Zdjęcie w stonowanych kolorach z elementami centerlock i hex nut w wykończeniu CNC na stole produkcyjnym ze zbliżeniem w jasnych kolorach z dłonią człowieka.
Manufacturing

Manufacturing & Quality

Every MG Centerlock component is engineered for precision, durability and repeatable fitment. From raw material to final inspection, quality is built into every step.

Every MG Centerlock component is engineered for precision, durability and repeatable fitment. From raw material to final inspection, quality is built into every step.

We don’t treat manufacturing as outsourcing — it is part of our product development.

Each MG Centerlock component is produced in controlled batches, inspected for dimensional accuracy, and validated through real vehicle installation before reaching customers.

Our goal is simple: deliver hardware that installs correctly, looks consistent, and performs long after the first drive.

Material selection

Only proven aluminium alloys suitable for anodizing, mechanical load and long-term outdoor use.

Precision machining

Each component is CNC-machined with controlled tolerances to ensure repeatable fitment.

Surface finishing

Anodizing is performed in small batches to guarantee color consistency and surface integrity.

Quality control

Dimensional checks, visual inspection and real-world test fitting before release.

Step 1

CNC Machining

Each MG Centerlock component is produced using precision CNC machining to achieve consistent geometry and repeatable fitment across every batch. We work with carefully selected aluminium alloys that provide the ideal balance between strength, weight and corrosion resistance. During machining, critical dimensions such as mounting depth, thread engagement and contact surfaces are controlled to tight tolerances. This ensures that every part installs correctly on the wheel hub and delivers the same visual alignment on every vehicle. Unlike generic aftermarket hardware, our components are not mass-produced without verification. Each production run is monitored for dimensional accuracy, surface integrity and edge quality, allowing us to eliminate deviations before parts move to the finishing stage. This approach guarantees that MG Centerlock hardware offers both mechanical reliability and consistent aesthetics — whether installed on daily-driven vehicles or show builds.

Step 2

Surface Finishing

After machining, components undergo small-batch anodizing to enhance durability while preserving the precision of the original geometry. Anodizing creates a protective oxide layer that increases resistance to corrosion, chemicals and environmental exposure — essential for wheel hardware used in real-world driving conditions. We anodize in controlled batches to maintain uniform color tone and surface quality across complete kits. This process prevents visible shade variations and ensures that rings, nuts and accessories match perfectly when mounted together. Beyond appearance, surface finishing plays a functional role by sealing the aluminium and reducing susceptibility to oxidation caused by road salt, moisture and temperature changes. The result is a premium finish that not only looks refined but also performs long-term, keeping MG Centerlock components visually consistent and structurally protected over thousands of kilometers.

Step 3

Quality Control & Test Fitting

Before any product is released for shipment, each batch undergoes quality control and real-world fitment verification. Components are inspected visually and dimensionally to confirm machining accuracy, surface finish and thread integrity. Selected parts are test-fitted on actual wheels to validate mounting depth, alignment and overall compatibility. This practical verification step allows us to confirm that every kit installs smoothly and achieves the intended centerlock-style appearance without interference or misalignment. We treat quality control as a core part of product development, not an afterthought. By combining measurement checks with physical installation testing, we ensure that MG Centerlock hardware meets both engineering standards and user expectations. This final validation stage gives customers confidence that their components are ready for proper installation and reliable long-term use.