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Industrial · SKU: AA7253744
Polyurethane Vibration Isolator, 220 lbs Load, 0.98 in Deflection, M14 Thread, Pkg Qty 2
This polyurethane vibration isolator provides effective shock absorption for industrial equipment, featuring a robust 220 lbs load capacity and 0. 98 inches of vertical deflection.
Volume Pricing - Buy More, Save More
| Quantity | Discount | Unit Price |
|---|---|---|
| 1 - 10 | - | $59.99 |
| 11 - 50 | -5% | $56.99 |
| 51+ | -10% | $53.99 |
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Quick Answer
How Buyers Should Evaluate Polyurethane Vibration Isolator, 220 lbs Load, 0.98 in Deflection, M14 Thread, Pkg Qty 2
This polyurethane vibration isolator provides effective shock absorption for industrial equipment, featuring a robust 220 lbs load capacity and 0. 98 inches of vertical deflection. Use the quick checks below to decide whether direct checkout is enough or whether an RFQ will reduce sourcing risk.
Quick Spec Check
- Material: Polyurethane
- Finish: None
- Size: One Size
Purchase Details
- Online price starts at $59.99.
- Minimum order quantity: 1 unit.
- Pack quantity: 2 / Each.
- Lead time: 2-3 weeks.
Use RFQ When
- Use RFQ when you need bulk pricing, alternate pack sizes, or multi-SKU comparison.
- Request support when fit, material, or substitute selection needs confirmation before order.
- Escalate to sourcing when timeline, freight, or stocking strategy matters more than one-off checkout speed.
Technical Specifications
| Material | Polyurethane |
| Finish | None |
| Size | One Size |
| Load Capacity | 220 lbs |
| Deflection | 0.98 in |
| Thread Size | M14 |
Full Description
Application context, construction notes, and selection details for evaluating fit before purchase or repeat ordering.
Overview
This polyurethane vibration isolator is engineered to deliver superior shock absorption and stability for a wide range of industrial machinery. Designed to mitigate the transmission of noise and harmful vibrations, this component protects sensitive equipment from dynamic loads while extending operational lifespan. The unit features a robust construction capable of supporting significant weight with controlled vertical movement, making it an ideal solution for manufacturing floors, processing plants, and heavy equipment installations where precision and durability are paramount.
Key Features
High-load capacity rated at 220 lbs per unit Vertical deflection of 0.98 inches for effective energy dissipation Constructed from durable polyurethane for long-term resilience M14 threaded mounting interface for secure attachment Compact design without an impact head for space-constrained applications Sold in packages of two units for paired installation needs Unfinished surface allows for versatile integration into various assemblies
Specifications
Material: Polyurethane Finish: None Size Classification: One Size Maximum Load Capacity: 220 lbs Vertical Deflection: 0.98 in Thread Interface: M14 (Metric thread, may require adapter for standard Imperial bolts) Package Quantity: 2 units
Applications
HVAC systems and air handling units Industrial pumps and compressors Conveyor belt drive motors Packaging and labeling machinery Generators and power supply units Precision optical or measurement equipment requiring isolation from floor vibrations Technical Notes While the primary thread specification is M14, users integrating this isolator into systems utilizing standard Imperial fasteners should verify compatibility or employ appropriate thread converters. The polyurethane compound offers excellent resistance to wear and environmental degradation, ensuring consistent performance even in demanding conditions. The specific deflection rating of 0.98 inches indicates the unit is optimized for equipment operating within a specific frequency range, providing optimal isolation efficiency when the supported mass aligns with the 220 lb load rating. Proper installation requires ensuring the mounting surface is flat and clean to prevent uneven stress distribution on the isolator body. This product serves as a critical component in maintaining structural integrity and reducing maintenance costs associated with vibration-induced fatigue.