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Wear Plate Applications~Cement.mp4

5 year ago
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Product details
Besides Hardox Steel Plate HP Wear Resistant Group offers the various products of Wear Plate namely Chrome Carbide Overlay Plate, Clad Plate, Smooth Surface CCO plate, Heat Treated Wear Plates (Q&T Steel), Casting Plates, Tungsten Carbide Coated Plates in various grade and multiple size options.

Weld Overlay Plate is a bi-metal plate consisting of a low carbon or alloyed steel base plate and a layer of wear resistant deposit.

HP Abrasion Resistant Steel Plate is made out of the unique hard facing process combined with the specially formulated hard facing alloys produces the harder, tougher and better wear resistant plates.

 

Product Name
HP chromium carbide overlay plate
Material
Mild steel(Q235)+Hardfacing overlay(CrC)
Standard
ASTM G65
Grade
HP700; HP700C; HP700S; HP750X
Applications
cement industry, steel mill,  power generation, mining, coal, chemical industry, sugar, glass, wherever requires wear solution
HRc
55~65

 

 

 

HP Plate Standard Spec_Chemicals & Hardness

 

HP PLATE SPECS

Packing & Delivery

 

 

 

 

Company Profile

HP Plate (Huifeng Wear Resistant Industry Co., Ltd.) was founded in 1994, as the former Taiwan's Upking-Kurimoto Ltd., led by the president Mr. Zhang Kun-Mou. Using the world-famous Japanese KURIMOTO hardfacing welding patented technology, with high end welding materials, HP Plate has become the most successful experts specializing in production and sales of hardfacing welding overlay plates.

HP Product Range:

 

 

HP Laboratory

 

  HP Wear Resistant Group Under The Certification:

 

 

FAQ

Question: Can I cut or drill a hole in an HP overlay plate?
Answer: No. The chromium-carbide layer is not drillable or machineable. When necessary, you may be able to cut it with plasma, waterjet, or arc-gouging.
 
Question: Is it normal to see cracking in hardfacing plating?
Answer: It depends on the hardfacing alloy. Many chromium carbide alloys check-crack when cooled to moderate temperatures; this is normal. Other alloys, such as the austenitic and martensitic, do not crack when applied properly. Check cracking can be seen as cracking perpendicular to the bead length. This occurs by the high stress that is experienced when the weld metal cools. The cracking stops at the parent metal underneath, as long as the parent metal is not brittle. If the parent metal is hard or brittle, you should choose a buffer layer of a softer, and tougher, weld metal.
 
Question: What are the most popular methods for applying hardfacing?
Answer: The most popular methods include: flux cored arc welding (FCAW), gas metal arc welding (GMAW), shielded metal arc welding (SMAW), submerged arc welding (SAW), gas tungsten arc welding (GTAW), oxyfuel welding (OFW) or oxyacetylene welding, plasma transferred arc welding, laser welding, thermal spray, and brazing. FCAW and GMAW may have similar levels of popularity. However, there is a growing preference to use semi-automatic and automatic welding methods.
 
Question: What metals can be protected with hardfacing?
Answer: Carbon and low-alloy steels with carbon contents of less than 1 percent can be hardfaced. High-carbon alloys may require a special buffer layer. Some of the base metals that can be hardfaced include: stainless steels, manganese steels, cast irons and steels, nickel-base alloys, copper-base alloys.
 
Question: What is hardfacing?
Answer: Hardfacing is also known as hardsurfacing. It is the process of adding wear-resistant weld metals to the surface of a metal part to protect it from wear and abrasion. Adding the weld metal plates can be achieved through welding or joining.
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