首页> 外文会议>Symposium on mechanical properties of nanostructured materials and nanocomposites >Effect of Surface Treatments on the Structural and Mechanical Properties of Nanostructurcd Diamond Coatings on Tungsten Carbide Cutting Tools
【24h】

Effect of Surface Treatments on the Structural and Mechanical Properties of Nanostructurcd Diamond Coatings on Tungsten Carbide Cutting Tools

机译:表面处理对碳化钨切削刀具纳米结构尿布金刚石涂层结构和力学性能的影响

获取原文

摘要

Chemical Vapor Deposition (CVD) using hydrogen, methane, and nitrogen feed gases has proven to be useful in depositing well-adhered diamond films on metal substrates. These films have already found a market in the cutting tool industry as coatings on cobalt-cemented tungsten carbide (WC-Co) inserts. The purpose of this investigation is to examine how the thermal and chemical pre-trcatments typically used for carbide inserts (to remove the cobalt binder near the surface) affect the structure and interfacial adhesion of the diamond coating. Removal of the cobalt binder phase in various pre-treatment methods has been shown to minimize its catalytic effect of graphite formation during diamond deposition by CVD. The diamond-coated inserts in our study were characterized using x-ray diffraction, Raman spectroscopy, atomic force microscopy, and Rockwell indentation testing. We use an unconventionally high methane concentration in the feedgas in order to saturate the growth surface with carbon, thereby limiting cobalt migration from the bulk to the surface and reducing the dissolution and diffusion of carbon atoms coming from the plasma. Nitrogen is used in the feedgns in order to provide a tough, single-layer nanocrystalline diamond film structure, hi addition, a multi-layer (nano-/micro-/nano-crystalline) CVD diamond film was grown by controlling the flow of nitrogen in order to show its characteristics in comparison with the single layer nanocrystalline diamond film. The multilayer film on the thermally-treated insert shows enhanced interfacial adhesion and fracture toughness when compared to other pretreatments and diamond coatings. This was demonstrated by indentation tests using 1470 N load.
机译:使用氢气,甲烷和氮气进料气体的化学气相沉积(CVD)已被证明可用于在金属基材上沉积粘附粘附的金刚石薄膜。这些电影已经在切割工具行业中发现了一个市场,作为钴粘合碳化钨(WC-CO)插入物上的涂层。本研究的目的是检查通常用于碳化物插入物的热和化学预序列(以除去表面附近的钴粘合剂)影响金刚石涂层的结构和界面粘附。已经示出了在各种预处理方法中除去钴粘合剂相,以通过CVD在金金刚石沉积期间最小化石墨形成的催化作用。我们研究中的钻石涂层插入物的特征在于使用X射线衍射,拉曼光谱,原子力显微镜和罗克韦尔凹口检测。我们在饲料中使用非常规高的甲烷浓度,以使生长表面与碳饱和,从而限​​制了从体积到表面的絮凝并降低来自等离子体的碳原子的溶解和扩散。氮气用于进料中以提供坚韧的单层纳米晶金刚石膜结构,加入,通过控制氮的流动来生长多层(纳米/微/纳米晶)CVD金刚石膜为了显示其与单层纳米晶金刚石膜相比的特性。与其他预处理和金刚石涂层相比,热处理插入件上的多层膜显示出增强的界面粘附和断裂韧性。这是通过使用1470 n负载的压痕测试来证明。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号