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Industrial · SKU: AA1499275
Rubber Double-End Stud Vibration Mount 3.94x1.57 in M16 2473 lbs, Pkg Qty 2
This rubber double-end stud vibration mount features a compact 3. 94 x 1.
Volume Pricing - Buy More, Save More
| Quantity | Discount | Unit Price |
|---|---|---|
| 1 - 10 | - | $79.99 |
| 11 - 50 | -5% | $75.99 |
| 51+ | -10% | $71.99 |
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Quick Answer
How Buyers Should Evaluate Rubber Double-End Stud Vibration Mount 3.94x1.57 in M16 2473 lbs, Pkg Qty 2
This rubber double-end stud vibration mount features a compact 3. 94 x 1. Use the quick checks below to decide whether direct checkout is enough or whether an RFQ will reduce sourcing risk.
Quick Spec Check
- Material: Rubber
- Finish: None
- Size: 3.94 in x 1.57 in
Purchase Details
- Online price starts at $79.99.
- 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 | Rubber |
| Finish | None |
| Size | 3.94 in x 1.57 in |
| Load Capacity | 2473 lbs |
| Deflection | 0.31 in |
| Thread Size | M16 |
Full Description
Application context, construction notes, and selection details for evaluating fit before purchase or repeat ordering.
Overview
This heavy-duty vibration isolating mount is engineered to protect sensitive industrial machinery from damaging shock, noise, and structural resonance. Featuring a robust double-end stud design, the unit provides secure attachment points for both the equipment base and the mounting surface. The compact cylindrical profile measures 3.94 inches in height with a diameter of 1.57 inches, making it suitable for installations where space is limited but load requirements are substantial. Constructed from high-grade rubber, this isolator delivers consistent performance without the need for additional surface finishes or coatings, ensuring long-term durability in demanding operational environments.
Key Features
Double-ended threaded studs allow for versatile vertical or horizontal installation configurations Maximum static load capacity of 2,473 lbs supports heavy industrial equipment Vertical deflection of 0.31 inches effectively absorbs shock and reduces transmitted vibration Durable rubber construction resists environmental degradation and maintains elasticity over time No secondary finishing required, reducing installation time and maintenance costs Compact footprint fits within tight machinery enclosures and mounting frames
Specifications
Material: Rubber Finish: None Overall Height: 3.94 in Diameter: 1.57 in Thread Size: M16 on both ends Maximum Load Capacity: 2,473 lbs Vertical Deflection: 0.31 in Package Quantity: 2 units per pack
Applications
Ideal for isolating vibrations in large HVAC systems, industrial generators, and compressors Suitable for mounting heavy pumps, motors, and fans to prevent floor transmission of noise Effective in protecting precision manufacturing equipment from external shock loads Used in power generation facilities to stabilize turbines and auxiliary machinery Applicable in marine environments for securing engine mounts and reducing hull vibration Recommended for construction equipment where ground-borne shock absorption is critical Installation and Performance Notes The M16 threaded studs on both ends facilitate direct bolting to standard metric mounting plates or custom fabricated bases. When installed correctly, the rubber element compresses under the specified load to achieve the rated 0.31-inch deflection, which is optimal for lowering the natural frequency of the supported system below typical operating speeds. This separation prevents resonance buildup that can lead to premature component failure or excessive noise pollution. Users should ensure that the applied load per mount does not exceed the 2,473 lb limit to maintain structural integrity and isolation efficiency. For balanced support, loads should be distributed evenly across all mounting points. The uncoated rubber surface provides sufficient friction to prevent lateral slipping in most applications, though additional locking mechanisms may be employed in high-seismic zones or areas subject to extreme lateral forces.