High-Efficiency
PSL
Fully Balanced
Vibrating Conveyor
Discover UHM’s PSL Fully Balanced Vibrating Conveyor. Features a two-mass resonant system for indoor installations, minimal dynamic load, and low noise on steel structures.

ADVANCED TWO-MASS RESONANCE TECHNOLOGY
PSL Fully Balanced
Vibrating Conveyor
The working principle of the PSL Fully Balanced Vibrating Conveyor is based on a new generation of balanced technology, making it an ideal choice for indoor vibrating conveyor applications. Due to its precise dynamic balancing, it can be seamlessly integrated into multi-story indoor facilities without compromising architectural stability.
While common Vibrating equipment causes disruptive tremors in enclosed spaces, the PSL model ensures smooth, low-noise operation suitable for indoor environments, including steel-structured mezzanines and upper-floor production lines. UHM PSL conveyors stand out in indoor material handling due to their vibration-free performance and environmental harmony.
Note: This equipment is specifically tailor-made for modern indoor factories with strict anti-vibration requirements for the installation environment.




How Does It Work?
The working principle of the PSL Fully Balanced Vibrating Conveyor involves a mass-balanced two-mass resonant system composed of the conveying trough and a balance body. During the process, the two masses are connected via resonant helical springs and elastic guide linkages.
While common equipment struggles to counteract inertial forces during operation, the PSL utilizes an exciter to drive the trough and balance body into resonance, causing the generated inertial vibration forces to essentially cancel each other out within the system. Additionally, the base frame is connected to the foundation through a secondary spring isolation system, further eliminating unbalanced vibrations caused by material flow fluctuations.
The PSL conveyor stands out in operational stability through its structural innovation, dual-stage vibration isolation technology, and precision balancing performance.
Note: This two-mass structure ensures that even under fluctuating material loads, the dynamic load exerted on the installation foundation remains negligible.

What Are Its Uses?
The use of the PSL Fully Balanced Vibrating Conveyor is primarily focused on long-distance material transport in vibration-sensitive environments. In the production line, it can function as a high-efficiency single-deck conveyor or be converted into a dual-deck conveying system.
While common conveying equipment is limited in functionality, the PSL conveyor can utilize the balance body as a second conveying trough, achieving simultaneous dual-deck transport without increasing the footprint. This design produces the combined utility of two conveyors within a limited workshop layout.
UHM PSL conveyors stand out in multi-functional material handling due to their space optimization solutions, multi-layer conveying capacity, and high-efficiency integration.
Note: The equipment is capable of meeting simultaneous transport needs for different materials in the same or opposite directions across different levels.
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FAQ & VOTERS
Conveying Characteristics
The conveying characteristic of the PSL Fully Balanced Vibrating Conveyor is its ability to perform precise material grading while completing material displacement. During the conveying process, users can install screens within the trough according to process requirements.
While common material conveying requires additional sorting equipment, the PSL conveyor utilizes its stable vibration frequency to achieve online material grading concurrently with transport. This integrated design greatly simplifies production line configurations and enhances overall operational efficiency.
The PSL conveyor stands out in integrated production line applications due to its multi-functional integration, grading accuracy, and smooth material flow.
Note: In the video, materials separate rapidly through the grading ports while moving forward; the conveying and grading processes are precise and seamless.
What Are the Advantages?
The advantage of the PSL Fully Balanced Vibrating Conveyor lies in its exceptional low-noise performance and unparalleled vibration reduction. When operating on high-floor levels or steel structures, it exerts minimal impact on the architectural integrity.
While common vibrating equipment is often restricted by installation location, the PSL conveyor is suitable for long-distance and wide-trough requirements, demonstrating superior adaptability especially when installed on floor slabs or steel supports. The dynamic load transmitted to the foundation is extremely small, effectively extending the lifespan of the building.
UHM PSL conveyors stand out in high-end manufacturing applications due to their structural durability, extremely low maintenance costs, and eco-friendly performance.
Note: Compared to traditional models, the vibration reduction advantage of the PSL allows it to be installed in sensitive areas where conventional Vibrating equipment cannot function.
Applications
The application scenarios for the PSL Fully Balanced Vibrating Conveyor cover industries such as food, chemicals, and building materials that have high standards for vibration control. In the actual conveying process, it serves as a powerful tool to resolve resonance issues in factory buildings.
While common industrial sites often suffer from support fatigue caused by equipment vibration, the PSL conveyor, through its fully balanced dynamic design, perfectly adapts to automated lines requiring cross-floor, long-distance, and low-noise operation. It is not just a conveying tool, but a guarantee for production environment protection.
UHM’s industry-leading technical expertise, the high-precision performance of the PSL series, and its excellent system compatibility make it stand out in complex automated integration projects.
Note: In the video, pre-painted sensitive materials slide smoothly through the PSL conveying trough; the trough and balance body resonate perfectly, leaving no marks or scratches on the surface.