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首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Development of a Next Generation of Diamond Tools Based on Superhard Materials with a Nanomodified Binder for Steel and Cast Iron Machining
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Development of a Next Generation of Diamond Tools Based on Superhard Materials with a Nanomodified Binder for Steel and Cast Iron Machining

机译:基于超硬材料的下一代金刚石工具的开发,钢和铸铁加工纳米型粘合剂

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摘要

The possibility of using binders of the Next100 type alloyed with nickel and modified with WC, ZrO2, and hBN nanoparticles for fabricating a cutting tool based on superhard materials and intended for steel and cast iron machining is shown. It is established that alloying the binder with nickel makes it possible to increase its impact viscosity by a factor of 2.5 and substantially improve the resistance of tool segments during operation. An increase in binder strength by 100-150 MPa and hardness by 5-7 HRB is provided due to the introduction of WC, ZrO2, and hBN into it. The adhesion of cubic boron nitride to a binder increases in the presence of WC nanoparticles. The optimal ratio of diamond single crystals and cubic boron nitride in a working layer, at which maximal service characteristics of the tool are attained, is determined to be 75: 25. The formation of nanoclusters of amorphous boron at the interface of cubic boron nitride and a binder and dissolution of a small amount of nitrogen in binder components during hot compaction are revealed.
机译:示出了使用与镍和用Wc,ZrO2和HBN纳米颗粒改性的New100型粘合剂用于制造基于超硬材料并用于钢和铸铁加工的切削工具的可能性。建立利用镍的合金化粘合剂使得可以将其冲击粘度提高到2.5的因子,并且在操作期间基本上提高了工具段的电阻。由于引入WC,ZrO2和HBN,提供了100-150MPa和5-7HRB的粘合剂强度增加100-150MPa和硬度的增加。立方氮化硼与粘合剂的粘附在Wc纳米颗粒存在下增加。在工作层中的金刚石单晶和立方硼氮化物的最佳比率,在该工具的最大维修特性,确定为75:25.在立方氮化物的界面处形成无定形硼的纳米团簇揭示了热压实期间粘合剂组分中少量氮的粘合剂和溶解。

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