Polyurethane shock absorber pads_SupplyPro Co., Ltd._Shenzhen Yize Automation Equipment Co., Ltd.
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Home > SupplyPro Co., Ltd. > Polyurethane shock absorber pads
Polyurethane shock absorber pads
品牌: Yi Ze
Quality: Quality Consistent
Service: Service Priority
Experience: Experienced
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最后更新: 2025-07-02 14:46
 
详细Info

Polyurethane vibration isolators are vibration and shock-absorbing components made using the excellent properties of polyurethane (PU) elastomers, widely used in industrial equipment, transportation vehicles, and building structures to reduce vibration transmission, lower noise, and protect equipment. Below is a detailed introduction to polyurethane vibration isolators:


Polyurethane material characteristics

  • High elasticity and damping propertiesPolyurethane combines the elasticity of rubber with the strength of plastic, effectively absorbing vibration energy and reducing resonance.

  • Oil and corrosion resistantPolyurethane exhibits superior resistance to oils, solvents, and ozone compared to standard rubber, making it suitable for harsh environments.

  • Wide hardness rangeHardness can be adjusted from Shore A 20 to D 80 by modifying the formula, catering to various load requirements.

  • Weather-resistantStable performance between -40℃ and 80℃; some special formulations can accommodate higher or lower temperatures.

  • Anti-agingLong-lasting performance with slow degradation over time, offering extended lifespan.


2. Main Application Scenarios

  • Industrial EquipmentVibration isolation for heavy equipment such as compressors, pumps, generators, and stamping machines.

  • TransportationAutomotive suspension systems, rail transit suspension, engine mounts, and vibration dampening for marine equipment.

  • Construction IndustryIsolation pads for buildings, pipe supports, and vibration reduction for outdoor AC units.

  • Precision InstrumentsEquipment sensitive to vibration, such as electronic devices and optical platforms.



3. Product Advantages

  • Customized Design: Shapes, hardness, and sizes can be adjusted according to load, frequency, and environmental requirements.

  • Easy installationTypically block-shaped, plate-shaped, or cylindrical, they are directly placed between the equipment and the foundation.

  • Economical and efficientCost is lower than metal spring vibration isolators, and maintenance is simple.

  • Eco-friendly and non-toxicNo heavy metals added, some models are recyclable.


4. Selection Key Points

  • Load RequirementsSelect vibration isolators with appropriate load-bearing capacity based on the equipment's weight to avoid overloading or insufficient effect.

  • Frequency MatchSelect products with damping characteristics that match the equipment vibration frequency (such as low-frequency or high-frequency).

  • Environmental AdaptabilityFor high-temperature, humid, or chemically corrosive environments, special formula polyurethane should be selected.

  • Static and Dynamic PerformanceStatic compression volume and dynamic stiffness ratio (dynamic stiffness/static stiffness) are key parameters.


5. Common Types

  • Flat PanelSimple and versatile, suitable for equipment bases or pipe supports.

  • Ribbed/ConvexEnhanced lateral stability, suitable for horizontal vibration scenarios.

  • CompositeCombined with metal plates and fiber materials, enhances load-bearing or sound insulation properties.

  • Micro-porous: Features closed-cell structure, providing both vibration isolation and soundproofing.


6. Compare with other vibration isolation materials

FeaturesPolyurethane vibration isolating padsRubber Vibration Isolation PadsMetal Spring
Damping performancePlease provide the Chinese content to be translated.GoodPoor (requires damping)
Carrying capacityMedium to HighLow to MediumExtremely
Oil resistanceOptimalDiscrepancyYoo
High-frequency Vibration DampingPlease provide the Chinese content to be translated.GoodDiscrepancy
CostPlease provide the Chinese content to be translated.LowHigh


7. Important Notes

  • Avoid overloadingLong-term overloading can lead to deformation and loss of elasticity.

  • Regular inspectionsEspecially in high-temperature or chemical environments, inspect for aging and cracking conditions.

  • Install flatEnsure even distribution of force on the contact surface to avoid localized stress concentration.


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