
Steering and Suspension Linkages
Linkage rods and Heim-joint assemblies provide adjustable, serviceable connections for steering, suspension, and chassis systems. Match the joint type, thread, spacers, and alignment to the travel of the mechanism.
Our rod end and heim joint collection includes over 150 models, offering comprehensive coverage of sizes, materials, and configurations. Whether you need standard or high-misalignment options, male or female threads, or materials ranging from carbon steel to stainless and 300M, we have a solution for every application. Designed for precision movement and durability under load, our rod ends are used across automotive, agricultural, industrial, off-road, and aerospace sectors. From small hobby builds to extreme-duty machinery, this category is your gateway to dependable motion and alignment components.
Tell us the dimensional target, material preference, and application constraints. We'll help match or develop the right solution.
Ask for Custom SupportRod End / Heim Joint are general-purpose linkage components for adjustable steering, suspension, chassis, actuator, agricultural, and industrial control connections. A rod, threaded member, or Heim-style joint transfers force while allowing the connected parts to change angle. Match thread, bore, length, race or bushing material, misalignment, spacer stack-up, load direction, and maintenance requirements to the complete mechanism.

Linkage rods and Heim-joint assemblies provide adjustable, serviceable connections for steering, suspension, and chassis systems. Match the joint type, thread, spacers, and alignment to the travel of the mechanism.

These components are widely used in custom vehicle builds where geometry, length adjustment, and replaceable joints are important. Check shock loading, misalignment, fastener orientation, and maintenance access.

Rod-end linkages can connect levers, actuators, and control arms in agricultural and industrial equipment. Select material, race, sealing, and surface treatment for the expected contamination and oscillation.