Hey everyone,
Since my covers were mentioned in this thread — and since
Chrisyphus shared his experience and insights earlier — I wanted to contribute some of the engineering background behind why I moved away from aluminum and switched to stainless. And thank you to Chris for the knowledge and transparency he always brings to this community.
When I first released aluminum S65 VANOS covers, they performed well for many users, and many are still running today. But over time, I began seeing scattered cases of tabs loosening or coming off — first on replica covers, then even a few from reputable brands. A customer of mine who purchased Aluminum covers from me eventually sent me photos of his own tab failure. Installation errors are always a possibility with snap-on covers, but I didn’t want to assume that was the only reason.
I pulled the aluminum covers off my website completely, even though I had a large amount of inventory left, and just took the loss. I’d rather bite the bullet and get real answers than keep selling something I wasn’t fully confident in.
I hired multiple 3rd-party engineering companies, including Performance Driven Design, and spent countless hours (and honestly, a lot of money) having them study the issue properly. After all that work, they all came back with the same general conclusion:
The S65 VANOS ring is a hardened steel component. Aluminum is much softer on the hardness scale, and when you have a hard steel locking surface repeatedly working against a softer aluminum tab over thousands of vibration cycles, the softer material can slowly start to wear away. It’s not dramatic and it doesn’t happen instantly, but that gradual micro-wear can eventually reduce the tension that keeps a snap-on cover locked in place. That’s the mechanism the engineering teams identified as the long-term vulnerability with aluminum in this specific location.
This doesn’t mean every aluminum cover will fail. But when a hardened steel locking surface works against a softer aluminum tab over many cycles, micro-wear can accumulate and reduce retention force.
Stainless steel, however, matches the durability and hardness of the VANOS ring, which removes that wear path entirely. That’s why every engineering recommendation pointed toward stainless steel as a more appropriate long-term material choice for this specific location.
When redesigning the stainless covers, two things were improved based on the findings:
• They are internally balanced, which helps minimize vibration transfer at higher RPM.
• The alignment/indexing features are much clearer, which helps prevent improper seating during installation.
At one firm’s recommendation, each production batch is also verified at a metrology lab with 40+ dimensional checks to ensure accuracy and consistency. It’s overkill, but it eliminates variation.
These stainless covers have been tested extensively in real-world conditions — both street and track — through heat cycling, vibration, and high-RPM load. Based on all testing so far, it is very clear that once these stainless covers are on, they do NOT come off.
For anyone running my earlier aluminum V1 covers: those can continue being used with periodic inspection as long as they are fully seated and show no movement. The stainless version isn’t a replacement for a defective part; it’s simply the final, more robust solution now that we have deeper engineering data. Anyone who wants to upgrade can do so, and I'll offer them the SS covers at cost.
To wrap this up: I’m not interested in going back and forth endlessly on this topic. I’m glad I was the first to offer an aluminum option stateside and help lower the price when the only alternative, which were the SLON covers, were around $900 a set. And I’m also glad to be the first to introduce a stainless steel design here. I genuinely hope other companies move to stainless as well, because based on everything we now understand, it is the right material for this application.
BTS with the SS Vanos Covers:
Metrology Lab Testing for Each Vanos Cover:
Since my covers were mentioned in this thread — and since
When I first released aluminum S65 VANOS covers, they performed well for many users, and many are still running today. But over time, I began seeing scattered cases of tabs loosening or coming off — first on replica covers, then even a few from reputable brands. A customer of mine who purchased Aluminum covers from me eventually sent me photos of his own tab failure. Installation errors are always a possibility with snap-on covers, but I didn’t want to assume that was the only reason.
I pulled the aluminum covers off my website completely, even though I had a large amount of inventory left, and just took the loss. I’d rather bite the bullet and get real answers than keep selling something I wasn’t fully confident in.
I hired multiple 3rd-party engineering companies, including Performance Driven Design, and spent countless hours (and honestly, a lot of money) having them study the issue properly. After all that work, they all came back with the same general conclusion:
The S65 VANOS ring is a hardened steel component. Aluminum is much softer on the hardness scale, and when you have a hard steel locking surface repeatedly working against a softer aluminum tab over thousands of vibration cycles, the softer material can slowly start to wear away. It’s not dramatic and it doesn’t happen instantly, but that gradual micro-wear can eventually reduce the tension that keeps a snap-on cover locked in place. That’s the mechanism the engineering teams identified as the long-term vulnerability with aluminum in this specific location.
This doesn’t mean every aluminum cover will fail. But when a hardened steel locking surface works against a softer aluminum tab over many cycles, micro-wear can accumulate and reduce retention force.
Stainless steel, however, matches the durability and hardness of the VANOS ring, which removes that wear path entirely. That’s why every engineering recommendation pointed toward stainless steel as a more appropriate long-term material choice for this specific location.
When redesigning the stainless covers, two things were improved based on the findings:
• They are internally balanced, which helps minimize vibration transfer at higher RPM.
• The alignment/indexing features are much clearer, which helps prevent improper seating during installation.
At one firm’s recommendation, each production batch is also verified at a metrology lab with 40+ dimensional checks to ensure accuracy and consistency. It’s overkill, but it eliminates variation.
These stainless covers have been tested extensively in real-world conditions — both street and track — through heat cycling, vibration, and high-RPM load. Based on all testing so far, it is very clear that once these stainless covers are on, they do NOT come off.
For anyone running my earlier aluminum V1 covers: those can continue being used with periodic inspection as long as they are fully seated and show no movement. The stainless version isn’t a replacement for a defective part; it’s simply the final, more robust solution now that we have deeper engineering data. Anyone who wants to upgrade can do so, and I'll offer them the SS covers at cost.
To wrap this up: I’m not interested in going back and forth endlessly on this topic. I’m glad I was the first to offer an aluminum option stateside and help lower the price when the only alternative, which were the SLON covers, were around $900 a set. And I’m also glad to be the first to introduce a stainless steel design here. I genuinely hope other companies move to stainless as well, because based on everything we now understand, it is the right material for this application.
BTS with the SS Vanos Covers:
Metrology Lab Testing for Each Vanos Cover:


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, just wondered about the inertial load, more so the solid bolt on covers rather than the various clip on ones. But yea good point about the force required to turn the cams, occasionally doing engine work myself I know there's practically no chance of fully turning a cam by hand! (valves and springs installed).