PDF

A Detail-Preserving Multi-Scale Cascaded Network for Infrared Rotary Kiln Shell Temperature Recognition and Refractory Lining Assessment

Jie Li, Jianxin He

2026Englishrotary kilninfrared thermographytemperature monitoringimage segmentationdeep learningrefractory lining

Abstract

Language:

Rotary kiln shell temperature monitoring is essential for metallic shell protection and refractory lining maintenance in high-temperature industrial processes, while smoke, dust, thermal diffusion and non-kiln heat sources make valid shell temperature extraction difficult. This study develops a multi-scale cascaded network with low-resolution space-to-depth downsampling (MSC-LSTD) for infrared kiln shell segmentation and temperature recognition. Global infrared thermal images and local laser temperature measurements are used to construct a calibrated rotary kiln infrared dataset, and predicted kiln shell masks are mapped to temperature matrices for valid shell temperature analysis. MSC-LSTD achieves 99.82% aAcc, 99.14% mAcc and 97.03% mIoU on the rotary kiln infrared dataset, showing robust segmentation performance under complex thermal interference. The proposed framework provides a practical image-based solution for kiln shell overheating warning and refractory lining degradation assessment.

Download

Cite This Work

@article{3679ff86-e1d8-48c1-a7aa-ba59497635d6,
  title={A Detail-Preserving Multi-Scale Cascaded Network for Infrared Rotary Kiln Shell Temperature Recognition and Refractory Lining Assessment},
  author={Jie Li and Jianxin He},
  year={2026},
  language={English}
}
TY  - JOUR
TI  - A Detail-Preserving Multi-Scale Cascaded Network for Infrared Rotary Kiln Shell Temperature Recognition and Refractory Lining Assessment
AU  - Jie Li
AU  - Jianxin He
PY  - 2026
LA  - English
ER  -

Similar Items

Artificial Intelligence Approach for Waste-Printed Circuit Board Recycling: A Systematic Review

Muhammad Mohsin, Stefano Rovetta

The rapid advancement of technology has led to a substantial increase in Waste Electrical and Electronic Equipment (WEEE), which poses significant env

2025EnglishPDF

An Objective Metallographic Analysis Approach Based on Advanced Image Processing Techniques

Xabier Sarrionandia, Javier Nieves

Metallographic analyses of nodular iron casting methods are based on visual comparisons according to measuring standards. Specifically, the microstruc

2023EnglishPDF

Advanced Methods for Kiln-Shell Monitoring to Optimize the Waelz Process for Zinc Recycling

Markus Vogelbacher, Sina Keller

The recycling of zinc in the Waelz process is an important part of the efficient use of resources in the steel processing cycle. The pyro-metallurgica

2021EnglishPDF

Waste-on-Waste Roasting of Copper Slag with Flotation Tailings for Selective Recovery of Cu, Ni, and Co

Bobur Gayratov, Bekhzod Gayratov

Copper smelter slag represents a significant secondary resource of critical metals, while flotation tailings serve as an abundant sulfur-bearing waste

2026EnglishPDF

Effect of Austempering Processes on the Tensile Properties and the Work-Hardening Behavior of Austempered Bainitic Steels Below the Martensite Start Temperature

Kun Wang, Feng Hu

The tensile properties and work-hardening behavior of austempered bainitic steels below martensite start temperature (Ms) were investigated and compar

2023EnglishPDF

Effect of Tempering Time on the Microstructure and Properties of Martensitic Stainless Steel

Wei Jiang, Dong Wu

Martensitic stainless steels (MSSs) have been widely used in the manufacture of turbine blades, surgical instruments, and cutting tools because of the

2024EnglishPDF