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Wear Behaviors of TiCN Cermet under Different Concentrations of Abrasive Slurries from Carborundum, Corundum and Silica Sands

机译:Carborundum,刚玉和硅砂不同浓度磨料浆液下TICN CERMET的磨损行为

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Through a modified ASTM B611 wet sand rubber rimmed wheel test system (model: MLS-225), the wear resistance of commercially bought TiCN cermets FD22 was studied with water-based slurries of abrasive sands. The applied abrasives were angular sands of carborundum, corundum, and silica with particle size of about 350 μm. During experiments, the rotation speed of the rubber wheel was fixed at 498 rpm, and the load was 225 N. The results show that with increasing concentration of abrasive sands in the slurry, the wear loss of the cermet samples increased. Under the same conditions, when carborundum was used as abrasive, the cermet samples presented the heaviest wear loss and the highest wear rate, but when silica was used as abrasive, the cermet samples presented the slightest wear loss and the lowest wear rate. Under the abrasive concentrations of 5-20 wt% in slurry, the wear rate remained almost unchanged as the sliding distance increased. However, when the concentration was higher than 20 wt%, as the sliding distance increased, the wear rate increased at first and gradually decreased with the sliding distance over 30 km. Through the observations of 3D white-light interfering surface profiler, it was found that the wear mechanisms of TiCN cermet samples involved in extensive plastic deformation, grooves, binder removal and fracture.
机译:通过改进的ASTM B611湿砂橡胶轮镶边测试系统(型号:MLS-225),商业上购买的TiCN的耐磨损性金属陶瓷FD22用磨料砂的水基浆料的研究。所施加的磨料是金刚砂,刚玉,和二氧化硅具有约350微米的颗粒尺寸的角砂。在实验过程中,将橡胶轮的旋转速度固定在498转,并且负载为225个N的结果表明,与在浆料中增加磨料砂的浓度,该金属陶瓷样品的磨损量增大。在相同条件下,当碳化硅用作磨料,金属陶瓷样品呈现的最重的磨损量和最高磨损率,但是当二氧化硅用作磨料时,金属陶瓷样品呈现丝毫磨损量和最低的磨损率。下的在浆液5-20%(重量)的磨料浓度,磨损率几乎保持不变作为滑动距离增加。然而,当浓度高于20重量%,作为滑动距离增加时,磨损率增加在第一和超过30公里,滑动距离逐渐减小。通过3D白光干涉表面轮廓仪的观察,我们发现的TiCN的磨损机理金属陶瓷参与广泛的塑性变形,凹槽,脱粘合剂和裂缝的样品。

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