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Wear mechanisms of LCPC rock abrasivity test impellers of materials equivalent to TBM cutter head face tools

机译:LCPC岩石磨料测试叶轮的磨损机制等于TBM刀头面工具的材料

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This study aims at performing the LCPC (Laboratoire Central des Ponts et Chaussees) rock abrasivity test to explore the wear characteristics of LCPC test impellers of different material hardness (i.e., 70-75 HRB; 46-48 HRC; 54-56 HRC; 60-61 HRC and 78-82 HRC). The LCPC tests were carried out on two hard and abrasive minerals quartz and garnet. In terms of weight loss, the test results showed an inverse relationship between the material hardness and corresponding ABR (g/t) values. Microscopic examination was conducted to study the wear mechanisms of selected impellers tested on both quartz and garnet samples. The micrographs of LCPC steel impellers showed furrow deformation accompanied by micro cutting and brittle fracture in the case of soft standard test impellers (70-75 HRB). When the material hardness of impellers was increased from (46-48 HRC) to (78-82 HRC) the wear mechanism began to show micro cutting and brittle fracture. For both minerals in general with increase in hardness of impellers there was a decrease in material deformation along with gradual increase in brittle fracture. In the case of the quartz mineral, higher amounts of weight loss of impeller materials and hence higher ABR (g/t) values were observed due to angular morphology of quartz compared to the rounded grains of garnet. When comparing ABR (g/t) of quartz against garnet, it was found to be increased by 48%, 57%, 59% and 147% when testing using impellers of 46-48 HRC, 54-56 HRC, 60-61 HRC and 78-82 HRC respectively.
机译:本研究旨在执行LCPC(Laboratoire Central des Ponts Et Chaussees)岩石磨料试验,探讨不同材料硬度的LCPC测试叶轮的磨损特性(即70-75HRB; 46-48 HRC; 54-56 HRC; 60 -61 HRC和78-82 HRC)。 LCPC测试是在两个硬质和磨料矿物质石英和石榴石上进行的。就体重减轻而言,测试结果显示了材料硬度与相应的ABR(G / T)值之间的反比关系。进行了微观检查以研究在石英和石榴石样品上测试的所选叶轮的磨损机制。 LCPC钢叶轮的显微照片显示出在软标准测试叶轮(70-75HRB)的情况下通过微切割和脆性骨折伴有沟槽变形。当叶轮的物质硬度从(46-48小时)增加到(78-82HRC)时,磨损机构开始显示微切割和脆性骨折。对于两种矿物质,叶轮的硬度增加,物质变形随着脆性骨折的逐渐增加而降低。在石英矿物的情况下,由于石英栅的圆形晶粒相比,叶片材料的重量损失并因此观察到更高的ABR(G / T)值。当使用46-48 HRC,54-56HRC,60-61HRC的叶轮测试时,发现ABR(G / T)对石英患者的石英措施进行抗石榴石时,据发现,在测试时增加了48%,57%,59%和147%和78-82 HRC。

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