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- Part number: Q2SI-0203-03
- Material: iglide® Q2
- Shape: Sleeve bearings
- Dimensions:
- d1 0.125 in
- d2 0.1875 in
- b1 0.1875 in
- Customize dimensions
- Manufacturing method: Injection molding
- Service life:
- The durable heavy duty bearing
- Wear resistant and dimensionally stable at high loads
- Good price/performance ratio
- Dry-running and maintenance-free
iglide® Q2 | The durable heavy-duty bearing
Tolerances and measurement system
The installation dimensions and tolerances of the iglide® plain bearings are a function of the material and wall thicknesses. For each material, the moisture absorption and the thermal expansion are imperative. Plain bearings with low moisture absorption can be designed with a minimal amount of tolerance. For wall thickness, the rule is: The thicker the bearings are, the larger the tolerances must be.
Assembly
iglide® bearings are press-fit bearings. The inner diameter adjusts only after press-fit in the proper housing bore with a recommended tolerance. The before press-fit oversized dimension can be up to 2% of the inner diameter. In this manner, the secure press-fitting of the bearing is achieved. Axial or radial shifts in the housing are also prevented.
- Wear resistant and dimensionally stable at high loads
- Good price/performance ratio
- Dry-running and maintenance-free
When to use it?
| When not to use?
|
Tolerances and measurement system
The installation dimensions and tolerances of the iglide® plain bearings are a function of the material and wall thicknesses. For each material, the moisture absorption and the thermal expansion are imperative. Plain bearings with low moisture absorption can be designed with a minimal amount of tolerance. For wall thickness, the rule is: The thicker the bearings are, the larger the tolerances must be.
Assembly
iglide® bearings are press-fit bearings. The inner diameter adjusts only after press-fit in the proper housing bore with a recommended tolerance. The before press-fit oversized dimension can be up to 2% of the inner diameter. In this manner, the secure press-fitting of the bearing is achieved. Axial or radial shifts in the housing are also prevented.
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