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Full-section canal pavers

GSP 160

Continuous concrete lining across the full canal profile.

GSP160 - FULL SECTION CONCRETE FINISHERS

Machine data

Technical specifications

Published data, clearly organised for quick comparison and project planning.

Paving width
1000 - 18000 mm
Layer thickness
0 - 450 mm
Rated power
373,1 kW / 500 hp
Machine weight
72000kg
View complete specification table 11 parameters
GSP160 - FULL SECTION CONCRETE FINISHERS — complete published specifications
Exhaust emissions categoryEU Stage 3 / US Tier 3
Number of track units4
Paving width1000 - 18000 mm
Layer thickness0 - 450 mm
Paving speed0 - 12 m/min.
Travel speed0 - 25 m/min.
Displacement6 I
Machine weight72000kg
Mechanical height adjustment900 mm
Rated power373,1 kW / 500 hp
Hydraulic height adjustment900 mm

Specifications refer to the published machine information. Confirm the configuration required for your project with our team.

Engineering & operation

Built around the application.

Machine features and operating principles from the complete product content.

01

UNLIMITED PROJECT SUPPORT

First, our team of concrete paving specialists will study the submitted plans for your waterway project and analyze your equipment needs. This involves top widths, bottom widths, percentage of slope on the walls, is the slope constant throughout the project, top to bottom length of the canal walls, distance of the canals, the number of variations in the profiles, the presence of a haul road and berm, and anticipated concret supply to the paver.

 

The team will break down the concepts and provide practical recommendations on the choice of slipform concrete paver and mold considerations or paving with a cylinder f inisher machine. The project analysis will include the capability to build in versatility to the equipment to accommodate more than one profile. The biggest advantage you have with your GEOMETRI team is their extensive global experience in canals and waterways.

02

How Does It Apply?

  • It is used in concrete laying in work areas such as drinking water channels, irrigation channels, drainage channels, hydroelectric dams.
  • The concrete mixer discharges the concrete onto the finisher's conveyor. Concrete transferred from the conveyor to the helixes is distributed equally to all sides of the mold. Concrete is compressed homogeneously with the help of vibrators on the mold and laid with a sliding mold.
03

Geometri Vibrators

  • Specially produced high-performance vibrators keep the vibration at the highest level, compact the concrete homogeneously and bring the surface to perfection.
04

Fuel saving

  • With its hydraulic design, it saves up to 40% in fuel consumption.
05

Durable Mold

  • The mold surface in contact with the concrete is additionally reinforced against abrasion.
06

Prevents Concrete Loss

  • It prevents concrete loss in laying works with its high-precision sensors and Geometry automation system.
07

Operator Platform

  • The operator can easily produce the desired side of the machine while on the machine.
08

Modular Mold

  • Considering the variable duct sizes in your project, it produced its molds using the add-subtract method. In this way, the mold can be enlarged or reduced.
09

Water Channels of the Future

Concrete pavers are efficient machines used in modern construction projects for the production of monolithic concrete structures such as water channels. In particular, slipform concrete pavers are ideal for the continuous installation of structures such as concrete protection walls, curb profiles and water channels. These machines shape concrete in a specific mold, creating high quality and smooth surfaces. Concrete pavers play an important role in the construction of structures that perform critical functions such as water drainage, thus helping to manage debris such as rainwater and protect other structures.

10

Conserve water with water channels!

Saving water is essential to conserve limited water resources and ensure clean water for future generations. There are simple but effective ways to conserve water at home and in the garden. For example, repairing leaking faucets and pipes can significantly reduce water waste. Also, collecting rainwater and using it as needed can be a natural substitute for drinking water. Steps such as running machines at full capacity and taking short showers also contribute to saving water. These methods are effective for both protecting the environment and saving money on water bills.

11

Why are Water Channels Built?

Water channels are built for various purposes. Basically, they are used to widen waterways, direct the flow of water and facilitate transportation between regions. Historically, water canals served as trade routes, making it possible to exchange goods between different regions. They also have important functions such as irrigating agricultural land and supplying cities with drinking water. Today, water canals are of both economic and tourist importance, some of them are considered engineering marvels and are famous worldwide.

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