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1,5-Cycloctadiene
Inelastic Neutron Scattering spectrum of 1,5-Cycloctadiene, C8H12, measured on the TOSCA instrument.
cis, cis-1,5-Cycloctadien
Talc
Inelastic Neutron Scattering spectrum of Talc, Mg3Si4O10(OH)2, measured on the TOSCA instrument.
Basic magnesium silicat
Sodium hydroxide
Inelastic Neutron Scattering spectrum of Sodium hydroxide, NaOH, measured on the TOSCA instrument
2,2-Thioethanol
Inelastic Neutron Scattering spectrum of 2,2-Thioethanol, (CH2CH2OH)2S, measured on the TOSCA instrument
Strontium hydroxide
Inelastic Neutron Scattering spectrum of Strontium hydroxide, Sr(OH)2, measured on the TOSCA instrument
Phenylphosphinic acid
Inelastic Neutron Scattering spectrum of Phenylphosphinic acid, C6H5P(O)(OH)H, measured on the TOSCA instrument
Cyclododecene
Inelastic Neutron Scattering spectrum of Cyclododecene, C12H22, measured on the TOSCA instrument.
Mixture of cis and trans isomer
Trisodium hydrogen sulfate
Inelastic Neutron Scattering spectrum of Trisodium hydrogen sulfate, Na3H(SO4)2, measured on the TOSCA instrument
Dipropyl sulfide
Inelastic Neutron Scattering spectrum of Dipropyl sulfide, (C3H7)2S, measured on the TOSCA instrument
Multi Threshold Comparator Avizo Plugin
Part 1/2:
The Multi Threshold Comparator is an Avizo software plugin that assist users in choosing the threshold value when using X-ray Computed Tomography data for porosity analysis. The objective of the developed Avizo plugin is to compare multiple threshold types (Otsu, global and local) across a range of values, based on a previously measured hole, to eventually assist the user in choosing the suitable threshold value. The plugin .zip file is composed of the .pyscro and .rc files to be placed in Avizo installation folder. The hole data to be analysed needs to have a minimum of 2 slice images, and the orientation of the stack needs to show the diameter as circles. Further information can be found in the readme file and detailed use of the plugin is in the study titled "Development of a modular system to provide confidence in porosity analysis of additively manufactured components using X-ray computed tomography".
Part 2/2:
This second half of the dataset is composed of sample data used in the study and their outputs which can be found in DOI: http://dx.doi.org/10.5286/edata/901The authors gratefully acknowledge UKRI for the funding through UKRI Future Leaders Fellowship project: Printing the future of space telescopes - MR/T042230/1. This material is partially based upon work supported by the Air Force Office of Scientific Research under award numbers FA9550-19-2-7001 and FA8655-22-1-7129