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Quantitative Evolution of WC-Co Cemented Carbide Tool Surface during the Cold Forming of Steel Parts

机译:钢部件冷成型期间WC-Co硬质合金工具表面的定量演变

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The present paper investigates the evolution of the WC grain size and morphology with the number of produced parts. Four reduction dies used in cold forward extrusion of steel are taken from the production line: a brand new die and three dies which have respectively produced 100.000, 150.000 and 220.000 parts. 3D roughness measurements and SEM micrographs are performed on the contact surface of each die. Results of these analyses highlight that WC grains are subject to plastic strain and are removed from the surface as the number of produced parts increase, leading to a growth of WC free areas where steel adhesion may occur. When analyzing the size of the WC grains, it appears that the population of small grains increases with the number of produced parts until 150.000. Then the population of small grains decreases. A wear mechanism is proposed to explain this variation of WC grains size with the number of extruded parts.
机译:本文研究了生产零件数量的WC晶粒尺寸和形态的演变。从生产线采用冷前挤出的四种减少模具:一个全新的模具和三个模具,分别产生100.000,150.000和220.000份。在每个模具的接触表面上执行3D粗糙度测量和SEM显微照片。这些分析的结果突出显示WC晶粒受塑性菌株的影响,并且随着所产生的部件的数量增加,从表面移除,导致WC自由区域的生长,可以发生钢粘合。在分析WC颗粒的尺寸时,似乎小晶粒的群体随着产生的部位的数量增加,直到150.000。然后小谷物的人口减少了。提出了一种磨损机构来解释WC颗粒尺寸的这种变化,挤出部件的数量。

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