* Q: What is the material used for the front lower control arm?
* A: The front lower control arm is made of SPHC Steel, ensuring durability and strength for your Lexus LS430.
* Q: Is the bushing used in this control arm made of natural rubber?
* A: Yes, the bushing in this control arm is made of high-quality natural rubber, providing excellent cushioning and vibration absorption.
* Q: What car models is this front control arm compatible with?
* A: This front lower control arm is specifically designed for Lexus LS430 models manufactured between 2000 and 2006, ensuring a perfect fit and performance.
* Q: What is the warranty period for this product?
* A: The 48620-50050 front lower control arm comes with a 1-year or 30,000 km warranty, giving you peace of mind regarding its quality and performance.
* Q: How is the front control arm protected against corrosion?
* A: The control arm has an E-Coating finish, which provides excellent protection against corrosion, extending its lifespan and maintaining its appearance.
* Q: Can I purchase a sample before making a bulk order?
* A: Yes, samples are available for purchase, allowing you to inspect the product's quality and compatibility with your Lexus LS430 before committing to a larger order.
* Q: What is the average delivery time for this product?
* A: The delivery time for the 48620-50050 front lower control arm ranges from 5 to 35 days, depending on your location and shipping preferences.
* Q: Where is this product manufactured?
* A: This front lower control arm is manufactured in Zhejiang, China, ensuring high-quality standards and precise
craftsmanship.
* Q: Is the ball joint used in this control arm made of high-quality material?
* A: Yes, the ball joint is made of 40 Cr, a durable and reliable material known for its strength and resistance to wear.
* Q: What is the function of this front lower control arm?
* A: The 48620-50050 control arm is designed for replacement or repair purposes, specifically targeting the lower suspension system of Lexus LS430 models, ensuring optimal performance and safety.