Matches in SemOpenAlex for { <https://semopenalex.org/work/W3177139733> ?p ?o ?g. }
Showing items 1 to 97 of
97
with 100 items per page.
- W3177139733 endingPage "102138" @default.
- W3177139733 startingPage "102138" @default.
- W3177139733 abstract "Radiation thermometry methods used in powder bed fusion (PBF) additive manufacturing for in situ monitoring and control and quality assurance are increasing in importance. Arguably, the most significant challenge associated with radiation thermometry methods is the limited understanding of the emissivity, that is the emissive behavior of the entire region being measured. This work describes a new approach for measuring the emissive behaviors of PBF materials during processing using a multi-wavelength (MW) or Spectropyrometer operating in the spectral range from 1000 to 1650 nm. The approach was implemented in an electron beam (EB) PBF machine, using the electron beam as a heat source, allowing for (1) measuring spectral emissive behavior of the surface in a fixed small region (~2.65 mm) throughout a variety of dynamic processing conditions including heating, melting, and cooling; (2) controlling the scanning (heating) profile during processing while rejecting radiative interference in the measurements due to heating lasers (~1070 nm) commonly used in laser PBF; and (3) processing in an evacuated environment to assist with reduction of additional environmental effects that could impact the measurements. The experimental setup included a sight tube that prevented both metallization of the viewport and resultant signal decay, which enabled near-continuous measurements throughout processing. Measurements from the MW pyrometer were compared against those of a type K thermocouple that was placed in the vicinity of the measurement area. Prior to the powder bed preheating experiment, the MW pyrometer was calibrated against a NIST traceable blackbody source. The utility of the approach was demonstrated by acquiring measurements from the surface of a copper (d50~75 µm) powder bed that was progressively heated in a series of nine steps inside an Arcam A2 EB-PBF system through scanning with the electron beam. Following the preheat steps, seven consecutive melt steps were implemented enabling measurements of the emissive behavior for copper during its multiple solid-liquid-solid transitions. The unique capabilities of the MW pyrometer provided measured values of emissivity of copper that exhibited temporal, spectral (1080–1640 nm) and thermal dependence, verifying the non-graybody behavior for copper. Ongoing work will demonstrate the applicability of this technique across multiple powder metal alloy systems and PBF technologies." @default.
- W3177139733 created "2021-07-05" @default.
- W3177139733 creator A5048003647 @default.
- W3177139733 creator A5059293300 @default.
- W3177139733 creator A5076591183 @default.
- W3177139733 creator A5081473549 @default.
- W3177139733 date "2021-10-01" @default.
- W3177139733 modified "2023-09-26" @default.
- W3177139733 title "Implications for accurate surface temperature monitoring in powder bed fusion: Using multi-wavelength pyrometry to characterize spectral emissivity during processing" @default.
- W3177139733 cites W1595664805 @default.
- W3177139733 cites W1967141146 @default.
- W3177139733 cites W1968672758 @default.
- W3177139733 cites W1971789907 @default.
- W3177139733 cites W1973203003 @default.
- W3177139733 cites W1985921481 @default.
- W3177139733 cites W1996089300 @default.
- W3177139733 cites W2002119104 @default.
- W3177139733 cites W2037464172 @default.
- W3177139733 cites W2068265644 @default.
- W3177139733 cites W2077041361 @default.
- W3177139733 cites W2085775943 @default.
- W3177139733 cites W2086865491 @default.
- W3177139733 cites W2291833756 @default.
- W3177139733 cites W2360121212 @default.
- W3177139733 cites W2559333128 @default.
- W3177139733 cites W2592926901 @default.
- W3177139733 cites W2757497802 @default.
- W3177139733 cites W2794002618 @default.
- W3177139733 cites W2902776370 @default.
- W3177139733 cites W2902841450 @default.
- W3177139733 cites W2905879491 @default.
- W3177139733 cites W2968004612 @default.
- W3177139733 cites W3037159450 @default.
- W3177139733 cites W4240072332 @default.
- W3177139733 cites W43444967 @default.
- W3177139733 cites W577782419 @default.
- W3177139733 doi "https://doi.org/10.1016/j.addma.2021.102138" @default.
- W3177139733 hasPublicationYear "2021" @default.
- W3177139733 type Work @default.
- W3177139733 sameAs 3177139733 @default.
- W3177139733 citedByCount "2" @default.
- W3177139733 countsByYear W31771397332021 @default.
- W3177139733 countsByYear W31771397332023 @default.
- W3177139733 crossrefType "journal-article" @default.
- W3177139733 hasAuthorship W3177139733A5048003647 @default.
- W3177139733 hasAuthorship W3177139733A5059293300 @default.
- W3177139733 hasAuthorship W3177139733A5076591183 @default.
- W3177139733 hasAuthorship W3177139733A5081473549 @default.
- W3177139733 hasConcept C120665830 @default.
- W3177139733 hasConcept C121332964 @default.
- W3177139733 hasConcept C153385146 @default.
- W3177139733 hasConcept C157909335 @default.
- W3177139733 hasConcept C159985019 @default.
- W3177139733 hasConcept C163651212 @default.
- W3177139733 hasConcept C168068576 @default.
- W3177139733 hasConcept C192562407 @default.
- W3177139733 hasConcept C32993116 @default.
- W3177139733 hasConcept C33390570 @default.
- W3177139733 hasConcept C49040817 @default.
- W3177139733 hasConcept C520434653 @default.
- W3177139733 hasConcept C62520636 @default.
- W3177139733 hasConcept C72293138 @default.
- W3177139733 hasConceptScore W3177139733C120665830 @default.
- W3177139733 hasConceptScore W3177139733C121332964 @default.
- W3177139733 hasConceptScore W3177139733C153385146 @default.
- W3177139733 hasConceptScore W3177139733C157909335 @default.
- W3177139733 hasConceptScore W3177139733C159985019 @default.
- W3177139733 hasConceptScore W3177139733C163651212 @default.
- W3177139733 hasConceptScore W3177139733C168068576 @default.
- W3177139733 hasConceptScore W3177139733C192562407 @default.
- W3177139733 hasConceptScore W3177139733C32993116 @default.
- W3177139733 hasConceptScore W3177139733C33390570 @default.
- W3177139733 hasConceptScore W3177139733C49040817 @default.
- W3177139733 hasConceptScore W3177139733C520434653 @default.
- W3177139733 hasConceptScore W3177139733C62520636 @default.
- W3177139733 hasConceptScore W3177139733C72293138 @default.
- W3177139733 hasFunder F4320337407 @default.
- W3177139733 hasLocation W31771397331 @default.
- W3177139733 hasOpenAccess W3177139733 @default.
- W3177139733 hasPrimaryLocation W31771397331 @default.
- W3177139733 hasRelatedWork W1893334860 @default.
- W3177139733 hasRelatedWork W2076260844 @default.
- W3177139733 hasRelatedWork W2172990930 @default.
- W3177139733 hasRelatedWork W2363156156 @default.
- W3177139733 hasRelatedWork W2507265215 @default.
- W3177139733 hasRelatedWork W2595681654 @default.
- W3177139733 hasRelatedWork W2990895261 @default.
- W3177139733 hasRelatedWork W3173287542 @default.
- W3177139733 hasRelatedWork W4281729445 @default.
- W3177139733 hasRelatedWork W4312393858 @default.
- W3177139733 hasVolume "46" @default.
- W3177139733 isParatext "false" @default.
- W3177139733 isRetracted "false" @default.
- W3177139733 magId "3177139733" @default.
- W3177139733 workType "article" @default.