ZDS-CeramicArmor Ceramic Wear Compounds for Erosion Protection

ZDS-CeramicArmor helps maintenance teams, repair contractors, MRO suppliers and industrial distributors evaluate ceramic-filled materials for abrasive wear, slurry erosion, cavitation, particle impact and equipment restoration. Selection depends on the damage mechanism, substrate, geometry, access, operating environment, repair objective and current product documentation.

Series Definition

What Is a Ceramic Wear Compound?

A ceramic wear compound combines a resin-based matrix with hard ceramic filler. Applied to a prepared surface, it forms a protective or rebuilding layer where abrasive solids, high-velocity fluid, particle impact or cavitation remove metal.

Series Scope

ZDS-CeramicArmor covers ceramic-filled materials for wear, erosion, cavitation and heavy-duty equipment protection.

Repair Materials Portfolio

Review ZDS-CeramicArmor within the wider portfolio of industrial repair materials.

Select by Equipment

Compare material routes according to the equipment or component requiring repair.

Select by Service Condition

Assess product routes according to the operating environment and damage mechanism.

Technical documents

ZDS-CeramicArmor TDS Library

Compare ceramic-reinforced wear and erosion protection systems by application, service temperature and cure profile, then open the model-specific technical data sheet.

21 products
Model Product & best for Service temperature Working time
(25°C)
Cure profile TDS
ZDS-CA1188 Heavy-Duty Cavitation Repair PasteHeat exchangers and tube sheets, pumps and pump casings, valves, pipe elbows and tees, tanks and vessels, industrial pipelines; repair and rebuilding. Dry: -40°C to 220°C; wet: up to 140°C 25-35 min Pot life: 25-35 min; Full chemical cure: 7 days
Typical: 12-24 h
PDF
ZDS-CA1826 Fine-Particle Wear Resistant CoatingPumps and pump casings, tanks and vessels, impellers, slurry and bulk-material systems, powder and ash handling systems, industrial pipelines; protective coating, repair and rebuilding. -60°C to +160°C 30 min Pot life: 30 min (max. per batch 1.5 kg), Light load / machining: 12 h; Earliest return to service: 12 h; ( / ): 24 h。
Typical: 15-30 min
PDF
ZDS-CA1828 Coarse-Particle Impact ShieldChutes and hoppers, cyclones, separators, slurry and bulk-material systems, protective linings; protective coating, repair and rebuilding. -60°C to +168°C 30 min Pot life: 30 min (max. per batch 1.5 kg); : 12 h; Earliest return to service: 12 h; ( / ): 24 h。
Typical: 30-45 min
PDF
ZDS-CA1189 High-Temperature Carbon-Nano Metal Repair CompoundValves, shafts, bearing seats and machine surfaces, industrial pipelines; repair and rebuilding. -60 to 220°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1829 Shaft Wear Repair CompoundPumps and pump casings, shafts, bearing seats and machine surfaces, industrial pipelines; repair and rebuilding. -60 to 180°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1830 Hydraulic Cylinder Repair CompoundShafts, bearing seats and machine surfaces, industrial pipelines; repair and rebuilding. -60 to 180°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1831 Machine Guideway Repair CompoundShafts, bearing seats and machine surfaces, industrial pipelines; repair and rebuilding. -60 to 180°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1832 Blue Enamel Repair CompoundIndustrial pipelines, metal components; repair and rebuilding. -60 to 160°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1833 Silicon Carbide Wear-Resistant Protection CompoundPumps and pump casings, pipe elbows and tees, flue and air ducts, slurry and bulk-material systems, industrial pipelines; protective coating. -60 to 150°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1834 Nano-Ceramic Pump Efficiency CoatingPumps and pump casings, impellers; repair and rebuilding. -60 to 90°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1835 Fine-Particle Wear-Resistant Protection CompoundPipe elbows and tees, slurry and bulk-material systems, powder and ash handling systems, industrial pipelines; protective coating. -60 to 150°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1836 Coarse-Particle Wear-Resistant Protection CompoundPipe elbows and tees, chutes and hoppers, slurry and bulk-material systems, industrial pipelines; protective coating. -60 to 150°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1837 Rapid-Cure Fine-Particle Wear Protection CompoundPipe elbows and tees, slurry and bulk-material systems, industrial pipelines; repair and rebuilding. -60 to 250°C Typical: 5-15 min 2 h
Typical: 15-30 min
PDF
ZDS-CA1838 High-Temperature Fine-Particle Wear Protection CompoundSlurry and bulk-material systems, powder and ash handling systems, industrial pipelines; protective coating. -60 to 250°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1841 High-Temperature Coarse-Particle Wear Protection CompoundPipe elbows and tees, slurry and bulk-material systems, powder and ash handling systems, industrial pipelines; protective coating. -60 to 250°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1842 Rapid-Cure Coarse-Particle Wear Protection CompoundPumps and pump casings, chutes and hoppers, slurry and bulk-material systems, industrial pipelines; protective coating. Typical: -40°C to +150°C Typical: 5-15 min Typical Initial cure: 10-20 min; Full cure: 24 h at 25°C
Typical: 15-30 min
PDF
ZDS-CA1843 Brushable Enamel Wear Protection CoatingHeat exchangers and tube sheets, pumps and pump casings, valves, tanks and vessels, impellers, industrial pipelines; protective coating. -60 to 160°C Typical: 30-45 min 60 h
Typical: 4-6 h
PDF
ZDS-CA1844 Brushable High-Temperature Nano Anti-Corrosion CoatingHeat exchangers and tube sheets, boilers, flue and air ducts, industrial pipelines; protective coating. -60 to 260°C Typical: 30-45 min 36 h
Typical: 4-6 h
PDF
ZDS-CA1845 High-Temperature Silicon Carbide Wear Protection CompoundSlurry and bulk-material systems, powder and ash handling systems, industrial pipelines; protective coating. -60 to 250°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF
ZDS-CA1839 Wear-Resistant Ceramic Structural AdhesivePipe elbows and tees, chutes and hoppers, ceramic and glass-lined equipment, industrial pipelines; bonding. Typical: -40°C to +150°C Typical: 30-45 min Typical Initial cure: 12-24 h; Full chemical cure: 7 days at 25°C
Typical: 4-6 h
PDF
ZDS-CA1840 Impact-Resistant Wear Protection CompoundPumps and pump casings, pipe elbows and tees, slurry and bulk-material systems, industrial pipelines; protective coating. -60 to 150°C Typical: 30-45 min 24 h
Typical: 4-6 h
PDF

Material Routes

Ceramic-Filled Material Routes for Industrial Wear

The series is organized around the surface problem and equipment operation. Current documentation must confirm the available grade, application method, substrate range and service limits for a specific repair.

Surface Protection

Evaluate sliding abrasion, particle contact and repeated flow exposure, including whether protection, profile restoration or both are required.

Slurry and Particle Flow

Assess particle size, solids loading, flow direction, impingement angle and turbulence in pumps, elbows, chutes, valves and transfer points.

Heavy-Duty Repair

Consider accessible housings, casings and liners when the area can be isolated, prepared and returned to service as instructed.

Wear Mechanisms

Compare the Damage Mechanism Before Selection

Different wear mechanisms create different surface profiles and repair demands. A material for light abrasion may not suit severe impact, cavitation, chemical contact or continuous immersion. Select from service data, not the word ceramic alone.

Abrasive Wear

Collect particle hardness, size, shape, contact frequency and sliding direction; assess protection, profile retention and repeated contact.

Slurry Erosion

Record solids concentration, velocity, pressure, flow path and impingement angle; assess turbulence, layer geometry and application access.

Cavitation

Identify pressure changes, bubble-collapse areas, noise, vibration and damage zones; confirm the repair fits the affected operating condition.

Impact or Combined Wear

Record impact frequency, particle energy, load direction and damage depth; balance protection, rebuilding needs and mechanical loading.

Assessment Guide

Review coating terminology, damage assessment and comparison factors before discussing a product.

Equipment Evaluation

Equipment and Service Conditions for Evaluation

ZDS-CeramicArmor may be relevant where wear is concentrated on a known flow path or contact surface. These scenarios are starting points for assessment and do not guarantee suitability.

Slurry Pumps

Review casing, volute and flow-path geometry together with the medium, solids content, operating cycle and application access.

Chutes and Transfer Points

Assess loading zones, bends, discharge points and direction changes in mining, cement and bulk-material systems.

Mixers and Vessels

Identify wetted areas, temperature, chemical exposure, cleaning method and inspection access before evaluating a coating.

Repeated-Wear Environments

Use drawings, photographs, maintenance records and service data to distinguish abrasion, erosion, impact or mixed wear.

Product Selection

Selection Factors for a Ceramic Wear-Resistant Coating

A useful inquiry gives the technical team enough information to compare repair routes. Exact compatibility and service limits must be confirmed against documentation for the selected grade.

Substrate

Identify the base material and describe corrosion, cracking, oil contamination, existing coatings or weak material.

Damage Profile

Record the affected area, approximate depth, wear pattern, edge condition and whether damage continues during operation.

Service Condition

Provide the medium, solids, temperature, pressure, moisture, immersion, cleaning cycle, chemical contact and operating duration.

Equipment Geometry

Provide dimensions, curves, corners, bolt areas, access points and any alignment or clearance requirements.

Repair Objective

Define temporary containment, surface protection, dimensional recovery, planned maintenance or a broader repair trial.

Supply Requirement

State the target market, pack format, expected volume, labeling needs, technical documents and repeat-supply expectations.

Repair Routing

When Another Repair Route May Fit Better

ZDS-CeramicArmor is one part of the ZDSChem repair taxonomy. Compare adjacent series so a wear problem is not treated as a generic coating requirement.

Industrial equipment representing alternative repair material routes

ZDS-MetalRebuild

Consider metal rebuilding, cold repair, dimensional restoration, leak sealing or structural bonding when wear protection is not primary.

Industrial equipment representing alternative repair material routes

ZDS-CompositeWrap

Compare composite reinforcement for pipe sections requiring structural laminating or composite pipe repair.

Industrial equipment representing alternative repair material routes

ZDS-FluidGlide

Review for high-temperature repair, chemical-resistant lining, tank or flue protection, sealing and fluid-equipment coating.

Industrial equipment representing alternative repair material routes

ZDS-RubberElast

Use the elastomer route for belts, rubber linings, rollers, cables, tires and other components where flexibility is central.

Industrial equipment representing alternative repair material routes

ZDS-AquaShield

Compare the dedicated series for underwater-curing, wet-surface, marine or emergency repairs.

Application Planning

Surface Preparation and Application Planning

Wear protection depends on surface condition as well as material selection. Follow current product instructions and site procedures. Confirm the preparation method, supporting products and repair geometry for the actual substrate.

01

Inspect and Map

Mark the damaged area and wear direction, then check for loose material, cracks, sharp transitions and continuing leakage.

02

Make Equipment Safe

Isolate, drain, depressurize, cool and clean the equipment as required by the applicable site procedure.

03

Prepare the Substrate

Remove contamination and weak material, expose a sound surface and establish the profile specified for the product.

04

Plan Repair Geometry

Confirm layer thickness, edges, corners, clearances, masking and any temporary formwork required.

05

Apply and Cure

Mix, apply and protect the material according to the current technical data sheet and its working and cure requirements.

06

Inspect Before Service

Check coverage, profile, adhesion indicators, defects and cure status against the project acceptance criteria.

07

Preparation Products

Review cleaning agents, primers, conditioners and other supporting materials for surface preparation.

Buyer Documentation

Documents and Evaluation Workflow for B2B Buyers

Technical buyers need grade-specific documents for safe use and purchasing decisions. Evaluation can progress from document review and sample testing to project quotation and initial stocking.

01

Technical Data Sheets

Review current technical information for the grade being evaluated.

02

Safety Data Sheets

Request the relevant safety documentation for handling and internal review.

03

Application Guides

Review the applicable preparation, mixing, application and cure guidance.

04

Sample-to-Bulk Workflow

Plan the progression from evaluation samples to project purchasing or initial stocking.

05

Upload Specifications

Submit available technical information to support a more focused product review.

Technical Background

Technical Background Supporting the Series

ZDSChem is supported by ZDS, a professional chemical manufacturer established in 1998. A dedicated R&D team of 30 professionals supports development, formulation review, product improvement and application adaptation.

Company established
0
R&D professionals
0

Use Limitations

Limitations to Confirm Before Use

A ceramic wear compound is not a universal replacement for welding, machining, mechanical liners or component replacement. Do not infer exact performance from a general product-series description.

Do not use where the substrate is unstable

or damage is caused by active movement unless the repair has been assessed for those conditions.

Do not exceed documented service limits or

use the material for an unassessed structural design.

Confirm the grade, substrate

compatibility, surface preparation, mixing, application and cure requirements.

Confirm chemical exposure, temperature

pressure, immersion conditions and inspection criteria before use.

Ceramic-filled repair samples prepared for industrial evaluation

Project Evaluation

Evaluate ZDS-CeramicArmor for Your Wear Problem

Send the equipment details, damage description, substrate information, service conditions and intended quantity. A sample can provide a practical starting point for internal evaluation before a project quotation or stocking decision.

FAQ

Frequently Asked Questions

ZDS-CeramicArmor is the ZDSChem product series for ceramic-filled materials used to address wear, erosion, cavitation, and heavy-duty equipment protection requirements. The suitable grade and application method depend on the equipment, substrate, damage mechanism, and documented service limits.

It may be evaluated for accessible pump surfaces exposed to abrasive solids or slurry erosion, including relevant casing and flow-path areas. Selection requires information about the substrate, geometry, solids, flow conditions, operating cycle, and repair objective.

Start with the primary problem. A ceramic-filled material is organized around wear and erosion protection, while ZDS-MetalRebuild is intended for metal rebuilding, cold repair, dimensional restoration, leak sealing, and structural bonding. Product documentation and service data should guide the final comparison.

Provide the equipment name, substrate, damaged dimensions, photographs, wear mechanism, service medium, particle or slurry details, temperature, pressure, access conditions, repair objective, and expected quantity. This information helps identify a practical sample route and the documents needed for evaluation.

Customer-specific formulation requirements may be reviewed according to the application, specification, expected volume, and target market. Technical and commercial feasibility must be confirmed after the relevant product and purchasing information is supplied; a review does not guarantee development or performance approval.

Scroll to Top
ZDSCHEM
TECHNICAL & COMMERCIAL SUPPORT

Tell us what you need to repair.

Share the equipment, substrate, damage and operating conditions. Our team will review the right product family and next step.

  • 01Application reviewProduct direction based on real service conditions
  • 02Samples & validationSupport before bulk procurement
  • 03Global B2B supplyDocumentation, packaging and export coordination

What helps us respond faster
Photos · temperature · pressure · chemical medium · required quantity

By submitting an enquiry, you agree that ZDSChem may use the information to assess and respond to your request. View our Privacy Policy.