4) w temperaturze 33° w ciagu 25 minut. Tak powstala warstwa bezposrednio po przemyciu woda destylowana podda¬ wana jest sztucznemu starzeniu tzw. zabezpieczeniu, zachodzacym we wrzacej, redestylowanej wodzie w okresie 30 minut, a na powierzchni górnej w odpowiedni sposób, np. przez prózniowe napylanie naniesiona zostaje pólprzepuszczalna górna elektroda.Wada tak otrzymanego czujnika jest oddzialywanie odsorbowanej wody na tlenek glinu (AI2O3) podczas pracy, co powoduje jego postepujace uwodornienie, przy czym w porach tworzy sie monohydrat glinu tzw. Bhmit, co prowadzi do nieodwracalnych zmian struktury czujnika ijego wlasnosci. Cechy te moga byc ograniczone przezpasywowanie elektrycznego czujnika wilgotnosci.2 124 583 Pasywowanie polega na sieciowaniu porowatej powierzchni tlenku glinu (AI2O3) w wodnym roztworze 0,01 do 2 molowym odpowiedniego czynnika np. kwasnego fosforanu sodowego, lub kwasu krzemowego w temperaturze 35 do 100°C, podczas 10 do 60 minut.Zadaniem sposobu wytwarzania czujnika wilgotnosci wedlug wynalazku z porowata warstwa na bazie tlenku glinu otrzymana przez utlenianie w elektrolicie, sztuczne starzenie i pasywowanie, jest osiagniecie dalszej poprawy dlugoterminowej stabilnosci krzywej kalibracji.Zadanie to zostalo rozwiazane wedlug wynalazku w ten sposób, ze porowata warstwa tlenku glinu zostaje po pasywowaniu temperowana w srodowisku chemicznie obojetnym w temperaturze 70 do 110°C.Korzystnie porowata warstwa tlenku glinu jest temperowana w parze wodnej pod cisnieniem nizszym, niz wynosi preznosc pary wodnej w temperaturze temperowania.Zaleta sposobu wytwarzania czujnika wedlug wynalazku jest fakt znacznie lepszej dlugotrwa¬ lej stabilnosci krzywej kalibracji czujnika. Poprawe stabilnosci krzywej kalibracji przedstawia rysunek, na którym, fig. 1 przedstawia wplyw temperowania na stabilnosc kalibracji czujnika wytworzonego wedlug metody Stover'a, lacznie z zabezpieczeniem, fig. 2 przedstawia wplyw temperowania na stabilnosc tego samego czujnika, który byl ponadto pasywowany w 0,1- molowym roztworze NaH2P04-2H20 w temperaturze 90°C przez 10 minut.Krzywa kalibracji 1 z fig. la przedstawia przebieg amplitudy sygnalu czujnika w zaleznosci od krzywej wilgotnosci — punkty rosy dla czujnika wykonanego metoda Stover'a, krzywa kalibracji 2 z fig. la przedstawia te sama zaleznosc tego samego czujnika zmierzona po pieciu miesiacach.Krzywa kalibracji 3 na fig. Jb i 5 na fig. lc przedstawiaja przebieg amplitudy sygnalu czujnika w zaleznosci od punktu rosy czujnika wykonanego metoda Stover'a obrobionego wedlug wynalazku przez temperowanie przy 90°C w prózni, czy w parze wodnej przy cisnieniu 6,5 • 104Pa. Krzywe kalibracji 4 na fig. Ib czy 6 na fig. lc przestawiaja te sama zaleznosc dla tego czujnika, zmierzona po pieciu miesiacach.Krzywa kalibracji 7 na fig. 2a przedstawia przebieg wielkosci sygnalu czujnika w zaleznosci od wilgotnosci — punktu rosy dla czujnika wykonanego metoda Stover'a, który pasywowany byl bez nastepnego temperowania w roztworze NaH2P04 • 2H2O. Krzywa kalibracja 8 na fig. 2a przedsta¬ wia te sama zaleznosc tego samego czujnika zmierzona po pieciu miesiacach. Krzywe kalibracji 9 na fig. 2b, czy 11 na fig. 2c przedstawiaja przebieg amplitudy sygnalu czujnika wykonanego metoda Stover'a, pasywowanego w roztworze NaFhPO^FhO i obrabianego przez temperowanie przy temperaturze 90°C w prózni, czy w parze wodnej przy cisnieniu 6,4-104Pa. Krzywe kalibracji 10 na fig. 2b, czy 12 na fig. 2c przedstawiaja te sama zaleznosc tego samego czujnika zmierzona po pieciu miesiacach.Wymienione efekty i zalety wynalazku, oparte sa na fakcie szybszej rekonstrukcjipowierzchni aktywnej warstwy czujnika przy temperowaniu. W normalnych warunkach nastepuje bardzo powolne ksztaltowanie powierzchni tlenku glinu, czego wynikiem sa dlugotrwale male zmiany czulosci, tzw. dryft krzywej kalibracji. Przy zastosowaniu sposobu obróbki czujnika wedlug wynalazku osiagnieta zostaje warstwa aktywna, o szczególnie stabilnej powierzchni, przez co znacznie ograniczony zostaje dryft krzywej kalibracji.Zastrzezenia patentowe 1. Sposób wytwarzania elektrycznego czujnika do pomiaru wilgotnosci z warstwa porowata na bazie tlenku glinu, utworzona przez utlenianie w elektrolicie, sztuczne starzenie i pasywowanie, znamienny tym, ze po pasywowaniu porowata warstwe tlenku glinu poddaje sie temperowaniu w srodowisku chemicznie obojetnym w temperaturze 70 do 110°C. 2. Sposób wedlug zastrz. 1, znamienny tym, ze porowata warstwe tlenku glinu temperuje sie w parze wodnej pod cisnieniem nizszym, niz wynosi preznosc pary wodnej w temperaturze temperowania.124 583124 583 h«5 U & Ci n i < —r- o o es* O —r «M U£ ci Ci CM I Pracownia Poligraficzna UP PRL. Naklad 100 egz.Cena 100 zl PL

Claims (2)

  1. Zastrzezenia patentowe 1. Sposób wytwarzania elektrycznego czujnika do pomiaru wilgotnosci z warstwa porowata na bazie tlenku glinu, utworzona przez utlenianie w elektrolicie, sztuczne starzenie i pasywowanie, znamienny tym, ze po pasywowaniu porowata warstwe tlenku glinu poddaje sie temperowaniu w srodowisku chemicznie obojetnym w temperaturze 70 do 110°C.
  2. 2. Sposób wedlug zastrz. 1, znamienny tym, ze porowata warstwe tlenku glinu temperuje sie w parze wodnej pod cisnieniem nizszym, niz wynosi preznosc pary wodnej w temperaturze temperowania.124 583124 583 h«5 U & Ci n i < —r- o o es* O —r «M U£ ci Ci CM I Pracownia Poligraficzna UP PRL. Naklad 100 egz. Cena 100 zl PL
PL1980225231A 1979-07-12 1980-06-26 Method of manufacture of electric sensor for measurement of humidity PL124583B2 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CS794887A CS210174B1 (en) 1979-07-12 1979-07-12 Method of making the electric hygrometric sensor

Publications (2)

Publication Number Publication Date
PL225231A2 PL225231A2 (pl) 1981-05-22
PL124583B2 true PL124583B2 (en) 1983-02-28

Family

ID=5392614

Family Applications (1)

Application Number Title Priority Date Filing Date
PL1980225231A PL124583B2 (en) 1979-07-12 1980-06-26 Method of manufacture of electric sensor for measurement of humidity

Country Status (5)

Country Link
US (1) US4441968A (pl)
AT (1) AT387859B (pl)
CS (1) CS210174B1 (pl)
DE (1) DE3019870A1 (pl)
PL (1) PL124583B2 (pl)

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CS210174B1 (en) 1982-01-29
ATA345180A (de) 1988-08-15

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