Metales y materiales extraídos Notas de aplicación
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Determination of Sulfur and Carbon in Lithium Iron Phosphate Battery Materials
Carbon determination in Lithium Iron Phosphate is important as the Carbon content directly impacts the performance of this battery material. In addition, emerging battery technologies can take advantage of improved Sulfur utilization when LiFePO4 is used as an additive, making Sulfur determination in the base material an important quality control parameter. |
CX300 Sectioning for Weld Evaluation
For numerous applications, it is necessary to measure the quality of a weld, and there are several methods for doing so. Making a sacrificial test weld and using a microscope to measure the weld's critical areas is a popular technique. This procedure may require a lot of time and resources. However, by skipping the mounting and polishing stages, the work can be kept more efficient. Bypassing those phases in the metallographic sample preparation procedure, this "Cut and Etch" technique yields accurate readings. |
Determination of Carbon and Sulfur in Lithium Iron Phosphate Battery Materials
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Compositional Depth Profile Analysis of Galvanized Steel
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Bulk Analysis of Cast Iron
Atomic Emission Spectroscopy can determine elemental content of solid conductive materials. The GDS900 is designed to analyze ferrous and nonferrous metals, including cast iron. |
Sulfur in Coal and Coke using S832
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Oxygen in Lead and Lead Alloys using TC600
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Hydrogen in Steel and Iron using H836EN
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GDS900 Steel Immersion Sampling Probe
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GDS900 High-Speed and Cold-Working Steel
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Determination of Moisture and Ash in Graphite
Graphite is a common, stable form of carbon, common in daily life and popular in electronics manufacturing. Thermogravimetric analysis can help determine purity of graphite samples. |
Hydrogen Reactive-Refractory Metals using H836EN
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Hydrogen Reactive-Refractory Metals using H836
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Oxygen and Nitrogen in Ferroalloys using ON836
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Oxygen and Nitrogen in Ferroalloys using ON736
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Cement Clinker Analysis
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Refractory Metals using ONH836
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Oxygen in Aluminum and Aluminum Alloys using TC500
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Oxygen and Hydrogen in Copper and Copper Alloys using TCH600-ROH600
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Oxygen in Aluminum and Aluminum Alloys using TC400
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