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        <title>&lt;b&gt;D4AM Wiki&lt;/b&gt;&lt;br&gt;Open repository of &lt;br&gt;design rules for AM 3.aux</title>
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        <description>AM costs

This page presents the basic concepts of the AM cost calculation, and gives in details the algorithm for calculation of production costs of the MJF technology and estimation of production costs that may be attributed to the individual products; the algorithm is developed during the A_MADAM project, and it may be used for comparison of production costs of different AM PBF technologies and selection of the optimal product design with respect to the production costs.</description>
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        <description>Costs of PBF technologies

In this section, the authors assume that the reader is acquainted with PBF technologies and the respective terminology. In case pf any doubt, the reader may consult the PBF technologies section of D4AM Wiki or the recommended reference material in the section.</description>
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This page provides the introduction to experimental methods used for characterization of fracture resistance in this repository.

Three-point bending of IACSB specimen

The Inclined Edge Cracked Semi-Circular Bend (IACSB) specimen, in comparison with others, gives the opportunity to cover a wider range of the stress intensity factors (</description>
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        <description>Fracture resistance description

The key task of the fracture mechanics is to distinguish between the material flaws that do not grow (hence, those who are safe from the point of view of exploitation) from the material flaws that further propagate as a crack (hence those will lead to failure of the flawed structure). To that purpose, fracture mechanics defines parameters that describe both the material and the loading state of the structure, and establishes the criteria for prediction of the out…</description>
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        <description>Fatigue performance description

Fatigue is a complex material phenomenon, highly nonlinear and stochastic. For mechanical design purposes, the fatigue performance of a material is described by:

	*  the fatigue life (denoted by N), which is the number of cycles with given stress amplitude that the part may sustain before failure, and</description>
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        <description>For further reading

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