| Low-load or high-compliance suspension joint | 55 ± 5 | 50–60 Shore A | Low to moderate radial load; larger articulation angle; priority on vibration isolation and reduced transmitted shock. | Higher flexibility and damping; greater deflection under load; lower resistance to extrusion when clearances are excessive. | Measure radial clearance, compression deflection, operating temperature, and evidence of edge bulging. |
| General-purpose suspension joint | 65 ± 5 | 60–70 Shore A | Moderate to high radial load with regular articulation and mixed haul-road conditions. | Balanced load support, damping, wear resistance, and compliance; suitable as a normal starting point when load data are limited. | Confirm bore diameter, outer diameter, sleeve length, interference fit, and measured joint movement. |
| High-load or high-impact suspension joint | 75 ± 5 | 70–80 Shore A | High radial load, frequent impact loading, severe haul-road inputs, or a need to limit excessive joint deflection. | Higher load capacity and lower deformation; increased transmitted vibration and greater sensitivity to misalignment. | Check peak load, housing support, shaft alignment, compression set, and temperature rise during operation. |
| Very high-load, low-deflection application | 85 ± 5 | 80–90 Shore A | Very high static load with limited articulation and strong dimensional-control requirements. | Low deflection and high resistance to extrusion; may increase noise, vibration, edge stress, and misalignment sensitivity. | Use only after checking housing rigidity, shaft condition, angular misalignment, lubrication requirements, and installation force. |
| Operating temperature screening | Test at the expected service temperature | Record temperature with each result | Continuous or intermittent service near the compound’s qualified temperature limit. | Elastomer hardness changes with temperature; elevated temperature commonly reduces apparent hardness and increases creep risk. | Record ambient and part temperature, test the same compound batch, and compare results at consistent conditions. |
| Dimensional fit screening | Not determined by Shore A alone | Use approved drawing tolerances | Replacement bushing installation into an existing housing and around an existing pin or sleeve. | Correct hardness cannot compensate for an incorrect bore, outer diameter, length, interference fit, or surface finish. | Measure bore diameter, outer diameter, free length, sleeve diameter, concentricity, and housing/pin wear. |