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首页> 外文期刊>Archives of mining sciences >Tests and Examination of Drive Sheave in Mine Skip Hoist
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Tests and Examination of Drive Sheave in Mine Skip Hoist

机译:矿井提升机驱动滑轮的测试与检验

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摘要

This article describes a certain stage of work aimed at strength analysis of the structure of drive sheaves in mine shaft hoists. The work was initiated in connection with the emergence of cracks in those sheaves as a result of operation, and is an attempt to develop a new improved design of the drive sheave.The first stage involved several series of strain gauge measurements of stress in the drive sheaves of machines exposed to their rated load. Measurement technology and results are described in detail in (Rokita & Wójcik, 2013). The results of those measurements were the basis for FEM stress analysis and discussion of the changes in the structure of those sheaves.This article focuses on a description of the developed computational models for the currently used sheaves, and presents the results of strength calculations. As a result of those actions, a new drive sheave design was developed, for which a computational model was also prepared and FEM calculations were performed.Comparison of the results of calculations for both sheave models is, therefore, also an assessment of the impact of the proposed changes to the design of the drive sheave on its strength and durability. It was decided to adopt the results of strength analysis of the sheave assembly currently in service as the baseline for this assessment. This required not only the performance of a strength analysis on the basis of a specially developed drive sheave calculation model, but also identification and assessment of the allowable stress values for the analysed structure.
机译:本文介绍了工作的某个阶段,旨在对矿井提升机中驱动滑轮的结构进行强度分析。这项工作的开始是由于操作中这些滑轮的裂纹的出现,并且是对驱动滑轮的一种改进设计的尝试。第一阶段涉及一系列应变仪测量驱动器中的应力。皮带轮承受额定负荷。测量技术和结果在(Rokita&Wójcik,2013)中有详细描述。这些测量的结果是进行有限元分析和讨论这些滑轮结构变化的基础。本文重点介绍了当前使用的滑轮的已开发计算模型,并介绍了强度计算的结果。作为这些动作的结果,开发了一种新的驱动滑轮设计,为此还准备了一个计算模型并进行了有限元计算。因此,比较两个滑轮模型的计算结果还可以评估皮带轮的影响。建议对驱动轮的设计进行更改,以提高其强度和耐用性。决定采用当前使用的滑轮组件强度分析的结果作为该评估的基准。这不仅需要基于专门开发的驱动滑轮计算模型进行强度分析,而且还需要识别和评估所分析结构的允许应力值。

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