Mini Concrete Mixer With Pump
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Our company has developed a new type of equipment-concrete mixing pump specially for the needs of rural areas, urban-rural junctions and small and medium-sized towns. Concrete mixing pumps is a new type of engineering equipment which combines concrete mixers with concrete pumps.
Product parameter(specification)
| TECHNICAL PARAMETERS | MODEL: JBT40-10-65FS | |||||||
| Max theoretic output | 45m³/h | |||||||
| Max theoretic pumping pressure | 10-13Mpa | |||||||
| Hydraulic system | Three pump & three circuit opening | |||||||
| Main oil pump displacement | 140ml/r(kawasaki) | |||||||
| Hydraulic system pressure | 30MPa | |||||||
| Power supply | Diesel engine | |||||||
| Engine power | YuChai 62KW | |||||||
| Distribution valve type | S pipe valve | |||||||
| Max aggregate size | 40mm | |||||||
| Mix Hopper Volume | 500L | |||||||
| Feeding height | 1450mm | |||||||
| Max theoretic delivery vertical distance | 100m | |||||||
| Max theoretic delivery horizontal distance | 300m | |||||||
| The radiator cooling type | Air cooling system | |||||||
| Hydraulic pump type | Ram pump | |||||||
| Outer dimensions(L*W*H) | 5200×2200×3100mm | |||||||
| Total weight | 5300 kg | |||||||
Product application:

Product details:


Product advantage:
The high-performance system of the mixing equipment ensures the pumping works without error, and the advanced S-valve is used to reversing the concrete pumping. The glasses plate and the cutting ring are made of hard alloy material, which has a longer service life; the outlet pressure is high, which can meet the high-rise building and long-distance transportation; the hydraulic cooling adopts water cooling with good effect and simple operation; the anti-pump function can avoid block; It is equipped with a manual lubrication system to ensure the service life of the drive. The electric control cabinet is equipped with wireless remote control.
Mini Concrete Mixer with Pump pricelist
The price of a mini concrete mixer with pump can vary depending on several factors such as brand, capacity, features, and additional accessories. Generally, mini concrete mixer pumps are more affordable compared to larger, industrial-grade models. However, here's a rough estimate of prices based on typical market ranges:
Basic Mini Concrete Mixer with Pump: A small, entry-level mini concrete mixer with pump may cost anywhere from $10,000 to $30,000 USD. These models typically have lower capacity and fewer advanced features but are suitable for small-scale projects or occasional use.
Mid-Range Mini Concrete Mixer with Pump: Mid-range mini mixer pumps with more features, higher capacity, and better performance can range from $30,000 to $50,000 USD. These models may offer additional functionalities such as remote control, higher pumping distances, and improved mixing capabilities.
Premium Mini Concrete Mixer with Pump: High-end mini mixer pumps with advanced features, larger capacity, and robust construction can cost upwards of $50,000 USD or more. These premium models are suitable for demanding construction projects, frequent use, and long-term durability.
It's important to note that the prices mentioned above are estimates and can vary significantly based on factors like brand reputation, geographical location, local market conditions, and dealer pricing policies. Additionally, optional accessories, warranties, and service packages may also affect the overall cost.
Concrete pumps offer numerous advantages that make them a valuable asset in modern construction. Here are the key benefits of using concrete pumps:
1. Efficiency
Speed: Concrete pumps can place concrete much faster than traditional methods such as wheelbarrows or buckets. This reduces project timelines and accelerates construction schedules.
Continuous Flow: Pumps provide a continuous flow of concrete, minimizing delays and interruptions during the pouring process.
2. Precision
Accurate Placement: Concrete pumps allow for precise placement of concrete, even in hard-to-reach areas. This is especially beneficial for complex architectural designs and detailed work.
Less Waste: Accurate delivery reduces spillage and waste, ensuring that more concrete is used effectively on the project.
3. Versatility
Accessibility: Pumps can reach areas that are difficult to access with other methods, such as high-rise buildings, tunnels, and confined spaces.
Various Applications: Suitable for a wide range of projects, from residential homes and commercial buildings to large-scale infrastructure projects like bridges and highways.
4. Reduced Labor Costs
Less Manual Labor: Automated pumping reduces the need for manual transportation and placement of concrete, lowering labor costs.
Efficiency of Workforce: Workers can focus on other tasks rather than moving concrete, improving overall productivity on the construction site.
5. Improved Quality and Consistency
Uniform Mixing: Pumps ensure that the concrete is mixed uniformly and delivered consistently, which improves the quality of the final structure.
Continuous Delivery: Continuous delivery prevents the formation of cold joints, ensuring a stronger, more cohesive structure.
6. Safety
Reduced Risk of Injury: Minimizing manual handling of heavy concrete reduces the risk of worker injuries related to lifting and carrying.
Remote Operation: Many pumps can be operated remotely, reducing the need for workers to be near potentially hazardous areas.
7. Time-Saving
Quick Setup: Modern pumps are designed for quick setup, reducing the preparation time before pouring can begin.
Efficient Cleanup: After the pour is completed, cleanup can be managed efficiently, minimizing downtime between tasks.
8. Environmental Benefits
Reduced Carbon Footprint: Efficient concrete placement can lead to less waste and more efficient use of materials, contributing to a lower environmental impact.
Less Noise Pollution: Compared to some other heavy machinery, concrete pumps can be relatively quieter, especially electric models, which is beneficial in urban areas.
9. Flexibility in Weather Conditions
Adverse Weather: Pumps can operate in various weather conditions, including rain and extreme temperatures, where traditional methods might struggle.
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