Items where Author is "Jamshidi, Hamid"

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Number of items: 9.

Article

Jamshidi, Hamid and Budak, Erhan (2022) A digital twin-based framework for selection of grinding conditions towards improved productivity and part quality. Journal of Intelligent Manufacturing . ISSN 0956-5515 (Print) 1572-8145 (Online) Published Online First https://dx.doi.org/10.1007/s10845-022-02031-x

Jamshidi, Hamid and Budak, Erhan (2021) A 3D analytical thermal model in grinding considering a periodic heat source under dry and wet conditions. Journal of Materials Processing Technology, 295 . ISSN 0924-0136 (Print) 1873-4774 (Online)

Jamshidi, Hamid and Budak, Erhan (2021) On the prediction of surface burn and its thickness in grinding processes. CIRP Annals, 70 (1). pp. 285-288. ISSN 0007-8506 (Print) 1726-0604 (Online)

Jamshidi, Hamid and Budak, Erhan (2020) An analytical grinding force model based on individual grit interaction. Journal of Materials Processing Technology, 283 . ISSN 0924-0136 (Print) 1873-4774 (Online)

Jamshidi, Hamid and Gürtan, Mert and Budak, Erhan (2019) Identification of active number of grits and its effects on mechanics and dynamics of abrasive processes. Journal of Materials Processing Technology, 273 . ISSN 0924-0136 (Print) 1873-4774 (Online)

Papers in Conference Proceedings

Jamshidi, Hamid and Budak, Erhan (2018) Grinding temperature modeling based on a time dependent heat source. In: 8th CIRP Conference on High Performance Cutting (HPC 2018), Budapest, Hungary

Jamshidi, Hamid and Yastıkcı, Batuhan and Gürtan, Mert and Budak, Erhan (2017) Grinding force model for Inconel 718 with CBN and conventional wheels. In: 6th International Conference on Virtual Machining Process Technology (VMPT), Montreal, Canada

Yastıkcı, Batuhan and Jamshidi, Hamid and Budak, Erhan (2016) Experimental investigation of wear mechanisms with electroplated CBN wheel. In: 19th International Symposium on Advances in Abrasive Technology, Stockholm, Sweden

Thesis

Jamshidi, Hamid (2021) Analytical modeling of grinding process for improved productivity, part quality and material properties. [Thesis]

This list was generated on Tue Apr 23 21:45:08 2024 +03.