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Industrial · SKU: AE8257313
Steel Threaded Oil Shock Absorber 1.06in Bore 145psi M27 Port, Pkg Qty 2
This steel threaded oil shock absorber delivers reliable automatic compensation for industrial motion control applications. Featuring a 1.
Volume Pricing - Buy More, Save More
| Quantity | Discount | Unit Price |
|---|---|---|
| 1 - 10 | - | $89.99 |
| 11 - 50 | -5% | $85.49 |
| 51+ | -10% | $80.99 |
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Quick Answer
How Buyers Should Evaluate Steel Threaded Oil Shock Absorber 1.06in Bore 145psi M27 Port, Pkg Qty 2
This steel threaded oil shock absorber delivers reliable automatic compensation for industrial motion control applications. Featuring a 1. Use the quick checks below to decide whether direct checkout is enough or whether an RFQ will reduce sourcing risk.
Quick Spec Check
- Port Size: M27
- Max. Operating Pressure: 145 psi
- Material: Steel
Purchase Details
- Online price starts at $89.99.
- 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
| Port Size | M27 |
| Max. Operating Pressure | 145 psi |
| Material | Steel |
| Bore Diameter | 1.06 in |
| Stroke Length | 0.98 in |
| Mount Type | Threaded |
Full Description
Application context, construction notes, and selection details for evaluating fit before purchase or repeat ordering.
Overview
This industrial-grade oil shock absorber is engineered to provide automatic compensation for kinetic energy in high-cycle motion control systems. Constructed from durable steel, the unit delivers consistent deceleration performance without requiring manual adjustment between cycles. The design effectively dissipates impact forces to protect sensitive machinery components, reduce noise levels, and extend the operational lifespan of automated equipment. With a compact footprint and robust build quality, it is ideal for integration into assembly lines, robotic arms, and material handling systems where precise stopping power is critical.
Key Features
Automatic compensation mechanism adjusts to varying load conditions High-strength steel body ensures longevity in harsh environments Threaded mounting allows for secure and rapid installation Precise deceleration profile minimizes mechanical shock and vibration Maintenance-free operation reduces total cost of ownership Rated for maximum operating pressure of 145 PSI Compact 1.06-inch bore diameter fits space-constrained applications
Specifications
Port Size: M27 thread Maximum Operating Pressure: 145 PSI Body Material: Steel Bore Diameter: 1.06 inches Stroke Length: 0.98 inches Mount Type: Threaded Package Quantity: 2 units per pack
Applications
Automated assembly machinery Robotic end-effectors and manipulators Conveyor system transfer points Packaging and palletizing equipment Material handling lift gates Industrial door closing mechanisms Testing and inspection stations The unit features a standardized M27 port size that aligns with common industrial fitting requirements, ensuring compatibility with existing hydraulic or pneumatic circuits. Its 0.98-inch stroke length provides sufficient travel to absorb significant kinetic energy while maintaining a short overall envelope. The steel construction offers superior resistance to corrosion and physical impact compared to alternative materials, making it suitable for factories with exposure to coolants, oils, or particulate matter. By automatically adapting to changes in mass or velocity, this shock absorber eliminates the need for frequent recalibration, thereby reducing downtime and maintenance labor. The threaded mount design simplifies alignment during installation, allowing technicians to secure the device directly into machine frames or brackets without additional adapters. This product serves as a reliable solution for engineers seeking to enhance machine safety, improve cycle times, and prevent damage caused by uncontrolled stops in dynamic industrial settings.