The 1967 Aston Martin DB6 presents a stable and consistently clean roadworthiness record through its most recent MOT. The November 2024 test at 33,745 miles returned a pass with zero defects, advisories, or failures. This outcome follows a pattern of clean passes stretching back to at least August 2020, indicating no recurring mechanical or structural faults have been flagged by DVSA testers over the last six years. The maintenance trend is stable and improving in the sense that no deterioration has been recorded, and the vehicle has passed every inspection without intervention.
The mileage accumulation is exceptionally low for a car of this age. Between August 2020 at 30,318 miles and November 2024 at 33,745 miles, the car covered just 3,427 miles over more than four years, averaging roughly 800 miles annually in that window. The broader record from March 2022 at 32,051 miles to the same November 2024 date shows only 1,694 miles added across nearly three years. This suggests prolonged periods of static storage or very limited seasonal use. While low mileage generally reduces wear on drivetrain and braking components, extended standing raises its own concerns around deteriorated rubber seals, perished hoses, stale fuel, and corrosion in brake lines and the exhaust system that MOT tests do not always surface.
Despite the clean MOT record, a buyer should commission a thorough in-person inspection focused on areas that MOT testing does not fully stress-test on a vehicle of this age and type. The underside and chassis rails require close examination for structural corrosion, particularly around jacking points, sill sections, and floor pans, as the DB6's steel body can hide significant rot beneath cosmetic repairs. Suspension bushes, coil springs, and damper units should be checked for age-related deterioration rather than mileage wear, since rubber and hydraulic components degrade with time regardless of use. Brake calipers, discs, and flexible hoses merit attention given the likelihood of standing periods causing sticking pistons and moisture ingress into fluid.
The engine, gearbox, and final drive should be assessed for oil leaks, coolant condition, and evidence of regular servicing, as the MOT record provides no insight into fluid changes or mechanical care between tests. A compression test and cold-start evaluation would reveal internal engine health that a standard MOT does not cover. Tyre condition should also be verified, as low-mileage cars frequently run on aged rubber with sidewall cracking long before tread depth becomes an issue. The clean MOT history is a positive indicator of structural integrity at the time of testing, but it does not substitute for a specialist inspection on a classic car where corrosion and age-related component fatigue present the primary risks.