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CLOCKSPRING|NRI LEAK STOPPER

The Clock Spring|NRI Leak Stopper™ works fast! It is designed for quick and safe temporary leak containment, with an optimized strapping method that achieves efficient...

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The Clock Spring|NRI Leak Stopper™ works fast! It is designed for quick and safe temporary leak containment, with an optimized strapping method that achieves efficient and secure composite placement using teeth that are part of the band. Using the low-profile buckles makes executing repairs less cumbersome and time consuming than alternative methods and produces a finished profile that is only 1 inch thick.

Leak Stopper™ is ideal for onshore oil and gas pipelines, refineries and petrochemical plants, and municipal water and gas distribution lines, replacing bulky bolt-on products that require more time to install and introduce greater risk. Installing the Clock Spring|NRI Leak Stopper™ is simple. The process requires a trained installer using a gauged clamping device to tension the specialized band securely over the leak with a low-profile buckle. The result is a reliable and durable temporary repair within seconds. Once the Leak Stopper™ is installed and the leak is stopped, Clock Spring|NRI engineers can design an engineered composite solution as an overwrap to prolong the life of the piping system.

BENEFITS:

• Rapid repair process prevents environmental exposure to hydrocarbons within seconds
• Teeth designed into the tightening band improve strength, safety, and repair speed
• Low-profile repair simplifies installation and composite overwrap application
• Not diameter specific – The band can be used for various pipe diameters
• Third-party verification of materials performance in aged samples
• Certified SGS tensile strength certificate

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Coated U-Bolts

U-Bolt Coat is a seamless, vulcanized, polyolefin material that is applied to a standard hot dipped, galvanized zinc plated or stainless steel u-bolt. They effectively...

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U-Bolt Coat is a seamless, vulcanized, polyolefin material that is applied to a standard hot dipped, galvanized zinc plated or stainless steel u-bolt. They effectively control crevice corrosion on above ground piping by eliminating any possible metal to metal contact between the top and sides of the pipe. These coated u-bolts are also used with FRP Half Rounds to help control crevice corrosion on the bottom of a painted pipe. U-Bolt Coat type u-bolts can also help reduce vibrations and noise levels. The polyolefin coating is durable and displays excellent resistance to UV rays, heat, cold, abrasion and electrolysis.

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Compression Film, 12″ x 700′ (2 mils)

Compression Film 12″ x 700′ is used with Scar-Guard® along with a perforating tool.  Compression Film may be removed after perforation once the material hardens or...

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Compression Film 12″ x 700′ is used with Scar-Guard® along with a perforating tool.  Compression Film may be removed after perforation once the material hardens or may also be left in place.

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Cooper-Atkins 35100-K AquaTuff Waterproof Thermocouple Instrument

Requires the Bell Probe: /product/50012-k-flat-surface-bell-probe////// The AquaTuff™ 35100-K model is a high accuracy instrument designed to withstand harsh environments. The ABS housing is extremely durable and...

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Requires the Bell Probe: /product/50012-k-flat-surface-bell-probe//////

The AquaTuff™ 35100-K model is a high accuracy instrument designed to withstand harsh environments. The ABS housing is extremely durable and IPX7 waterproof rated. The housing is ergonomic with a tapered design and curved back to fit nicely in your hand.

The 35100-K can be used with any Type K thermocouple probe with a standard mini-connector.

 

 

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Copper Clad Steel Tracer Wire

Copper Clad Steel Tracer Wire is used to conductively locate buried utility lines for the gas, water, sewer, telecommunication, and electrical markets.  It greatly reduces damage...

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Copper Clad Steel Tracer Wire is used to conductively locate buried utility lines for the gas, water, sewer, telecommunication, and electrical markets.  It greatly reduces damage and breaks during installations. Equal to copper in signal tracing performance, it simply outperforms copper tracer wire. Designed for open-cut and plow-in installations using 1 wire.

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CSC12 Carbon Steel Spacer

The CCI Model CSC12 shall be constructed of circular carbon steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer...

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The CCI Model CSC12 shall be constructed of circular carbon steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer shall be lined with a ribbed PVC extrusion with a retaining section that overlaps the edges of the shell and prevents slippage. The casing spacer shall be designed with risers and runners to support the carrier pipe within the casing and maintain a minimum clearance of 1.0 in. between the casing ID and the carrier pipe OD.

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CSC8 Carbon Steel Spacer

The CCI Model CSC8 shall be constructed of circular carbon steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer...

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The CCI Model CSC8 shall be constructed of circular carbon steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer shall be lined with a ribbed PVC extrusion with a retaining section that overlaps the edges of the shell and prevents slippage. The spacer shall be designed with risers and runners to support the carrier pipe within the casing and maintain a minimum clearance of 1.0 in. between the casing ID and the carrier pipe OD.

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CSP Polyethylene Spacer

The CCI Model CSP Polyethylene Casing Spacer is injection molded from high density polyethylene. These spacers provide an economical solution to metallic casing spacers.  The...

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The CCI Model CSP Polyethylene Casing Spacer is injection molded from high density polyethylene. These spacers provide an economical solution to metallic casing spacers.  The CSP Spacers exhibit low friction, high abrasion resistance which allows the carrier pipe to slide easily and free of damage into the casing pipe. The low moisture absorption and high insulating value of polyethylene electrically insulates the carrier pipe and protects it from electrical current induced corrosion.

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CSS12 Stainless Steel Spacer

The CCI Model CSS12 shall be constructed of circular stainless steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer...

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The CCI Model CSS12 shall be constructed of circular stainless steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer shall be lined with a ribbed PVC extrusion with a retaining section that overlaps the edges of the shell and prevents slippage. The casing spacer shall be designed with risers and runners to support the carrier pipe within the casing and maintain a minimum clearance of 1.0 in. between the casing ID and the carrier pipe OD.

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CSS8 Stainless Steel Spacer

The CCI Model CSS8 shall be constructed of circular Stainless Steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer...

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The CCI Model CSS8 shall be constructed of circular Stainless Steel bands, which bolt together forming a shell around the carrier pipe. The casing spacer shall be lined with a ribbed PVC extrusion with a retaining section that overlaps the edges of the shell and prevents slippage. The spacer shall be designed using runners with or without risers to support the carrier pipe within the casing and to maintain a minimum clearance of 1.0 in. between the casing ID and the carrier pipe OD.

The runners shall be Glass Filled Polymer with ends of the runners beveled to facilitate installation over rough weld beads or the weld ends of misaligned or deformed casing pipe. The runners shall be attached to support structures (risers) at appropriate positions to properly support the carrier pipe within the casing and to ease installation. They shall have a minimum length of 7.0 in. and a minimum width of 2.0 in.

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