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Home News Transforming conveyor efficiency: Tru-Trac EXHD Dynamic Impact Idler Bed

Transforming conveyor efficiency: Tru-Trac EXHD Dynamic Impact Idler Bed

by Guy Woodford
February 5, 2025
in News, Rest of World
Reading Time: 4 mins read
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Built for durability, Tru-Trac’s EXHD Impact Idler Bed tackles the toughest conditions. Image/Tru-Trac

Built for durability, Tru-Trac’s EXHD Impact Idler Bed tackles the toughest conditions. Image/Tru-Trac

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Conveyor belts are crucial components in mining and heavy aggregate handling operations, where efficiency and reliability are paramount. However, these systems often encounter significant challenges, particularly in the loading zones where the impact of falling materials can cause severe belt damage. Tru-Trac’s EXHD Dynamic Impact Idler Bed offers a robust solution designed to protect belts and enhance system reliability in the most demanding applications.

COO of Tru-Trac, Shaun Blumberg unpacks the design, benefits and broader impact control capabilities of Tru-Trac’s innovative solution.

Tru-Trac’s EXHD Dynamic Impact Idler Bed provides a durable solution to protect belts and improve system reliability in demanding conditions. Image/Tru-Trac

Blumberg says the challenge of managing impact control in loading zones is a significant one for all materials handling operations. “These transfer zones are the points where materials are introduced onto the belt from chutes, often from considerable heights ranging from 2 metres up to 10 metres. The force of this impact can lead to various issues, including belt damage, material spillage and belt misalignment. Insufficient support and impact control ultimately results in frequent maintenance needs, increased downtime and higher operational costs.”

“Traditional impact rollers, while commonly used due to their low cost, often provide inadequate shock absorption, particularly in high-drop applications,” he continues. “Furthermore, poorly designed chutes and under-specified impact beds can worsen the problem.”

It is a known fact that improperly engineered loading zones that fail to distribute material evenly or align with the belt’s trajectory create uneven wear, and this significantly increases the likelihood of belt damage.
According to Blumberg, Tru-Trac’s EXHD Dynamic Impact Idler Bed represents a unique and significant advancement in addressing these issues. Specifically engineered for applications with drop heights between 2 metres and 10 metres, this system is designed to absorb heavy aggregate impacts safely, preventing belt damage and extending the belt’s life.

Tru-Trac’s EXHD Dynamic Impact Idler Bed offers a robust solution designed to protect belts. Image/Tru-Trac

The Tru-Trac EXHD Dynamic Impact Idler Bed combines dynamically adjusting impact idlers with robust shock-absorbing springs to provide superior impact control.

The impact idlers in the Tru-Trac EXHD system oscillate to adjust dynamically to the load, significantly reducing the force transmitted to the belt. This movement allows the system to absorb and dissipate impact energy more effectively than static systems. The heavy duty springs enhance this absorption, capable of handling loads up to 11.4 tons, working in tandem with the idlers to manage high impact conditions effectively. This advanced design ensures minimal stress on the belt, preventing damage and enhancing durability.

Blumberg says that Tru-Trac offers a range of impact control solutions tailored to specific application requirements ensuring that conveyor systems are protected from various types of impact forces. This includes standard impact beds, impact rollers and slider frames; all of which are engineered for easy installation and minimal maintenance.

Tru-Trac’s capabilities also extend to addressing dust and spillage around the impact or loading zone. “Proper dust and spillage control is essential for maintaining a clean and efficient conveyor environment, and our solutions help to minimise material loss and prevent the accumulation of debris, which can lead to additional wear and operational inefficiencies,” he says.

The Tru-Trac EXHD Dynamic Impact Idler Bed combines dynamically adjusting impact idlers with robust shock-absorbing springs to provide superior impact control. Image/Tru-Trac

A recent case study from a copper mine in the DRC highlights the effectiveness of the Tru-Trac EXHD Dynamic Impact Idler Bed. The mine faced extreme challenges with its conveyor system, where high impact loads in the loading zone frequently caused belt damage, leading to significant downtime and maintenance costs. The existing impact system, which used traditional rollers, proved inadequate for handling the high drop heights and abrasive materials.

“Our local team conducted a comprehensive site assessment, collecting the necessary data and analysing various factors such as material properties, drop heights, existing system configurations and operational challenges,” Blumberg says. “This detailed evaluation included observing the wear patterns on the existing conveyor belt, identifying the sources and magnitude of impact forces and assessing the overall condition of the loading zones.” “By gathering the necessary information first-hand and gaining a thorough understanding of the specific conditions and requirements, our engineering team could offer a solution that would effectively address the unique challenges faced by the site, and this saw the installation of our Tru-Trac EXHD Dynamic Impact Idler Bed,” he says.

In this application, the system’s oscillating idlers and heavy-duty springs work in tandem to absorb and disperse the severe impacts. The oscillating idlers dynamically adjust to the load, allowing them to move with the material as it falls onto the belt. This dynamic adjustment significantly reduces the direct force transmitted to the belt, preventing sudden shocks that can cause damage. The heavy-duty springs complement this action by providing robust shock absorption, further minimising stress on the belt.

The impact idlers in the Tru-Trac EXHD system oscillate to adjust dynamically to the load, significantly reducing the force transmitted to the belt. Image/Tru-Trac

“Together, these components ensure that the belt remains aligned, preventing issues such as misalignment, tearing and edge wear. By maintaining proper alignment and reducing impact-related damage, the system increases the belt’s longevity and reliability and has ultimately led to reduced maintenance costs and increased uptime at this customer,” Blumberg says.It is apparent that the broader impact of poorly designed loading zones cannot be underestimated. Inadequate impact protection can lead to increased spillage, belt misalignment and structural damage to the conveyor system. Misalignment causes the belt to drift, leading to additional wear on the edges and other components, which, in turn, increases maintenance requirements and potential operational downtime.

Tags: Ancillary EquipmentQuarry Products

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