News

New Wearing Materials – Wear Part with TiC Insert

With the increasing demands for longer life-span and higher wear resistance parts from quarries, mines and recycling industry, various of new materials are gradually developed and put into use, just like titanium carbide.

Tic is a casting material for wear parts that has already been proven in Australia, North America and China, for crushing materials of extreme hardness or with strong impact. This material can be widely used to produce high quality wears, typically including hammer, blow bar, jaw plate, concave, mantle, HPGT liner, etc.
And TiC rods embedded under the working surface of wear parts can effectively reduce the wearing rate of base metal materials when working. The output rate can be significantly increased when handling with extremely hard materials such as large ore, iron ore, gold ore, copper ore, river pebble.

Titanium carbide (TIC) wear parts are designed to increase the wear life of wear parts in abrasive environments. Titanium carbide columns are cast within proprietary alloys for added strength and durability, which is echoing WUJING's slogan: Spend Less, Crush More.

WUJING supplies Titanium Carbide wear parts to combat extremely hard and abrasive material as a well-known wear part manufacturer which is constantly committed to development and production of high-quality wear parts.

Hereby one of our project that for your reference,
Wujing Project Background:
To test the performance of new material manganese wearing part with Tic insert, WUJING proceeded performance testing in the aggregate quarry plant, which is located in Fuding, Fujian province, China.
Product: Mn13Cr-TiC Cone Liner
Design:Based on common Mn13 alloy, WUJING inserted TiC rods on working face of cone liners for the purpose of increase part wearing life. (Photo 1-2)

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Application:: Material Processing:Basalt
Machine:Symons 4 1/2’’ Cone Crusher
Results::
for cone liner with TiC insert saved 25%;
Service life of liner with TiC insert was increased by 190%


Post time: Jul-26-2023