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ENVIRONMENTALLY FRIENDLY SURFACE OPTIMISATION FOR DRIVE SHAFTS IN ELECTRIC TRUCKS

2023-11-21




ENVIRONMENTALLY FRIENDLY SURFACE OPTIMISATION FOR DRIVE SHAFTS IN ELECTRIC TRUCKS

Functional reliability, cost-effectiveness and the use of environmentally friendly technology were the particular challenges for processing electric drive shafts from a well-known Polish automotive supplier. With OTEC machines, optimal surface tolerances are achieved on parts for electric high-speed drives where absolute functional reliability is of the greatest importance.




FUNCTION-RELEVANT SURFACE TOLERANCES

The automotive supplier and renowned drive specialist was looking for an efficient, cost-saving and above all reliable solution for optimising the surfaces of drive shafts in electric trucks. To guarantee the critically important functional reliability, exact surface roughness parameters had to be adhered to. The increasing demand for electric trucks is giving rise to high quantities in production and thus requires a high level of automation during processing and handling. It was also necessary to find an optimal solution in order to take into account an already tight timeframe.


CUSTOMISED STREAM FINISHING SOLUTIONA CUSTOMISED

process designed to fully meet the exacting surface requirements was developed in the OTEC Finishing Center. The requested roughness parameters for the drive shafts were achieved by means of mass finishing technology using what is called the Stream Finishing Process.


With the SF Technology, workpieces are clamped in a holder and lowered into a rotating container filled with an abrasive or polishing medium. The granulate-type abrasive circulates around the workpieces, thereby ensuring even, homogeneous abrasion. By adjusting the processing parameters and the type of abrasive used, both highly abrasive and fine polishing processes can be performed with just one machine.







Smoothly polished surfaces on highly stressed parts for drives are essential in order to guarantee interaction with as little friction as possible.



CUSTOMISED AUTOMATION TECHNOLOGY

The solution for this particular requirement from the e-mobility sector is suitable for series production and was achieved using a SF Machine with 3 spindles which can automatically process 3 workpieces at the same time.



BENEFITS OF OTEC SURFACE PROCESSING:

?Narrow tolerances of multiple surface roughness parameters are met

?  Isotropic surface topography

?  Fast processing of 3 workpieces in less than 5 minutes

? The process-related introduction of internal compressive stresses eliminates the need for a subsequent blasting procedure

?  Easy automation and integration in the production line

?  Fully automated workpiece removal and return

?Sustainable process without the use of aggressive abrasives


In addition, the use of wastewater centrifuges and corresponding recycling systems means that the ZOTEC solution is both environmentally friendly and resource efficient. With centrifugal water recycling systems, more than 95 per cent of fresh water and wastewater treatment costs can be saved.



FLEXIBLE AND COMPETENT

In order to be able to manufacture and deliver drive shafts during the machine setup time, the customer’s start of production was supported by OTEC-internal subcontracting. Following the successful setup and testing of the Stream Finishing Machine, the unit was integrated fully into the automotive supplier’s production process. Continued support from OTEC Process Development and OTEC After-Sales will guarantee excellent process reliability and efficient use of the unit on a long-term basis.


THE SURFACE IS NOW THE TOP PERFORMER

The use of the OTEC Stream Finishing Unit leads to effective resource and cost savings, while at the same time achieving the required surface roughness parameters and surface properties. The extremely high technical demands of high-speed electric drives in terms of optimal functioning and resilience are reliably met and the service life of the parts is increased significantly, while at the same time reducing maintenance costs.


The particular properties of the mass-finished surface topography with its pronounced isotropy and the internal compressive stresses that are introduced make the drive shafts top performers.


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