IBJ Socket
ABC IBJ Sockets are engineered to deliver secure mechanical fit and robust performance in complex assemblies. Manufactured with high‑grade materials, they provide exceptional strength, wear resistance, and dimensional accuracy. Precision machining ensures seamless integration into systems, reducing downtime and enhancing reliability. Our sockets are tested under demanding conditions to guarantee durability. Designed for industrial and engineering applications, they support consistent performance. ABC IBJ Sockets are trusted worldwide for their precision and dependability.
Precision Fit for Critical Assemblies
IBJ Sockets from ABC are designed to provide reliable connections in mechanical assemblies, ensuring smooth operation and long service life. With advanced machining techniques, they deliver precise dimensions and superior durability. Our sockets reduce wear, improve stability, and enhance overall system performance. Each product undergoes rigorous testing to meet international standards, making them suitable for automotive, aerospace, and industrial applications. ABC’s engineering expertise ensures every socket integrates flawlessly, supporting efficiency and reliability across industries.
| Outer Diameter (OD) | 30 – 45 mm |
| Material | High-Strength Steel (As per application requirement) |
| Manufacturing Process | Cold Forging + Precision Machining |
| Application | Commercial Vehicle Steering & Suspension Systems |
Precision Formed Profile
Manufactured to achieve accurate internal geometry and secure ball seating.
High Wear Resistance
Built to perform under continuous articulation and steering movement.
Strong Material Integrity
Produced from durable steel for enhanced strength and service life.
Smooth Functional Finish
Ensures proper motion, reduced friction, and dependable joint operation.
Reliable Steering Performance
Designed for critical steering linkage applications requiring consistency and safety.
Dimensional Accuracy
Maintains close tolerances for dependable fit and assembly compatibility.
Our Manufacturing Process
Design & Planning
Detailed engineering blueprints created for accuracy.
Material Selection
High-grade alloys chosen for strength and reliability.
Precision Machining
Advanced CNC processes ensure flawless dimensions.
Quality Testing
Each component undergoes strict performance checks.
FAQs
An IBJ (Inner Ball Joint) socket is the housing component of the inner ball joint in a rack-and-pinion steering system. It connects the steering rack to the inner end of the tie rod, accommodating the angular motion of the steering system while transmitting steering force. In commercial vehicles, IBJ sockets are subjected to high loads and require precise manufacturing for safe, responsive steering.
ABC's IBJ sockets are cold forged from alloy or low carbon steel to achieve superior grain structure and mechanical properties, then precision machined to tight dimensional tolerances. This combination of process and material ensures the sockets can withstand the higher steering loads, vibration, and duty cycles of commercial vehicles.
ABC manufactures IBJ sockets with outer diameters from 30mm to 45mm, covering the common IBJ socket sizes used in commercial vehicle steering systems. Custom dimensions can be accommodated to client specifications.
Yes. ABC's IBJ socket manufacturing is conducted under IATF 16949:2016 and ISO 9001:2015 certified quality management systems. Every batch undergoes dimensional inspection and surface quality verification in ABC's in-house inspection facility.
An IBJ (Inner Ball Joint) socket connects at the steering rack end of the tie rod, while an OBJ (Outer Ball Joint) connects at the steering knuckle end. IBJ sockets typically bear higher axial and radial loads due to their position in the steering system. ABC specialises in IBJ socket manufacturing for commercial vehicle applications.
To request a quote for IBJ sockets, email your part drawing or specifications to ops@accuratebearing.in or call +91 98452 96616 / +91 93221 30004. ABC's team will respond with a manufacturing feasibility review and commercial proposal.
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