A concrete line pump is designed to efficiently transport concrete through narrow or hard-to-reach areas, making it ideal for challenging job sites. With flexible hoses, it delivers concrete over long distances and up to elevated spots, saving time and reducing manual labor. Perfect for projects with limited access, it ensures precise placement in residential, commercial, or industrial applications.
Choosing the optimal concrete line pump requires balancing site access constraints, daily output demands, and power availability. Aimix provides two types of concrete line pumps for sale. Our truck-mounted and trailer-mounted line concrete pump solutions address distinct operational challenges across global construction scenarios.
| Feature | Specification | Operational Impact |
|---|---|---|
| Max Output | 120 m³/h | Completes large-scale pours (e.g., 800m² industrial floor) in 6-8 hours. |
| Boom Reach | 26-58m (6 models) | Clears 8-story structures without repositioning, saving 45 minutes per reposition. |
| Planetary Mixer | Hydraulic vertical shaft | Eliminates segregation, ensuring 30% higher concrete density for structural integrity. |
| Model Type | Max Output | Vertical Reach | Power Source | Best Application Scenario |
|---|---|---|---|---|
| Diesel | 30-90 m³/h | 120-260m | 82-176kW Engine | Remote quarries, off-grid projects |
| Electric | 30-90 m³/h | 120-200m | 45-110kW Grid | Indoor renovations, urban centers |
Selecting the right concrete line pump demands exact spatial calculations and operational reality checks. Below we decode access requirements using your project dimensions and our engineered solutions.
Core Formula: Minimum Clearance = Pump Width + 0.8m Safety Margin (Safety Standard: EN 13000:2024 Mobile Machinery Access)
| Project Scenario | Available Width | Pump Solution | Feasibility Analysis |
|---|---|---|---|
| London Townhouse Renovation | 2.1m alley | ABT40D Electric Trailer (1.75m) | 1.75m + 0.8m = 2.55m > 2.1m → Use detachable trailer with 20m hose from street |
| Norwegian Forest Road Repair | 2.6m path | ABJZ40C Diesel Trailer (2.2m) | 2.2m + 0.8m = 3.0m > 2.6m → Position pump at entry with 30° hose angle |
| Singapore Hospital ICU Upgrade | 1.9m corridor | ABT40D Electric (1.75m) | 1.75m + 0.8m = 2.55m > 1.9m → Remote placement + 15m flexible hose |
| German Factory Expansion | 3.5m gate | Truck-Mounted 33m Boom (2.52m) | 2.52m + 0.8m = 3.32m |
Engineering Insight:
| Project Type | Daily Need | Min. Pump Spec | Recommended Model | Operational Rationale |
|---|---|---|---|---|
| Residential Pool | 24m³ | 4.7m³/h | ABT40D (40m³/h) | 40 × 6 × 0.85 = 204m³/day → 850% buffer for small batches |
| Bridge Pier (4 units) | 72m³ | 14.1m³/h | ABT80D (80m³/h) | Handles simultaneous pours with 30% power reserve for rebar obstacles |
| Warehouse Floor | 150m³ | 29.4m³/h | Truck-Mounted (120m³/h) | Continuous pour requires 4x buffer to prevent cold joints |
Real-Data Validation:
| Constraint | Solution | Technical Proof |
|---|---|---|
| Unstable Rural Grid | ABJZ40C Diesel | Weichai engine tolerates 170-260V fluctuations |
| -25°C Arctic Site | ABJZ30C Diesel | Pre-heated hydraulic oil (-30°C rating) + insulated hoses |
| Urban Emission Zone | ABT80D Electric | 0g CO₂/kWh + harmonic current compensator (EN 50543 compliant) |
| Multi-Site Relocation | Truck-Mounted 38m Boom | Self-propelled chassis vs. trailer hitch savings (45 mins/site) |
You can check the chart down below for more details of trailer mounted type concrete pump lines specifications.
| Items | Key Parameters | Units | ABT40C | ABT60C | ABT80C |
|---|---|---|---|---|---|
| Whole performance of machine | Max. theo. concrete output(L./H) | M3/h | 40/26 | 67/45 | 84/45 |
| Max.concrete pumping pressure(H./L.) | MPa | 10/8 | 13/7 | 16/7 | |
| Distribution valve type | S Valve | S Valve | S Valve | ||
| Concrete cylinder diameter×stroke | mm | Φ180×1200 | Φ200×1650 | Φ200×1800 | |
| Hopper capacity x feeding height | L/mm | 400/1100 | 800/1400 | 800/1400 | |
| Outlet diameter | mm | Φ150 | Φ180 | Φ180 | |
| Power system | Diesel engine model | Weichai | Wechai | Wechai | |
| Diesel engineering power | KW | 82 | 129 | 176 | |
| Rotate speed | r/min | 2200 | 2200 | 2200 | |
| Hydraulic system | Circuit type | Open circuit | Open circuit | Open circuit | |
| Pumping system pressure | MPa | 32 | 32 | 32 | |
| Mixing system pressure | MPa | 10 | 10 | 10 | |
| Capacity of oil tank | L | 370 | 560 | 560 | |
| Other parameters | Max. Theoretical Vertical/Horizontal Conveying Distance | m | 120/500 | 180/1000 | 260/1200 |
| Max. aggregate diameter | mm | Slick/scree:40 | Slick/scree:40 | Slick/scree:40 | |
| Inside diameter of delivering pipe | mm | Φ125 | Φ125 | Φ125 | |
| Dimensions:length×width×height | mm | 5000x1850x1700 | 5800x2000x1750 | 6300x2100x2350 | |
| Total weight | kg | 4500 | 6500 | 6900 |
| Items | Key Parameters | Units | ABT40D | ABT60D | ABT80D |
|---|---|---|---|---|---|
| Whole performance of machine | Max. theo. concrete output(L./H) | M3/h | 40/26 | 60/36 | 84/46 |
| Max.concrete pumping pressure(H./L.) | MPa | 10/8 | 13/7 | 16/9 | |
| Distribution valve type | S Valve | S Valve | S Valve | ||
| Concrete cylinder diameter×stroke | mm | Φ180×1300 | Φ200×1650 | Φ200×1800 | |
| Hopper capacity x feeding height | L/mm | 400/1250 | 800/1400 | 800/1400 | |
| Outlet diameter | mm | Φ150 | Φ180 | Φ180 | |
| Electrical engineering power | KW | 45 | 90 | 110 | |
| Rotate speed | r/min | 1480 | 1480 | 1480 | |
| Hydraulic system | Circuit type | Open circuit | Open circuit | Open circuit | |
| Pumping system pressure | MPa | 28 | 28 | 32 | |
| Mixing system pressure | MPa | 10 | 10 | 10 | |
| Capacity of oil tank | L | 370 | 560 | 560 | |
| Other parameters | Max. Theoretical Vertical/Horizontal Conveying Distance | m | 120/500 | 160/800 | 200/1000 |
| Max. aggregate diameter | mm | Slick/scree:40 | Slick/scree:40 | Slick/scree:40 | |
| Inside diameter of delivering pipe | mm | Φ125 | Φ125 | Φ125 | |
| Dimensions:length×width×height | mm | 4500x1750x1600 | 5500x2000x1750 | 5800x2100x2350 | |
| Total weight | kg | 3200 | 6000 | 6300 |
The truck mounted concrete line pump pours non-load-bearing walls & ring beams in a 15-story Kingston apartment tower.
Challenge:
Stairwell access width ≤1.2m – boom pumps couldn’t reach upper floors
Discontinuous small-volume pours (3–5m³ per floor)
Line Pump Concrete Solution:
Deployed electric line pump (0.7m width) carried floor-by-floor via service elevator
Pumped fine-aggregate concrete (≤15mm) directly to formwork through 100m pipelines
Operated on 10kW generator during grid outages
Result:
30% faster completion vs. manual bucket lifting
Saved $7,200 in crane rental costs
Client now rents the unit for $180/day to local contractors
The trailer line pump pops out slabs & balconies (final 5 floors) of a 22-story Klang tower.
Challenge:
Cramped staging area (8m x 10m)
Precision low-volume pours (4–6m³) around dense rebar
Line Pump Concrete Solution:
Positioned diesel concrete line pump trailer (7.5kW) in alleyway adjacent to site
Pumped through 130m pipelines to placing boom on floor 17
Delivered 12MPa pressure for C30 concrete
Result:
Zero placement errors in complex formwork
Completed pours 2 days ahead of schedule
Concrete line pumps solve critical challenges in confined spaces, low-volume projects, and remote locations where traditional large pump trucks fail. Their compact design (as narrow as 0.6 meters) and ability to operate with diesel generators (7.5–11kW) make them indispensable for these high-demand applications:
Line pumps excel in navigating extreme space constraints such as mining shafts, subway tunnels, and culverts. Their 160-meter horizontal reach and 30-meter vertical lift enable continuous concrete placement for tunnel linings and structural grouting, eliminating manual transport in hazardous environments.
These pumps accelerate low-volume pours by 100x compared to manual methods by operating directly on floor slabs without scaffolding. They maintain consistent flow for fine-aggregate concrete (≤15mm aggregate size), ensuring precision in casting non-load-bearing walls, columns, and ring beams during high-rise renovations.
Generator compatibility bypasses unstable grid power in villages, while compact wheeled bases traverse unpaved terrain. Contractors use them to pour foundations and slabs efficiently, reducing equipment costs by 80%.
Steady pressure output (1.5–3MPa) allows pumping of high-viscosity mortars into rock fissures and unstable soil. Integrated vibration screens prevent blockages during critical geotechnical operations like landslide repairs and pile foundation grouting.
Low-shear pumping technology prevents segregation of sensitive materials like foam concrete and lightweight aggregates. This is essential for uniformly installing floor-heating insulation layers or spraying ecological slope-protection mixtures at 5m³/hour output rates.
Purchasing a concrete line pump isn’t just an equipment acquisition—it’s a versatile asset that generates returns throughout its operational life. Beyond initial project use, explore these proven strategies to enhance profitability:
These pumps retain 60–70% residual value after 3 years due to high demand in developing regions (Southeast Asia, Africa, South America). Their compact size reduces shipping costs by 40% compared to standard pumps, making them ideal for international resale. Tip: Document maintenance records to justify premium pricing.
Generate $150–$300/day in rental revenue by targeting:
Small contractors needing short-term access for rural housing or repair jobs
Municipalities requiring sporadic use for infrastructure maintenance
Disaster response teams deploying rapid concrete solutions
Increase client retention by 35% when pairing equipment with:
On-demand technical support ($50–$150/hour) for pump troubleshooting
Material consulting services (e.g., optimizing grout mixes for slope stabilization)
Operator training programs ($300/session) reducing customer downtime
Recover 15–20% of original cost by dismantling decommissioned pumps:
High-value components (hydraulic cylinders, S-tube assemblies) sell for 50% of new price
Electronics/control systems are repairable and reusable
Frame/chassis often repurposed for custom machinery builds
Aimix has our own factory in China. We also have many distributors and warehouses around the world. You can check the stock down below if you need the pump in hurry. The CP stands for concrete trailer line pump for sale.
Warehouse Adress: Surabaya
Azarindo TATSUO INDONESIA,ZOOMLION,AIMIX
In Stock
CP ABT40C+100m pipe
CP ABT60C+100m pipe
Warehouse Adress: Samarinda
Ruko the avenue blok AC no.2
Citra grand senyiur
Jl. Moeis hasan ,Loajanan Samarinda
In Stock
CP ABT40C, (not always have stock)
Warehouse Adress: Jakarta
Pergudangan Duta Indah karya (kawasan Vittoria) blok A no 1.Jl. Daan monggot km 12,Cengkareng-Jakarta barat
In Stock
CP ABT40C, (not always have stock)
Warehouse Adress: Bekasi
Jaya, Gg. VII No.99, Sagara Makmur, Kec. Tarumajaya, Kabupaten Bekasi, Jawa Barat 17211
In Stock
CP ABT30C +100m pipe
AIMIX delivers end-to-end solutions for concrete line pumps, prioritizing niche space access, power adaptability, and specialized material handling. From initial consultation to post-installation support, our engineers craft custom configurations for scenarios like tunnel grouting, high-rise secondary pours, or off-grid rural projects. During production, we enforce strict quality control—pressure-testing pump assemblies and validating generator compatibility—while providing real-time video updates.
With technicians across 60+ countries (including Indonesia, Malaysia, and Kenya), we guarantee: