首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.5; Jul 7-11, 2003; Leganes, Madrid, Spain >SHS Production, Processing And Evaluation Of Advanced Materials For Wear-Resistant Cutting Tools
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SHS Production, Processing And Evaluation Of Advanced Materials For Wear-Resistant Cutting Tools

机译:SHS耐磨刀具先进材料的生产,加工和评估

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Self-propagating high temperature synthesis (SHS) has demonstrated in the past decade to be a cost-effective process for the manufacturing of advanced multi-phase materials difficult to produce through conventional routes. Due to its intrinsic flexibility, the SHS process perfectly suits to the production of ceramic materials characterized by high hardness at room and high temperature, chemical inertia and refractoriness, being thus ideal candidates as hard phase for wear-resistant and cutting tools applications. The aim of this work was the synthesis of multiphase powder systems with sub-micrometric level degree of homogenisation. The SHS reactions have been set up and optimised in order to obtain composite powders with different compositions starting from inexpensive raw materials. The stoichiometry of the reactions investigated was tuned to obtain sufficient exothermicity to allow the self-propagation to completion, investigating several powder systems with tailored mixed carbides, borides and oxides compositions. The densification of the SHS-produced compositions for the manufacturing of dense ceramic materials was investigated. The hot pressed materials turned out to be valid candidates for wear-resistant applications due to the high hardness and toughness properties demonstrated. This was verified through the production of cutting tools prototypes with the optimised compositions. PVD coating was set up for the prototype tools. The evaluation of the on-work performance of both coated and uncoated cutting tools showed good results in terms of wear resistance. As a final remark, the application of the developed materials in wear-resistant components introduces a real improvement in cutting and machining processes because of the intrinsic eco-compatibility of the SHS process towards competitor synthesis routes.
机译:在过去的十年中,自蔓延高温合成(SHS)已证明是一种经济有效的方法,用于制造难以通过常规途径生产的高级多相材料。由于其固有的柔韧性,SHS工艺非常适合在室温和高温下具有高硬度,化学惯性和耐火度高的陶瓷材料的生产,因此非常适合用作耐磨和切削工具应用中的硬质相。这项工作的目的是合成具有亚微米级均质度的多相粉末系统。已经建立并优化了SHS反应,以便从廉价的原料开始获得具有不同组成的复合粉末。调整了所研究反应的化学计量以获得足够的放热度,以使自蔓延完成,并研究了几种具有定制的碳化物,硼化物和氧化物成分的粉末系统。研究了用于制造致密陶瓷材料的SHS生产的组合物的致密化。由于证明了高硬度和韧性,热压材料被证明是耐磨应用的有效候选材料。通过生产具有最佳成分的切削工具原型,可以证明这一点。为原型工具设置了PVD涂层。对涂层刀具和未涂层刀具的工作性能的评估均显示出良好的耐磨性。最后要说的是,由于SHS工艺对竞争对手的合成路线具有内在的生态适应性,因此将开发的材料应用于耐磨部件可真正改善切削和机械加工工艺。

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