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  • Polymer and Materials Science  (831)
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  • 42.75
  • 1950-1954  (882)
  • 1953  (472)
  • 1950  (410)
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  • 1950-1954  (882)
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  • 101
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 38-38 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 102
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 47-47 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 103
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 47-47 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 104
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 48-48 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 105
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 48-48 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 106
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 48-48 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 107
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. I 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 108
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 58-66 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Draft for Proposed DIN Standards sheet No 50908 on the Testing of Light Metals Tensile Corrosion TestsPurpose - General Remarks - Test Methods-Number and type of tests mae- Methods for testing under light deformation - Methods for testing under severe deformation-Corrosive agents employed - Results of Tests.
    Notes: Zweck - Allgemeines - Probenahme - Anzahl der Proben - Probenherstellung - Versuchsarten fü Prüfung des Verhaltens bei schwacher Verformung - Versuchsarten zur Prüfung des Verhaltens bei starker Verformung - Angriffsmittel - Feststellung der Versuchsergebnisse.
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  • 109
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 72-73 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 110
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 76-78 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 111
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 79-79 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 112
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 80-80 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 113
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 103-106 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 114
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 112-112 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 115
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 119-119 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 116
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953) 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 117
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 123-128 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Corrosion Problems in Fire EngineeringA short survey of the equipment and appliances now used in presentday Fire Engineering and Extinguishment is followed by details of the materials of construction and the corrosive action to which they may be subjected, such as extinguishing agents, antifreezing compounds and expelling agents. A number of typical, everyday corrosion problems are then stated and the causes of the corrosion explained. The article closes with references to the possibilities of applying anticorrosive measures.
    Notes: Nach einem kurzen Überblick über die im Feuerlöschwesen heute gebräuchlichen Handapparate, fahrbaren Geräten und stationären Anlagen werden die verwendeten Werkstoffe und aggressiven Medien, wie Feuerlöschmittel, Frostschutzmittel und Treibmittel kurz gekennzeichnet. Dann werden eine Anzahl charakteristischer Korrosionsprobleme aus der Praxis beschrieben; die Ursachen der Korrosionsentstehung werden aufgezeigt. Ein Hinweis auf die Korrosionsschurtzmöglichkeiten beschließt die Arbeit.
    Additional Material: 3 Ill.
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  • 118
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 137-139 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 119
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 146-150 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 120
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 150-151 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 121
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 122
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953) 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 123
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 182-186 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 124
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 125
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 199-200 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 126
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    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 201-208 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: Acid-resistant CementsAfter some introductory remarks of a historical nature, followed by certain basic definitions, the author discuss silicate cements. These latter are made of water-glass and various fillers, wherby a good strength is obtained. The acid-resistant cements, mortars and putties are then discussed. Hoechst acid-resistant mortar, Keralith. Asplit Kera, Keranol, Kerasolith, etc., Haveg, prodorit and other artificial resin and bitumen cements belong to this class, and are described individually by the author. The article concludes with a description nof sundry other acid-resistant building materials which are known in the trade as phenol cements, Sulphur cements, etc. Cement mixtures and asbestos cements as acid-resistant coatings for cement or concrete foundations are discussed as far as required. The greatest attention should be paid to the various methods employed for testing cement, whereby many difficulties can be avoided.
    Notes: Nach einigen geschichtlichen Ausführungen und notwendigen Begriffsbestimmungen werden zunächst die Silikatzemente besprochen, die aus Wasserglas und Füllstoffen aufgebaut werden, wobei recht erhebliche Festigkeiten erreicht werden können. Sie leiten über zu den Säuremörtel Hoechst, Keralith, Asplit, Kera Keranol, Kerasolitih oder dgl., Haveg, Prodorit und andere Kunstharz- bzw. Bitumenzemente sowie Asphaltmassen gehören, die im einzelnen behandelt werden. Den Abschluß für bilden die sonstigen Säurebaustoffe, für die sich die Bezeichnungen Phenolzemente, Schwefelzemente usw. eingeführt haben. Misch- bzw. Asbestzemente und säurefeste Bekleidungen auf Zement- bzw. Betongrundlage werden, soweit notwendig, gewürdigt. Den Prüfmethoden ist stärkste Beachtung zu schenken, um vor Schwierigkeiten geschützt zu sein.
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  • 127
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 211-216 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: The influence of the External and Electrolytic Resistances on the Functioning of Electrochemical model ElementsThe manner in which the resistances of the external circuit and of the electrolytes influence the potential of the cathode, terminal voltage, etc., are described. The article concludes with a description of a method of plotting current - voltage curves in electrolytes of low a variation in the conductivity. Attention is also drawn to a variation in the conditions necessary to obtain a correct ratio between the current and the substance whose identity is to be determined, which causes the arrangement of the elements to be independent of the salt content of the solution.
    Notes: Es wird dargestellt, wie die Widerstände im äußeren Stromkreis und im Elektrolyten die Potentiallage der Kathode, die Klemmspannung und ähnliche Größen beeinflusst. Abschließend wird ein Weg zur Aufnahme von Strom-Spannungskurven in Elektrolyten mit geringer Leitfähigkeit gegeben und auf eine Variation der Bedingungen zur Erzielung von Porportionalität zwischen Strom und zu bestimmenden Stoff hingewiesen, die die Elementanordnung gleichzeitig in weitem Maße von dem Salzgehalt der Lösung unabhängig macht.
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  • 128
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 234-234 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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  • 129
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 239-239 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 240-240 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 249-251 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 258-259 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 261-262 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 269-269 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 270-271 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 271-271 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 356-357 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 382-386 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 395-395 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 395-395 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 395-395 
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    Keywords: Chemistry ; Polymer and Materials Science
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 402-406 
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    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Description / Table of Contents: The Cleaning and Preparatory Treatment of steel surfaces before PaintingBefore anti-corrosive paints can be applied to steel surfaces, it is necessary that they be cleaned and otherwise prepared. Cleaning can be performed by the application of solvents, mechanical methods, sand blasting and treatment with dilute acids. Other preparation includes the application of phosphates, reactive primer coats, etc., to the cleaned surfaces. This preparatory treatment is important, since the durability and life of the anti-corrosive paint depends on this primer coat. Reference is made to the requirements of the American constructional steel industry relative to the cleaning and treatment of steelwork previous to the application of anti-corrosive paints.
    Notes: Bei Ausführung von Korrosionsschutzanstrichen wird die Vorbereitung und Reinigung des Stahls durch Lösungsmittel, mechanische Werkzeuge, Sandstrahlen und Säurebeizung sowie der Vorbehandlung des gereinigten Metalls mit Phosphaten, Reaktionsgrundierungen usw. erhöhte Aufmerksamkeit gewidmet, da die Anstrichhaltbarkeit ganz wesentlich von dieser Vorbereitung des Substrates abhängt. Behandelt werden die Anforderungen, die von der amerikanischen Stahlindustrie des Stahls sowie an den Aufbau und die Ausführung von Rostschutzanstrichen gestellt werden.
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 425-425 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 426-426 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 428-428 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 437-442 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 429-436 
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    Description / Table of Contents: The Anodic Behavior of Nickel in Hydrochloric Acid, Sodium, Chloride and Nickel Chloride SolutionsNickel is always completely active in solutions of HCL, NaCl and Nicl2. Nickel surfaces free from all layers of impurities are best obtained by an anodic treatment repeated seven or eight times. The nickel in these solutions is, at first, always active in the shape of a divalent nickel ion in solution. If the current density is sufficiently high, there is, first of all, a passivation by a layer of nickel - II - chloride. An increase in the effective current density in the pores of this layer causes the nickel to change to another modification, which transmits trivalent nickel ions into the solution. This action occurs at a higher nickel potential. A second mechanical passivation by a nickel salt of higher valency, combined with an increase in potential up to +3,2 volts, also takes place. The nickel then dissolves with a mixed valency of 2,15 to 2,20 in a condition of so called chemically passive state. Both passivation processes follow the Müller-Machu time law for mechanical covering processes. The occurence of these two different passivities was actually made visible by the formation of two different covering layers, one of nickel - II - chloride and the other of a brown nickel compound that was insoluble in 5 N HCL. This second compound probably consists of NiO2, of an organic nature are increasing in importance. It is very necessary that equipment standing idle for any length of time be protected by “cocooning” or by covering with V.P.I. paper. Conditions in shipbuilding, railway operating, automobile and airplane construction are then described. The article closes with a few words on the test methods. Literature and organisation, particular emphasis being laid on the necessity for centralisation on a large scale and the creation of a Research Institute.
    Notes: Nickel ist in den Lösungen von HCL, NaCl and NiCl2 stets von Anfang an aktiv. Vollkommen deckschichtfreie Nickeloberflächen werden jedoch am besten durch eine 7 oder 8 mal wiederholte anodische Behandlung erhalten. Das Nickel geht in diesen Lösungen vorerst stets aktiv und als zweiwertiges Nickelion in Lösung. Ist die Stromdichte genügend hoch, so erfolgt vorerst eine erste Passivierung mit einem grünen Nickel-II-Chlorid. Durch einen großen Anstieg der effektiven Stromdichte in den Poren dieser Deckschicht erfolgt eine Umwandlung des Nickels in eine andere Modifikation, in welcher es dreiwertige Nickelionen in Lösung sendet. Dieser Vorgang findet bei einem höheren Nickelpotential statt. Auch in diesem Stadium tritt aber sodann eine zweite mechanische Passivierung durch ein höherwertiges Nickelsalz ein, verbunden mit einem Potentialansteig bis auf über; + 3,2 V. Im sog. chemisch passiven Zustand geht das Nickel mit einer gemischten Wertigkeit von 2,15-2,20 in Lösung. Beide Passivierungsvorgänge gehorchen dem Zeitgesetz für mechanische Bedeckungsvorgänge von Müller - Machu. Das Auftreten dieser beiden verschiedenartigen Passivitäten konnte auch durch die Bildung zweier verschiedener Bedeckungen, nämlich mit Nickel-II-Chlorid und einer braunen, auch in 5n sie anzustreichen. Unter den organischen Schutzstoffen nehmen die synthetischen Produkte einen immer größeren Raum ein. Wichtig ist z.B. der Schutz von Apparaturen, die nicht im Betrieb sind, durch Umhüllung mit Schutzkokons oder VPI-Papier. Die Verhältnisse auf den Gebieten des Schiffbaus, des Eisenbahnverkehrs, der Automobil- sowie der Flugzeugindustrie werden näher berücksichtigt. Auf Prüfmethoden, Schrifttum, Organisation usw. wird in einem Schlußwort eingegangen, das in der Forderung weitergehender Zentralisierung und eines entsprechenden Forschungsinstituts gipfelt.
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 458-461 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 468-473 
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 280-290 
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    Description / Table of Contents: Stresses in Jackets of Digesters, with Particular Reference to Cellulose DigestersCellulose digesters have often exploded a few hours after steam has been admitted, or immediately after being steamed after having stood idle for a period, or during the Winter season when exposed to cold draughts. On the basis of these facts, the additional stresses set up in the jackets due to the expansion of the lining were subjected to a rigourous examination. Theoretical investigations proved that, all other factors remaining equal, the additional stresses increase in direct proportion to the increase in the thickness of the brickwork lining. The temperatures in the wall of the digester were measured at three different places during the course of operations by means of 10 built-in thermo-couples. The results thus obtained confirmed the theoretical investigations, and led to the formation of the stipulation that the coefficient of thermal expansion of the acid-resistant lining must not exceed 0,92 × 10-5 m/m°C. This limit must be strictly observed in the case of older digesters where the circumferential rivetting was only designed to resist minor longitudinal stresses and where the additional stresses set up by the heating of the jacket were not taken into consideration. Further results of the investigation showed that digesters under steam must be protected from cold draughts, particularly when cooling down after operations have finished. This precaution should be strictly observed during the colder months of the year.
    Notes: Zellstoffkocher zerknallten häufig einige Stunden nach Dampfeinlaß, bei Inbetriebsetzung, nach Stillstand oder im Winter unter Einfluß kalter Zugluft. Auf Grund dieses Tatbestandes wurde die zusätzliche Beanspruchung des Eisenmantels durch die Wärmedehnung der Kocherauskleidung an einer technischen Anlage untersucht. Theoretische Ableitungen ergeben, daß die zusätzliche Beanspruchung unter sonst gleichen Bedingungen mit der Dicke der Ausmauerung zunimmt. Der Temperaturverlauf in der Wand eines Kochers wurde bei verschiedenen Ankochzeiten an 3 Stellen durch Einbau von je 10 Thermoelementen im Betrieb gemessen. Die Ergebnisse erhärten die theoretischen Betrachtungen und führen zu der Forderung, daß die Wärmeausdehnungszahl der säurefesten Auskleidung nicht größer als 0,92 × 10-5 m/m.° C sein darf. Dies ist insbesondere bei älteren Kochern zu beachten, deren Rundlaschenverbindungen nur auf die kleinere Beanspruchung in achsialer Richtung abgestimmt sind, wobei die zusätzliche Beanspruchung durch die warme Auskleidung nicht berücksichtigt ist. Weitere Ergebnisse der Untersuchung zeigen, daß aufgeheizte Kocher vor Abkühlung durch Zugluft besonders in der kalten Jahreszeit zu schüzen sind.
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 308-309 
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    Description / Table of Contents: The Manufacture of Alloys by the “Impregnation” MethodThe development of the manufacture of moulded sintered metal parts and improvements in their behaviour under working conditions has made great progress, particularly abroad, whereby new fields for the utilisation of the products of powder metallurgy have been opened up. The application of the “Impregnation” method for the production of moulded machine parts is a distinct novelty. In this method, a moulded part is first formed of a porous sintered iron or steel, and the pores then impregnated with some other suitable metal.The report describes the results obtained during the last few years, and is intended to attract still greater attention than heretofore to the advantages of the utilisation of powder metallurgy and the “Impregnation” process, since parts produced by this process have a high resistance to corrosion.
    Notes: Die Entwicklung der Fertigungsverfahren fü Preßteile aus Sintermetallen und die Verbesserung ihrer Gebrauchs-eigenschaften hat besonders im Ausland beachtliche Fortschritte erzielt und den pulvermetallurgischen Erzeugnissen neue Anwendungsgebiete erschlossen. Eine wesentliche Neuerung in der Herstellung von Maschinenpreßteilen bedeutet die Anwendung des Tränkverfahrens, bei dem zunächst ein poriges Sintereisen- oder Sinterstahlpreßteil angefertigt wird, des-sen Poren man mit einem geeigneten Tränkmetall ausfüllt.Der Bericht behandelt die in den letzten Jahren erzielten Ergebnisse und soll an-regen, die Vorteile der Pulvermetallurgie und die des Tränkverfahrens in noch stärkerem Maße als bisher in Anwendung zu bringen, zumal derartig hergestellte Werkstoffe korrosionstechnisch von aus-gesprochen guter Beständigkeit sind.
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    Description / Table of Contents: The Influence of Impurities on the Resistance to Corrosion of Aluminium and its AlloysIt may be deduced generally from the present experiments that the resistance to corrosion of the metal. The influence of impurities is determined by the type of corrosive medium to which the metal is subjected, and, frequently, the failure of aluminium may be due more often to the influence of operating or other exterior conditions than to impurities in the metal itself.As a result of the examination of the tendencies to corrosion due to the individual impurities and small additions of foreign elements, it has been found that iron and copper exercise a harmful effect, although the effect of the iron can be greatly reduced by the addition of manganese. Silicon in solid solution is absolutely harmless, but when it is eliminated in elementary form, the powers of resistance of aluminium are reduced. Suitable heat treatment enables up to 0,5% Si. to be retained in solid solution. According to the latest investigations, the proportion of Fe. to Si. does not appear to be of particular importance to the resistance of aluminium to corrosion. Magnesium, lead, zinc and titanium in the amounts usually present in aluminum are harmless, but nickel is always injurious. Calcium and sodium, which often appear as impurities in aluminium obtained from certain ores, also influence the resistance to corrosion.The final conclusions obtained from the date on the influence of the addition of small quantities of other elements are, in most cases, not given, as the observations and results have mostly been obtained form single experiments, and, hence, do not offer sufficient material for the formation of conclusions that might be of practical value.
    Notes: Auf Grund der vorliegenden Versuchsergebnisse kann ganz allgemein gefolgert werden, daß der Korrosionswiderstand von Reinaluminium mit steigendem Reinheitsgrad zunimmt. Der Einfluß der Verunreinigungen wird bestimmt von der Art des Korrosionsmediums und oft wird das Versagen von Aluminium mehr auf die Einflüsse der vorliegenden Betriebsbedingungen bzw. seiner Umgebung als auf den der Verunreinigungen selbst zurückzuführen sein.Bei der Betrachtung der einzelnen Verunreinigungen und geringen Zusätze an fremden Elementen hinsichtlich ihrer Korrosionsbeeinflussung ergibt sich, daß Eisen und Kupfer einen schädlichen Einfluß ausüben, wobei jedoch die Wirkung des Eisens durch Zugabe von Mangan stark verringert werden kann. Silizium ist in fester Lösung völlig unschädlich, in elementarer Form ausgeschieden verringert es die Beständigkeit des Aluminium. Durch geeignete Wärmebehandlung gelingt es jedoch, bis zu 0,5% Si in fester Lösung zu halten. Das Verhältnis Fe:Si scheint nach den neueren Auffassungen für das Korrosionsverhalten von Aluminium nicht von besonderer Wichtigkeit zu sein. Magnesium, Zink, Blei und Titan sind in Gehalten, wie sie üblicherweise im Aluminium vorkommen, unschädlich, dagegen ist Nickel in jedem Falle schädlich. Auch Calcium und Natrium, die oftmals in aus bestimmten Erzen hergestelltem Aluminium als Verunreinigungen auftreten, beeinträchtigen dessen Korrosionsbeständigkeit.Bei den Angaben über den Einfluß von geringen Zusätzen weniger üblicher Elemente werden die daraus gezogenen Schlußfolgerungen in den meisten Fällen nicht wiedergeben, da die Beobachtungen überwiegend bei Einzelversuchen gemacht worden sind und demzufolge zu wenig Beweismaterial bieten für endgültige Rückschlüsse, die für die Praxis von Bedeutung sein könnten.
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 47-47 
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    Description / Table of Contents: Chrome Diffusion in Steels (short Notice)Control of the Chrome diffusion Process-Theoretical Observations - Structure of the chrome Layer - Modern Chrome diffusion processes - Properties of Chrome Steels - Application and utilisation of the Chrome process.
    Notes: Überwachung des Chromdiffusions- processes - Theoretische Betrachtungen - Struktur der Chromdiffusionsverfahren - Eigenschaften der kromierten Stäble - Anwendungsgebiete der Inkromierung.
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    Materials and Corrosion/Werkstoffe und Korrosion 4 (1953), S. 241-247 
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    Description / Table of Contents: The Corrosion of Iron and Steel through Biological CausesThe article contains a summary of present-day knowledge on corrosion of iron and steel caused by micro-organisms. A short description of the various organisms. A short description of the various organism coming under consideration for the purposes of this main and secondary effects and appearances of corrosion of iron and steel due to biological causes. The theoretical aspect of this corrosion is also discussed. The article close with a summary of all methods of prevention of this type of corrosion that are known at the present time.
    Notes: Die Arbeit gibt eine Zusammenstellung unseres heutigen Wissens über die Korrosionsersheutigen, die durch Mikroorganismen auf Eisen hervorgebracht werden. Nach einem kurzen überblick über die Eigenschaften der hierfür in Frage kommenden Organismen werden die praktisch vorkommenden Erscheinungsformen und Begleiterscheinungen der biologischen Eisenkorrosion, sowie die Theorien, die bisher darüber aufgestellt wurden, besprochen. Die Arbeit endet mit einer Zusammenstellung der bis heute bekannten Verhütungsmöglichkeiten dieser Korrosionsart.
    Additional Material: 2 Ill.
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    Description / Table of Contents: The Protective Action of cement against RustOf the various types od cements and concretes to be found on the market, Portland cement mixed with trass, pumice concrete and gypseous slag cement are particularly favourable to the formation of rust. The protective value of these building materials depends more on their pH value than on the thickness of the setting. Concrete for use in steel constructional work must normally contain a minimum of 30 Kgs of cement per cubic metre. The “Provisional” protection of the metal against rust by the application of a thin coating of cement slurry has not always proved successful, particularly in cases where a high degree of exposure was encountered. It would appear that a priming coat of red lead is to be recommended. Experience has proved that a coat of the cheaper variety of red lead known as “V 40” without the application of any additional coats of anti-corrosive paint, will protect the metal for periods of four and a half removed by the use of an autogenous burner.
    Notes: Unter den Handelssorten des Zements und Betons sind mit Traß versetzter Portlandzement, Bimsbeton und Gipsschlackenzement besonders zur chemischen Rostumwandlung befähigt. Der Schutzwert dieser Baustroffe wird mehr von ihrem pH-Wert als von der Dicke der Einbettung beeinflußt. Im Stahlbau verwendeter Beton muß in der Regel mindestens 300kg/m3 Zement enthateln. Der „ vorläufige“ Rostschutz durch Aufbringen dünner Zementschlämme hat sich in Fällen höherer Beanspruchung nicht durchweg bewährt. Es erscheint sodann eine einmalige Grundierung mit Bleimennige empfehlenswert, deren billigere Beisorte “V 40” das Eissen erwiesenermaßen auch ohne schützenden Deckanstrich 4½ Jahre und länger gegen Rostbildung zu schützen vermag. Alte Anstriche werden vor dem Einbetonieren am besten mit autogenen Flammstrahlern entfernt.
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