{"product":{"productId":"agid.36514","price":17.79,"name":"Miniature roller guide carriage for 20 mm width, rollers vertical"},"currency":"EUR"}
Material
Plate stainless steel 1.4301
Balls steel.
Pin stainless steel 1.4305.
Rollers polyacetal (POM).
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Miniature roller guide carriage for width 20 mm, rollers vertical, Form A
from
€18.18
plus sales tax
plus shipping costs
Miniature roller guide carriage for 20 mm width, rollers vertical, Form B
from
€21.71
plus sales tax
plus shipping costs
Miniature roller guide carriage for 20 mm width, rollers vertical, Form C
from
€17.79
plus sales tax
plus shipping costs
Description
Material
Plate stainless steel 1.4301
Balls steel.
Pin stainless steel 1.4305.
Rollers polyacetal (POM).
Note
The multi-roller mechanism ensures smooth movement with compact installation dimensions. There is no ball creep. They enable uniform motion by radial and axial loads.
The guide carriages and guide rails were tested at 200 mm/s for 300,000 cycles of 100 mm.
Maximum screw length = plate thickness + 4 mm.
The guide carriages and guide rails were tested at 200 mm/s for 300,000 cycles of 100 mm.
Maximum screw length = plate thickness + 4 mm.
Technical Data
Safety coefficients
Low travelling frequency and gentle motion:
- Static safety coefficient: 0.4 - 0.5
- Dynamic safety coefficient: 0.9 - 1.0
High travelling frequency and uniform motion:
- Static safety coefficient: 0.3 - 0.4
- Dynamic safety coefficient: 0.6 - 0.8
High travelling frequency and vibrations:
- Static safety coefficient: 0.2 - 0.3
- Dynamic safety coefficient: 0.3 - 0.5
Calculation
Maximum static load = nominal load * static safety coefficient
Maximum dynamic load = nominal load * dynamic safety coefficient
Maximum static torque = nominal torque * static safety coefficient
Maximum dynamic torque = nominal torque * dynamic safety coefficient
These formulas are guidelines and must be rechecked for the respective application.
Low travelling frequency and gentle motion:
- Static safety coefficient: 0.4 - 0.5
- Dynamic safety coefficient: 0.9 - 1.0
High travelling frequency and uniform motion:
- Static safety coefficient: 0.3 - 0.4
- Dynamic safety coefficient: 0.6 - 0.8
High travelling frequency and vibrations:
- Static safety coefficient: 0.2 - 0.3
- Dynamic safety coefficient: 0.3 - 0.5
Calculation
Maximum static load = nominal load * static safety coefficient
Maximum dynamic load = nominal load * dynamic safety coefficient
Maximum static torque = nominal torque * static safety coefficient
Maximum dynamic torque = nominal torque * dynamic safety coefficient
These formulas are guidelines and must be rechecked for the respective application.