Ref.: 124090 49

Aluminium container truck – Gmöhling perforated panels and base

Aluminium container truck – Gmöhling

external LxWxH 1130 x 630 x 835 mm

£619.00
Price / item (Excl. VAT)

Delivery time: 2 Week delivery
Product description
  • All round edge and base profile for reinforcement of the container walls
  • Walls reinforced with trapezoidal raised beading
  • Low weight
  • Extremely robust and retains its shape
Container truck made of aluminium, panels and base perforated. Hole Ø 10 mm.
Castors with non-marking solid rubber tyres, zinc plate steel forks, roller bearings and thread guard. Swivel castors with wheel stops as standard.
Gmöhlig – Made in Germany
Gmöhlig – Made in Germany
Technical data
Modelperforated panels and base
Max. load200 kg
Length1130 mm
Width630 mm
Height835 mm
Internal length1100 mm
Internal width600 mm
Internal height650 mm
Capacity430 l
Side panel materialaluminium
Colouraluminium silver
Fittingsthread guard without lid
Wheel typesolid rubber non-marking
Wheel fittings2 fixed castors, 2 swivel castors with stops
Wheel diameter125 mm
Wheel bearingroller bearing
Product typecontainer trucks
Suppliedassembled
Weight21 kg
Sustainability
Sustainable product

This product actively contributes to protecting our environment and taking social responsibility. It meets our strict sustainability criteria and thus supports an economically, ecologically and socially viable future. The score asks the crucial question for every product: does this product contribute to creating sustainable and fair conditions for today and future generations? Below are the categories in which this product performs particularly well.

You can find out more about product evaluation and our sustainability initiative on our information page .
CriteriaWeightingScore
Icon Climate protectionClimate protection30%3.0
Icon Circulatory economyCirculatory economy30%4.2
Icon BiodiversityBiodiversity25%1.0
Icon Economic efficiencyEconomic efficiency10%3.0
Icon InnovationInnovation5%3.9
Overall score3.2
More about our sustainability approach.