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Application filed by Anton Pardatscher, Alois FioriolifiledCriticalAnton Pardatscher
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Publication of AT77529BpublicationCriticalpatent/AT77529B/en
230000003763resistance to breakageEffects0.000claims1
238000005096rolling processMethods0.000claims1
Landscapes
Springs
(AREA)
Description
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möglich, Federn von grossen Profilquerschnitten herzustellen, die, aus ganzem Material hergestellt, nicht mehr merklich federn oder bei geringer Federung schon brechen würden.
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It is possible to produce springs with large profile cross-sections which, made from a whole material, no longer spring noticeably or would break with little springiness.
Claims (1)
EMI2.2
Verfahren zur Herstellung von Material für Federn von grossen Profilabmessungen, dadurch gekennzeichnet, dass Federstahl von kleineren Profil abmessungen, hauptsächlich in Form von Drähten, zu Stücken von grösseren Profilabmessungen vereinigt und durch mechanische Behandlung in glühendem Zustande, z, B. Walzen und Pressen oder sonst geeignete Druckverfahren, jedoch ohne völlige Schmelzung, innig miteinander verbunden und zu dem gewünschten Profil geformt wird, zu dem Zwecke, grössere Festigkeit, Biegsamkeit und Bruchsicherheit an starken Federprofilen zu erreichen.
EMI2.2
Process for the production of material for springs of large profile dimensions, characterized in that spring steel of smaller profile dimensions, mainly in the form of wires, is combined into pieces of larger profile dimensions and by mechanical treatment in the glowing state, e.g. rolling and pressing or otherwise suitable printing processes, but without complete melting, are intimately connected to one another and shaped to the desired profile for the purpose of achieving greater strength, flexibility and resistance to breakage on strong spring profiles
AT77529D1917-02-281917-02-28
Process for the production of material for springs of large profile dimensions.
AT77529B
(en)
Use of heat-hardenable copper-titanium alloys as a material for objects that have to have high heat resistance, insensitivity to hot gases, high fatigue strength, long-term stability and low elastic after-effects