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首页> 外文期刊>Surface & Coatings Technology >Improvement of press dies used for the production of diamond composites by means of DUPLEX-PVD-coatings
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Improvement of press dies used for the production of diamond composites by means of DUPLEX-PVD-coatings

机译:通过DUPLEX-PVD涂层改进用于生产金刚石复合材料的压模

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摘要

In the machining of hard materials such as glass or stone, cemented carbides have been recently replaced by diamond tools, consisting of a metallic carrier, on to which diamond segments are brazed. One of the most economic ways for the production of diamond segments is the cold compaction of the mixture of a metallic powder and diamond particles. Due to a highly abrasive sliding contact between diamond particles and the die walls, the wear rate of the press dies is very high. As a result of a low lifetime of the press dies, they must be replaced in short time periods. To avoid the costly and time-consuming substitution of the press dies, in this work PVD-coatings were deposited on the inner surface of the pre-plasma nitrided press dies (DUPLEX treatment). Thereby, various high and low alloy tool steels were treated by means of plasma nitriding process. Subsequently, a nanocomposite TiAlN coating (nc-TiAlN) was deposited by means of a high ionization magnetron sputtering device on nitrided and non-nitrided steel substrates. The mechanical and tribological properties of these coating systems were studied by means of several standard tests such as nanoindentation, ball-on-disc and scratch test. The most wear resistant coating system was chosen to employ on the inner surface of the press dies. The wear resistance of the press dies developed in this study was tested under real loading condition during compaction of the mixture of diamond particles and cobalt powder. It was revealed that employing plasma nitrided tool, steels coated with nanocomposite TiAlN decreases the wear rate of the press dies up to 76%.
机译:在加工诸如玻璃或石材之类的硬质材料时,硬质合金最近已被金刚石工具所取代,该金刚石工具由金属载体组成,在该金属载体上钎焊了金刚石片。生产金刚石段的最经济的方法之一是将金属粉末和金刚石颗粒的混合物冷压实。由于金刚石颗粒和模具壁之间的高度磨蚀性滑动接触,压模的磨损率非常高。由于压模寿命低,必须在短时间内更换它们。为了避免昂贵且费时的压模更换,在这项工作中,将PVD涂层沉积在等离子体氮化前的压模内表面(DUPLEX处理)。从而,通过等离子渗氮工艺处理了各种高合金和低合金工具钢。随后,通过高电离磁控溅射设备在氮化和未氮化的钢基板上沉积纳米复合TiAlN涂层(nc-TiAlN)。这些涂层系统的机械和摩擦学性能通过几种标准测试方法进行了研究,例如纳米压痕,圆盘球和划痕测试。选择了最耐磨的涂层系统以用于压模的内表面。本研究开发的压模的耐磨性是在压实金刚石颗粒和钴粉混合物的实际载荷条件下进行测试的。结果表明,采用等离子渗氮工具,涂有纳米复合TiAlN的钢可将压模的磨损率降低多达76%。

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