Wednesday, December 27, 2017

How Bug and Band Designed Welding Systems are Best for Boosting Productivity

Pipeline industry plays a vital role in transporting goods and material through pipes. In fact, pipelines are practically the energy links for every activity of everyday life. Whether we talk about offshore or onshore pipeline industry, pipeline welding plays a significant role in ensuring smooth operations. Today, we have modern welding systems that allow users to set-up just a single machine for various mechanized applications. These advanced welding solutions help in getting consistent and precise welding results that also ensure definite repeatability. The high torque bug and band designed welding systems allow exact stops and superior grasping power of the motor.

Main focus of bug and band welding systems

A dynamic mechanism, effective welding process integration and management, easily controllable orbital parameter setting, and better arc and weld-pool stability are the main focus points of the bug and band designed welding systems. Further, repeated control of the welding as well as cutting parameters to carry out continuous beveling and welding is allowed by these systems.


Requirement of cutting-edge techniques

When it comes to getting the pipe to pipe welding done, opting for an optimum welding system offers accurate, fast, and time-saving solutions while eliminating possible errors. A welding system that is backed by cutting-edge techniques is truly able to transform the dynamics of the pipeline welding industry. A welding system with features, such as single head orbital welder, pipe size that ranges from 4’’ (102mm) to infinite, 2’’ (51mm) motorized vertical movement range, and nearly 22 Lbs (10Kg) weight is best for pipe to pipe welding, as it provides better finish and smooth surface.

Choosing advanced welding solutions

There are a number of welding solutions available in the market; so it is vital to choose the one that fits your requirements well. You need to recognize the superior welding quality through its demonstrable repeatability, less dependency on personnel and operators, real-time information of welding parameters, and etc. to get the best results.

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