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Dataset results
739 results for “Prints”
Detail on the Bruegel the Elder print NHD49
<p>Detail on the Bruegel the Elder print NHD49 </p>
kennek12/HUG-5_validation: HUG-5 Validation- pre print
<p>Data, analysis and figures for pre-print access.</p>
e-LiS, e-prints in library & information science: metadata in RDF/XML
<p>This RDF-XML dump contains metadata about the items deposited in e-LiS (http://eprints.rclis.org), converted in Linked Open data.</p> <p>"Established in 2003, e-LIS is an international digital repository for Library and Information Science (LIS), including Communication. It has grown thanks to a team of volunteer editors that support 22 languages. The development of an international network has been stimulated by the extension of the Open Access concept to works and facilitated by the dissemination of material within the LIS community. These are some of the reasons for the success of e-LIS.</p> <p>In a few years, e-LIS has been established as the largest international open repository in the field of library and information science."</p>
Judged Roughness as a Function of Groove Frequency and Groove Width in 3D-Printed Gratings
<p>For different types of textures judged roughness has been shown to be an inverted U-shaped function of inter-element spacing when texture amplitude is low. This may be due to an interplay of two “components” that contribute to the skin’s spatial deformation, and thus to a spatial-intensive code to roughness: (1) deformation increases with the depth of the finger’s intrusion between elements, which increases with inter-element spacing until the finger contacts the ground; and (2) skin deformation decreases with a decreasing number of inter-element gaps being simultaneously under the skin, i.e. with the texture’s spatial frequency (which is negatively correlated with inter-element spacing). The present study systematically tested these ideas. We presented participants different series of 3D-printed rectangular grating stimuli, in which the width of the grating’s grooves varied and the spatial frequency of grooves was constant, or vice versa. Participants touched the stimuli without lateral movement and judged roughness using magnitude estimation. As predicted and previously observed, judged roughness increased with groove width and groove frequency. However, the predicted increase with groove frequency, was only found for frequencies below about 0.5 mm<sup>−1</sup>. For larger frequencies, roughness decreased with increasing frequency. The decrease is at odds with findings from earlier studies that used aluminum rather than plastic gratings. The results corroborate the assumption that the area of skin deformation plays a crucial role for roughness, but at the same time, point to the influence of subtle differences between materials that should be investigated in the future.</p>
Earth Abundant, Non-Toxic, 3D Printed Cu2-xS with High Thermoelectric Figure of Merit
<p>Dataset for: Earth Abundant, Non-Toxic, 3D Printed Cu<sub>2-x</sub>S with High Thermoelectric Figure of Merit</p> <p>The toxicity, earth abundance and manufacturing costs of thermoelectric materials are three leading reasons why thermoelectric generators are not used in wide scale applications. This is the first ever paper to tackle all three of these problems at once. A pseudo-3D printing technique is combined with Cu<sub>2-x</sub>S based inks to yield bulk samples capable of being using in traditional architecture thermoelectric generators. These bulk samples are characterized over a wide temperature range in XPS, which reveals a curing temperature of 550 K yields pure Cu<sub>2-x</sub>S samples. The thermoelectric properties of these samples are tested over a wide temperature range, with a peak ZT of 0.63 ± 0.09 being recorded at 966 K.</p>
FIGURE 1 in Printed, or just indelible? On the earliest legitimate names, authorship and typification of the taxa described from Italy by Huter, Porta and/or Rigo
FIGURE 1. Lectotype of the name Tanacetum tridactylites A.Kern. & Huter ex Porta & Rigo, conserved at NAP.
Supporting Material: Proof-of-principle of 3D-printed track-end detectors for dosimetry in proton therapy
<p><strong>Project description and contents of the submitted manuscript:</strong></p> <p><strong>Background: </strong>Dosimetric equipment in particle therapy (PT) is associated with high costs. There is a lack of versatile, tissue-equivalent detectors suitable for in-vivo dosimetry. Faraday-cup (FC) type detectors are sensitive to stopped protons, i.e. to trackends. They experience a renaissance in PT as they can cope with high dose rates. Owing to their simple functional principle, production of FC could benefit from the dynamic technological developments in additive manufacturing of sensors.</p> <p><strong>Purpose: </strong>To build FC-type detectors for PT by standard 3D-printing. This study seeks to build an integrating, single-channel FC for replacement of a traditional FC and a 2×2 array of FC elements indicating the feasibility of a spatially resolving detector.</p> <p><strong>Methods: </strong>Samples of FCs were produced with a dual-extruder 3D-printer with polylactic-acid filaments, which contained graphite in the conductive parts of the detector. Production was optimizied in terms of materials and printing temperature. Samples were characterized by electrical tests and non-destructive 3D x-ray imaging. Beam tests were conducted at a clinical PT machine.</p> <p><strong>Results: </strong>Operational FC-type detectors for proton fields were printed. The detected charge of the single-channel FC corresponded qualitatively to the one of a traditional FC. A 2 × 2 FC array was fabricated in a single run. There was a linear relationship between the response of the individual FC elements and the machine output.</p> <p><strong>Conclusions: </strong>3D-printing is a viable method for producing low-cost, tissue-equivalent, FC-type detectors for PT. They could potentially be used as track-end detectors in anthropomorphic phantoms.</p> <h3>Shared files:</h3> <p>2x2_FC_matrix: design CAD files of FC array</p> <p>Single_channel_FC: design CAD files of simplified, single-channel FC</p> <p>CT_matrix: high-resolution x-ray CT image set of the 2x2 FC array</p> <p>Measured_values_for_MedPhys_technical_note: Excel sheet of the data presented in the paper</p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p> <p> </p>
Codes for 3D printing
<div> <div><a href="https://link.springer.com/article/10.1007/s00466-018-1614-5">Powder-scale multi-physics modeling of multi-layer multi-track selective laser melting with sharp interface capturing method</a></div> </div> <div> <div> <div>Zekun Wang, Wentao Yan, Wing Kam Liu, Moubin Liu</div> </div> </div>
Datasheet of 3D printed bonded magnets from rare-earth micropowder alloys
Open the record for dataset details and reuse information.
Demonstrator of 3D printed bonded magnets from rare-earth micropowder alloys
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Summary of in-plane compression performances of FFF-printed PEI lattices_Spoke11_WP2_Task2.3_MOST
Open the record for dataset details and reuse information.
Feasibility of 3D-printed middle ear prostheses in partial ossicular chain reconstruction
<p>3D models and print files for article: Feasibility of 3D-printed middle ear prostheses in partial ossicular chain reconstruction</p> <p>The geometry of different size PORPS</p> <p>Set of 1st generation PORPs: run1</p> <p>Set of 2nd generation PORPs: run2</p>
Mechanical nanolattices printed using nanocluster-based photoresists
<p>Natural materials exhibit emergent mechanical properties due to their nanoarchitected, nanocomposite structures with optimized hierarchy, anisotropy and nanoporosity. Fabrication of such complex systems is currently challenging because high-quality 3D nanoprinting is mostly limited to simple, homogenous materials. We report a strategy for the rapid nanoprinting of complex structural nanocomposites using metal nanoclusters. These ultrasmall, quantum-confined nanoclusters function as highly sensitive two-photon activators, and simultaneously serve as precursors for mechanical reinforcements and nanoscale porogens. Nanocomposites with complex 3D architectures are printed, as well as structures with tunable, hierarchical and anisotropic nanoporosity. Nanocluster-polymer nanolattices exhibit high specific strength, energy absorption, deformability, and recoverability. This framework provides a generalizable, versatile approach for the use of photoactive nanomaterials in additive manufacturing of complex systems with emergent mechanical properties.</p>
Dataset for publication Chougan M., Ghaffar S.H., Nematollahi B., Sikora P., Dorn T., Stephan D., Albar A., Al-Kheeta M.J. Effect of natural and calcined halloysite clay minerals as low-cost additives on the performance of 3D-printed alkali-activated materials. Materials and Design (2022) 223, 111183
<p>Open dataset for publication Chougan M., Ghaffar S.H., Nematollahi B., Sikora P., Dorn T., Stephan D., Albar A., Al-Kheeta M.J. Effect of natural and calcined halloysite clay minerals as low-cost additives on the performance of 3D-printed alkali-activated materials. <strong>Materials and Design</strong> (2022) 223, 111183. <a href="https://doi.org/10.1016/j.matdes.2022.111183">https://doi.org/10.1016/j.matdes.2022.111183</a></p> <p>File 1 - FTIR - data of raw and calcined material - *.opj (Origin)</p> <p>File 2 - Mechanical performance print vs cast - *.opj (Origin)</p> <p>File 3 - Mechanical performance - *.opj (Origin)</p> <p>File 4 - TGA and XRD - data of raw and calcined material - *.opju</p>
GOhydro Multi-modal Sensor Kit - 3D Printing Files
<p>These are the files for 3D printing the housing of the GOhydro Multi-modal Sensor Kit</p>
Fabrication of chemofluidic integrated circuits by multi-material printing
<p>Supplementary Information</p>
Printed Dual-Frequency Directional Antenna Loaded with Dual-Parasitic Strip
<p>Dataset 1-23 are the raw data from CST studio suite analysis software (CST). A series of simulations are performed on the MS-to-CPS transition, the dual dipole element, the reflectors, and the parasitic strip to determine the optimal antenna design. Dataset 24-28 are the raw data from the measured results whose are compared with the simulated results of the optimal antenna design.</p> <p><strong>Additional Supporting Information</strong></p> <p>Dataset 1 and 2 are the raw data of Figure 2.</p> <p>Dataset 3 is the raw data of Figure 3.</p> <p>Dataset 4, 5, and 6 are the raw data of Figure 5.</p> <p>Dataset 7 is the raw data of Figure 6.</p> <p>Dataset 8 is the raw data of Figure 9.</p> <p>Dataset 9 is the raw data of Figure 10.</p> <p>Dataset 10 is the raw data of Figure 11.</p> <p>Dataset 11 and 12 are the raw data of Figure 12.</p> <p>Dataset 13 and 14 are the raw data of Figure 13.</p> <p>Dataset 15 and 16 are the raw data of Figure 14.</p> <p>Dataset 17 and 18 are the raw data of Figure 15.</p> <p>Dataset 19 and 20 are the raw data of Figure 16.</p> <p>Dataset 21 is the raw data of Figure 17.</p> <p>Dataset 22 is the raw data of Figure 18.</p> <p>Dataset 23 is the raw data of Figure 19.</p> <p>Dataset 24 is the raw data of Figure 21.</p> <p>Dataset 25, 26, 27, and 28 are the raw data of Figure 22.</p>
3D Printing Concrete Mix Design Open Dataset
<p>3D Concrete Printing Mix Design Open Dataset collected from publications. </p>
Characterisation of mechanical properties of materials used in 3D printing
<p>The mechanical properties of 19 materials used in 3D printing were experimentally tested. Mechanical properties (mostly elastic modulus and strength, but not only) were obtained and compared for filaments, single-extruded fibres, and dog-bone type specimens printed with printing angles 0, 90° and intermediate angles. Thus, anisotropy of properties was considered. The density, modulus of elasticity, and tensile strength values were compared for all mentioned types of specimens.</p>
A 3D printed plastic frame deeply impacts yeast cell growth
<p>Solid State Fermentation (SSF) processes have been explored for yeast growth and protein and metabolites production. However, most of these processes lack standardization. In this work, we present a polylactic acid (PLA) 3D printed matrix that dramatically enhances yeast growth when embedded in liquid media compared to equivalent static cultures, and changes yeast expression patterns at the proteome level. Moreover, differences in sugar assimilation and ethanol production, as the main product of alcoholic fermentation, are observed. Our results suggest that these matrixes may be useful for a vast range of biotechnological applications based on yeast fermentation. Here we submit the proteomic data of this paper.</p>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.