Technical Document
Specifications
Brand
FabreekaAnti Vibration Pad Type
Anti-Vibration Bearing Pad
Load Rating
8000psi
Thickness
25mm
Size
100 x 100 x 25mm
Length
100mm
Width
100mm
Product details
SA-47 Bearing Pads
Fabreeka SA-47 Bearing Pads are suitable for use where non-parallel load bearing surfaces may be accommodated between structural elements, and also offer vibration and shock isolation properties in structural applications. SA-47 Bearing Pads are manufactured from masticated rubber and include additional synthetic fibres for reinforcement. The bearing pads offer a compressive load that is twice that of neoprene or nitrile products.
SA-47 Bearing Pads enable loads to be distributed evenly between structural elements. They also reduce the electrolytic action between dissimilar metals and will also accommodate small rotational forces.
₹ 4,393.74
₹ 4,393.74 1 Bag of 4 (Exc. GST)
₹ 5,184.61
₹ 5,184.61 1 Bag of 4 (inc. GST)
1
RS Components & Controls (I) Ltd
Distribution hub - B-89, Sector 67, Noida, Gautam Budh Nagar, (Uttar Pradesh), 201 301
₹ 4,393.74
₹ 4,393.74 1 Bag of 4 (Exc. GST)
₹ 5,184.61
₹ 5,184.61 1 Bag of 4 (inc. GST)
1
Stock information temporarily unavailable.
Please check again later.
quantity | Unit price |
---|---|
1 - 4 | ₹ 4,393.74 |
5 - 9 | ₹ 4,199.90 |
10+ | ₹ 4,079.90 |
Technical Document
Specifications
Brand
FabreekaAnti Vibration Pad Type
Anti-Vibration Bearing Pad
Load Rating
8000psi
Thickness
25mm
Size
100 x 100 x 25mm
Length
100mm
Width
100mm
Product details
SA-47 Bearing Pads
Fabreeka SA-47 Bearing Pads are suitable for use where non-parallel load bearing surfaces may be accommodated between structural elements, and also offer vibration and shock isolation properties in structural applications. SA-47 Bearing Pads are manufactured from masticated rubber and include additional synthetic fibres for reinforcement. The bearing pads offer a compressive load that is twice that of neoprene or nitrile products.
SA-47 Bearing Pads enable loads to be distributed evenly between structural elements. They also reduce the electrolytic action between dissimilar metals and will also accommodate small rotational forces.