Field-proven designs to control vibration and allow thermal growth in piping systems
Using decades of experience in vibration design and troubleshooting, we have developed a range of anti-vibration clamps for piping systems in vibratory service. The clamps are suitable for systems subjected to demanding shaking forces typically encountered in the following applications:
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Our anti-vibration clamps provide unique features to balance different requirements for your piping system designs:
Vibration control
Piping systems that experience vibration require robust supports that can withstand shaking forces and prevent fatigue failures.
All of our clamps provide the necessary stiffness to restrain vibratory movement while also resisting vibratory loosening of the support bolts, ensuring a safe and reliable operation.
Vibration damping
Our DamperX clamps provide a unique combination of stiffness and damping for applications with high vibration risk, resulting in significant reductions of resonant piping vibration compared to other industry lining materials.
Thermal growth and vibration support with ThermaGlide
Most piping systems require a flexible design to allow for thermal growth and shrinkage due to temperature changes. Without adequate flexibility, the piping can experience high static stresses, causing a plethora of problems including low-cycle fatigue, excessive equipment nozzle loads, machinery casing distortion, excessive support structure loads and others. This design consideration for flexibility often conflicts with vibration design requirements for stiffness and rigidity.
Our line of ThermaGlide anti-vibration clamps accommodate both thermal and vibration design criteria by providing a clamp with exceptional vibration control that can also allow the pipe to slide under static thermal loads.
ThermaGlide’s sliding ability (patent pending) allows pipe migration under thermal loads to relieve high static stresses, while at the same time preventing movement under dynamic shaking forces. This unique combination of characteristics gives piping designers new tools to create superior piping system designs with low static stresses and robust vibration control.
ThermaGlide pipe supports come in different configurations to allow sliding along the axis of the pipe, lateral to the pipe and also vertical, as needed.
Piping designers can select an appropriate clamp for each location in the piping system and optimize cost and function by using the right clamp for the job, only at the locations it is needed.
Height adjustability, corrosion control and ease of inspection
Our anti-vibration wedge clamps offer superior pipe height adjustability at installation and provide ease of corrosion inspection over the life of your facility, in addition to excellent vibration control and the ability to accommodate thermal growth, when required.
Conventional pipe restraints | Anti-vibration clamp (CL-1) | Anti-vibration wedge clamp (WCL-1) | ThermaGlide (CL-1-T, WCL-1-T) |
DamperX (DCL-HD, DCL-1-HT) | DamperX with ThermaGlide (DCL-HT-T) | Pipe shoe with ThermaGlide (CL-8-T, CL-8-ST) | |
Non-vibratory loads (standard process piping) |
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Vibratory loads Compressors, pumps and related piping |
(superior) | (superior) |
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Vibration and thermal expansion (hot temperatures) | |||||||
High vibration risk, wide speed range machinery or damping required |
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Easy corrosion inspectability and height adjustment | (WCL only) |
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Easily accommodate insulation | (depending on type) |
Contact us for other customized clamp solutions.
Specifications, drawings (coming soon)
Description | pipe ≤ 6 in | pipe > 6 in | Model* |
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CL-1: Piping Vibration This is our most popular hold-down clamp for piping in vibratory services. This design lessens vibratory loosening by added bolt stretch; a common industry-wide problem. |
Imperial: Model CL-1-xx |
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CL-1-T: ThermaGlide™ Axial slide** Designed with vibration control in mind while allowing for thermal growth; this PTFE-lined clamp provides vibration stiffness and thermal flexibility, allowing the pipe to grow along the axis of the pipe. |
Imperial: Model CL-1-T-xx where xx refers to nominal pipe diameter (NPS) in inches: 2, 3, 4, 6, 8, 10, 12, 14, 16, 18, 20, 24, 30, 36, 40, 42 Metric: Model: CL-1-T-xxM where xx refers to nominal pipe diameter (DN) in mm: 50, 80, 100, 150, 200, 250, 300, 350, 400. 450, 500, 600, 750, 900, 1000, 1050 |
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CL-1-ST: ThermaGlide™ Lateral slide** Designed with vibration control in mind while allowing for thermal growth; this un-lined clamp provides vibration stiffness and special hardware allowing the pipe to move laterally (sideways).” Patent pending.**Note: This clamp is based on latest R&D results and replaces the CL-4. Check out our Shake, Rattle and Grow webinar to find out how to model these clamps accurately in Caesar II. |
Imperial: Model CL-1-ST-xx where xx refers to nominal pipe diameter (NPS) in inches: 2, 3, 4, 6, 8, 10, 12, 14, 16, 18, 20, 24, 30, 36, 40, 42 Metric: Model: CL-1-ST-xxM where xx refers to nominal pipe diameter (DN) in mm: 50, 80, 100, 150, 200, 250, 300, 350, 400. 450, 500, 600, 750, 900, 1000, 1050 |
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CL-1-T-ST: ThermaGlide™ Axial Lateral slide** Designed with vibration control in mind while allowing for thermal growth; this PTFE-lined clamp provides vibration stiffness and special hardware allowing the pipe to grow along the axis AND move laterally (sideways). Patent pending. **Note: This clamp is based on latest R&D results and replaces the CL-4. Check out our Shake, Rattle and Grow webinar to find out how to model these clamps accurately in Caesar II. |
Imperial: Model CL-1-T-ST-xx where xx refers to nominal pipe diameter (NPS) in inches: 2, 3, 4, 6, 8, 10, 12, 14, 16, 18, 20, 24, 30, 36, 40, 42 Metric: Model: CL-1-T-ST-xxM where xx refers to nominal pipe diameter (DN) in mm: 50, 80, 100, 150, 200, 250, 300, 350, 400. 450, 500, 600, 750, 900, 1000, 1050 |
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DamperX™ Clamps DCL-1-HD Standard Temperature
DamperX clamps are available in the same ThermaGlide axial and lateral slide configurations as the ThermaGlide clamps above. |
Imperial: Model DCL-1-xx |
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Wedge Clamps WCL-1-HD Standard Temperature
Learn more about anti-vibration wedge clamps features and models |
Imperial: Model WCL-1-xx |
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CL-8-T: ThermaGlide Axial Slide Pipe Shoe Designed with vibration control in mind while allowing for thermal growth; this patent-pending PTFE slide bearing anti-vibration pipe shoe provides vibration stiffness and thermal flexibility while being able to accommodate piping insulation and allowing the pipe to grow along the axis of the pipe (CL-8-T model), or laterally to the axis of the pipe (CL-8-ST model). Learn more about anti-vibration pipe shoe features and benefits (PDF) |
Imperial: Model CL-8-T-xx where xx refers to nominal pipe diameter (NPS) in inches: 1, 1.5, 2, 3, 4, 6, 8, 10, 12, 14, 16, 18, 20, 24 Metric: Model CL-8-T-xxx where xx refers to nominal pipe diameter (DN) in mm: 25, 40, 50, 80, 100, 150, 200, 250, 300, 350, 400. 450, 500 |
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*All models come with required hardware (including nuts, bolts, washers and specialty hardware). |
Options include:
Contact us for application support.
"I have reviewed Wood’s pipe vibration products [...]. From a piping engineering perspective, Wood's pipe clamps are not just a clamp, but are an engineered product backed with design data that often not available from other manufacturers"
– Piping engineer, Operator, North America
"We are very pleased with the end product we received. The clamp effectively reduced the vibration to an acceptable level, which has mitigated a huge safety concern that has been bearing over the unit for several months."
– Reliability engineer, Operator, North America
To order, and for information including price, delivery, and installation guide, email us today, or call 1 800 561 2382 (toll-free in North America) or +1 403 245 5666 (international, UTC -7).
There are many examples where traditional pipe clamps are unable to control machinery and vibratory loads |
Examples of successful applications of Wood's CL-1 clamps |
Part 1: how to model pipe supports, vibration and piping stress more accurately
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Part 2: how to select the right pipe clamp to control vibration and allow thermal growth
Watch the recording
Part 3: how to quantify performance of pipe supports for vibration service
Watch the recording
Technical information and guidance:
Articles and papers:
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