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Impact Bed
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Real-Life Product Showcase
Impact Bed
The impact bed replaces traditional impact rollers and is installed under the belt loading chute of bulk material handling systems. By utilizing a combination of a high-elastic, long-life UHMWPE (Ultra-High Molecular Weight Polyethylene) friction layer and a natural high-elastic damping energy-absorbing rubber, it perfectly absorbs the destructive kinetic energy generated by the free-fall impact of heavy ore blocks.
The premium Xieli heavy-duty Impact Bed (Model: XLHC) is purpose-engineered to survive extreme industrial environments. Primarily deployed in large-scale belt conveying systems across mining, steel metallurgy, port terminals, and power stations, this machinery guarantees maximum operations protection. Fully compliant with state-level flameproof and explosion-proof requirements, it operates securely with structural integrity under heavy debris and moisture overload.
Technical Specifications MATRIX
| Parameter | Value |
|---|---|
| Material | UHMW-PE (Ultra-High Molecular Weight Polyethylene) board |
| Tensile Strength | ≥ 220kgf/cm² (per ASTM D638) |
| Impact Strength | ≥ 100kgf/cm² (per ASTM D256) |
| Wear Resistance | ≤ 6mg (per ASTM D4060-01, 1000g, cs-17, 1000 cycles) |
| Coefficient of Friction | ≤ 0.3 (per ASTM D1894-01, tested against conveyor belt) |
| Peel Strength | UHMW-PE to Rubber: 50kgf/25mm (per ASTM D903) |
| Rubber to Base Channel Adhesion | Rubber to base channel: 60kgf/25mm (per ASTM D903) |
Customizable According to Technical Agreements
Overall Dimensional Drawings



Industrial Real-world Application Gallery / Real-world Field Operation Showcase
COAL HARBORS & METALLURGICAL SITES
Xieli equipment serves thousands of mining terminals in China and globally. The following are real Conveyor Belt site operation scenes where equipment runs stably in high-dust, high-impact, and high-humidity environments.
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Engineering Insights & Technical Guides
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Conveyor Belt Blanking Point Impact Protection: Impact Bed Structural Principle, ASTM Material Matrix, and Selection Standards
Addressing belt damage and material spillage at conveyor drop zones, this article analyzes the energy absorption mechanism of impact beds combining low-friction UHMW-PE surfaces with highly elastic rubber bodies, providing ASTM material standards and belt width sizing matrices.








