RMT500 Slurry Desander with Capacity 500m³/h

RMT500 Slurry Desander with Capacity 500m³/h
Name: Slurry Desander
Slurry Capacity: 500m³/h
Application: The RMT500 Slurry Desander with Hydrocyclone desander system is widely used in large-scale foundation drilling, bored pile construction, bridge pile foundations, diaphragm wall projects, rotary drilling rig operations, tunnel engineering, and trenchless HDD construction.

Product Details

Product Tags

RMT500 slurry desander system for solving high sand content in drilling mud and improving foundation construction efficiency with hydrocyclone desander technology

Specification:

RMT500 mud desander equipment for solving borehole instability caused by contaminated slurry in bored pile projects and improving drilling safety


Model 

RMT500

Max. Slurry Capacity 

500 m³/h

Cut Point d50

0.06 mm

Total Power 

177 kW

Motor Power ( Main pump )

55 kW× 3

Motor Power ( Vibration motor )

2.2 kW× 2 & 1.8 kW× 4

Transportation Dimension ( L×W×H )

/

Working Dimension ( L×W×H )

15.2×4.4×6.5 m

Total Weight 

27000 kG


Feature:

The RMT500 Big Slurry Desander is a high-capacity hydrocyclone desander system and mud separation equipment designed for large-scale foundation drilling, bored pile construction, bridge piling, rotary drilling rigs, tunnel engineering, and trenchless HDD projects. It is engineered to handle high-volume slurry processing while ensuring efficient sand removal, stable mud circulation, and environmentally friendly construction operations.

 RMT500 hydrocyclone desander for solving poor slurry quality in deep foundation projects and ensuring stable borehole formationRMT500 mud desander system for solving inefficient slurry treatment and reducing waste disposal cost in foundation engineering projects


Advantages:

1. Ultra-High Capacity Slurry Treatment: The RMT500 Big Desander is designed for large construction projects requiring continuous high-flow slurry processing. It effectively removes sand, silt, and solid particles from drilling mud, ensuring stable slurry quality in deep foundation and large diameter bored pile works.

2. Advanced Hydrocyclone Desander System: Equipped with a high-efficiency hydrocyclone desander system, the RMT500 delivers powerful centrifugal separation, solving the problem of excessive sand content in drilling mud. This improves borehole stability and enhances pile formation quality in complex geological conditions.

3. Heavy-Duty Wear-Resistant Pump System: The system uses a high-chrome alloy slurry pump, solving severe wear issues caused by high-solid-content mud. It ensures continuous and stable operation in harsh mud circulation system desander applications.

4. Efficient Solid-Liquid Separation Performance: Combining hydrocyclone technology with vibrating screening, the system ensures fast and stable separation of solids from drilling fluid, improving efficiency in slurry desander and mud recycling systems.

5. Eco-Friendly Mud Recycling System: The RMT500 slurry desander system reduces waste slurry discharge, promotes bentonite recycling, lowers environmental pollution, and supports green construction standards for modern infrastructure projects.

6. Cost Saving and High Efficiency: By recycling usable slurry and reducing waste disposal, the RMT500 significantly lowers bentonite consumption and operational costs, making it ideal for high-demand foundation construction slurry treatment projects.

Product Details:

RMT500 mud desander equipment for solving solid-liquid separation problems while promoting green and environmentally friendly construction practicesRMT500 slurry desander for solving trenchless HDD mud blockage and improving smooth slurry circulation in construction operations

RMT500 slurry desander for solving excessive bentonite consumption through efficient slurry recycling and sustainable hydrocyclone desander separation

RMT500 hydrocyclone desander for solving poor slurry quality in deep foundation projects and ensuring stable borehole formation

Construction Case: 

RMT500 mud desander equipment for solving borehole instability caused by contaminated slurry in bored pile projects and improving drilling safety


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