Engineered Surfaces for Exceptional Performance

Components in the Brick & Cement/Concrete industries are subject to Corrosion, Wear, and Heat – all of which can affect downtime and productivity. The Metal Spray process or the use of TufCote® provides solutions to these issues.

Brick Manufacturing

Man has for many years used many different materials for constructing and building dwellings, though none more-so than the brick. In the ancient city of Ur, in Mesopotamia (modern Iraq), the first true arch of sun-baked brick was made about 4000 B.C. The arch itself has not survived, but a description of it includes the first known reference to mortars other than mud. Bitumen slime was used to bind the bricks together.

Essentially, bricks are produced by mixing ground clay with water, forming the clay into the desired shape, and drying and firing.

The brick manufacturing process has six stages:

  1. Mining and storage of raw materials
  2. Preparing raw materials
  3. Forming the brick
  4. Drying
  5. Firing and cooling
  6. De-hacking and storing finished products.

Within these stages components in the manufacturing process become subjected to Corrosion, Wear, and Heat – all of which can affect downtime and productivity.

The Metal Spray process has been around since the early 1900’s and has used its ability to protect surfaces from these types of wear offering protection to OEM parts as well as reclamation.

The image to the right (top) show brick kiln carts as nearing their end of life, typical condition after years of operation, then photos of the new plates after arc spray is applied to the flame affected zone. The Arc Spray provides erosion resistance from the gas burner’s flame application inside the kiln.

In the Arc Spray process, the raw material in the form of two metallic wires are melted by an electric arc. This molten material is then transferred to the substrate by compressed air. The molten metal spray solidifies on the substrate to form a dense, strongly adherent coating.

The process allows for many variations of metal materials to be applied to provide numerous solutions to varying forms of wear. With the metal spray process, Ceramic and Plastic materials can also be applied using associated metal spray equipment.

Other components that are subject to wear include: augers, the edges of screws, pulveriser mill scrappers, cones, combs, crushing hammers, mixer blades etc.

The wear of Core Brick Bridges is minimised and repaired by using an Oxygen Acetylene Hard Facing powder spray torch to apply Tungsten carbide in a 60 HRc Nickel, Chrome Boron matrix.

Both Metal Spraying, Hard facing and Brick Manufacturing processes have shown their maturity and ability to develop to meet today’s expectations of increased efficiency with minimised negative effects on the environment.

Clay Extraction and Brick Making

Industry: Brick, clay and tile making.

Problem: Tools are subject to severe abrasion resulting from the minerals contained in the clay (SiO2, Al2O3).

Crushing Hammer

Equipment: The application with TufCote® G-N or G-A 6mm ⌀ (even 8mm) products concerns mainly the extraction to the pressing phases:

Moulding Screw

Principle of the Process: Extraction of earth, crushing and storage, pulverisation, screening, forming or pressing, cutting, coating or glazing, drying, firing.

Service Conditions:

Coating Solution: Abrasion Resistant Coatings:

Benefits of TufCote®

TufCote® GRADE A Product Specification

TufCote® Application Procedure

Preparation of the Piece

Preheating of the Area

Prime Cote (if required)

When welding stainless steel with TufCote®, an under layer might be applied about 300µm thick on surface before apply TufCote®:

Hard-facing Operation with TufCote®

Concrete Mixer Blades

Industry: Cement concrete production.

Concrete Production: Cement powder, water, resins, sand and crushed stones, are mixed together before to be carried-out by special trucks.

Problem: During mixing, blades are subject to severe abrasion from the concrete, wear reduces thus the thickness of the blades up-to breakage. The concrete production center can not be subject to production stop during mixing because it will cause the further solidification of the concrete.

Service Conditions: 

Caution: Usually, the blades of the mixer are manufactured from Chromium cast iron. Due to the low thermal expansion coefficient, the Cr-Cast Iron cannot be directly brazed thanks to the TufCote®. New mixing blades should be manufactured with a construction steel and then brazed with the TufCote®.

Coating Solution: TufCote® Abrasion resistant coating: Tungsten carbide with a metal matrix; 5 mm thickness. Use specifically the TufCote® Grade A 8mm ⌀ (even 6.35mm).

Benefits of the TufCote®

TufCote® Application Procedure:

Preparation of the Piece

Preheating of the Area

Prime Cote (if required)

PRIME COTE under layer might be applied about 300μm thick.

Hard-facing Operation

TufCote® GA Specification:

Centrifugal Fan Blades

Industry: Cement Production

Cement Production: Cement is a mixture of compounds made by burning limestone and clay together at very high temperatures ranging from 1400 to 1600°C. Then, 5% Gypsum could be added.


Problem: 
During mixing procedure and cement powder transportation phases, fans and equipment are subject to severe erosion from the cement powder. Wear reduces thus the thickness of the tools up-to breakage. The cement production plant can not be subject to production stop.

Service Conditions:

Note: TufCote® can be used only when the temperature is lower than 600°C.

Caution: Usually, the blades are manufactured from alloyed iron. Due to the difference of thermal expansion coefficient, the alloyed iron cannot be directly brazed thanks to the TufCote®. New mixing blades should be manufactured with a construction steel and then brazed with the TufCote®.

Coating Solution: TufCote® Abrasion Resistant Coating:

Benefits of the TufCote®

TufCote® GA Specification

Cylindrical Crusher Scrapper Blade

Industry: Brick and Tile Making

Principle of the Process: Mixing and forming of the clay.

Equipment Concerned: 

The application with TufCote® Grade A-S (8mm or 6.35mm ⌀) flex-cord concerns mainly the mixing and forming phases:

Service Conditions:

Problem:

Coating Solution: Abrasion resistant coatings TufCote® Grade A-S Diam 6.35 or 8mm or TufCote® Grade M Diam 6.35 or 8mm: tungsten carbide with a metal matrix. 3 to 5 mm thickness are required.

Pug Mil Auger

Benefits of the TufCote® Grade A-S:

TufCote® GRADE A-S Product Specification

TufCote® Application Procedure:

Preparation of the Piece

Preheating of the Area

Prime Cote (if required)

PRIME COTE under layer might be applied about 300μm thick.

Hard-facing Operation

Clay Extraction Plant Plates

The plates in the above image are part of a filtration plant at the Trelavour Kiln, St Dennis, Cornwall, UK where china clay is extracted and refined from the St. Austell granite. The plates are subject to high temperature sulphur based acids, with the consequent problems of iron corrosion and contamination of the china clay.

The plate in photograph (A) was zinc sprayed to Metallisation Zn4/a. The adjacent plate, in photograph (B), was left untreated. The protection afforded by the treatment is clearly visible and another plate, aluminium sprayed to Metallisation AI4/a was equally successful.

For another construction-related application, view our Concrete Restoration  page.

For more information on our equipment or consumables, call us on 07 3823 1004, or email us using our contact form.

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