Handbrake Shoes - BMW 3 / 5 / 6 / 7 / X3 / X5 / X4 Series
Handbrake Shoes - BMW 3 / 5 / 6 / 7 / X3 / X5 / X4 Series
BMW Part Number: 34 41 6 761 293 / 34 41 0 393 646 / 34 41 0 148 879 / 34 41 6 756 538 / 34 41 1 165 962 / 34 41 1 165 546
Brand: Meyle (German O.E.M)
Fitment: Complete
Width 30mm
Diameter: 185 mm
Fitting Position Rear Axle
To Fit the following Models:
E46 3-Series Coupe M3 - All Models Incl CSL
E46 3-Series Cabrio M3 - All Models
E39 5-Series Sedan M5 - All Models
E60 5-Series Sedan - All Models
E60 LCI 5-Series Sedan - All Models
E63 6-Series Coupe - All Models
E64 6-Series Cabrio - All Models
E65 7-Series Sedan - All Models
E83 X3-Series - All Models
E83 X3 LCI Series - All Models
E53 X5-Series - All Models
E85 Z4-Series Roadster Z4M - All Models
E86 Z4-Series Coupe Z4M - All Models
Developing quality-tested automotive spare parts for the independent aftermarket is a hallmark of the MEYLE brand.
Our passion is MEYLE-HD technology: Technically enhanced components devised by our team of dedicated engineers
at our Hamburg base.
The engineering expertise acquired in this process is applied to our entire range of MEYLE parts.
The making of MEYLE-HD parts.
When developing MEYLE-HD automotive spare part our engineers have just one goal: preventing premature part failure.
Based on market research, recall statistics or information from partners at the German technical inspection organisation
(TÜV) and workshops we start by analysing wear-prone original components. Pinpointing the weak points our engineers
develop highly sophisticated made-to-measure solutions remedying the shortcomings of the original, for example by using
higher-grade materials or modelling a more sturdy design.
It goes without saying that our experts always take account of the system intricacies of the respective assembly group to
ensure that technical improvements on one component do not entail premature failure of another.
Methods of product development:
- Crafting of 3D-models and derived drawings using 3D CAD software (Solid Edge, AutoCad, Geomagic)
- Calculation of static and dynamic load scenarios using strain gauge technology
- Load simulations and deformation analysis using Finite Element Method (FEM)
- Drafting of technical specifications and requirements for automotive parts
- Analysis of worn/defective components as the basis for part refinements
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