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iglidur H1 plain bearings have been specially developed for use under extreme environmental conditions. Their strengths are their extremely high wear resistance and excellent coefficient of friction, even in applications in which the bearings are exposed to high temperatures or aggressive media. iglidur H1 plain bearings can be used completely lubrication-free; when used in wet areas, the surrounding medium can act as an additional lubricant.
| Descriptive technical specifications | ||
|---|---|---|
| Wear resistance at +23°C | - 🟧 🟧 🟧 🟧 🟧 + | More information on wear resistance |
| Wear resistance at +90°C | - 🟧 🟧 🟧 🟧 🟧 + | |
| Wear resistance at +150°C | - 🟧 🟧 🟧 🟧 🟧 + | |
| Slide property | - 🟧 🟧 🟧 🟧 ⬜️ + | Coefficient of friction, dynamic, against steel: µ 0.06 - 0.20 |
| Wear resistance under water | - 🟧 🟧 🟧 🟧 ⬜️ + | |
| Media resistance | - 🟧 🟧 🟧 🟧 🟧 + | More information on media resistance |
| Resistant to edge pressures | - 🟧 🟧 ⬜️ ⬜️ ⬜️ + | |
| Resistant to shock and impact loads | - 🟧 🟧 ⬜️ ⬜️ ⬜️ + | |
| Dirt resistance | - 🟧 🟧 ⬜️ ⬜️ ⬜️ + |
| General properties | Unit | iglidur® H1 | Testing method |
|---|---|---|---|
| Density | g/cm³ | 1.53 | |
| Colour | cream | ||
| Max. moisture absorption at +23°C/50% room humidity | % weight | 0.1 | DIN 53495 |
| Max. moisture absorption | % weight | 0.3 | |
| Coefficient of sliding friction, dynamic against steel | µ | 0.06 - 0.20 | |
| pv value, max. (dry) | MPa x m/s | 0.8 | |
| Mechanical properties | |||
| Flexural modulus | MPa | 2800 | DIN 53457 |
| Flexural strength at 20°C | MPa | 55 | DIN 53452 |
| Compressive strength | MPa | 78 | |
| Maximum recommended surface pressure (20°C) | MPa | 80 | |
| Shore D hardness | 77 | DIN 53505 | |
| [b]Physical and thermal properties [/b] | |||
| Max. long-term application temperature | °C | +200 | |
| Max. short-term application temperature | °C | +240 | |
| min. application temperature | °C | -40 | |
| Thermal conductivity | [W/m x K] | 0.24 | ASTM C 177 |
| Coefficient of thermal expansion (at 23°C) | K-1 x 10-5 | 6 | DIN 53752 |
| Electrical properties | |||
| Specific transitional resistance | Ωcm | > 1012 | DIN IEC 93 |
| Surface resistance | Ω | > 1011 | DIN 53482 |
iglidur H1 is a very temperature-resistant material. The temperatures prevailing in the bearing system also have an influence on the bearing wear. The wear increases with rising temperatures. With iglidur H1 in particular, however, this increase is very low. Additional protection is required at temperatures higher than +80°C.
| iglidur H1 | Application temperature |
|---|---|
| Minimum | -40°C |
| Max. long-term | +200°C |
| Maximum, short-term | +240°C |
| In addition secure axially from | +80°C |
Due to the excellent coefficient of friction, surface speeds of up to 2m/s are possible with iglidur H1 plain bearing in dry operation. Linear speeds of up to 5m/s can be realised. The speeds given in the table are limit values for the lowest bearing loads. With higher loads, the permissible speed decreases with the load due to the limitations of the pv value.
| m/s | Rotating | Oscillating | linear |
|---|---|---|---|
| permanent | 2.0 | 1.0 | 5.0 |
| Short-term | 2.5 | 1.5 | 7.0 |

Diagram 01: Permissible pv values for iglidur H1 plain bearings with 1mm wall thickness in dry operation against a steel shaft, at +20°C, installed in a steel housing
X = surface speed [m/s]
Y = pressure [MPa]
pv value, max. (dry)
MPa · m/s
0.80
<a 0="[" 1="o" 2="b" 3="j" 4="e" 5="c" 6="t" 7=" " 8="O" 9="b" 10="j" 11="e" 12="c" 13="t" 14="]" href="/de-de/website/gleitlager/wiki/p-x-v-wert-und-schmierung" uuid="f16b1d8b-0ff1-4a28-951c-3fbeec74eafd" target="_self">Information on pv value and lubrication
The maximum recommended surface pressure is a mechanical material parameter. Conclusions about the tribology cannot be drawn from this. The compressive strength of iglidur H1 plain bearings decreases with increasing temperatures. Diagram 02 illustrates this relationship. Diagram 03 shows the elastic deformation of iglidur H1 under radial load. Among the iglidur H materials, iglidur H1 is the material with the greatest flexibility. This must be taken into account for applications with high surface pressures or edge loads.
Like the wear resistance, the coefficient of friction changes with increasing load and surface speed (diagrams 04 and 05).
Coefficients of friction for iglidur H1 against steel (Ra = 1µm, 50 HRC):
| iglidur H1 | dry | Greases | Oil | Water |
|---|---|---|---|---|
| Coefficient of friction µ | 0.06 - 0.2 | 0.09 | 0.04 | 0.04 |
Diagrams 06 and 07 show an excerpt of the results of tests with different shaft materials that were carried out with plain bearings made from iglidur H1 in the igus laboratory. Plain bearings made from iglidur H1 show excellent wear behaviour in combination with a wide variety of shaft materials in both rotating and pivoting operation. On 304 stainless steel shafts in particular, iglidur H1 achieves very low wear rates in both rotating and pivoting operation. Even on hard-anodised aluminium shafts, iglidur H1 plain bearings have a long service life in rotating applications with low to medium loads.
iglidur H1 plain bearings have good resistance to chemicals. Therefore, even chemicals can act as lubricants. iglidur H1 plain bearings are non-resistant to hot, oxidising acids and some other particularly aggressive chemicals.
+ resistant 0 conditionally resistant - non-resistant
All data at room temperature [20 °C]
| Medium | Resistance |
|---|---|
| Alcohols | + |
| Hydrocarbons | + |
| Greases, oils without additives | + |
| Fuels | + |
| Diluted acids | + up to 0 |
| Strong acids | + to - |
| Diluted alkalines | + |
| Strong alkalines | + to - |

Diagram 10: Influence of moisture absorption
X = moisture absorption [Gew.-%]
Y = reduction of inner ø [%]
The moisture absorption of iglidur H1 plain bearings in a normal climate is approx. 0.1% weight. The saturation limit in water is 0.3% weight. Therefore, iglidur H1 is very well suited for use in wet environments.
| Maximum moisture absorption | |
|---|---|
| at +23°C/50% r. humidity | 0.1 weight % |
| Max. moisture absorption | 0.3% weight |
iglidur H1 plain bearings are electrically insulating.
| Electrical properties | |
|---|---|
| Specific transitional resistance | > 1012 Ωcm |
| Surface resistance | > 1011 Ω |
iglidur H1 plain bearings are press-fit bushings for shafts with h-tolerance (recommended minimum h9).
The bearings are designed for press-fit into a housing machined to a H7 tolerance. After installation in a housing with nominal dimensions, the inner diameter of the bearing with F10 tolerance adjusts itself automatically. For certain dimensions, the tolerance deviates depending on the wall thickness (see product range).
| Diameter d1 [mm] | Shaft h9 [mm] | iglidur H1 plain bearing F10 [mm] | Housing H7 [mm] |
|---|---|---|---|
| up to 3 | 0 - 0.025 | +0.006 +0.046 | 0 +0.010 |
| > 3 up to 6 | 0 - 0.030 | +0.010 +0.058 | 0 +0.012 |
| > 6 up to 10 | 0 - 0.036 | +0.013 +0.071 | 0 +0.015 |
| > 10 up to 18 | 0 - 0.043 | +0.016 +0.086 | 0 +0.018 |
| > 18 up to 30 | 0 - 0.052 | +0.020 +0.104 | 0 +0.021 |
| > 30 up to 50 | 0 - 0.062 | +0.025 +0.125 | 0 +0.025 |
| >50 to 80 | 0 - 0.074 | +0.030 +0.150 | 0 +0.030 |
| >80 to 120 | 0 - 0.087 | +0.036 +0.176 | 0 +0.035 |
| > 120 up to 180 | +0.100 + 0 | +0.043 +0.203 | 0 +0.040 |
Resistant up to a radiation intensity of 2 x 102Gy.
iglidur H1 plain bearings are only partially resistant to UV radiation. Under the influence of weathering, the surface of iglidur H1 becomes rougher and wear increases. Therefore, the use of iglidur H1 plain bearings that are directly exposed to the weather must be checked on a case-by-case basis.
When used in a vacuum, it must be taken into account that the - albeit only small - water components outgas. Use in a vacuum is generally possible.

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