论文标题
分析球螺钉上可检测到的可检测到的磨损进度
Analysis of the Visually Detectable Wear Progress on Ball Screws
论文作者
论文摘要
球螺钉驱动主轴上的实际进展尚不清楚,因为以前的研究仅依赖于间接磨损效应的研究(例如温度,电动机电流,结构传播噪声)。使用来自相机系统的图像进行球螺钉驱动器,该论文详细阐述了对位点的视觉分析。由于对磨损状态的直接,基于条件的评估,基于图像的方法具有多种优势,例如:良好的解释性,对环境条件的低影响和高空间分辨率。本文介绍的研究基于一个数据集,该数据集包含从原始状况到十个球螺钉螺旋的组件故障的整个磨损进展。正在分析有关以下参数的数据集:轴向长度,切向长度和每个凹坑的表面积,凹坑的总数以及每个坑的初始视觉外观的时间。结果提供了证据表明,可以根据视觉磨损特性来量化磨损的发育。此外,使用专用的摄像头系统,可以在机器操作期间捕获单个凹坑的实际生长曲线过程。使用分析的发现,作者提出了基于几何磨损特性的基于标准的磨损定量的公式。
The actual progression of pitting on ball screw drive spindles is not well known since previous studies have only relied on the investigation of indirect wear effects (e. g. temperature, motor current, structure-borne noise). Using images from a camera system for ball screw drives, this paper elaborates on the visual analysis of pitting itself. Due to its direct, condition-based assessment of the wear state, an image-based approach offers several advantages, such as: Good interpretability, low influence of environmental conditions, and high spatial resolution. The study presented in this paper is based on a dataset containing the entire wear progression from original condition to component failure of ten ball screw drive spindles. The dataset is being analyzed regarding the following parameters: Axial length, tangential length, and surface area of each pit, the total number of pits, and the time of initial visual appearance of each pit. The results provide evidence that wear development can be quantified based on visual wear characteristics. In addition, using the dedicated camera system, the actual course of the growth curve of individual pits can be captured during machine operation. Using the findings of the analysis, the authors propose a formula for standards-based wear quantification based on geometric wear characteristics.