A prominent customer faced critical challenges with their powder-conveyance application, particularly due to recurring weld failures in a stainless-steel bellows weldment. These issues significantly impacted their operational efficiency and reliability. This case study examines how effective collaboration with KL Engineering, Inc. and tailored engineering solutions helped the customer overcome these challenges and enhance their manufacturing processes.
In the manufacturing operation, noncompliance with the customer’s existing design led to recurring joint failures, primarily due to an external misalignment caused by a rigid component. The integration of a bellows was deemed essential to absorb these misalignments and reduce stress on weld joints. However, without prior experience or existing strategies to implement this, the customer faced significant operational hurdles.
The customer, an existing partner integrated into a larger system previously designed by KL Engineering, was in a critical situation. The weld failures not only halted production on a specific line but also threatened to propagate issues across their other manufacturing lines, raising alarms about potential widespread downtime and loss of productivity.
2.) Conceptual Design
After establishing these objectives, the team moved towards conceptualizing a solution that encompassed both standard and non-standard components. The objective was to create a bellows system that could effectively absorb misalignments while remaining within the customer’s dimensional boundaries.
3.) Rapid Prototype Creation
The collaborative effort culminated in the creation of a prototype that featured a custom stainless steel bellows combined with machined parts, adapted to meet the required lengths and connection points. This quick, iterative process was integral to ensuring the solution remained on track to meet the customer’s urgent timeline.
For context, the speed and efficiency demonstrated by KL Engineering stood in stark contrast to the timelines proposed by alternative suppliers. A larger OEM had quoted a lead time of 16 to 20 weeks for comparable solutions, highlighting KL Engineering’s ability to execute under pressure and deliver reliable outcomes within an expedited timeframe.