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Fractography and Materials Science

L.N. Gilbertson, RD Zipp

Open publisher page 59 citations

Abstract

Description This well-illustrated text demonstrates the importance of using the latest fractographic principles in material science. The principles are applied to a variety of metals including iron, aluminum, titanium, copper, nickel, tungsten base alloys; and various nonmetals including polymers, ceramics, and glass.

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What this paper is about

Description This well-illustrated text demonstrates the importance of using the latest fractographic principles in material science. The principles are applied to a variety of metals including iron, aluminum, titanium, copper, nickel, tungsten base alloys; and various nonmetals including polymers, ceramics, and glass.

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OpenAlex reports 59 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Description This well-illustrated text demonstrates the importance of using the latest fractographic principles in material science. The principles are applied to a variety of metals including iron, aluminum, titanium, copper, nickel, tungsten base alloys; and various nonmetals including polymers, ceramics, and glass.

Key concepts: Fractography, Materials science, Composite material, Fracture (geology)

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