Published March 27, 2023 | Version v1

Data sets for heat generation and associated contact temperature during an oblique impact of a deformable particle and a rigid substrate

  • 1. University of Surrey
  • 2. Newcastle University

Description

This dataset contains essential data from the Finite Element Method model predicting heat generation due to friction and plastic deformation during the oblique impact of a deformable particle and a rigid substrate. Part of this data was processed and published in a journal article (https://doi.org/10.1016/j.powtec.2023.118481). The following is the description of the data files and the associated Figure in the original paper.

‘Heat_Elast_Vt.xlsx’ and ‘Temp_Elast_Vt.xlsx’ data for the evolution of heat and nodal contact temperature, respectively, for varying tangential velocity. Data was used in Figs. 7a and 7b in the associated paper

‘Heat_Vt.xlsx’ and Heat_Vn.xlsx’ data for the evolution of heat for various tangential velocities and normal velocities, respectively. Data was used in Figs. 8a and 8b in the associated paper.

‘Heat_YM.xlsx’ and ‘Temp_YM.xlsx’ data for the evolution of heat and nodal contact temperatures, respectively, for varying Young’s moduli. Data was used in Figs. 9 and 10 in the associated paper.

‘Heat_YS.xlsx’ and ‘Temp_YS.xlsx’ data for the evolution of heat and nodal contact temperatures for varying yield strengths. Data was used in Figs. 11 and 12 in the associated paper.

‘Heat_Den.xlsx’ and ‘Temp_Den.xlsx’ data for heat and nodal contact temperature evolution, respectively, for varying yield strengths. Data was used in Figs. 13 and 14 in the associated paper.

 ‘Temp_TC.xlsx’ data for the evolution of nodal contact temperatures for varying thermal conductivities. Data was used in Fig. 15 in the associated paper.

‘Temp_HC.xlsx’ data for the evolution of nodal contact temperatures for varying specific heat capacities. Data was used in Fig. 16 in the associated paper.

Files

Files (3.2 MB)

Name Size Download all
md5:553d82706c0eaaa63bba75197eeeaf4e
33.9 kB Download
md5:0dd612c35cb0db713be153507bd66310
31.0 kB Download
md5:6808b07835001bdeace8e5da2ee9850b
62.4 kB Download
md5:59510de3eeb4ba0cbd02842d1518f7c4
52.3 kB Download
md5:c95104518ea1273af8ce1a0cbbfcb67a
34.0 kB Download
md5:d320585c2096154eec5057f0f28ed556
33.8 kB Download
md5:18b5bebcf2648dbd7f164a24e4dd2ccf
450.6 kB Download
md5:0fc179d50b4518368b69315b474ef2c6
635.3 kB Download
md5:9244544a6b788422aa80deab466fcdab
452.3 kB Download
md5:d52e63b64eb1b13b2f73a537c94909c7
483.0 kB Download
md5:02c415b1f28d915ea8aa385b3f9ee62b
451.1 kB Download
md5:857e23aad0ed2770b9b0b448cac34f8c
448.6 kB Download

Additional details

Funding

European Commission
MatheGram - Multiscale Analysis of Thermomechanical Behaviour of Granular Materials 813202