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CCD Full Spectrum Direct Reading Optical Emission Spectrometer For Metal Smelting

Categories Spectrometer Machine
Brand Name: MORITA
Model Number: QR-9
Place of Origin: China
MOQ: 1 PC
Payment Terms: T/T
Supply Ability: 100 pcs per month
Delivery Time: 15 days
Packaging Details: wooden case
Weight: 80 kg
Dimensions: 86 x 66 x 36 cm
Detector Type: CCD
Operating System: Windows 10
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CCD Full Spectrum Direct Reading Optical Emission Spectrometer For Metal Smelting

QR-9 Full Spectrum Direct Reading Optical Emission Spectrometer For Metal Smelting Quality Control


Meta Description:
The QR-9 Full-Spectrum Direct-Reading Optical Emission Spectrometer offers rapid and precise elemental analysis for metal smelting quality control. Featuring spray discharge electrode technology, high-energy pre-ignition, CCD detection, and high-speed data communication across 130–800 nm.


Introduction

The QR-9 Full-Spectrum Direct-Reading Optical Emission Spectrometer (OES) is a high-performance analytical instrument specifically designed for metal smelting quality control. In modern metallurgical operations, accurate elemental composition analysis is critical for ensuring product consistency, safety, and regulatory compliance. The QR-9 spectrometer provides fast, precise, and reliable measurements for major and trace elements in metals and alloys, supporting process optimization, quality monitoring, and research and development.

Equipped with spray discharge electrode technology, high-energy pre-ignition, and high-speed data communication, the QR-9 delivers reliable results across a wavelength range of 130–800 nm. Its design is optimized for industrial workflows, enabling rapid detection in under 30 seconds, minimizing downtime, and enhancing productivity.


Product Features

1. Spray Discharge Electrode Technology

The spray discharge electrode ensures stable excitation of the sample, enabling consistent and reproducible measurement of elemental concentrations. This technology improves sensitivity and reliability, particularly for trace elements such as carbon, sulfur, and phosphorus.

2. High-Energy Pre-Ignition

The high-energy pre-ignition system ensures complete atomization of the sample, reducing measurement errors and enhancing accuracy. It is particularly effective for complex alloys, where precise detection of minor elements is essential.

3. High-Speed Data Communication

The QR-9 supports real-time data transfer to laboratory information management systems (LIMS) or production databases. High-speed communication facilitates rapid reporting, process optimization, and integration with industrial digital systems.

4. Wide Wavelength Range

With a detection range of 130–800 nm, the QR-9 can measure both major and trace elements, making it highly versatile for various metals and alloys used in smelting and downstream processing.

5. High-Resolution CCD Detector

The multi-detector CCD system provides full-spectrum analysis with high resolution. This allows for simultaneous detection of multiple elements, reducing analysis time while maintaining accuracy.

6. Vacuum Optical Chamber

A vacuum optical chamber ensures clean and stable measurement conditions, minimizes optical path losses, and protects critical components from contamination, ensuring consistent results and long instrument life.

7. Automatic Calibration

Automatic optical path and spectral line calibration simplify operation and reduce human error. The QR-9 comes with prefabricated work curves, enabling immediate use after installation.


Key Advantages

  • Rapid Analysis – Complete elemental analysis in less than 30 seconds.

  • High Accuracy & Sensitivity – Reliable detection of both major and trace elements.

  • Enhanced Stability – Spray discharge electrodes and high-energy pre-ignition provide consistent results.

  • Real-Time Data Integration – High-speed communication facilitates immediate reporting.

  • Versatility – Suitable for all types of metals and alloys used in smelting operations.

  • User-Friendly – Automatic calibration and prefabricated work curves reduce setup time.

  • Industrial Reliability – Designed to operate in demanding smelting environments.


Technical Specifications

ParameterSpecification
Instrument TypeFull-Spectrum Direct-Reading OES
Detection TimeRapid, typically <30 seconds
Wavelength Range130–800 nm
Electrode TechnologySpray discharge electrode
Excitation MethodHigh-energy pre-ignition
DetectorHigh-resolution CCD, Multi-detector
Data CommunicationHigh-speed digital interface
Optical ChamberVacuum design
Applicable MaterialsMetals and alloys
Working Temperature10℃ – 35℃
Working Moisture20% – 80%
Power SupplyAC220V/50Hz (customizable)
Dimensions860 mm (L) × 660 mm (W) × 360 mm (H)
Weight~80 kg

Applications in Metal Smelting

  1. Quality Monitoring – Ensures metals and alloys meet stringent compositional standards for safety and performance.

  2. Process Control – Tracks elemental changes during smelting, optimizing operational parameters and reducing waste.

  3. Material Classification – Accurately identifies and grades metals and alloys for downstream processes.

  4. Research & Development – Supports alloy development, metallurgical studies, and innovation in smelting processes.

  5. Industrial Laboratory Analysis – Provides rapid, reliable testing for high-volume production facilities.


Core Keywords

Full-Spectrum Direct-Reading Optical Emission Spectrometer, QR-9 OES, Metal Smelting Quality Control, Spray Discharge Electrode Spectrometer, High-Energy Pre-Ignition, CCD Optical Emission Spectrometer, High-Speed Data Communication, Alloy and Metal Analysis, Industrial Spectrometer, Wavelength 130–800 nm.


Why Choose QR-9?

The QR-9 spectrometer combines advanced electrode technology, high-energy pre-ignition, and high-speed CCD detection to provide fast, accurate, and reproducible elemental analysis in metal smelting operations. Its automated calibration, vacuum optical chamber, and real-time data communication make it a reliable solution for modern industrial laboratories.

By integrating these technologies, the QR-9 allows smelters to increase production efficiency, reduce downtime, ensure quality compliance, and gain deeper insights into material composition. It is the ideal instrument for quality control, process monitoring, material classification, and R&D applications in the metallurgical industry.



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