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- W3130769920 abstract "About 30% of finishing operations for tempered steel parts in contemporary machine engineering is plane grinding with wheel periphery (PGWP). This operation is done by computerized numerical control (CNC) machine tools. The performance management for plane grinding operations is done by incremental changing of programmatic feed rates using controlling software during each part grinding cycle. However, contemporary machine production establishments still face problems associated with the lack of AWCS systems and regulatory references for the selection of optimized cutting modes for PGWP operations performed by CNC machine tools. Therefore, the actual production lacks full automation of controlling software for plane grinding CNC tools, and the incremental feed change cycles are defined manually, thus reducing the grinding rates in order to keep the set quality of surface processing. This problem occurs due to the absence of a set of mathematical models that would allow automated planning for optimized feed cycles and other cutting modes maintaining the quality of surface finish when processing part batches under unstable grinding conditions and taking into consideration various processing requirements and restrictions associated with machines, grinding tools, workpieces, and processing organization conditions. This article deals with the development of a mathematical model for the calculation of feed cycles, elastic distortions of a process system, programmatic, and actual feed in a wide variation range for numerous processing factors." @default.
- W3130769920 created "2021-03-01" @default.
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- W3130769920 date "2021-01-01" @default.
- W3130769920 modified "2023-09-27" @default.
- W3130769920 title "Analytical Simulation of Relations Between Cutting Force and Elastic Distortion of Process System During Plane Grinding" @default.
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- W3130769920 doi "https://doi.org/10.1007/978-3-030-54817-9_130" @default.
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