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Brandt Bevelling / Facing

Beveller

Beveller
Engineered to accommodate a wide variety of specifications, the Beveller uses a moving carriage on precision liner ways and servo motor actuator to apply beveling onto the end of the pipe. Designed with walking beams to minimize indexing times, the Beveller ensures quick, accurate conveying and beveling. The Brandt Beveller can be customized for customer requirements with any bevel configuration possible.

Specifications

Beveller
Weight45000 lb
Operation ModesFully-automatic / Semi-automatic / Manual
Product SpecificationAPI 5L/5D/5CT, ASTM A53
Pipe Diameter Range2.375 - 16 " OD
Pipe Length Range20 - 65 ft
Pipe GradesK55, N80, L80, C95, P110, Q125
Wall Thickness0.375 in

Features

The beveling stations use an electronic cylinder to move the carriage into the fair ended pipe. The carriage houses a spindle driven chuck plate assembly that creates a bevel and land on the end of the pipe.  The machines use hydraulically operated clamps for gripping the pipe when the chuck face is beveling the end. The clamp arms employ replaceable inserts which are changed for each different outside diameter of the pipe. The Critical Length Measure (CLM) station utilizes a servo driven gear motor to drive a cart up and down the length of the pipe in order to create a specified length of pipe.  The Chuck carriage moves ahead and creates a Bevel and Land on the first end of the pipe. The pipe then walks over twice to the next Beveller station. The Length Measure Carriage measures the length of the pipe and based on the length, the second Chuck Carriage will remove the correct amount of material to create a pipe of a specific length. The blow out station utilizes turning rolls and a fair ending cart with an air nozzle to clean out the inside of the pipe.

Functionality

  • The pipe handling system will consist of four walking beam assemblies that include v-rolls for positioning the pipe to each fair end location and stationary saddles used to hold the pipe while being bevelled. The machine is designed for maximum throughput, with walking beams to minimize indexing times and components selected to ensure quick, accurate conveying and bevelling.

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