What about the wear resistance of carbide cold heading molds?
Nov 09,2021

Cemented Carbide Cold Heading Tooling has received widespread attention for its excellent wear resistance. Wear resistance is one of the most important features of Cemented Carbide Cold Heading Tooling, which is able to withstand friction, abrasion and high pressure of metal materials for a long period of time in the cold heading process.
Wear resistance is the core index of Cemented Carbide Cold Heading Die, which is crucial for the quality and productivity of cold heading process. Below we will discuss the wear resistance of Cemented Carbide Cold Heading Dies and its related factors in detail.
First of all, the wear resistance of Cemented Carbide Cold Heading Die is closely related to the hardness of its material. Cemented carbide material is a composite material formed by metal carbide particles (such as tungsten carbide or titanium carbide) in a metal (usually cobalt) matrix. Such materials have extremely high hardness, typically between 900 and 2200 HV. The high hardness of the Cemented Carbide material gives the cold heading molds good wear resistance, which can effectively resist wear under the friction with the metal material and prolong the service life of the molds.
Secondly, the wear resistance of Cemented Carbide cold heading die is closely related to its organization and structure. Good organization and structure can improve the strength and fatigue resistance of Cemented Carbide, and then keep the stability and durability of the mold. After precise processing and heat treatment, cemented carbide dies usually have dense grain structure and optimized phase composition, thus improving their wear resistance.
In addition, the wear resistance of Cemented Carbide Cold Heading dies is influenced by other factors. For example, the use of appropriate lubricants can reduce the direct contact between the die and the metal material, reduce friction and wear, and extend the service life of the die. In addition, reasonable cooling and sufficient condensation can effectively reduce the temperature of the mold, reduce the thermal stress, and improve the wear resistance of cemented carbide cold heading die.
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