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Compactor Diesel 170KG-CPD17
Compactor Diesel 170KG-CPD17
Kohler 15 LD 225 – 3.5 kW (4.7 HP)
Compaction of substrates for floors, foundations, crawl spaces and basements.
Given its great versatility it finds excellent use in many jobs. -
Compactor Diesel 90KG- Batmatic FP1650G
Compactor Diesel 90KG- Batmatic FP1650G
Honda GX 160 – 3.6 kW (4.8 HP)
Ideal for finishing and repairing asphalt surfaces.
Laying of porphyry or self-locking brick.
Compaction of any type of soil. -
Compactor Petrol 90KG-FP1650
Compactor Petrol 90KG-FP1650
Ideal for finishing and repairing asphalt surfaces.
Laying of porphyry or self-locking brick.
Compaction of any type of soil. -
Compactor Petrol 95KG- Batmatic CB1450
Compactor Petrol 95KG- Batmatic CB1450
Honda GX 160 – 3.6 kW (4.8 HP)
Ideal for finishing and repairing asphalt surfaces.
Laying of porphyry or self-locking brick.
Compaction of any type of soil. -
ROBIN COMPACTOR DIESEL GA170F 90KG
ROBIN COMPACTOR DIESEL GA170F 90KG
Robin – Plate CompactorFEATURES:
Robin- plate compactor is widely used in building and road construction.
There is no adequate dynamic theory exists to predict vital performance characteristics such as frequency of impacts, speed of forward travel, power delivered to the soil, etc.
It is found that the forward speed and power delivered to the soil are sensitive functions of the ratio of exciting force to dead weight.
The power delivered to the soil tends to be a maximum when the exciting force is approximately twice the dead weight.
It is shown that for certain values of system parameters, it is possible to have periodic behaviour of the system where the period of the motion is an integer multiple of the period of the exciting force. -
ROBIN COMPACTOR PETROL EY20 90KG
ROBIN COMPACTOR DIESEL GA170F 90KG
Robin – Plate CompactorFEATURES:
Robin- plate compactor is widely used in building and road construction.
There is no adequate dynamic theory exists to predict vital performance characteristics such as frequency of impacts, speed of forward travel, power delivered to the soil, etc.
It is found that the forward speed and power delivered to the soil are sensitive functions of the ratio of exciting force to dead weight.
The power delivered to the soil tends to be a maximum when the exciting force is approximately twice the dead weight.
It is shown that for certain values of system parameters, it is possible to have periodic behaviour of the system where the period of the motion is an integer multiple of the period of the exciting force.
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