Oxygen and Nitrogen in Nitride Material

Applications | 2003 | LECOInstrumentation
Elemental Analysis
Industries
Materials Testing, Energy & Chemicals
Manufacturer
LECO

Summary

Importance of the Topic


Accurate determination of oxygen and nitrogen in nitride ceramics is critical for ensuring optimal mechanical, thermal and electrical properties. These elements significantly influence the performance and reliability of components used in automotive, aerospace, electronic and industrial applications.

Objectives and Overview


This application note presents a validated inert-gas fusion method for simultaneous quantification of oxygen and nitrogen in silicon nitride and related materials. It describes sample preparation, instrument calibration and key analysis parameters using a LECO TC500/TC600 analyzer.

Methodology and Instrumentation


Samples are weighed (20–50 mg) into folded tin capsules and placed in nickel baskets. A graphite crucible completes the assembly. The analyzer operates in automatic mode with a typical analysis delay of 20 s, outgas/furnace power set at 6200 W (outgas) and 5200 W (analysis), and minimum analysis times of 30 s for oxygen and 60 s for nitrogen. Calibration is performed with NIST 8983 silicon nitride standards. Key parameters include:
  • Outgas cycles: 3
  • Analysis delay comparator: 1.0000
  • Integration delays: 5 s (O) and 15 s (N)
  • Purge time: 15 s
  • Significant digits: 5

Used Instrumentation


  • LECO TC500/TC600 inert-gas fusion analyzer
  • Calibration standard: NIST 8983 silicon nitride
  • Accessories: 782-720 graphite crucible, 782-721 electrode tip, 501-059 tin capsules, 502-344 nickel baskets

Main Results and Discussion


Analysis of NIST 8983 yielded an average of 1.145 % O (±0.007 %) and 40.16 % N (±0.26 %) over multiple runs. Precision is within 0.14 % for oxygen and 1.06 % for nitrogen, demonstrating excellent reproducibility. The automated furnace control and blank correction procedures ensure low detection limits and reliable baseline stability.

Benefits and Practical Applications


This method offers rapid, fully automated analysis with minimal sample handling. It is ideally suited for routine QA/QC in ceramic manufacturing, research laboratories and process development. High precision and accuracy facilitate compliance with industry specifications and support material optimization.

Future Trends and Applications


Advances may include integration of real-time process monitoring, enhanced detection limits through improved sensor technology and coupling with chemometric software for predictive quality control. Miniaturized analyzers and remote operation capabilities could further extend applications in field-based testing.

Conclusion


The described inert-gas fusion technique on the LECO TC500/TC600 platform provides a robust, accurate and reproducible approach for simultaneous determination of oxygen and nitrogen in nitride materials, supporting stringent quality requirements in advanced ceramic applications.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

Downloadable PDF for viewing
 

Similar PDF

Toggle
Oxygen/Nitrogen Determination in Nitrides
® Oxygen/Nitrogen Determination in Nitrides LECO Corporation; Saint Joseph, Michigan USA Instrument: TC600, TCH600 Introduction Sampling and Sample Preparation A representative and uniform sample is required for proper analysis. Powder or granular samples cannot be placed directly into the loading…
Key words
outgas, outgastin, tincapsule, capsulenitrides, nitridespower, powernitrogen, nitrogenoxygen, oxygendelay, delayfurnace, furnaceanalyze, analyzecapsules, capsulescomparator, comparatoranalysis, analysisdisabled, disabledparameters
Determination of Oxygen and Nitrogen in Reactive/Refractory Metals and Their Alloys*
Inorganic Application Note Determination of Oxygen and Nitrogen in Reactive/Refractory Metals and Their Alloys* Approval ASTM E-1409 Oxygen Determination in Titanium and Titanium Alloys ASTM E-1569 Oxygen Determination in Tantalum ASTM E-1937 Nitrogen Determination in Titanium and Titanium Alloys Sample…
Key words
seconds, secondsoutgas, outgasoxygen, oxygenwatts, wattsnitrogen, nitrogencomparator, comparatorparameters, parametersleco, lecofurnace, furnacepower, powerdelay, delayrefractory, refractoryzirconium, zirconiumcarries, carriesaverage
Determination of Oxygen and Nitrogen in Reactive/Refractory Metals and Their Alloys* (TC600)
Inorganic Application Note Determination of Oxygen and Nitrogen in Reactive/Refractory Metals and Their Alloys* Approval ASTM E-1409 Oxygen Determination in Titanium and Titanium Alloys ASTM E-1569 Oxygen Determination in Tantalum ASTM E-1937 Nitrogen Determination in Titanium and Titanium Alloys Sample…
Key words
seconds, secondsoxygen, oxygenoutgas, outgasnitrogen, nitrogenwatts, wattscomparator, comparatorparameters, parametersleco, lecofurnace, furnacepower, powerdelay, delayrefractory, refractorycarbon, carbonzirconium, zirconiumcrucible
Oxygen and Nitrogen Analysis in Calcium Fluoride
Inorganic Application Note Oxygen and Nitrogen Analysis in Calcium Fluoride Sample Preparation Contamination of the sample can cause significant errors in the analytical data, therefore care must be taken to ensure a clean representative sample is analyzed. Accessories 782-720 Crucible,…
Key words
amps, ampsoutgas, outgasoxygen, oxygencomparator, comparatorpower, powernitrogen, nitrogenleco, lecofurnace, furnacechunks, chunksanalysis, analysisparameters, parametersppm, ppmsample, samplecarbon, carbonanalyze
Other projects
GCMS
LCMS
Follow us
FacebookLinkedInYouTube
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike