3D Printer Thermal Runaway Fires: Difference between revisions

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=Basics=
=Basics=
*A possibility in FDM 3D Priners, where a short, or a broken thermistor allows for a low or absent value for the heat probe to enter the controller
*A possibility in FDM 3D Printers, where a short, or a broken thermistor allows for a low or absent value for the heat probe to enter the controller
*If Improperly Designed this will cause the heat to continually rise, with essentially no stopping point (Untill the device breaks itself one way or another)
*If Improperly Designed this will cause the heat to continually rise, with essentially no stopping point (Until the device breaks itself one way or another)
*If not stopped this often causes fires
*If not stopped this often causes fires
*This can destroy the device, or the entire facility depending on the precautions taken
*This can destroy the device, or the entire facility depending on the precautions taken
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*Quality Soldering etc
*Quality Soldering etc
*Proper Code (Error Detection and Auto Shutoff)
*Proper Code (Error Detection and Auto Shutoff)
*Fire Extinguiser Systems (Either a [[Self Contained Fire Supression System]] or a [[Automatic Fire Extinguisher Water Sprinkler]] System )
*Fire Extinguisher Systems (Either a [[Self Contained Fire Suppression System]] or a [[Automatic Fire Extinguisher Water Sprinkler]] System )


=Internal Links=
=Internal Links=

Revision as of 19:34, 9 January 2022

Basics

  • A possibility in FDM 3D Printers, where a short, or a broken thermistor allows for a low or absent value for the heat probe to enter the controller
  • If Improperly Designed this will cause the heat to continually rise, with essentially no stopping point (Until the device breaks itself one way or another)
  • If not stopped this often causes fires
  • This can destroy the device, or the entire facility depending on the precautions taken

Solutions

Internal Links

External Links