CARDONE's extensive expertise in testing and engineering CV Drive Axles serves as the foundation for our proprietary method of engineering a product that meets and even exceeds OE performance. We have researched the reasons why original CVs typically fail and designed new solutions to prevent repeat failure. For instance, our Neoprene boots are engineered with additional bellows, when necessary, to resist bellow stress and ozone cracking - the leading cause of boot failure. High-quality grease can withstand high-temperature and high-torque demands, ensuring long-lasting, reliable performance.
Splines are precision rolled to guarantee a proper fit of the CV Drive Axle into the mating hub and transmission, eliminating installation issues. The transmission seal diameter is precision-machined after heat treatment to ensure the correct surface finish, promoting extended seal life. Additionally, all CV Drive Axle shafts undergo individual verification for straightness, resulting in vibration-free performance at all speeds.
Our proprietary engineering processes ensure that all CV Drive Axles meet OE form, fit, and function. Neoprene boots are designed with additional bellows, when needed, to resist bellow stress and cracking, which is the leading cause of boot failure. An axle retaining nut is supplied with every unit for a hassle-free installation, due to the likelihood that the original retaining nut is worn or stripped.
CV Drive Axle measurements are validated after assembly to guarantee a proper fit; threads are precision rolled to ensure correct fit when the axle nut is installed. Boot clamps are pneumatically crimped, creating a perfect seal between the boot and housing.
CARDONE's extensive experience in testing and engineering CV Drive Axles has led to the development of a proprietary method of engineering a product that meets and exceeds OE performance. We have thoroughly investigated the reasons for the typical failure of original CVs and have designed new solutions to prevent repeat issues.
One example is our Neoprene boots, which are engineered with additional bellows, when necessary, to resist bellow stress and ozone cracking - the leading cause of boot failure. High-quality grease is used to withstand high-temperature and high-torque demands, ensuring long-lasting, reliable performance.
Precision rolling of the splines guarantees a proper fit of the CV Drive Axle into the mating hub and transmission, eliminating installation hassles. The transmission seal diameter is precision-machined after heat treatment to ensure the correct surface finish, promoting extended seal life. Additionally, all CV Drive Axle shafts are individually verified for straightness, resulting in vibration-free performance at all speeds.
Our proprietary engineering processes ensure that all CV Drive Axles meet OE form, fit, and function. Neoprene boots are designed with additional bellows, when needed, to resist bellow stress and cracking, which is the leading cause of boot failure. An axle retaining nut is supplied with every unit for a hassle-free installation, due to the likelihood that the original retaining nut is worn or stripped.
CV Drive Axle measurements are validated after assembly to guarantee a proper fit, and threads are precision rolled to ensure correct fit when the axle nut is installed. Boot clamps are pneumatically crimped, creating a perfect seal between the boot and housing.
product information:
Attribute | Value | ||||
---|---|---|---|---|---|
manufacturer | Cardone | ||||
brand | Cardone | ||||
model | 66-7281 | ||||
item_weight | 15 pounds | ||||
product_dimensions | 42 x 5.25 x 5.38 inches | ||||
country_of_origin | China | ||||
item_model_number | 66-7281 | ||||
exterior | Machined | ||||
manufacturer_part_number | 66-7281 | ||||
oem_part_number | 28321FE151, 28321FE181, 28321SA030, 28321SA033, 28321SA050, 28321SA051, | ||||
customer_reviews |
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best_sellers_rank | #515,974 in Automotive (See Top 100 in Automotive) #971 in Automotive Replacement Constant Velocity Half-Shaft Assemblies | ||||
date_first_available | March 5, 2010 |
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