O-ring 130x7 NBR 70 ShA with a nominal inside diameter of 130 mm and a 7 mm cross-section. Made from nitrile butadiene rubber NBR with a hardness of 70 Shore A. Selection should consider the operating medium, temperature, pressure, groove geometry and sealing conditions. Available from simmering.pl with stock in Poland for industrial, maintenance, service and B2B customers.
O-ring 130x7 NBR 70 ShA is an elastomeric sealing ring with a nominal inside diameter of 130 mm and a cross-section of 7 mm. It is made from NBR (nitrile butadiene rubber) with a hardness of 70 Shore A. Correct selection requires consideration of the groove geometry, operating medium, temperature, pressure and static or dynamic operating conditions.
| Parameter | Value |
|---|---|
| Product type | O-ring |
| Inside diameter ID | 130 mm |
| Cross-section CS | 7 mm |
| Material | NBR |
| Hardness | 70 ShA |
| Size | 130x7 mm |
The designation 130x7 mm defines the two primary dimensions of the O-ring:
The 130 mm dimension does not refer to the outside diameter.
Based on the nominal geometry, the approximate outside diameter is:
130 mm + 2 x 7 mm = 144 mm
For identification and ordering, however, the primary size remains 130x7 mm, meaning inside diameter x cross-section.
NBR, or nitrile butadiene rubber, is one of the most widely used elastomers for technical sealing applications. NBR O-rings are commonly used in applications involving many mineral oils, greases and other media compatible with the specific NBR compound.
The NBR designation alone does not define all operating limits. Compatibility should always be assessed according to the specific medium, temperature, pressure and operating conditions.
70 ShA, or 70 Shore A, specifies the nominal hardness of the elastomer. It is a commonly used hardness for NBR O-rings in many standard sealing applications.
Hardness influences the deformation characteristics of the O-ring and its behaviour after installation in the groove.
An O-ring 130x7 NBR 70 ShA should not automatically be replaced by a 90 ShA version simply because both products have identical dimensions.
O-ring 130x7 NBR can be used as a sealing element in appropriately designed technical connections, machinery, equipment and industrial installations.
A specific application should not be determined from the 130x7 mm dimensions alone. The operating medium, temperature, pressure, groove geometry and type of movement must also be considered.
Before ordering, verify:
Identical 130x7 mm dimensions do not automatically mean that O-rings made from different materials or with different hardness values are interchangeable.
The groove and mating surfaces should be clean before installation. The O-ring should be installed evenly without twisting, cutting or damaging the elastomer.
Sharp edges, threads and burrs should not come into direct contact with the sealing surface during assembly.
Natural alternative forms of this specification include:
These are alternative written forms of the same basic dimensional and material specification.
The nominal inside diameter is 130 mm and the cross-section is 7 mm.
No. In the 130x7 mm designation, 130 mm is the nominal inside diameter and 7 mm is the cross-section.
Based on nominal geometry, the outside diameter is approximately 144 mm.
NBR stands for nitrile butadiene rubber, an elastomer widely used for technical sealing elements and O-rings.
70 ShA specifies a nominal elastomer hardness of 70 Shore A.
Not automatically. Although the nominal dimensions are identical, NBR and FKM have different material properties and chemical resistance. The material must be selected according to the operating medium and conditions.
No. They have the same nominal dimensions and may both be made from NBR, but they have different hardness values. The correct hardness depends on the sealing system and operating conditions.
O-ring 130x7 NBR 70 ShA is an elastomeric sealing ring with a nominal inside diameter of 130 mm and a 7 mm cross-section. It is made from nitrile butadiene rubber with a hardness of 70 Shore A. Correct selection requires consideration of the medium, temperature, pressure, groove geometry and operating conditions.