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Titlebook: Advanced Experimental Techniques in Powder Metallurgy; Based on a Symposium Joel S. Hirschhorn (Associate Professor of Metallu Book 1970 Sp

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,Abkürzungen und Formelzeichen,d in this direction unless some basic knowledge of the predominant mass flow mechanisms exists. A frequently employed experimental means for determining sintering mechanisms in solids has been the measurement of the rate of growth of a neck between two similar bodies during sintering. If these bodie
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Was tun, wenn etwas schiefgeht?,nsional microsections produced through the structure. Such studies are conveniently classified into three categories, according to whether the observations are made (1) in reflection microscopy; (2) in transmission microscopy; or (3) by serial sectioning* techniques. The present paper avoids the dis
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Was tun, wenn etwas schiefgeht?,acted blends of powders. The latter method necessarily requires the insertion of a homogenization step in the processing sequence. In general, the homogenization is achieved through solid-state inter-diffusion of the components in the compacted blend.
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,„Damit Sie gerne wiederkommen!“,monly specified characteristic of powder metallurgy products, because, to a first approximation, mechanical properties are related to density. Often, however, this is a poor approximation due to the recognized fact that porosity, per se, does not determine the properties of the product; that is, at
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https://doi.org/10.1007/978-3-642-83543-8The geometrical changes observed during the sintering of solid particles can be accounted for by a variety of atomic mechanisms, including various diffusional fluxes implicit in the geometry of the model systems, and shear processes involving pure slip of dislocations and climb or cross-slip controlled creep.
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https://doi.org/10.1007/978-1-4615-8981-5material; metallurgy; metals
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978-1-4615-8983-9Springer Science+Business Media New York 1970
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