Renold 100-2 2 Roller Chain, 10 ft, 100-2, ANSI
- RS stock no.:
- 805-184
- Mfr. Part No.:
- GY100A2X10FT
- Manufacturer:
- Renold
Image representative of range
Subtotal (1 unit)*
R 46 469,18
(exc. VAT)
R 53 439,56
(inc. VAT)
FREE delivery for orders over R 1,500.00
Stocked by manufacturer
- Ready to ship from 06 July 2026
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units | Per unit |
|---|---|
| 1 + | R 46,469.18 |
*price indicative
- RS stock no.:
- 805-184
- Mfr. Part No.:
- GY100A2X10FT
- Manufacturer:
- Renold
Specification
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Renold | |
| Chain Type | 100-2 | |
| Product Type | Roller Chain | |
| Pitch | 31.75mm | |
| Number of Strands | 2 | |
| Material | Carbon Steel | |
| Series | 100-2 | |
| Chain Standard | ANSI | |
| Length | 10ft | |
| Plate Height | 30.17mm | |
| Roller Diameter | 19.05mm | |
| Chain Weight | 25.4kg | |
| Width Between Roller Link Plates | 18.9mm | |
| Select all | ||
|---|---|---|
Brand Renold | ||
Chain Type 100-2 | ||
Product Type Roller Chain | ||
Pitch 31.75mm | ||
Number of Strands 2 | ||
Material Carbon Steel | ||
Series 100-2 | ||
Chain Standard ANSI | ||
Length 10ft | ||
Plate Height 30.17mm | ||
Roller Diameter 19.05mm | ||
Chain Weight 25.4kg | ||
Width Between Roller Link Plates 18.9mm | ||
- COO (Country of Origin):
- DE
The Renold roller chain is designed for high performance and exceptional durability, making it suitable for various demanding applications within the industry. It provides reliable power transmission under heavy loads and stressful conditions.
Solid extruded bushes enhance roundness and strength over curled bushes
Wide waist plate shape optimises stress distribution, contributing to improved fatigue performance
Triple Punch holing guarantees precise pin and bushing location for uniform wear
Unique connecting link design ensures no component is weaker than others
Pre-stressed surfaces significantly increase fatigue resistance
