Alfatec package
Products can also be added individually as accessories
PT080.0362BR1100 Precision tiger rollers adjustable – Sliding piece adjustable via spacer rings with rectangular fastening element
The ALFATEC precision tiger roller with a diameter of 81.8 mm has an adjustable glide piece. Axial guidance is provided by an oilamide sliding block. Spacer rings are used to adjust the axial play. Milled guide profiles and tighter tolerances ensure that the roller is guided precisely and robustly at the same time. Thanks to its combined design with radial and axial guidance, the precision tiger roller requires hardly any installation space and impresses with its robustness and high load capacity of up to 12.87 kN radially and up to 5.00 kN axially.
The precision tiger castor PT080.0362BR1100 at a glance:
- Precise guidance
- Axial play adjustable via spacer rings
- Easy to install
- High load-bearing capacity at standstill in axial direction
A guide profile is also required for each precision tiger roller. The matching guide profile is UP080.0760.
It is welded to a rectangular fastening element, which enables simple installation by screwing on. Fastening elements are available in different versions – including PT080.0362BQ1000.
The rectangular spacer elements BR080.1505 with 0.5 mm material thickness and BR080.1510 1.0 mm material thickness are suitable for adjusting the assembly.
Our DR080.0905 and DR080.0910 spacer rings make it easy to adjust the axial guide roller.
ALFATEC also offers the precision tiger roller in various sizes.
sizes
for low and high loads.
The precision tiger roller is available in different versions such as with
adjustable axial roller
or with
adjustable eccentric
and in many other series.
Properties
Adjustable axial
yes
Precision
yes
Diameter (mm)
81,80
Series
80
Material
Stahl
Total height (mm)
54,50
Load capacity
Radial load capacity / FR (kN)
12,87
Load capacity axial / FA (kN)
5,00
C (kN)
48,00
C0 (kN)
56,80
C0a (kN)
18,00
Ca (kN)
18,00
Custom, no compromise
Christoph Stäbler
Aaron Roth





