All Rebar Coupler
Concerning Huigong Rebar Coupler
Our core production base in Chongqing, China, specializes in the production of various rebar couplers, with an average daily capacity of 100,000 units. Equipped with efficient automated equipment, we can process 120 connectors per hour, ensuring a stable supply to meet the needs of various projects.
With over 10 years of industry experience and a deep understanding of the actual needs of construction sites, we are committed to developing and customizing more efficient and cost-effective rebar coupler solutions. From product design to equipment maintenance, we provide comprehensive technical support to help customers optimize construction processes and reduce overall costs.
Why choose us
Choosing us means choosing an efficient, stable and economical rebar coupler solution!

Core Advantages of Rebar Coupler vs. Traditional Welding
- Higher Construction Efficiency
No preheating or cooling is required; connections can be completed directly by mechanical tightening or pressing. Construction speed is over 50% faster than welding, and they are weather-resistant and can be used around the clock. - More Reliable Connection Strength
The strength of mechanical connections is typically over 1.1 times the strength of the parent rebar. There is no heat-affected zone, preventing degradation of rebar performance due to high temperatures, resulting in improved seismic performance. - More Stable Quality Control
Quantitative quality control through torque wrenches or pressure testing provides convenient and stable results, minimizing the impact of human factors. - Wider Applicability
Applicable to high-strength rebar such as HRB400 and HRB500, as well as connecting rebar of various diameters and materials. - Improved Structural Durability
No residual welding stress, excellent fatigue resistance, and less prone to cracking or corrosion over long-term use. - Better Overall Cost-Effectiveness
Although the unit cost is higher, savings in labor and steel contribute to lower overall costs.