Materials, Free Full-Text

Por um escritor misterioso

Descrição

Laser cladding has emerged as a promising technique for custom-built fabrications, remanufacturing, and repair of metallic components. However, frequent melting and solidification in the process cause inevitable residual stresses that often lead to geometric discrepancies and deterioration of the end product. The accurate physical interpretation of the powder consolidation process remains challenging. Thermomechanical process simulation has the potential to comprehend the layer-by-layer additive process and subsequent part-scale implications. Nevertheless, computational accuracy and efficacy have been serious concerns so far; therefore, a hybrid FEM scheme is adopted for efficient prediction of the temperature field, residual stress, and distortion in multilayer powder-fed laser cladding of Inconel®718. A transient material deposition with powder material modeling is schematized to replicate the fabrication process. Moreover, simulation results for residual stress and distortion are verified with in-house experiments, where residual stress is measured with XRD (X-Ray Diffraction) and geometric distortion is evaluated with CMM (Coordinate Measuring Machine). A maximum tensile residual stress of 373 ± 5 MPa is found in the vicinity of the layer right in the middle of the substrate and predicted results are precisely validated with experiments. Similarly, a 0.68 ± 0.01 mm distortion is observed with numerical simulation and showed a precise agreement with experimental data for the same geometry and processing conditions. Conclusively, the implemented hybrid FEM approach demonstrated a robust and accurate prediction of transient temperature field, residual stresses, and geometric distortion in the multilayer laser cladding of Inconel®718.
Materials, Free Full-Text
Exchange Website Retired and Components Moved to the INFOhio Website
Materials, Free Full-Text
Advanced Materials: Vol 34, No 1
Materials, Free Full-Text
Geometric Solids Printable Toddler Montessori Materials
Materials, Free Full-Text
Advanced Materials: Vol 30, No 44
Materials, Free Full-Text
Free Collection of Materials for Blender Artists
Materials, Free Full-Text
Materials, Free Full-Text
Materials, Free Full-Text
Using Open Educational Resources (OER) – OAI+
Materials, Free Full-Text
The role of Extracellular Genomic Materials (EGMs) in psychiatric
Materials, Free Full-Text
General Principles of Organic Syntheses : P. Alexeyeff : Free
Materials, Free Full-Text
Electrochemical Depolymerization of Lignin in a Biomass‐based
Materials, Free Full-Text
Sunglasses, Sunglasses, Women's
de por adulto (o preço varia de acordo com o tamanho do grupo)