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|
ANSI No |
#41 | MATERIAL | Carbon Steel |
| PITCH | 0.5 inch (12.7 mm) | ROLLER DIAMETER (D1 MAX) |
0.306 inch (7.77 mm) |
| WIDTH BETWEEN PLATES (B1 MIN) |
0.246 inch (6.25 mm) | PIN DIAMETER (D2 MAX) |
0.141 inch (3.58 mm) |
| PIN LENGTH (L MAX) |
0.541 inch (13.75 mm) | PIN LENGTH (LC MAX) |
0.590 inch (15.00 mm) |
| INNER PLATE DEPTH (H2 MAX) |
0.390 inch (9.91 mm) | PLATE THICKNESS (T MAX) |
0.051 inch (1.30 mm) |
| ULTIMATE TENSILE STRENGTH (QMIN) |
6.67/1516 kN/LB | WEIGHT | 0.276 lb/ft (0.41 kg/m) |
The #41 Roller Chain Connecting Link is a component designed to connect compatible chains used in #41 roller chain systems for light industrial and mechanical applications.
Designed to simplify chain installation, maintenance, and replacement, this connecting link helps improve system integration and reduce downtime during operational adjustments. In addition, this model is compatible with #41 roller chains.
Because of this, the #41 connecting link is widely used in mechanical transmission systems that require practical connection and efficient maintenance.
The #41 Roller Chain Connecting Link is a connection link designed to join compatible roller chain ends.
This type of component allows easier installation and removal during chain maintenance or replacement procedures. As a result, mechanical equipment can return to operation more quickly and efficiently.
Additionally, connecting links are commonly used in systems exposed to continuous movement and preventive maintenance.
The #41 Roller Chain Connecting Link can be used in different light industrial and mechanical systems.
Common applications include:
Additionally, connecting links help simplify industrial chain replacement and integration across different mechanical configurations.
The connecting link helps join chain ends more efficiently during assembly and maintenance.
This model is designed for integration with #41 roller chains.
Connecting links simplify chain removal and replacement in mechanical systems.
The component supports proper chain assembly across multiple light industrial and mechanical applications.
Compact mechanical systems depend on components capable of simplifying maintenance and integration without creating long operational interruptions.
Because of this, connecting links are widely used in applications that require quick chain replacement and more efficient maintenance.
Additionally, connection links help simplify adjustments and chain-to-sprocket integration in compact equipment and continuous movement systems.
The #41 Roller Chain Connecting Link supports these requirements by providing a practical solution for systems using #41 roller chains.
When selecting a roller chain connecting link, it is important to verify compatibility with the chain size and configuration used in the system.
Additionally, considering the mechanical system and application type helps ensure proper integration and stable operation.
Therefore, selecting the correct connecting link contributes to improved operational reliability and more efficient maintenance.
To preserve connecting link performance, recommended practices include:
Additionally, preventive practices help improve operational reliability in continuous mechanical systems.
PGN Bearings provides solutions for mechanical transmission, industrial maintenance, and roller chain systems. The product line includes roller chains, connecting links, heavy duty chains, and industrial components.
Additionally, PGN products are developed for applications that require dependable performance and reliable system integration.
PGN Bearings supplies industrial components for multiple industries and mechanical applications.
Key advantages include:
Because of this, companies use PGN products across multiple mechanical applications and continuous transmission systems.
It is a component used to connect compatible roller chain ends.
This model is designed for #41 roller chains.
Yes. The component helps simplify chain installation, removal, and replacement.
Yes. This model can be used in different light industrial and mechanical systems.
Proper alignment, periodic inspections, and preventive maintenance help maintain efficient operation.