Partiron

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Tapered Lug Nuts

Tapered Lug Nuts

Color

Item: 57-94136B

Weight: 1.23 lbs

Package Dimensions: 4.05 x 4.05 x 1.65

Tapered Lug Nuts: The Ultimate Choice for Secure Fit

If you're looking for reliability and performance, Tapered Lug Nuts from Partiron are the perfect solution. Designed to provide a secure fit for your wheels, these lug nuts enhance the overall safety and stability of your ride, ensuring that your wheels stay firmly in place during all types of driving conditions.

Precision Engineering for Optimal Performance

With Tapered Lug Nuts, you can trust in precision engineering that guarantees a snug fit. The tapered design allows for better seating on the wheel, reducing the risk of loosening over time. This means you can ride with confidence, knowing your wheels are secure, no matter the terrain.

Durable Construction for Long-lasting Use

Crafted from high-quality materials, these lug nuts are built to withstand the rigors of the road. Their robust construction ensures they can handle heavy loads and resist corrosion, making them an ideal choice for both everyday riders and enthusiasts alike.

Easy Installation for All Skill Levels

Installing Tapered Lug Nuts is a breeze, making it a great option for both novice and experienced riders. With the right tools, you can quickly and easily replace your existing lug nuts, enhancing your bike’s performance without the hassle.

Specifications

Specifications
Parameter Value
Material High-strength steel
Design Tapered
Finish Corrosion-resistant
Compatibility Various wheel sizes

This product has variations; for more detailed information, please ensure you select the appropriate variation.

FAQ

Are Tapered Lug Nuts suitable for all motorcycles?

Yes, Tapered Lug Nuts are designed to be compatible with a variety of motorcycles, enhancing wheel security across different models.

How do I know if I need to replace my lug nuts?

If you notice any signs of rust, wear, or if your lug nuts are not seating properly, it’s time to consider replacing them for optimal safety.

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