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Bearing materials based on fibers and liquid-metal lubricants

Identifieur interne : 000A51 ( Main/Exploration ); précédent : 000A50; suivant : 000A52

Bearing materials based on fibers and liquid-metal lubricants

Auteurs : RBID : ISTEX:11106_1974_Article_BF00796750.pdf

Abstract

1.Bearings made of porous 80% nickel-20% chromium base alloy fiber materials impregnated with low-melting-point metallic lubricants of low vapor pressure hold considerable promise for friction units operating in a vacuum under high loads and at high friction zone temperatures.2.Low-melting-point metallic alloys based on gallium, indium, and tin, which melt at elevated friction zone temperatures (high loads and high sliding speeds) and form a liquid-metal lubricant film, can be successfully used as impregnating lubricants for such fiber materials.

DOI: 10.1007/BF00796750

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Le document en format XML

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<div type="abstract" xml:lang="eng">1.Bearings made of porous 80% nickel-20% chromium base alloy fiber materials impregnated with low-melting-point metallic lubricants of low vapor pressure hold considerable promise for friction units operating in a vacuum under high loads and at high friction zone temperatures.2.Low-melting-point metallic alloys based on gallium, indium, and tin, which melt at elevated friction zone temperatures (high loads and high sliding speeds) and form a liquid-metal lubricant film, can be successfully used as impregnating lubricants for such fiber materials.</div>
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<abstract lang="eng">1.Bearings made of porous 80% nickel-20% chromium base alloy fiber materials impregnated with low-melting-point metallic lubricants of low vapor pressure hold considerable promise for friction units operating in a vacuum under high loads and at high friction zone temperatures.2.Low-melting-point metallic alloys based on gallium, indium, and tin, which melt at elevated friction zone temperatures (high loads and high sliding speeds) and form a liquid-metal lubricant film, can be successfully used as impregnating lubricants for such fiber materials.</abstract>
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<title>Powder Metall Met Ceram</title>
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