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首页> 外文期刊>Advances in Engineering Software >Excavation tool concepts for TBMs - Understanding the material-dependent response to abrasive wear
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Excavation tool concepts for TBMs - Understanding the material-dependent response to abrasive wear

机译:TBM的挖掘工具概念-了解材料对磨料磨损的响应

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Wear of cutting tools for tunneling applications can lead to decreased advance rates and unscheduled downtimes that are associated with increased tunneling times and project costs. During the planning phase, wear of tools and their associated lifetime and replacement times are estimated on the basis of the ground that is to be excavated. However, from the viewpoint of materials technology, this procedure is insufficient because it is essential to take account of the interactions between tool material, ground, and the acting wear mechanisms on the microscopic scale, such as abrasion, fatigue, or forced fracture. The respective tool materials feature different tribomechanical properties and thus different wear mechanisms and rates that depend on the ground to be mined. Low wear rates can only be achieved using an optimized tool material concept that is adapted to the acting ground and the associated tribological system. This requires a comprehensive understanding of the wear behavior of the respective materials. This article focuses on the different, commonly used tool concepts and their microstructure. Interactions of the microstructure of these materials with the abrasive particles and the associated microwear mechanisms are analyzed. The results provide a deeper understanding of the wear process of excavation tools depending on the respective tool and the material concept The discussed correlations are illustrated by results from the RUB Tunneling Device and nanoscratch tests, which are used to map the tribological TBM tool system on the macroscopic and microscopic scales.
机译:用于隧道应用的切削工具的磨损会导致提前率降低和计划外停机,这与增加的隧道时间和项目成本相关。在计划阶段,将根据要挖掘的地面估算工具的磨损及其相关的使用寿命和更换时间。但是,从材料技术的角度来看,此过程是不够的,因为必须考虑到工具材料,地面和微观尺度上的作用磨损机制(例如磨损,疲劳或强制断裂)之间的相互作用。相应的工具材料具有不同的摩擦机械特性,因此具有不同的磨损机制和磨损率,具体取决于要开采的地面。低磨损率只能使用适合于作用地面和相关摩擦系统的优化工具材料概念来实现。这就需要对各种材料的磨损行为有一个全面的了解。本文重点介绍不同的常用工具概念及其微观结构。分析了这些材料的微结构与磨料颗粒的相互作用以及相关的微磨损机理。结果可根据相应的工具和材料概念更深入地了解挖掘工具的磨损过程。RUB掘进设备的结果和纳米划痕试验的结果说明了所讨论的相关性,这些结果用于将摩擦学TBM工具系统映射到宏观和微观尺度。

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