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Cited article:

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Intervention mechanism of carbide precipitation during tempering and its impact on residual stress and mechanical properties of wear-resistant steels

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A novel multiscale process simulation to predict the impact of intrinsic heat treatment on local microstructure gradients and bulk hardness of AISI 4140 manufactured by laser powder bed fusion

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Determination of Machining Parameters for a Specific Adjustment of the Residual Stress Profile by Induction Hardening*

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Effect of Carbide Precipitation on “Precipitation Plasticity” and Residual Stress during Tempering

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Evaluation of Hardness and Residual Stress Changes of AISI 4140 Steel Due to Thermal Load during Surface Grinding

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Design, fabrication and validation of an improved coil for induction dilatometry

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Comparative Study of the Tempering Behavior of Different Martensitic Steels by Means of In-Situ Diffractometry and Dilatometry

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Simulation of the Austenitization of Ferrite-Carbide Microstructures by means of the Cellular-Automaton Method (CA)∗

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Effect of Tempering Mode on the Microstructure and Mechanical Properties of a Lean Alloy Martensitic Steel: Conventional Reheating Versus Induction Reheating

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Process development and impact of intrinsic heat treatment on the mechanical performance of selective laser melted AISI 4140

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Additive Manufacturing 28 275 (2019)
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