PL138249B1 - Method of protecting a wall of building structure against misture - Google Patents

Method of protecting a wall of building structure against misture Download PDF

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Publication number
PL138249B1
PL138249B1 PL1981230824A PL23082481A PL138249B1 PL 138249 B1 PL138249 B1 PL 138249B1 PL 1981230824 A PL1981230824 A PL 1981230824A PL 23082481 A PL23082481 A PL 23082481A PL 138249 B1 PL138249 B1 PL 138249B1
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PL
Poland
Prior art keywords
installation
electrodes
partition
wall
duration
Prior art date
Application number
PL1981230824A
Other languages
Polish (pl)
Other versions
PL230824A1 (en
Inventor
Andrzej Bacinski
Alicja Bacinska
Original Assignee
Politechnika Warszawska
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 Politechnika Warszawska filed Critical Politechnika Warszawska
Priority to PL1981230824A priority Critical patent/PL138249B1/en
Priority to SE8104071A priority patent/SE8104071L/en
Priority to DK29882A priority patent/DK29882A/en
Priority to FI820503A priority patent/FI69497C/en
Priority to IT8219758A priority patent/IT8219758A0/en
Priority to ES510340A priority patent/ES8302160A1/en
Priority to SE8202570A priority patent/SE450264B/en
Priority to DE3215340A priority patent/DE3215340C2/en
Priority to IT8220936A priority patent/IT1210877B/en
Priority to NO821366A priority patent/NO161692C/en
Priority to GB08212049A priority patent/GB2101188B/en
Publication of PL230824A1 publication Critical patent/PL230824A1/en
Publication of PL138249B1 publication Critical patent/PL138249B1/en

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/70Drying or keeping dry, e.g. by air vents
    • E04B1/7007Drying or keeping dry, e.g. by air vents by using electricity, e.g. electro-osmosis

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Physics & Mathematics (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electromagnetism (AREA)
  • Chemical & Material Sciences (AREA)
  • Electrochemistry (AREA)
  • Drying Of Solid Materials (AREA)
  • Drying Of Gases (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)
  • Electrostatic Separation (AREA)
  • Polyurethanes Or Polyureas (AREA)
  • Building Environments (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)

Description

Przedmiotem wynalazku jest sposób izolowania przegrody budowlanej przed wilgocia.Znany jest z polskiego opisu patentowego nr 86 640 elektryczny uklad polaczen zasilacza do za¬ silania ukladu elektrod - powierzchniowych do elektroosmotycznego osuszania przegród budowla¬ nych zawierajacych dwie galezie elektryczne pola¬ czone równolegle, z których jedna stanowi szere¬ gowe polaczenie elementu prostowniczego z elek¬ troda powierzchniowa, umieszczona, po jednej stronie przegrody budowlanej na górnym pozio¬ mie blokujacym, rezystancja strefy osuszanej przegrody, elektroda powierzchniowa umieszczona po przeciwleglej stronie przegrody na dolnym po¬ ziomie blokujacym i z elementem prostowniczym.Druga galaz stanowi szeregowe polaczenie ele¬ mentu prostowniczego z elektroda powierzchniowa umieszczona po tej samej stronie przegrody na górnym poziomie blokujacym, rezystancja strefy osuszanej tej przegrody, elektroda powierzchniowa umieszczona po przeciwleglej stronie przegrody na dolnym poziomie blokujacym i z elementem pro¬ stowniczym. W kazdej galezi elementy prostowni¬ cze maja jednakowy kierunek przewodzenia" i przewodza w kierunku z górnego do dolnego poziomu blokujacego strefy osuszanej. Uklad za¬ silacza zasilany ze zródla pradu przemiennego przez zastosowanie 'tak polaczonych elementów prostowniczych niezaleznie od znaku zasilajacego te napiecia wymusza przeplyw pradu w przegro¬ dzie budowlanej w jednym (kierunku od elektrod górnych do elektrod dolnych.Rozwiazanie to ma ograniczona przydatnosc gdyz nadaje sie do zastosowania tylko tam gdzie mozliwe jest istalowanie elektrod powierzchnio¬ wych. Ponadto oie zapewnia ono skutecznego izo¬ lowania przegrody przed wilgocia, a to ze wzgledu na zjawisko, korozji, które po pewnym czasie niszczy instalacje elektroosmotyczna, co powoduje ponowne zawilgocenie przegrody.Znany jest z polskiego opisu patentowego nr 103 633 sposób polegajacy na tym, ze najpierw prowadzi sie proces osuszania muru za pomoca 15 instalacji elektroosmotycznej do uzyskania zawilgo¬ cenia muru w granicach od 1% do 8%, a nastepnie na¬ wierca sie otwory, korzystnie pod! katem 35° do poziomu gruntu, w obszarze objetym dzialaniem pola elektrycznego, do których doprowadza sie 20 w sposób ciagly srodki hydrofobowe takze elek¬ trycznie obojetne i zmienia sie biegunowosc in¬ stalacji elektroosmotycznej na przeciwna wytwa¬ rzajac podcisnienie w kapilarach wynikajace z elek¬ troosmotycznego przemieszczania sie cieczy do bie- 25 guna ujemnego, zasysajace srodki hydrofobowe w glab muru tworzac blokade dla wilgoci. Jednak stosujac ten sposób, czas trwania wstepnego su¬ szenia do zadanej wilgotnosci trwa do kilku mie¬ siecy. Dodatkowo skutecznosc suszenia zmniejszo- 30 na jest przez wystepujaca, na skutek dzialania 138 249138 249 stalego pola elektrycznego, polaryzujaca elektrody powodujaca równiez ich korozje. Ponadto wytwo¬ rzone- sily statyczne znacznie organiczaja zasieg penietfracji srodka hydrofobowego.Istota wynalazku polega na tym, ze dla wytwo¬ rzenia pola elektrycznego generuje sie napiecie okresowo zmienne p wartosci sredniej do¬ datniej aa- okres i ksztalcie zblizonym do przebiegu prostokatnego, którym zasila sie elektrody insta¬ lacji, przy czym ksztaltuje sie je tak, ze czas trwania impulsu dodatniego, podczas którego psowadbi sie osuszanie i nasycanie przegrody jest 2 do 20 razy dluzszy od czasu trwania impulsu ujemnego wynoszacego nie mniej niz 20 ms, któ¬ rym porzadkuje sie i dynamizuje czasteczki wody, a takze depolaryzuje elektrody instalacji.Dynamiczne, impulsowe dzialanie napiecia okre¬ sowo zmiennego wymuszajacego impulsy prze¬ plyw pradu w przegrodzie budowlanej powoduje zrywanie wiazan miedzyczasteczkowych wody w kaliparach, co kilkakrotnie zwieksza szybkosc su¬ szenia oraz jego skutecznosc, a taikze zwieksza za¬ kres penetracji srodka hydrofobowego. Sposób wedlug wynalazku zapewnia osuszenie porów o bardzo malych i stopniowych przekrojach. Ponadto dzieki depolaryzacji elektrod zmniejszone zostalo zjawisko elektrokorozji instalacji.Przedmiot wynalazku w przykladzie wykona¬ nia jest zilustrowany rysunkiem, na którym fig. 1 przedstawia schemat instalacji osuszajacej, a fig. 2 przedstawia przebieg napiecia okresowo zmiennego podawanego do elektrod instalacji.Instalacja elektroosmotyczna zlozona jest w scia¬ nie budynku 1 pomiedzy poziomem gruntu 2 a stropem 3. W murze zaklada sie rzad elektrod 4 oraz zakopuje w ziemi elektrode uziemiajaca 5 w postaci plaskownika, preta lub rury. Przewoda¬ mi elektrycznymi w izolacji 6 z urzadzenia zasilajacego 7 doprowadza sie energie elektryczna w postaci napiecia okresowo zmiennego o war- 15 20 25 30 35 40 tosci sredniej dodatniej za okres do elektrod 4 i 5.Proces osuszania prowadzi sie do obnizenia wil¬ gotnosci muru do 10%.Miedzy rzedem elektrod 4 a poziomem gruntu 2 nawierca sie otwory 8 do hydrofobizaeji pod ka¬ tem 30° do poziomu. Do tych otworów 8 doprowa¬ dza sie plyn hydrofobowy taki jak zywica siliko¬ nowa zasilajac jednoczesnie elektrody 4 i 5 napie¬ ciem okresowo zmiennym o wartosci sredniej do¬ datniej za okres gdzie czas trwania impulsu do¬ datniego o wartosci 24 V narzuconej warunkami bezpieczenstwa wynosi 1 sekunde, a ujemnego 200 ms oraz czas przerwy miedzy impulsem ujem¬ nym a nastepnym dodatnim 200 ms. Bezwzgledna wartosc impulsu ujemnego powinna byc nie wie¬ ksza od 24 V a nie niniejsza od polowy wartosci impulsu dodatniego. Dzieki • zastosowaniu zasilania elektrod takim napieciem zadane zawilgocenie uzyskuje sie w czasie okolo 5 razy krótszym w zaleznosci od grubosci muru i jego poczatkowego zawilgocenia.Zastrzezenie patentowe Sposób izolowania przegrody budowlanej przed wilgocia, w którym przegrode osusza sie za pomo¬ ca instalacji elektroosmotycznej, a nastepnie w ob¬ szarze dzialania pola elektrycznego wytworzonego miedzy elektrodami instalacji nawierca sie otwory i wprowadza w nie srodek hydrofobowy, znamien¬ ny tym, ze dla wytworzenia pola elektrycznego generuje sie napiecie okresowo zmienne o wartosci sredniej dodatniej za okres i ksztalcie zblizonym do przebiegu prostokatnego, którego zasila sie elek¬ trody instalacji, przy czym ksztaltuje sie je tak, ze czas trwania impulsu dodatniego, podczas którego prowadzi sie osuszanie i nasycanie prze¬ grody jest 2 do 20 razy dluzszy od czasu trwania impulsu ujemnego wynoszacego nie mniej niz 20 ms, którym porzadkuje sie i dynamizuje cza¬ steczki wody. a takze depolaryzuje elektrody in¬ stalacji. k* u 1 \- . ¦»t fig. 2 Zakl. Graf. Badom — 679/36 95+20 egz. Al Cena 100 zl fljf.1 PL PL PL The subject of the invention is a method for isolating a building partition against moisture. Known from the Polish patent description No. 86,640 is an electrical connection system for a power supply for powering a system of surface electrodes for electro-osmotic drying of building partitions, containing two electrical branches connected in parallel, one of which is a series connection of the rectifier element with a surface electrode placed on one side of the building partition at the upper blocking level, the resistance of the zone of the partition to be dried, a surface electrode placed on the opposite side of the partition at the lower blocking level and with the rectifier element. The branch is a series connection of the rectifier element with the surface electrode placed on the same side of the partition at the upper blocking level, the resistance of the zone to be dried of this partition, the surface electrode placed on the opposite side of the partition at the lower blocking level and with the rectifier element. In each branch, the rectifier elements have the same conduction direction and conduct in the direction from the upper to the lower blocking level of the dehumidified zone. The power supply system is powered from an alternating current source by using rectifier elements connected in this way, regardless of the sign supplying these voltages, forcing the current to flow. in the building partition in one direction (from the upper electrodes to the lower electrodes. This solution has limited usefulness as it can only be used where it is possible to install surface electrodes. Moreover, it ensures effective insulation of the partition against moisture, and this is due to the phenomenon of corrosion, which after some time destroys the electro-osmotic installation, which causes the partition to become damp again. A method known from the Polish patent description No. 103,633 consists in first drying the wall using an electro-osmotic installation until obtaining the moisture content of the wall is between 1% and 8%, and then holes are drilled, preferably under! at an angle of 35° to the ground level, in the area affected by the electric field, to which hydrophobic agents, also electrically neutral, are continuously supplied and the polarity of the electroosmotic installation is changed to the opposite, generating a negative pressure in the capillaries resulting from the electroosmotic movement of the liquid to the negative pole, sucking the hydrophobic agents deeper into the wall, creating a block for moisture. However, using this method, the initial drying to the desired humidity takes up to several months. Additionally, the drying efficiency is reduced by the effect of a constant electric field, which polarizes the electrodes and also causes their corrosion. Moreover, the generated static forces significantly limit the range of penetration of the hydrophobic agent. The essence of the invention is that to create an electric field, a periodically alternating voltage p is generated with a positive average value aa - period and a shape close to a rectangular wave, which powers the installation electrodes, and they are shaped in such a way that the duration of the positive pulse, during which the partition is dried and saturated, is 2 to 20 times longer than the duration of the negative pulse, which is not less than 20 ms, which is and dynamizes water molecules, as well as depolarizes the electrodes of the installation. The dynamic, impulse action of periodically alternating voltage forcing impulses of current flow in the building partition causes the breaking of intermolecular bonds of water in the calipers, which increases the drying speed and its effectiveness several times, and also increases the penetration range of the hydrophobic agent. The method according to the invention ensures the drying of pores with very small and gradual cross-sections. Moreover, thanks to the depolarization of the electrodes, the phenomenon of electrocorrosion of the installation has been reduced. The subject of the invention in an embodiment is illustrated in a drawing in which Fig. 1 shows a diagram of the drying installation, and Fig. 2 shows the course of the periodically alternating voltage fed to the electrodes of the installation. The electroosmotic installation is composed of the wall of the building 1 between the ground level 2 and the ceiling 3. A row of electrodes 4 is placed in the wall and a grounding electrode 5 in the form of a flat bar, rod or pipe is buried in the ground. Through insulated electric wires 6 from the power supply device 7, electrical energy is supplied in the form of periodically alternating voltage with a positive average value for a period of time to electrodes 4 and 5. The drying process leads to a reduction in the humidity of the wall. up to 10%. Between the row of electrodes 4 and the ground level 2, holes 8 for hydrophobization are drilled at an angle of 30° to the horizontal. A hydrophobic fluid such as silicone resin is supplied to these holes 8, simultaneously supplying electrodes 4 and 5 with periodically alternating voltage with an average positive value for the period where the duration of the positive pulse with a value of 24 V imposed by the safety conditions is 1 second, and the negative one 200 ms, and the pause time between the negative pulse and the next positive one is 200 ms. The absolute value of the negative pulse should not be greater than 24 V and not less than half the value of the positive pulse. Thanks to the use of powering the electrodes with such voltage, the desired moisture content is achieved in approximately 5 times less time, depending on the thickness of the wall and its initial moisture content. Patent claim A method of isolating a building partition against moisture, in which the partition is dried using an electro-osmotic installation and then in the area of action of the electric field generated between the electrodes of the installation, holes are drilled and a hydrophobic agent is introduced into them, characterized in that to create the electric field, a periodically alternating voltage is generated with a positive average value for the period and a shape close to a rectangular wave, whose the installation electrodes are powered, and they are shaped in such a way that the duration of the positive pulse, during which the partition is dried and saturated, is 2 to 20 times longer than the duration of the negative pulse, which is not less than 20 ms, which is controlled by water molecules become dynamized. and also depolarizes the electrodes of the installation. k* u 1 \- . ¦»t fig. 2 Clam. Graf. Badom - 679/36 95+20 copies Al Price PLN 100 fljf.1 PL PL PL

Claims (2)

1. Zastrzezenie patentowe Sposób izolowania przegrody budowlanej przed wilgocia, w którym przegrode osusza sie za pomo¬ ca instalacji elektroosmotycznej, a nastepnie w ob¬ szarze dzialania pola elektrycznego wytworzonego miedzy elektrodami instalacji nawierca sie otwory i wprowadza w nie srodek hydrofobowy, znamien¬ ny tym, ze dla wytworzenia pola elektrycznego generuje sie napiecie okresowo zmienne o wartosci sredniej dodatniej za okres i ksztalcie zblizonym do przebiegu prostokatnego, którego zasila sie elek¬ trody instalacji, przy czym ksztaltuje sie je tak, ze czas trwania impulsu dodatniego, podczas którego prowadzi sie osuszanie i nasycanie prze¬ grody jest 2 do 20 razy dluzszy od czasu trwania impulsu ujemnego wynoszacego nie mniej niz 20 ms, którym porzadkuje sie i dynamizuje cza¬ steczki wody. a takze depolaryzuje elektrody in¬ stalacji. k* u 1 \- . ¦»t fig.1. Patent claim A method of isolating a building partition against moisture, in which the partition is dried using an electroosmotic installation, and then, in the area of operation of the electric field generated between the electrodes of the installation, holes are drilled and a hydrophobic agent is introduced into them, characterized by the following that to create an electric field, a periodically alternating voltage is generated with an average positive value for the period and a shape close to a rectangular wave, which powers the installation electrodes, and is shaped in such a way that the duration of the positive pulse during which drying is carried out and saturation of the partition is 2 to 20 times longer than the duration of the negative pulse, which is not less than 20 ms, and which organizes and dynamizes the water molecules. and also depolarizes the electrodes of the installation. k* u 1 \- . ¦»t fig. 2. Zakl. Graf. Badom — 679/36 95+20 egz. Al Cena 100 zl fljf.1 PL PL PL2. Spell Graf. Badom - 679/36 95+20 copies Al Price PLN 100 fljf.1 PL PL PL
PL1981230824A 1981-04-24 1981-04-24 Method of protecting a wall of building structure against misture PL138249B1 (en)

Priority Applications (11)

Application Number Priority Date Filing Date Title
PL1981230824A PL138249B1 (en) 1981-04-24 1981-04-24 Method of protecting a wall of building structure against misture
SE8104071A SE8104071L (en) 1981-04-24 1981-06-29 SET TO INSULATE WALLS AGAINST MOISTURE
DK29882A DK29882A (en) 1981-04-24 1982-01-25 PROCEDURE FOR INSULATING A ROAD
FI820503A FI69497C (en) 1981-04-24 1982-02-15 FOERFARANDE FOER ATT AOSTADKOMMA ISOLERING AV EN BYGGSKILJEVAEGG MOT FUKTIGHET
IT8219758A IT8219758A0 (en) 1981-04-24 1982-02-19 METHOD FOR INSULATING PARTITION WALLS AGAINST HUMIDITY.
ES510340A ES8302160A1 (en) 1981-04-24 1982-03-11 Damp proofing of walls
SE8202570A SE450264B (en) 1981-04-24 1982-04-23 PROCEDURE FOR ASTADCOM INSULATING A BUILDING DIVERSITY TO MOISTURE
DE3215340A DE3215340C2 (en) 1981-04-24 1982-04-24 Method of making a moisture barrier in a wall
IT8220936A IT1210877B (en) 1981-04-24 1982-04-26 METHOD FOR INSULATING DIVIDING WALLS AGAINST HUMIDITY.
NO821366A NO161692C (en) 1981-04-24 1982-04-26 PROCEDURE FOR INSULATING WALLWORK AGAINST MOISTURE.
GB08212049A GB2101188B (en) 1981-04-24 1982-04-26 Damp proofing of walls

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PL1981230824A PL138249B1 (en) 1981-04-24 1981-04-24 Method of protecting a wall of building structure against misture

Publications (2)

Publication Number Publication Date
PL230824A1 PL230824A1 (en) 1984-05-07
PL138249B1 true PL138249B1 (en) 1986-08-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
PL1981230824A PL138249B1 (en) 1981-04-24 1981-04-24 Method of protecting a wall of building structure against misture

Country Status (9)

Country Link
DE (1) DE3215340C2 (en)
DK (1) DK29882A (en)
ES (1) ES8302160A1 (en)
FI (1) FI69497C (en)
GB (1) GB2101188B (en)
IT (2) IT8219758A0 (en)
NO (1) NO161692C (en)
PL (1) PL138249B1 (en)
SE (2) SE8104071L (en)

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
PL139278B1 (en) * 1982-12-09 1987-01-31 Politechnika Warszawska Method of drying brickworks and protecting them against remoisturizing
US5015351A (en) * 1989-04-04 1991-05-14 Miller John B Method for electrochemical treatment of porous building materials, particularly for drying and re-alkalization
NO891034L (en) * 1989-03-10 1990-09-11 Elcraft As PROCEDURE AND APPARATUS FOR MANAGING RELATIVE MOISTURE IN CONCRETE AND WALL CONSTRUCTIONS.
FR2669063B1 (en) * 1990-11-08 1994-12-23 Andre Alloy PROCESS FOR THE TREATMENT OF ASCENDING MOISTURE IN WALLS AND DEVICE FOR IMPLEMENTING SAME.
GB9513080D0 (en) * 1995-06-27 1995-08-30 Harden Technolgies Ltd Cathodic protection of metal reinforcement in cast building elements
GB2336602B (en) * 1995-06-27 2000-01-12 Harden Technolgies Ltd Method of effecting flow in porous ground
NO303820B1 (en) * 1995-07-19 1998-09-07 Elektro Puls Teknologier As Method and apparatus for regulating and optimizing the transport of liquid
FR2754076A1 (en) * 1996-10-01 1998-04-03 Mastchenko Alain Michel Method for control and regulation of the hydrometric rate of a chosen medium under the action of an electric current.
US5755945A (en) * 1996-10-11 1998-05-26 Electro Pulse Technologies Of America, Inc. Method for dehydrating capillary materials
US6117295A (en) 1998-04-15 2000-09-12 Drytronic, Inc. Method for dehydrating a porous material
ES2208009B1 (en) * 2001-06-04 2005-03-01 Josep Pares Torrus PROCEDURE FOR DESALINATION, DESECTION AND STRUCTURAL REINFORCEMENT OF WALLS, WALLS AND BOVEDAS.
DE102005019220A1 (en) * 2005-04-22 2006-10-26 Egbert Nensel Electrical osmosis method for carrying out electrical osmosis in draining masonry/buildings applies a pulsed electrical voltage to electrodes in masonry/buildings and their surroundings
ITPR20090089A1 (en) * 2009-11-06 2011-05-07 Pasquale Armillotta PROCEDURE AND PLANT FOR THE DEHUMIDIFICATION OF WALLS OR FLOORS OR FOR THE REHYDRATION OF COHESIVE LANDS NEAR THE BUILDINGS
CN117166541B (en) * 2023-09-13 2026-03-13 国机陆原工程设计研究有限公司 A waterproofing system and method for basement exterior walls

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CS211601B1 (en) * 1978-04-27 1982-02-26 Jaroslav Lebeda Method of making the water non-permeable electroconductive curtains in solid construction materials with porous structure

Also Published As

Publication number Publication date
FI820503L (en) 1982-10-25
SE450264B (en) 1987-06-15
NO161692C (en) 1989-09-13
ES510340A0 (en) 1983-02-01
GB2101188A (en) 1983-01-12
DK29882A (en) 1982-10-25
IT8220936A0 (en) 1982-04-26
GB2101188B (en) 1985-05-30
SE8104071L (en) 1982-10-25
PL230824A1 (en) 1984-05-07
FI69497C (en) 1986-02-10
DE3215340C2 (en) 1986-12-04
DE3215340A1 (en) 1983-09-22
SE8202570L (en) 1982-10-25
ES8302160A1 (en) 1983-02-01
NO821366L (en) 1982-10-25
IT8219758A0 (en) 1982-02-19
NO161692B (en) 1989-06-05
IT1210877B (en) 1989-09-29
FI69497B (en) 1985-10-31

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