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Anti Aging Anti Corrosion High Pressure Reinforced Ceramic Composite Rubber Hose for Chemical Granule Conveyance

Basic Properties
Place of Origin: China
Brand Name: Hongruntong Marine
Certification: ABS, DNV, RMRS, CCS, LR, BV, SGS, V-Trust
Model Number: HM-CH96
Trading Properties
Minimum Order Quantity: 1
Price: USD69 to USD450 Per Piece
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 1360 Pcs Per Month
Product Summary
Anti Aging Anti Corrosion Ceramic Composite Rubber Hose For Chemical Granule Conveyance Product Overview Ceramic Hose is an industrial-grade composite conveying component engineered for high-pressure pneumatic transport systems in cement production and bulk powder handling industries. The structure ...

Product Details

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Anti aging ceramic composite rubber hose

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High pressure reinforced ceramic hose

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Chemical granule conveyance rubber hose

Name: Ceramic Hose
Hose Size: DN80–1500 (3–60”) As Standard
Hose Length: Up To 20m (66') As Standard
Pressure Rating: -100kPa To +5000kPa (-14.5psi To +725psi) Higher On Request
Material: Rubber And Ceramic
Reinforcement: Synthetic Fabric And Wire Helix
Outer Cover: UV, Ozone, And Abrasion-resistant Rubber
Temperature: 30°C To +75°C
Safety Factor: 4:1 As Standard
Application: Transport Tailing Slurry & Abrasive Ore Particle
Color: Black
Product Description
Anti Aging Anti Corrosion Ceramic Composite Rubber Hose For Chemical Granule Conveyance
Product Overview

Ceramic Hose is an industrial-grade composite conveying component engineered for high-pressure pneumatic transport systems in cement production and bulk powder handling industries. The structure consists of a high-strength elastomer outer body reinforced with multi-layer synthetic fiber reinforcement and an internal ceramic wear-resistant lining designed to withstand continuous impact from high-velocity particulate flow.

The engineering principle of Ceramic Hose is based on pressure-load stabilization combined with particle erosion resistance. In cement plant pneumatic conveying systems, high-velocity compressed air transports abrasive materials such as cement clinker dust, raw meal powder, and fly ash through pipelines under continuous pressure cycles. These particles generate severe internal erosion due to high-speed impact and directional turbulence within bends, joints, and transfer sections.

Ceramic Hose addresses these conditions by introducing a ceramic-lined internal surface with high hardness and low friction coefficient, which reduces particle adhesion and minimizes surface erosion. The reinforced composite structure maintains dimensional stability under fluctuating internal pressure conditions generated by compressor systems. This dual-function engineering design ensures both structural integrity under pressure load and resistance to abrasive particulate wear.

The product is designed for continuous-duty operation in high-temperature, dust-intensive industrial environments where both mechanical stress and particle impact are persistent operational challenges.

Case Study: Cement Manufacturing Plant - Riyadh Industrial Zone, Saudi Arabia

The project was implemented in a large-scale cement production facility located in the Riyadh industrial region. The plant operates a high-capacity pneumatic conveying system responsible for transporting cement raw materials and fine clinker dust between grinding mills, storage silos, and packaging units.

The operational challenge was characterized by extreme abrasive wear combined with continuous high-pressure airflow. Existing rubber-based flexible hoses installed at material transfer points experienced rapid internal surface erosion due to constant impact from high-velocity cement particles. In addition, pressure fluctuations from compressor cycling caused structural fatigue, leading to premature hose failure and frequent production interruptions.

Ceramic Hose was introduced to replace critical high-wear segments, particularly in pipeline bends and high-turbulence transfer zones. The implementation required engineering alignment with existing pneumatic system parameters, including pressure rating calibration, diameter matching, and reinforcement optimization to ensure compatibility with compressor-driven airflow systems.

Following installation, the system demonstrated improved resistance to internal abrasion and pressure-induced deformation. Operational monitoring indicated stable performance under continuous pneumatic conveying cycles, with significantly reduced internal wear rates compared to conventional elastomer hoses. Maintenance intervals were extended, and system reliability improved due to enhanced resistance to both particle impact and cyclic pressure stress.

The project confirmed the effectiveness of ceramic-lined composite hose systems in high-pressure cement conveying environments where both mechanical erosion and structural fatigue are critical failure factors.

Ceramic composite rubber hose installation in industrial setting Close-up view of ceramic hose internal structure
Technical Specifications
Name Ceramic Hose
Tube NR, BR, SBR
Reinforcement High Tensile Steel Wire Spiral
Cover NR, CR
Working Pressure < 25 Bars
Flange Material Q235B carbon steel paint
Working Temperature -30℃ to +80℃
Safety Factor 5:1
Application Installed in Between the Pump and Cutter of The Dredger, Suction The Slurry. Suction Hose & Armored Hose with Hb Steel Ring In, Suitable for Limestone, Granite, Coral, and Mineral etc.
Advantages
  • High Abrasion Resistance
  • Light Weight
  • Oil and Heat Resistant
  • Flexible, easy to bending
Dimensional Specifications
Inner Diameter (mm) Working Pressure (Mpa) Burst Pressure (Mpa) Length (m) Wall Thickness (mm)
300 0.4-1.2 3.6 1-3 34-37
414 0.4-1.2 3.6 1-3 35-37
560 0.4-1.2 3.6 2-3 40-45
600 0.4-1.2 3.6 2-3 40-45
700 0.8-1.5 4.5 2-3 40-45
800 1.2-2.5 5.5 2-3 50-52
900 1.5-2.5 7.5 2-3 55-58
1000 2.0-2.5 7.5 3-5 75-78
Product Highlights
High-Pressure Reinforced Composite Structure

The hose body is engineered with multi-layer fiber reinforcement designed to withstand internal pressure fluctuations generated by pneumatic conveying systems. The reinforcement structure distributes circumferential stress evenly, preventing localized deformation and ensuring dimensional stability under continuous pressure cycling conditions.

Ceramic Lining for High Velocity Particle Impact Resistance

The internal ceramic layer provides a high-hardness surface that resists continuous impact from cement particles transported at high velocity. The working mechanism reduces erosion by minimizing direct energy transfer from particulate flow to the elastomer substrate.

Thermo-Mechanical Stability Under Continuous Operation

The composite structure is designed to maintain performance stability under elevated temperatures generated by compressor systems and frictional particle movement. Material selection ensures consistent elasticity and structural integrity under sustained thermal loading.

Flow Efficiency Optimization Design

The internal surface geometry is engineered to reduce turbulence formation and particle accumulation zones, ensuring smoother airflow and minimizing localized wear concentration in high-impact pipeline sections such as bends and junctions.

Applications
  • Cement Pneumatic Conveying Systems: Suitable for transporting cement powder, clinker dust, and raw meal materials under high-pressure airflow conditions in production facilities.
  • Industrial Dust Collection and Transfer Networks: Applicable in dust extraction and conveying systems where high-speed particulate-laden air generates continuous abrasive wear on pipeline surfaces.
  • Bulk Powder Handling in Manufacturing Plants: Designed for general industrial powder transport systems requiring stable performance under cyclic pressure and continuous particulate impact conditions.
Why Choose Hongruntong Marine
  • High-Pressure Industrial Hose Engineering Capability: Hongruntong Marine specializes in the design and manufacturing of reinforced hose systems capable of withstanding high internal pressure conditions combined with abrasive particle flow environments.
  • Advanced Material Reinforcement Technology: The company applies engineered reinforcement layering systems to optimize pressure resistance and structural stability, ensuring reliable performance in pneumatic conveying applications.
  • Comprehensive Industrial Testing and Validation System: Each product undergoes pressure cycling tests, abrasion resistance evaluation, and thermal stability validation to ensure operational reliability in continuous-duty industrial environments.
  • Global Cement Industry Supply Experience: Hongruntong Marine has supplied engineered hose solutions to multiple cement production and bulk material handling facilities, supporting long-term operational stability in high-dust industrial environments.
Frequently Asked Questions
Can Ceramic Hose withstand continuous high-pressure pneumatic conveying?

Yes, the reinforcement structure is specifically engineered to handle cyclic pressure loads typical in compressor-driven conveying systems.

How does ceramic lining improve performance in cement dust environments?

The ceramic layer provides a high-hardness surface that reduces erosion caused by continuous impact from fine cement particles in high-velocity airflow.

Is the hose suitable for high-temperature cement plant conditions?

The composite structure is designed to maintain mechanical stability under elevated industrial temperatures commonly encountered in cement production systems.

Can it be installed in existing pneumatic pipeline systems?

Yes, the hose can be customized in diameter and connection configuration to integrate with existing conveying infrastructure.

What is the expected maintenance requirement?

Maintenance is minimal and primarily involves periodic inspection of external wear and pressure performance monitoring under operational conditions.

Ceramic hose in industrial application Ceramic hose cross-section showing internal structure Ceramic hose installation in manufacturing facility Ceramic hose performance testing
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