Two roller guide units for long rolling mills, featuring smart sensors and remote adjustment for precise operation

Long Rolling

Advanced Roller Guides for Long Rolling Mills

Smarter Guiding for Rolling Mill Operations

Solutions

Automation

Long Rolling

Maximizing Safety, Efficiency, and Reliability in Long Rolling Mills with Advanced Roller Guides

Advanced Roller Guides from Primetals Technologies bring together the proven legacy of Morgan and Ashlow technology with modern smart-sensing capabilities. Rugged design and integrated intelligence deliver precise guide control, faster adjustments, and actionable insights that make long rolling mill operations safer, more efficient, and more reliable. As an automation system for long rolling mills, they replace unsafe manual practices with real-time monitoring and remote adjustments, these guides reduce costs, minimize downtime, and increase throughput. Available in multiple sizes, they fit standard mill stands and integrate seamlessly with plantwide digital platforms.

Many mills still depend on manual methods like calipers or burning wood to check section height and dimensions. These practices are unsafe and error-prone, leading to cobbles, unplanned downtime, premature wear, and inconsistent product quality. Without continuous feedback or real-time monitoring, both performance and safety suffer.

Advanced Roller Guides replace unsafe, manual practices with a smarter, data-driven approach. Continuous section height measurement and roller alignment improve dimensional accuracy and guide performance, while internal condition monitoring delivers advanced analytics that power predictive diagnostics—including detection of RPM fluctuations and impact severity. These insights extend component life, reduce unplanned downtime, and stabilize rolling consistency. Remote symmetrical roller adjustments enable hands-free operation, improving both safety and efficiency. Housed in a robust stainless-steel control module, the guides operate reliably in harsh mill environments and can integrate seamlessly with plantwide digital platforms or function as a standalone solution.

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Explore how Advanced Roller Guides transform your rolling process.

Key Features of Advanced Roller Guides

  • Wireless data communication: enables remote monitoring and adjustments to reduce operator exposure
  • Remote symmetrical roller adjustment: provides hands-free, precise guide positioning while keeping Wireless Data operators safe
  • Continuous section height measurement: delivers real-time monitoring pf product dimensions for consistent output
  • Roller alignment monitoring: ensures stable entry control and accurate rolling
  • Bearing and roller condition monitoring: detects wear early to prevent failures and unplanned downtime
  • Internal diagnostics and predictive analysis: tracks performance trends for predictive failure detection and proactive maintenance
  • Robust, enclosed control module: protects electronics in harsh mill environments, ensuring long-term reliability
  • Standard mounting compatibility: enables seamless integration without restbar modifications, minimizing installation disruption
  • Standalone or integrated operation: works independently or connects with plantwide digital platforms for flexible deployment
  • Modular design: provides a smart-ready upgrade path, supporting phased integration with minimal disruption
  • User-friendly design: simplifies setup, training, and operation for faster implementation and reduced risk of operator error

Main Benefits of the Advanced Roller Guides

  • Enhanced safety: remote operation and monitoring reduce exposure to hazardous mill conditions
  • Higher productivity: faster adjustments, continuous monitoring, and predictive diagnostics increase uptime and throughput
  • Improved product quality: accurate alignment, continuous section height measurement, and early wear detection reduce scrap, cobbles, and second-quality product
  • Greater efficiency: optimized setups and maintenance planning streamline operations and reduce downtime
  • Lower operational costs: extended component life, optimized maintenance, and reduced manual intervention lower expenses

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